Item 1. Business
ITEM
1. BUSINESS
Company
Overview
The
Company is a clinical-stage biopharmaceutical company dedicated to improving patients’ lives by developing a drug class called
Protein Phosphatase 2A inhibitors. The Company’s corporate office is located in Pasadena, California.
The
Company’s product pipeline is primarily focused on inhibitors of protein phosphatase 2A, used in combination with cytotoxic agents
and/or x-ray, immune checkpoint blockers and other cancer therapies. The Company believes that inhibitors of protein phosphatases have
significant therapeutic potential for a broad range of cancers. The Company is focusing on the clinical development of a specific protein
phosphatase inhibitor, referred to as LB-100, which has been shown to have clinical anti-cancer activity at doses that produce little
or no toxicity.
The
Company’s activities are subject to significant risks and uncertainties, including the need for additional capital. The Company
has not yet commenced any revenue-generating operations, does not have positive cash flows from operations, relies on stock-based compensation
for a substantial portion of employee and consultant compensation, and is dependent on periodic infusions of equity capital to fund its
operating requirements.
Description
of Business
Most
cancer patients are treated with either chemotherapy or immunotherapy or both. These therapies often have limited benefit and there is
a high unmet medical need to enhance their effects. In many preclinical models we have shown that LB-100 enhances the effect of both
chemotherapy and Immunotherapy
LB-100,
a small molecule potent inhibitor of PP2A was designed and developed by the Company. Numerous preclinical studies have documented that
LB-100 potentiates most if not all anti-cancer drugs that damage DNA. LB-100 is not associated with any increase in cytotoxicity when
given with cytotoxic drugs. This synergy involves transient interruption of several DNA damage repair pathways by LB-100 and an increase
in cell division rate. LB-100 has FDA Investigational New Drug status in the US and Investigational Medicinal Product Dossier approval
in the European Union.
In
its initial Phase 1 clinical trial, LB-100 given alone daily for 3 days was non-toxic, except for a transient increase in serum creatinine
believed to be caused by inhibition of PP2A in the renal tubules. In the Phase 1 clinical trial, the Maximally Tolerated Dose (“MTD”)
was 2.33mg/m2 daily for 3 days every 3 weeks. Of the 25 patients with heavily-treated advanced solid tumors with measurable disease,
3 patients had stable disease for 2 cycles, 3 patients had stable disease for 4 cycles, and 3 patients had stable disease for 6 cycles.
One patient with pancreatic cancer had a partial response after 12 cycles lasting 534 days.
- 4 -
Based
on the DNA damage enhancing effect of PP2A inhibition with LB-100, the Company initiated a study in Advanced Soft Tissue Sarcoma (“ASTS”)
with the Spanish Sarcoma Group (Grupo Español de Investigación en Sarcomas or “GEIS”) for a collaborative clinical
trial in Madrid, Spain.
Low
doses of LB-100 have now been shown to enhance immune checkpoint inhibition (“ICI”) by several different mechanisms affecting
the tumor compartment and immune T-cell compartment. LB-100 increases CD8+T-cell infiltration and CD8-Treg ratio, CD8+T-cell proliferation,
and cytokine production induces microsatellite instability, neoantigen production and immune responsiveness, converting immunologically
“cold” to “hot” cancers.
Ovarian
clear cell carcinoma patients with inactivating mutations in PPP2R1A, a gene coding for a scaffold component of PP2A, and treated with
immune checkpoint inhibitors, were recently found to have markedly longer survival than patients without the mutation in their cancers.
Retrospective reviews of patients with a variety of cancers treated with ICI or chemotherapy show much longer survival of ICI-treated
patients with a PPP2R1A mutation in their tumors.
Based
on the observations in ovarian clear cell carcinoma, the Company has initiated a clinical trial in this disease combining LB-100 with
a monoclonal antibody blocking PD-1, a protein found on T-cells (NCT06065462). Further, in an ongoing Phase 1b clinical trial in previously
untreated patients with small cell lung cancer, LB-100 is being escalated with a combination of full dose carboplatin, etoposide, and
atezolizumab (NCT04560972). This clinical trial is being sponsored and conducted at the City of Hope National Medical Center in Duarte,
California.
Given
these preclinical and clinical observations, it is likely that LB-100 may be a general way to enhance immunotherapy responses.
- 5 -
The
research on the LB-100 series was initiated in 2006 under a Cooperative Research and Development Agreement (“CRADA”) with
the National Institute of Neurologic Disorders and Stroke or NINDS of the National Institutes of Health or NIH dated March 22, 2006 that
was subsequently extended through a series of amendments until it terminated on April 1, 2013.
The
Company has also designed and developed the LB-200 series, which consists of histone deacetylase inhibitors (HDACi). LB-200 has not advanced
to the clinical stage and would require additional capital to fund further development. Accordingly, because of our focus on the clinical
development of LB-100 and analogs for cancer therapy as described below in more detail, we have decided not to actively pursue the preclinical
development of our LB-200 series of compounds at this time.
Clinical
Trial Agreements
Spanish
Sarcoma Group Collaboration Agreement
Effective
July 31, 2019, the Company entered into a Collaboration Agreement for an Investigator-Initiated Clinical Trial with the Spanish Sarcoma
Group (Grupo Español de Investigación en Sarcomas or “GEIS”), Madrid, Spain, to carry out a study entitled
“Randomized phase I/II trial of LB-100 plus doxorubicin vs. doxorubicin alone in first line of advanced soft tissue sarcoma”.
The purpose of this clinical trial is to obtain information with respect to the efficacy and safety of LB-100 combined with doxorubicin
in soft tissue sarcomas. Doxorubicin is the global standard for initial treatment of advanced soft tissue sarcomas (“ASTS”).
Doxorubicin alone has been the mainstay of first line treatment of ASTS for over 40 years, with little improvement in survival from adding
cytotoxic compounds to or substituting other cytotoxic compounds for doxorubicin. In animal models, LB-100 consistently enhances the
anti-tumor activity of doxorubicin without apparent increases in toxicity.
GEIS
has a network of referral centers in Spain and across Europe that have an impressive track record of efficiently conducting innovative
studies in ASTS. The Company agreed to provide GEIS with a supply of LB-100 to be utilized in the conduct of this clinical trial, as
well as to provide funding for the clinical trial. The goal is to enter approximately 150 to 170 patients in this clinical trial over
a period of two to four years. The Phase 1 portion of the study began in the quarter ended June 30, 2023 to determine the recommended
Phase 2 dose of the combination of doxorubicin and LB-100. As advanced sarcoma is a very aggressive disease, the design of the Phase
2 portion of the study assumes a median progression-free survival (“PFS”), no evidence of disease progression or death from
any cause) of 4.5 months in the doxorubicin arm and an alternative median PFS of 7.5 months in the doxorubicin plus LB-100 arm to demonstrate
a statistically significant decrease in relative risk of progression or death by adding LB-100. There is a planned interim analysis of
the primary endpoint when approximately 50% of the 102 events required for final analysis is reached.
- 6 -
The
Company had previously expected that this clinical trial would commence during the quarter ended June 30, 2020. However, during July
2020, the Spanish regulatory authority advised the Company that although it had approved the scientific and ethical basis of the protocol,
it required that the Company manufacture new inventory of LB-100 under current Spanish pharmaceutical manufacturing standards. These
standards were adopted subsequent to the production of the Company’s existing LB-100 inventory.
In
order to manufacture a new inventory supply of LB-100 for the GEIS clinical trial, the Company engaged a number of vendors to carry out
the multiple tasks needed to make and gain approval of a new clinical product for investigational study in Spain. These tasks included
the synthesis under good manufacturing practices (GMP) of the active pharmacologic ingredient (API), with documentation of each of the
steps involved by an independent auditor. The API was then transferred to a vendor that prepares the clinical drug product, also under
GMP conditions documented by an independent auditor. The clinical drug product was then sent to a vendor to test for purity and sterility,
provide appropriate labels, store the drug, and distribute the drug to the clinical centers for use in the clinical trials. A formal
application documenting all steps taken to prepare the clinical drug product for clinical use was submitted to the appropriate regulatory
authorities for review and approval before being used in a clinical trial.
On
October 13, 2022, the Company announced that the Spanish Agency for Medicines and Health Products (Agencia Española de Medicamentos
y Productos Sanitarios or “AEMPS”) had authorized a Phase 1b/randomized Phase 2 study of LB-100, the Company’s lead
clinical compound, plus doxorubicin, versus doxorubicin alone, the global standard for initial treatment of advanced soft tissue sarcomas
(ASTS). Consequently, this clinical trial commenced during the quarter ended June 30, 2023 and to be completed and a report prepared
by December 31, 2026. In April 2023, GEIS completed its first site initiation visit in preparation for the clinical trial at Fundación
Jiménez Díaz University Hospital (Madrid). Up to 170 patents will be entered into the clinical trial. The Phase 1b portion
of the protocol is expected to be completed by June 30, 2024, at which time the Company expects to have data on both response and toxicity
from this portion of the clinical trial, and subject to clinical results, anticipates that it will be able to proceed to a related Phase
2 study.
The
interim analysis of this clinical trial will be done before full accrual of patients is completed to determine whether the study has
the possibility of showing superiority of the combination of LB-100 plus doxorubicin compared to doxorubicin alone. A positive study
would have the potential to change the standard therapy for this disease after four decades of failure to improve the marginal benefit
of doxorubicin alone.
Clinical
Research Support Agreement with the City of Hope National Medical Center
Effective
January 18, 2021, the Company executed a Clinical Research Support Agreement with the City of Hope National Medical Center, an NCI-designated
comprehensive cancer center, and City of Hope Medical Foundation (collectively, “City of Hope”), to carry out a Phase 1b
clinical trial of LB-100, the Company’s first-in-class protein phosphatase inhibitor, combined with an FDA-approved standard regimen
for treatment of untreated extensive-stage disease small cell lung cancer (“ED-SCLC”). LB-100 will be given in combination
with carboplatin, etoposide and atezolizumab, an FDA-approved standard of care regimen, to previously untreated ED-SCLC patients. The
dose of LB-100 will be escalated with the standard fixed doses of the 3-drug regimen to reach a recommended Phase 2 dose (“RP2D”).
Patient entry will be expanded so that a total of 12 patients will be evaluable at the RP2D to confirm the safety of the LB-100 combination
and to look for potential therapeutic activity as assessed by objective response rate, duration of overall response, progression-free
survival and overall survival.
The
clinical trial was initiated on March 9, 2021, with patient accrual expected to take approximately two years to complete. However, as
patient accrual was slower than expected, the Company has been seeking to add additional sites to increase the rate of patient accrual.
Effective March 6, 2023, the Sarah Cannon Research Institute (“SCRI”), Nashville, Tennessee, joined the City of Hope’s
ongoing Phase 1b clinical trial. The Company is continuing its efforts to add additional sites. The addition of SCRI is expected to expedite
and expand the accrual of patients to this clinical trial, thus reducing the time required to demonstrate the feasibility, tolerability,
and efficacy of adding LB-100 to the current standard treatment regimen. With the addition of SCRI, the Company currently expects that
this clinical trial will be completed by March 31, 2026.
- 7 -
The
Company currently expects that enrollment in this clinical trial will range from approximately 18 to 30 enrollees, with 24 enrollees
as the most likely number. Should fewer than 42 enrollees be required, the Company has agreed to compensate City of Hope on a per enrollee
basis. If a significant improvement in outcome is seen with the addition of LB-100, this would be an important advance in the treatment
of a very aggressive disease.
MD
Anderson Cancer Center Clinical Trial
On
September 20, 2023, the Company announced an investigator-initiated Phase 1b/2 collaborative clinical trial to assess whether adding
LB-100 to a human programmed death receptor-1 (“PD-1”) blocking antibody of GSK plc (“GSK”), dostarlimab-gxly,
may enhance the effectiveness of immunotherapy in the treatment of ovarian clear cell carcinoma (“OCCC”). The clinical trial
is being sponsored by The University of Texas MD Anderson Cancer Center (“MD Anderson”) and is being conducted at The University
of Texas - MD Anderson Cancer Center. The Company is providing LB-100 and GSK is providing dostarlimab-gxly and financial support for
the clinical trial. On January 29, 2024, the Company announced the entry of the first patient into this clinical trial. The Company currently
expects that this clinical trial will be completed by July 31, 2025.
National
Cancer Institute Pharmacologic Clinical Trial
In
May 2019, the National Cancer Institute (NCI) initiated a glioblastoma (GBM) pharmacologic clinical trial. This study was being conducted
and funded by the NCI under a Cooperative Research and Development Agreement, with the Company being required to provide the LB-100 clinical
compound.
Primary
malignant brain tumors (gliomas) are very challenging to treat. Radiation combined with the chemotherapeutic drug temozolomide has been
the mainstay of therapy of the most aggressive gliomas (glioblastoma multiforme or GBM) for decades, with little further benefit gained
by the addition of one or more anti-cancer drugs, but without major advances in overall survival for the majority of patients. In animal
models of GBM, the Company’s novel protein phosphatase inhibitor, LB-100, has been found to enhance the effectiveness of radiation,
temozolomide chemotherapy treatments and immunotherapy, raising the possibility that LB-100 may improve outcomes of standard GBM treatment
in the clinic. Although LB-100 has proven safe in patients at doses associated with apparent anti-tumor activity against several human
cancers arising outside the brain, the ability of LB-100 to penetrate tumor tissue arising in the brain was not known. Many drugs potentially
useful for GBM treatment do not enter the brain in amounts necessary for anti-cancer action.
The
NCI study was designed to determine the extent to which LB-100 enters recurrent malignant gliomas. Patients having surgery to remove
one or more tumors received one dose of LB-100 prior to surgery and had blood and tumor tissue analyzed to determine the amount of LB-100
present and to determine whether the cells in the tumors showed the biochemical changes expected to be present if LB-100 reached its
molecular target. As a result of the innovative design of the NCI study, it was believed that data from a few patients would be sufficient
to provide a sound rationale for conducting a larger clinical trial to determine the effectiveness of adding LB-100 to the standard treatment
regimen for GBMs. Blood and brain tumor tissue were analyzed from seven patients after intravenous infusion of a single dose of LB-100.
Results of the investigation demonstrated that there was virtually no entry of LB-100 into the brain tumor tissue. Accordingly, alternative
methods of drug delivery will be required to determine if LB-100 has meaningful clinical anti-cancer activity against glioblastoma multiforme
and other aggressive brain tumors.
Moffitt
Cancer Center Clinical Trial Research Agreement
Effective
August 20, 2018, the Company entered into a Clinical Trial Research Agreement with the Moffitt Cancer Center and Research Institute Hospital
Inc., Tampa, Florida (“Moffitt”), effective for a term of five years, unless terminated earlier by the Company pursuant to
30 days written notice. Pursuant to the Clinical Trial Research Agreement, Moffitt agreed to conduct and manage a Phase 1b/2 clinical
trial to evaluate the toxicity and therapeutic benefit of the Company’s lead anti-cancer clinical compound LB-100 to be administered
intravenously in patients with low or intermediate-1 risk myelodysplastic syndrome (“MDS”).
In
November 2018, the Company received approval from the U.S. Food and Drug Administration for its Investigational New Drug (“IND”)
Application to conduct a Phase 1b/2 clinical trial to evaluate the toxicity and therapeutic benefit of LB-100 in patients with low and
intermediate-1 risk MDS who have failed or are intolerant of standard treatment. Patients with MDS, although usually older, are generally
well except for severe anemia requiring frequent blood transfusions. This Phase 1b/2 clinical trial utilized LB-100 as a single agent
in the treatment of patients with low and intermediate-1 risk MDS.
- 8 -
The
clinical trial began at a single site in April 2019 and the first patient was entered into the clinical trial in July 2019. During the
year ended December 31, 2023, the clinical trial was closed. In this clinical trial, single agent LB-100 was used on a new schedule of
days 1, 3, and 5 every 3 weeks. Although the MTD was not achieved, there was no dose-limiting toxicity on this schedule at doses that
were greater than the MTD in the Phase 1 clinical trial of LB-100 on the Monday, Tuesday, Wednesday schedule.
Patent
and License Agreements
National
Institute of Health
Effective
February 23, 2024, the Company entered into a Patent License Agreement (the “License Agreement”) with the National Institute
of Neurological Disorders and Stroke (“NINDS”) and the National Cancer Institute (“NCI”), each an institute or
center of the National Institute of Health (“NIH”). Pursuant to the License Agreement, the Company has licensed exclusively
NIH’s intellectual property rights claimed for a Cooperative Research and Development Agreement (“CRADA”) subject invention
co-developed with the Company, and the licensed field of use, which focuses on promoting anti-cancer activity alone, or in combination
with standard anti-cancer drugs. The scope of this clinical research extends to checkpoint inhibitors, immunotherapy, and radiation for
the treatment of cancer. The License Agreement is effective, and shall extend, on a licensed product, licensed process, and country basis,
until the expiration of the last-to-expire valid claim of the jointly owned licensed patent rights in each such country in the licensed
territory, unless sooner terminated.
The
License Agreement contemplates that the Company will seek to work with pharmaceutical companies and clinical trial sites (including comprehensive
cancer centers) to initiate clinical trials within timeframes that will meet certain benchmarks. Data from the clinical trials will be
the subject of various regulatory filings for marketing approval in applicable countries in the licensed territories. Subject to the
receipt of marketing approval, the Company would be expected to commercialize the licensed products in markets where regulatory approval
has been obtained.
Moffitt
Cancer Center
Effective
August 20, 2018, the Company entered into an Exclusive License Agreement with Moffitt. Pursuant to the License Agreement, Moffitt granted
the Company an exclusive license under certain patents owned by Moffitt (the “Licensed Patents”) relating to the treatment
of MDS and a non-exclusive license under inventions, concepts, processes, information, data, know-how, research results, clinical data,
and the like (other than the Licensed Patents) necessary or useful for the practice of any claim under the Licensed Patents or the use,
development, manufacture or sale of any product for the treatment of MDS which would otherwise infringe a valid claim under the Licensed
Patents. The clinical trial began at a single site in April 2019 and the first patient was entered into the clinical trial in July 2019.
On
October 4, 2023, the Company received a counter-signed termination letter dated September 29, 2023 with respect to the Exclusive License
Agreement dated August 20, 2018 between the Company and Moffitt, effective September 30, 2023. The Company and Moffitt agreed that no
termination fee shall be due or payable by the Company, and Moffitt acknowledged that no payments are owed by the Company under the Agreement.
Other
Significant Agreements and Contracts
Netherlands
Cancer Institute
On
October 8, 2021, the Company entered into a Development Collaboration Agreement with the Netherlands Cancer Institute, Amsterdam (“NKI”),
one of the world’s leading comprehensive cancer centers, and Oncode Institute, Utrecht, a major independent cancer research center,
for a term of three years. The Development Collaboration Agreement was subsequently modified by Amendment No. 1 thereto. The Development
Collaboration Agreement is intended to identify the most promising drugs to be combined with LB-100, and potentially LB-100 analogues,
to be used to treat a range of cancers, as well as to identify the specific molecular mechanisms underlying the identified combinations.
The Company agreed to fund the study and provide a sufficient supply of LB-100 to conduct the study. On October 3, 2023, the Company
entered into Amendment No. 2 to the Development Collaboration Agreement with NKI, which provides for additional research activities and
extends the termination date of the Development Collaboration Agreement by two years to October 8, 2026.
- 9 -
Effective
as of June 15, 2022, Dr. René Bernards was appointed to the Company’s Board of Directors as an independent director. Dr.
Bernards is a leader in the field of molecular carcinogenesis and is employed by NKI.
Potential
Future Clinical Trials
Our
objective is to initiate a Phase 1b/2 clinical trial of LB-100 in combination with immunotherapy. Our ability to conduct such a clinical
trial, and possibly other clinical trials, is dependent on the conclusion and results of our ongoing clinical trials and is subject to
the availability of additional financial resources. The clinical trial would study the ability of LB-100 to enhance the effectiveness
of an immunoblocker by adding LB-100 in treatment of one of several cancers in which immunotherapy alone has modest activity.
The
Phase 1b/2 clinical trial in LB-100 plus a PD-1 blocker in yet to be specified solid tumors would require additional financing in excess
of that currently budgeted and/or partnering relationships with other pharmaceutical companies. From time to time, we engage in discussions
with various parties with respect to financing clinical trials evaluating the benefit of adding LB-100 to immunotherapy. There can be
no assurance that we will be able to obtain such financing and/or partnering relationships on acceptable terms or at all. Our longer-term
objective is to secure one or more strategic partnerships with pharmaceutical companies with major programs in cancer research and drug
development.
Intellectual
Property
Our
products will ultimately be based on our intellectual property and are expected to be covered by our patents. These patents now cover
sole rights to the composition and synthesis of our LB-100 series of drugs, which is the Company’s lead clinical compound in development.
The Company has filed patent applications covering the treatment of cancer with LB-100. The Company has also filed joint patent applications
with the NIH and the Netherlands Cancer Institute for the treatment of cancer using LB-100 in combination with other drugs, including,
but not limited to, immune checkpoint inhibitors and WEE1 inhibitors.
Patent
applications for the LB-100 series (oxabicycloheptanes and heptenes) have been filed in the United States and internationally under the
Patent Cooperation Treaty. Patents for composition of matter and for several uses of the LB-100 series have been issued in the United
States, Mexico, Australia, Japan, China, Hong Kong, Canada, Germany, France, the United Kingdom, and by the European Patent Office and
the Eurasian Patent Office.
Because
we do not plan to allocate resources to further develop our LB-200 series of drug candidates, we decided to abandon patents that cover
sole rights to the composition and synthesis of the LB-200 series of drugs, with coverage of the LB-200 series now limited to maintenance
of those patents issued in the United States. We also decided to abandon patents that cover rights in treating other diseases than cancer,
including, but not limited to, diabetes, neurodegenerative disease and reperfusion injury.
The
Company strives to protect and enhance the proprietary technology, inventions, and improvements that are commercially important to the
development of its business, including seeking, maintaining, and defending its patent rights, which are owned solely by our wholly-owned
Delaware subsidiary, Lixte Biotechnology, Inc., except in several instances where they are jointly owned with one of our collaborators.
The Company also relies on trade secrets relating to its proprietary pipeline of product candidates and on know-how and continuing technological
innovation to develop and strengthen its pipeline. The Company intends to rely on regulatory protection afforded by regulatory agencies
through data exclusivity, market exclusivity, and patent term extensions, where available.
- 10 -
The
Company’s success will depend in large part on its ability to obtain and maintain patent and other proprietary protection for commercially
important technology, inventions and know-how related to its business; defend and enforce its patents; preserve the confidentiality of
its trade secrets; and operate without infringing valid and enforceable patents or proprietary rights of third parties. The Company’s
ability to stop third parties from making, using, selling, offering to sell, or importing our technology may depend on the extent to
which the Company has rights under valid and enforceable licenses, patents, or trade secrets that cover these activities. In some cases,
enforcement of these rights may depend on cooperation of the owners of our jointly owned patents and patent applications.
With
respect to both the Company’s solely and jointly owned intellectual property, the Company cannot be sure that patents will be granted
on any of its pending patent applications or on any patent applications filed solely or jointly by the Company in the future; we cannot
be sure that any of the Company’s existing patents or any patents that may be granted to us in the future will be commercially
useful in protecting the Company’s intended commercial products or therapeutic methods; and the Company cannot be sure that an
agency or court would determine that the Company’s solely or jointly owned patents are valid and enforceable.
The
patent portfolios for the Company’s most important programs involving the development of the LB-100 series are summarized and presented
below, along with related information, as of December 31, 2023, followed by a detailed listing of U.S. and non-U.S. patents that have
been issued. The projected patent expiration dates assume that that all required maintenance or annuity fees for the patents are timely
paid and that a court or agency does not determine that the patents are invalid or unenforceable.
In
September 2023, the Company appointed a new President and Chief Executive Officer, who, with the assistance of the Company’s management,
Board of Directors and patent legal counsel, conducted a comprehensive analysis of the Company’s extensive patent portfolio in order
to implement a program to balance patent prosecution costs with intellectual property protection benefits. As a result, the Company identified
certain patent filings that it does not intend to continue to support in 2024 and thereafter.
LB-100 .
The Company’s lead compound LB-100 is covered by U.S. Patent Nos. 8,822,461 and 7,998,957, which are solely owned by Lixte Biotechnology,
Inc., the Company’s wholly-owned subsidiary. These patents are projected to expire in 2030 or 2028, exclusive of any available
patent term extension. Counterpart non-U.S. patents are projected to expire in 2028. Pharmaceutical compositions of LB-100 are covered
by U.S. Patent Nos. 10,532,050, 10,023,587 and 8,822,461, which are solely owned by Lixte Biotechnology, Inc. These patents and their
non-U.S. counterparts are projected to expire in 2034 or 2028, exclusive of any available patent term extension.
LB-100
Combination Therapy with a Checkpoint Inhibitor . LB-100 combination therapy with a checkpoint inhibitor for treating cancer is
covered by a pending U.S. patent application and by non-U.S. patents and patent applications. These patents and patent applications are
jointly owned by Lixte Biotechnology, Inc., and The United States of America, as represented by the Secretary, Department of Health and
Human Services. These patents and patents issuing from these patent applications are projected to expire in 2037, exclusive of any patent
term extension.
LB-100
Combination Therapy with Carboplatin, Etoposide and Atezolizumab . LB-100 combination therapy with carboplatin, etoposide and
atezolizumab for treating small-cell lung cancer is covered by pending U.S., and non-U.S. patent applications that are solely owned
by Lixte Biotechnology, Inc. Patents issuing from these patent applications are projected to expire in 2041, exclusive of any patent
term extension.
LB-100
Combination Therapy with Another Investigational Compound . LB-100 combination therapy with one of several other investigational
compounds for treating cancer, or preventing, inhibiting or reducing risk of metastasis of the cancer, is covered by pending U.S. and
non-U.S. patent applications that are jointly owned by Lixte Biotechnology, Inc., and Stichting Het Nederlands Kanker Instituut –
Antoni Van Leeuwenhoek Ziekenhuis. Patents issuing from these patent applications are projected to expire in 2043, exclusive of any patent
term extension.
- 11 -
LB-100
for Treating Cancer . LB-100 for treating breast cancer, colon cancer, large cell lung cancer, adenocarcinoma of the lung, small
cell lung cancer, stomach cancer, liver cancer, ovary adenocarcinoma, pancreas carcinoma, prostate carcinoma, promyelocytic leukemia,
chronic myelocytic leukemia or acute lymphocytic leukemia, is covered by U.S. Patent No. 9,079,917, which is solely owned by Lixte Biotechnology,
Inc. This patent and its non-U.S. counterparts are projected to expire in 2028, exclusive of any patent term extension.
LB-100
Prodrugs and Analogs . LB-100 prodrugs and analogs are covered by U.S. Patent Nos. 10,618,908, 9,988,394, 8,822,461, 8,227,473
and 7,998,957, which are solely owned by Lixte Biotechnology, Inc. These patents and their non-U.S. counterparts are projected to expire
in 2036, 2030 or 2028, exclusive of any patent term extension. Pharmaceutical compositions of LB-100 prodrugs or analogs are covered
by U.S. Patent Nos. 11,931,354 ,11,236,102, 10,532,050, 10,023,587, 8,822,461, 8,227,473 and 7,998,957, which are solely owned by Lixte
Biotechnology, Inc. These patents and their non-U.S. counterparts are projected to expire in 2034, 2030 or 2028, exclusive of any patent
term extension.
Our
portfolio of solely or jointly owned U.S. and non-U.S. issued patents is summarized below . We have additional U.S. and non-U.S.
patent applications pending.
LB-100
Series of Compounds - Phosphatase Inhibitors – Composition and Use in Cancer Treatment
Oxabicycloheptanes
and Oxabicycloheptenes, Their Preparation and Use
Patent
Issue/Grant Date
Expiration Date
AU 2008214299
1/19/2014
2/6/2028
CA 2,676,422
10/16/2018
2/6/2028
CN 101662939
11/25/2015
2/6/2028
CN 103788108
4/12/2017
2/6/2028
EP 2124550
4/19/2017
2/6/2028
EA 023804
7/29/2016
2/6/2028
JP 5693850
4/1/2015
2/6/2028
US 7,998,957
8/16/2011
2/20/2030
US 8,426,444
4/23/2013
2/6/2028
US 8,227,473
7/24/2012
3/11/2030
US 8,541,458
9/24/2013
7/17/2029
US 8,822,461
9/2/2014
2/6/2028
US 9,079,917
7/14/2015
2/6/2028
US 10,023,587
7/17/2018
2/6/2028
US 10,399,993
9/3/2019
2/6/2028
Formulations
of Oxabicycloheptanes and Oxabicycloheptenes
Patent
Issue/Grant Date
Expiration Date
AU 2014251087
5/2/2019
4/8/2034
CN 105209036
10/26/2018
4/8/2034
IL 241945
4/30/2019
4/8/2034
US 10,532,050
1/14/2020
7/5/2034
US 11,931,354
3/19/2024
4/8/2034
Process
of Synthesizing 3-(4-Methylpiperazine-1-Carbonyl)-7-Oxabicyclo [2.2.1] Heptane-2-Carboxylic Acid
Patent
Issue/Grant Date
Expiration Date
US 9,994,584
6/12/2018
10/14/2035
- 12 -
Protein
Phosphatase 2A Inhibitors for Treating Myelodysplastic Syndromes
Patent
Issue/Grant Date
Expiration Date
JP 6453441
1/16/2019
7/23/2035
US 10,071,094
9/11/2018
7/23/2035
US 10,434,100
10/8/2019
7/23/2035
Oxabicycloheptane
Prodrugs
Patent
Issue/Grant Date
Expiration Date
AU 2016263079
8/15/2019
5/12/2036
EP 3294287
4/8/2020
5/12/2036
IL 255516
2/27/2020
5/12/2036
US 9,988,394
6/5/2018
5/13/2036
US 10,364,252
7/30/2019
5/13/2036
US 10,618,908
4/14/2020
5/13/2036
The
Market
Anti-Cancer
Drugs
We
believe that the mechanism by which compounds of the LB-100 series affects cancer cell growth is different from cancer agents currently
approved for clinical use. Lead compounds of the LB-100 series have activity against a broad spectrum of common and rarer human cancers
in cell culture systems. In addition, lead compounds of the LB-100 series have anti-cancer activity in animal models of glioblastoma
multiforme, neuroblastoma, and medulloblastoma, all cancers of neural tissue. Lead compounds of the LB-100 series also have activity
against melanoma, breast cancer and sarcoma in animal models and enhance the effectiveness of commonly used anti-cancer drugs in animal
models. The enhancement of anti-cancer activity of these commonly-used anti-cancer drugs occurs at doses of LB-100 that do not significantly
increase toxicity in animals. It is therefore hoped that when combined with standard anti-cancer regimens against many tumor types, LB-100
will improve therapeutic benefit without unacceptable toxicity in humans.
Marketing
Plan
Our
primary goal to date has been to take our primary compound, LB-100, through Phase 2 clinical trials evaluating whether LB-100 will enhance
anti-cancer therapies. Because of the novelty and spectrum of activity of LB-100, we believe it is reasonably likely we may find a partner
in the pharmaceutical industry with interest in this compound at some stage of its clinical development. However, we would prefer to
delay the partnering/licensing decision until the potential value of our products are augmented by demonstrating there is no impediment
to clinical evaluation and a therapeutic dose level is determined in clinical trials. Demonstration of clinical usefulness would be expected
to substantially increase the value of our product.
Research
and Development
Further
development of lead compounds in addition to LB-100 will require pharmacokinetic/ pharmacodynamic characterization (i.e., how long a
drug persists in the blood and how long the drug is active at the intended target) and large animal toxicologic evaluation under conditions
meeting FDA requirements. Most anti-cancer drugs fail in development because of unacceptable toxicity. However, by analogy with mechanistically
related compounds, there is good reason to believe that lead compounds in addition to LB-100 will be able to be given to humans safely
by routes and at doses resulting in concentration of drug producing anti-cancer activity in animal models.
- 13 -
Product
Development
We
are subject to FDA regulations as it conducts clinical trials. Additionally, any product for which we obtain marketing approval, along
with the manufacturing processes, post-approval clinical data and promotional activities for such product, will be subject to continual
review and periodic inspections by the FDA and other regulatory bodies. Even if regulatory approval of a product is granted, the approval
may be subject to limitations on the indicated uses for which the product may be marketed or contain requirements for costly post-marketing
testing and surveillance to monitor the safety or efficacy of the product. Later discovery of previously unknown problems with our products,
including unanticipated adverse events or adverse events of unanticipated severity or frequency, manufacturer or manufacturing processes,
or failure to comply with regulatory requirements, may result in restrictions on such products or manufacturing processes, withdrawal
of the products from the market, voluntary or mandatory recall, fines, suspension of regulatory approvals, product seizures, injunctions
or the imposition of civil or criminal penalties.
Competition
The
life sciences industry is highly competitive and subject to rapid and profound technological change. Our present and potential competitors
include major pharmaceutical companies, as well as specialized biotechnology and life sciences firms in the United States and in other
countries. Most of these companies have considerably greater financial, technical and marketing resources than we do. Additionally, mergers
and acquisitions in the pharmaceutical and biotechnology industries may result in even more resources being concentrated in our competitors.
Our existing or prospective competitors may develop processes or products that are more effective than ours or be more effective at implementing
their technologies to develop commercial products faster. Our competitors may succeed in obtaining patent protection and/or receiving
regulatory approval for commercializing products before we do. Developments by our competitors may render our product candidates obsolete
or non-competitive.
We
also experience competition from universities and other research institutions, and we are likely to compete with others in acquiring
technology from those sources. There can be no assurance that other organizations will not develop technologies with significant advantages
over those that we are seeking to develop. Any such development could harm our business.
We
compete with universities and other research institutions engaged in research in these areas. Many of our competitors have greater technical
and financial resources than we do.
Our
ability to compete successfully is based on numerous factors, including:
●
the
cost-effectiveness of any product that we ultimately commercialize relative to competing products;
●
the
ease of use and ready availability of any product that we bring to market; and
●
the
relative speed with which we are able to bring any product resulting from its research to market in our target markets.
If
we are unable to distinguish our products from competing products, or if competing products reach the market first, we may be unable
to compete successfully with current or future competitors.
Employees
and Human Capital Resources
As
of March 1, 2024, we had three full-time officer/employees and one part-time officer/employee. The Company relies to a significant extent
on outside consultants and advisors with various technical skills and expertise that the Company can draw on as necessary to conduct
its research and development and clinical trial programs. We consider our relationship with our employees to be good. Our future performance
depends significantly upon the continued service of our key personnel and our ability to attract highly skilled employees. We provide
our employees with opportunities for equity ownership.
- 14 -
Facilities
As
of March 1, 2024, we do not operate any facilities. We contract out research and development activities, drug production, and drug storage
to various commercial laboratories, drug manufacturers and storage facilities.
Government
Regulation
Our
business is subject to the regulations of the FDA as it conducts clinical trials. Clinical trials are research studies to answer specific
questions about new therapies or new ways of using known treatments. Clinical trials determine whether new drugs or treatments are both
safe and effective and the FDA has determined that carefully conducted clinical trials are the fastest and safest way to find treatments
that work in people.
The
FDA also requires that an independent review body consider the benefits and risks of a clinical trial and grant approval for the proposed
study including selecting of initial doses, plans for escalation of dose, plans for modification of dose if toxicity is encountered,
plans for monitoring the wellbeing of individuals participating in the study, and for defining and measuring, to the extent possible,
any untoward effects related to drug administration. Serious adverse effects, such as life-threatening toxicities and death, are immediately
reportable to the review body and to the FDA. To minimize risk when studying a new drug, the initial dose is well below that expected
to cause any toxicity. No more than three patients are entered at a given dose. In general, a dose is not escalated within an individual
patient. Once safety is established by the absence of toxicity or low toxicity in a group of three patients, a planned higher dose is
then evaluated in a subsequent group of three individuals and so on until dose-limiting toxicity is encountered. The dose level producing
acceptable toxicity is then selected as the dose level to be evaluated in Phase 2 trials. Thus, the goal of Phase 1 studies is to determine
the appropriate dose level for evaluation of drug efficacy in patients with cancer.
In
addition to regulations imposed by the FDA, depending on our future activities, we may become subject to regulation under various federal
and state statutes and regulations, such as the Occupational Safety and Health Act, the Environmental Protection Act, the Toxic Substances
Control Act, the Research Conservation and Recovery Act, national restrictions on technology transfer, and import, export and customs
regulations. From time to time, other federal agencies and congressional committees have indicated an interest in implementing further
regulation of biotechnology applications. We are not able to predict whether any such regulations will be adopted or whether, if adopted,
such regulations will apply to our business, or whether we or our collaborators would be able to comply with any applicable regulations.
In
addition, as we intend to market our products in international markets, we will be required to obtain separate regulatory approvals from
the European Union and many other foreign jurisdictions. Approval by the FDA does not ensure approval by regulatory authorities in other
countries, and approval by one foreign regulatory authority does not ensure approval by regulatory authorities in other foreign countries
or by the FDA. We may not be able to file for regulatory approvals and may not receive necessary approvals to commercialize our products
in any market.
Legal
Proceedings
The
Company may be subject to legal claims and actions from time to time as part of its business activities. We are not currently subject
to any threatened or pending lawsuits, legal claims or legal proceedings.
Text extracted from the filing as submitted to EDGAR. Formatting, tables and exhibits are simplified for reading; the original document is authoritative for anything you rely on.