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Ambys Medicines is a biotechnology company focused on discovering and developing regenerative and restorative therapies for people with advanced liver disease. Founded by world-renowned experts in liver disease and regenerative medicine, Ambys is pioneering the application of novel modalities including cell and gene therapy, and gain-of-function drug therapy, to meet the urgent need for treatments that have the potential to restore liver function and prevent the progression to liver failure across multiple liver diseases that are untreatable or poorly treated today. Ambys was launched in 2018 by Third Rock Ventures and Takeda Pharmaceuticals with $140M in starting capital and is headquartered in South San Francisco, Calif.
Symic is developing a new category of therapeutics that offer an exciting and biologically innovative approach to treating disease. While it is clear that cells play an important role in tissue inflammation and regeneration, it is also known that the extracellular matrix (ECM) plays an equally critical role in maintaining healthy tissue. The ECM is the non-cellular component of the body’s tissues, and proteoglycans are important structural and functional macromolecules native to the ECM that are known to protect against tissue degradation and promote healing during illness or injury. Recognizing the importance of proteoglycans in many acute and chronic disease states, Symic developed a library of proprietary, ECM-specific compounds that mimic the protective effect of natural proteoglycans. For controlled injuries (e.g. incisions, balloon angioplasty), Symic’s ECM-specific compounds allow for local application, enhancing their ability to attenuate inflammation and reduce scarring only at the site of injury. In disease states known for chronic inflammation involving the ECM (e.g. cartilage in osteoarthritis), Symic’s technology can disrupt the cycle of degradation-inflammation by directly targeting and protecting the injured ECM. The ECM plays a critical role in many acute and chronic disease states, many of which have limited or no effective therapeutic options. Symic plans to advance its compounds in a variety of therapeutic areas with unmet clinical needs.
Curemark, LLC is a clinical-stage biopharmaceutical company focused on developing novel therapies for the treatment of neurological disorders. Curemark`s pipeline includes preclinical and clinical-stage programs for the treatment of Autism, ADHD, addiction, Schizophrenia and Parkinson`s disease.
SOPHiA GENETICS combines deep expertise in life sciences and medical disciplines with mathematical capabilities in data computing. Our mission is to bring data analytics solutions to market, to support healthcare professionals by maximizing the power of Data-Driven Medicine. We achieve this mission through the global adoption of SOPHiA AI, which is built using techniques such as statistical inference, pattern recognition and machine learning. This enables SOPHiA to provide equal benefits to all users, unite experts in a gold standard health tech platform, and motivate expert knowledge sharing for a sustainable impact on future patients. We want to contribute to make the global healthcare system more sustainable. It is our strong belief that digital technologies are the key to unlocking the era of Data-Driven Medicine, where secure data pooling and knowledge sharing will be extremely valuable for patients. By helping healthcare professionals leverage their expertise and work together as a community, patients all over the world can receive equal access to better diagnoses and treatments. Combining the first two pillars of Data-Driven Medicine, Genomics and Radiomics, we can ensure that the data used to help patients today will also benefit the patients of tomorrow.
What if we told you that our bodies make use of only a few hundred different signaling pathways to control all of our 20,000 or so genes. We call it the gene circuitry code, unique for every gene in our body. CAMP4 has built a proprietary 4-D Gene Circuity Platform to codify the discrete set of combinatorial rules used by any human cell type central to disease pathology. By applying the power of computational biology and machine learning algorithms, CAMP4 is able to rapidly solve for druggable targets to control the output of any disease gene of interest.