The 12 closest competitors and alternatives to Alumis Inc. among biotech companies — ranked by similarity to what Alumis Inc. actually does, not by market-cap band.
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Alumis Inc., a clinical stage biopharmaceutical company, focuses on the development and commercialization of medicines for autoimmune disorders. The company offers envudeucitinib, a tyrosine kinase 2 (TYK2) inhibitor for the treatment of plaque psoriasis and systemic lupus erythematosus; and A-005, a central nervous system-penetrant allosteric TYK2 inhibitor that is in Phase 1 for the treatment of neuroinflammatory and neurodegenerative diseases. It also develops lonigutamab, a monoclonal antibody targeting IGF-1R for the treatment of thyroid eye diseases; and interferon regulatory factor 5 (IRF5) to address immune dysfunction. The company was formerly known as Esker Therapeutics, Inc. and changed its name to Alumis Inc. in January 2022. Alumis Inc. was incorporated in 2021 and is headquartered in South San Francisco, California.
Alumis Inc. is a biotech company headquartered in South San Francisco, United States. It is publicly listed (ALMS) with a market capitalisation of $883.8M. Xcout tracks 30 named people at Alumis Inc., including Martin Babler (President, Chief Executive Officer & Chairman). Xcout recorded 21 job postings from Alumis Inc. in the last 90 days.
24 more named people on record for Alumis Inc., with roles, board committees and tenure — see the full roster →
Xcout recorded 21 job postings from Alumis Inc. in the last 90 days, from a hiring record Xcout has kept since June 2026.
The weekly hiring trend, the roles and locations behind it — see Alumis Inc.'s hiring signals →
3 corporate events on record, with sources — see the full timeline →
Ranked by semantic similarity — how close each company is to Alumis Inc. by what it does, using Xcout's live company graph. Click any company for its full profile, or its competitor set.
Biotechnology
Sundance Biosciences is a biotechnology company founded in 2025 and headquartered in South San Francisco, California. The firm focuses on developing oral therapies that selectively target TYK2 to modulate immune responses for treating complex diseases.
Similar biotech company
AnaptysBio, Inc., a clinical-stage biotechnology company, focuses in delivering immunology therapeutics for autoimmune and inflammatory diseases in the United States. The company’s products include Rosnilimab, a selective pathogenic T cell deplete which completed a Phase 2b trial for the treatment of moderate-to-severe rheumatoid arthritis; ANB033, a CD122 antagonist, which is in a Phase 1b trial for celiac disease and eosinophilic esophagitis; ANB101, a BDCA2 modulator antibody which is in Phase 1a trial that specifically targets plasmacytoid dendritic cells and inhibits interferon secretion and modulates antigen presentation; dostarlimab, a PD-1 antagonist for various solid tumor indications; and Imsidolimab, an antibody that inhibits the interleukin-36 receptor, which is in the Phase 3 development for the treatment of generalized pustular psoriasis. It focuses on developing various antibody programs that are advanced to preclinical and clinical milestones under its collaborations. It has collaborations agreement with GSK and Vanda. The company was formerly known as Anaptys Biosciences, Inc. and changed its name to AnaptysBio, Inc. in July 2006. AnaptysBio, Inc. was incorporated in 2005 and is based in San Diego, California.
Biotechnology
Ventyx Biosciences, Inc. is a clinical-stage biopharmaceutical company focused on developing therapies for inflammatory and autoimmune diseases. Headquartered in California, the company advances a robust clinical pipeline and operates as a publicly traded enterprise.
Similar biotech company
Odyssey Therapeutics, Inc. is a clinical-stage biopharmaceutical firm focused on discovering and developing novel treatments for autoimmune and inflammatory diseases. Its diverse pipeline features several key drug candidates: OD-001, an oral small molecule that inhibits receptor-interacting protein kinase 2, which is currently in Phase 2a clinical trials for ulcerative colitis. Also included is OD-002, an oral small molecule SLC15A4 inhibitor engineered to prevent harmful inflammatory responses driven by TLR7/8/9-mediated activation of interferon regulatory factor 5 (IRF5). Another program, OD-003, is a protein therapeutic designed to selectively agonize tumor necrosis factor receptor 2 on T regulatory cells. Further assets in its portfolio comprise a bispecific antagonist targeting TSLP and IL-33, an oral small molecule functioning as an interleukin-1 receptor-associated kinase 4 scaffolding inhibitor, and a separate small molecule inhibitor specifically targeting IRF5. The company was founded in 2021 and is headquartered in Boston, Massachusetts.
Similar biotech company
Aclaris Therapeutics, Inc., a biopharmaceutical firm operating in the United States, is currently in the clinical development phase, focused on creating novel therapeutic agents for various immune-inflammatory conditions. The company's operations are divided into two primary divisions: the Therapeutics segment, dedicated to discovering and progressing innovative treatments to address crucial unmet needs in immuno-inflammatory disorders; and the Contract Research segment, which delivers specialized laboratory services. The company's pipeline features several investigational compounds. Among these is Zunsemetinib, an MK2 inhibitor, being developed to treat moderate to severe cases of rheumatoid arthritis, psoriatic arthritis, and hidradenitis suppurativa. Another significant candidate is ATI-1777, a soft JAK 1/3 inhibitor, intended for the management of moderate to severe atopic dermatitis. Additionally, Aclaris is advancing ATI-2138, an ITK/TXK/JAK3 inhibitor, as a potential intervention for T cell-mediated autoimmune diseases; a Gut-Biased Program targeting inflammatory bowel disease; and ATI-2231, an MK2 inhibitor, for the treatment of pancreatic and metastatic breast cancer. Established in 2012, Aclaris Therapeutics, Inc. has its corporate headquarters situated in Wayne, Pennsylvania.
Similar biotech company
Kyverna Therapeutics, Inc., a clinical-stage biopharmaceutical company, focuses on developing cell therapies for patients with autoimmune diseases. Its lead product candidate is KYV-101, an autologous CD19 CAR T-cell product candidate for the treatment of stiff person syndrome, myasthenia gravis, and lupus nephritis, as well as multiple sclerosis and systemic sclerosis. The company is also developing KYV-102, an autologous CD19 CAR T-cell product candidate with whole blood rapid manufacturing; and KYV-201, an allogeneic CD19 CAR T-cell product candidate. It has a license and collaboration agreement with Intellia Therapeutics, Inc. to research and develop an allogeneic CD19-directed CAR cell therapy product. The company was formerly known as BAIT Therapeutics, Inc. and changed its name to Kyverna Therapeutics, Inc. in October 2019. Kyverna Therapeutics, Inc. was incorporated in 2018 and is headquartered in Emeryville, California.
Biotechnology
Ouro Medicines is a biotechnology company headquartered in South San Francisco, California, developing immune reset therapeutics for chronic immune-mediated diseases.
Biotechnology
Evommune is a clinical-stage biopharmaceutical company headquartered in Palo Alto, California, developing new treatments for immune-mediated chronic inflammatory diseases.
Biotechnology
Nkarta, Inc., a clinical-stage biopharmaceutical company, develops and commercializes natural killer cell therapies for cancer and autoimmune disease treatment. Its lead product candidate is NKX019, a chimeric antigen receptor-natural killer (CAR NK) targeting the CD19 antigen, which is in Phase 1 clinical trial for the treatment of lupus nephritis; systemic sclerosis; idiopathic inflammatory myopathy; and antineutrophil cytoplasmic antibody (ANCA)-associated vasculitis, as well as for systemic lupus erythematosus and myasthenia gravis. The company has a research collaboration agreement with CRISPR Therapeutics AG. Nkarta, Inc. was incorporated in 2015 and is based in South San Francisco, California.
Biotechnology
Villaris Therapeutics was a clinical-stage biotechnology company developing antibody-based therapies for autoimmune and inflammatory skin diseases. Its intended beneficiaries were patients with immune-mediated dermatologic conditions.
Biotechnology
aTyr Pharma, Inc., a biopharmaceutical firm established in San Diego, California, in 2005, is dedicated to the discovery and advancement of therapeutic solutions. Operating within the United States, the company's research focuses on pioneering novel immunological pathways to address various medical conditions. Its primary investigational drug, efzofitimod, functions as a selective modulator of NRP2. This compound is currently undergoing a Phase III clinical trial for pulmonary sarcoidosis. Additionally, efzofitimod is being evaluated in a Phase 1b/2a clinical study for the treatment of other interstitial lung diseases (ILDs), including conditions such as chronic hypersensitivity pneumonitis and ILDs linked to connective tissue diseases. Beyond its lead candidate, aTyr Pharma's pipeline features ATYR0101, a fusion protein derived from a domain of aspartyl-tRNA synthetase, which is in preclinical stages of development for combating fibrosis. The company is also progressing with ATYR0750, a domain sourced from alanyl-tRNA synthetase, intended for the management of liver disorders. Furthermore, aTyr Pharma has entered into a strategic collaboration and licensing agreement with Kyorin Pharmaceutical Co., Ltd. This partnership is focused on the development and commercialization of efzofitimod for interstitial lung diseases specifically within the Japanese market.
Similar biotech company
Inventisbio is a biopharmaceutical company that focuses on the discovery and development of innovative drugs for major diseases such as tumors, autoimmune diseases, and metabolic disorders. Utilizing an independent research and development platform, the company creates proprietary drug pipelines targeting oncology drivers, kinases, and autoimmune pathways to serve patients globally.
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