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New discoveries are revealing the fundamental role of autophagy and lysosomal flux in maintaining cellular health. Furthermore, it is now appreciated that inadequate or aberrant autophagy contributes to a wide range of diseases. We are focused on boosting autophagy – pioneering novel therapeutic strategies to address unmet medical needs. We are creating a new target set for drug discovery and development, and advancing innovative paradigms to treat a broad set of illnesses that are either neglected or inadequately addressed today. Our growing team is driven to transform fundamental discoveries on autophagy into promising therapeutic medicines.
Actinium Pharmaceuticals, Inc. is a clinical-stage biopharmaceutical company developing targeted radiotherapies to deliver cancer-killing radiation with cellular level precision to treat patients with high unmet needs not addressed by traditional cancer therapies. Actinium`s current clinical pipeline is led by ARCs or Antibody Radiation-Conjugates that are being applied to targeted conditioning, which is intended to selectively deplete a patient`s disease or cancer cells and certain immune cells prior to a BMT or Bone Marrow Transplant, Gene Therapy or Adoptive Cell Therapy (ACT) such as CAR-T to enable engraftment of these transplanted cells with minimal toxicities. Actinium`s targeted conditioning ARCs seek to improve patient outcomes and access to these potentially curative treatments by eliminating or reducing the non-targeted chemotherapy that is used for conditioning in standard practice currently. Our lead product candidate, I-131 apamistamab (Iomab-B) has been studied in several hundred patients including in the recently completed, 150-patient, pivotal Phase 3 Study of Iomab-B in Elderly Relapsed or Refractory Acute Myeloid Leukemia (SIERRA) trial for BMT conditioning. Iomab-ACT, low dose I-131 apamistamab is being studied as a targeted conditioning agent in a Phase 1 study with a CD19 CAR T-cell Therapy with Memorial Sloan Kettering Cancer Center. In addition, we are leaders in the field of Actinium-225 alpha therapies. Actimab-A, our clinical stage CD33 targeting ARC alpha therapy has been studied in nearly 150 patients including our ongoing combination trials with the salvage chemotherapy CLAG-M and the Bcl-2 targeted therapy venetoclax. Underpinning our clinical programs is our proprietary AWE (Antibody Warhead Enabling) technology platform. This is where our intellectual property portfolio of over 160 patents, know-how, collective research and expertise in the field are being leveraged to construct and study novel ARCs and ARC combinations to bolster our pipeline for strategic purposes. Our AWE technology platform is currently being utilized in a collaborative research partnership with Astellas Pharma, Inc.
AmerisourceBergen Drug Corporation is a Wayne, PA-based company in the Healthcare, Pharmaceuticals, and Biotech sector.
XOMA is a late-stage biotechnology company with a diverse portfolio of innovative therapeutic antibodies. The Company has built an expertise in allosteric modulation and has applied that expertise to expand the therapeutic potential of monoclonal antibodies. The first compound from XOMA’s allosteric modulating antibody program is gevokizumab, an IL-1 beta modulating antibody. XOMA has partnered with SERVIER, a global pharmaceutical company based in France, to develop and commercialize gevokizumab for the global market, and the companies are conducting a global Phase 3 program in people with Behçet’s disease uveitis and non-infectious uveitis. Each company also has a proof-of-concept (POC) clinical program in place to identify other IL-1 mediated diseases that could be treated with gevokizumab. One of these POC studies led XOMA to select its next Phase 3 indication, pyoderma gangrenosum, a rare ulcerative skin disease. XOMA`s scientific research also produced the XMet program, which consists of three classes of preclinical allosteric modulating antibodies, including Selective Insulin Receptor Modulators (SIRMs) that could have a major impact on the treatment of diabetes. XOMA will retain the compound that has potential to treat several rare insulin dysfunction-related diseases and to out-license the compounds that could address the diabetes markets.
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