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Immune-Tree Inc is a Orem, UT-based company in the Healthcare, Pharmaceuticals, and Biotech sector.
Amicus Therapeutics (Nasdaq:FOLD) is a global, patient-dedicated biotechnology company focused on discovering, developing and delivering high-quality medicines for people living with rare metabolic diseases. With one rare disease medicine globally commercialized for Fabry disease, an investigational enzyme replacement therapy (AT-GAA) in late stage development for the treatment of Pompe disease, and a robust gene therapy pipeline and growth platform for lysosomal storage disorders, we are committed to changing the lives of people with these life-threatening conditions. Across the organization, our team is united by our passion for making a difference, and committed to pushing ideas as far and as fast as possible. The needs of people living with rare diseases are at the center of our inventive science, our commercial organization, and our clinical programs. Every member of the Amicus Therapeutics team works to make a meaningful difference for the communities that we serve. Several opportunities are available to join our team as we build a leading global biotechnology company focused on rare metabolic diseases. Our global footprint spans 27 countries, including our global headquarters in Cranbury, NJ and international headquarters in Gerrards Cross UK. Additional international office locations include Australia, Canada, France, Japan, Germany, Italy, The Netherlands, and Spain.
SemBioSys Genetics is a Calgary, AB-based company in the Healthcare, Pharmaceuticals, and Biotech sector.
Family medicine, primary care, and dental service provider for the underserved and uninsured communities of Pinellas County.
Unum is a Cambridge, MA-based cellular therapeutics company ushering in a new wave of innovation in cancer immunotherapy. Unum has built an antibody-coupled T-cell receptor (ACTR) platform that, when combined with tumor-specific antibodies, directs an individual’s cytotoxic T-lymphocytes (CTLs) to kill tumor cells. In contrast to other approaches that hit a single target and treat a narrow set of tumors, Unum’s approach is not restricted by antigens and may have applications for treating many types of cancers. Our lead program based on ACTR technology is expected to enter Phase I clinical testing soon to assess safety and efficacy in certain forms of leukemia and lymphoma. In parallel, we are actively seeking partners interested in using the ACTR technology to arm novel proprietary antibodies with a T-cell to improve their therapeutic potential. Working initially to pre-clinically validate antibody-ACTR combinations with partners, we expect to rapidly advance multiple proprietary combinations into clinical testing within the next few years.