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Spruce is a late-stage biopharmaceutical company focused on developing and commercializing novel therapies for rare endocrine disorders with significant unmet medical need. Our wholly-owned product candidate, tildacerfont, is a CRF1 receptor antagonist currently in late-stage trials in adult patients with classic congenital adrenal hyperplasia (CAH), with a planned Phase 2 trial in pediatric classic CAH. We aim to advance the treatment paradigm for classic CAH with a well-tolerated, non-steroidal approach designed to offer markedly improved disease control and reduced steroid burden for patients. Tildacerfont may also benefit patients with other disorders characterized by elevated levels of or hyperresponsiveness to adrenocorticotropic hormone (ACTH), a hormone involved in the production of cortisol, including a rare form of polycystic ovary syndrome (PCOS).
Noveome Biotherapeutics, Inc. is a clinical stage company focused on breakthrough therapies for the regenerative repair of inflamed or damaged tissues.
Calysta, Inc. (www.calysta.com), Menlo Park, CA, is an innovator in industrial products for food and energy security. Calysta has two business units. Calysta Nutrition is developing and commercializing FeedKind™ protein, a natural, safe, non-GMO sustainable ingredient for fish feed and other applications. FeedKind™ protein is approved for sale in the European Union. Calysta Energy is developing high value industrial and chemical products with cost and performance advantages over current processes.
Medarray is a Ann Arbor, MI-based company in the Healthcare, Pharmaceuticals, and Biotech sector.
Senseonics, Inc. is a medical device startup company in Germantown, Maryland, USA (near Washington, DC) developing transformative glucose monitoring products that are intended to enable people with diabetes to confidently live their lives with ease. Utilizing breakthrough fluorescence sensing technology, the Senseonics continuous glucose monitoring ("CGM") system is being designed to be the first fully implantable CGM that is highly accurate and stable throughout its long sensor life.