The 12 closest competitors and alternatives to CRISPR Therapeutics among biotech companies — ranked by similarity to what CRISPR Therapeutics actually does, not by market-cap band.
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CRISPR Therapeutics AG (CRSP) is a biotechnology firm dedicated to pioneering gene-based medicines for severe diseases. The company achieves this through its exclusive Clustered Regularly Interspaced Short Palindromic Repeats (CRISPR)/CRISPR-associated protein 9 (Cas9) technology, which enables precise and targeted alterations to an organism's genetic code. Its extensive pipeline includes therapeutic candidates spanning multiple medical areas, such as blood disorders (hemoglobinopathies), various cancers (oncology), regenerative medicine, and rare conditions. The company's flagship investigational therapy is CTX001, an ex vivo CRISPR gene-edited treatment. This therapy aims to benefit patients with transfusion-dependent beta-thalassemia or severe sickle cell disease by modifying their own hematopoietic stem cells to markedly boost the production of fetal hemoglobin within red blood cells. CRISPR Therapeutics is also advancing several other genetically engineered allogeneic (donor-sourced) CAR-T investigational therapies: CTX110, designed to combat cluster of differentiation 19-positive malignancies; CTX120, which targets B-cell maturation antigen for multiple myeloma that has relapsed or proven resistant to previous treatments; and CTX130, focused on Cluster of Differentiation 70 for a spectrum of solid tumors and blood cancers. Furthermore, the company is developing VCTX210, an immune-evasive, gene-edited stem cell-derived product candidate for treating type 1 diabetes. It is also pursuing various in vivo gene-editing initiatives aimed at addressing disorders affecting the liver, lungs, muscles, and central nervous system. The company has forged strategic alliances with significant partners, including Bayer Healthcare LLC, Vertex Pharmaceuticals Incorporated, ViaCyte, Inc., Nkarta, Inc., and Capsida Biotherapeutics. CRISPR Therapeutics AG was established in 2013 and maintains its headquarters in Zug, Switzerland.
CRISPR Therapeutics is a biotech company headquartered in Zug, Switzerland, founded in 2013. It is publicly listed (CRSP) with a market capitalisation of $5.1B. Xcout tracks 24 named people at CRISPR Therapeutics, including Samarth Kulkarni (Chief Executive Officer & Chairman). Xcout recorded 9 job postings from CRISPR Therapeutics in the last 90 days.
18 more named people on record for CRISPR Therapeutics, with roles, board committees and tenure — see the full roster →
Every round on record:
| Date | Round | Amount | Investors |
|---|---|---|---|
| Series B | Undisclosed | — |
Financing after the IPO — public offerings and SEC Form D private placements — is not listed as a funding round.
Who invested in each round, lead investors, valuations and the co-investor graph — open the full funding history →
Xcout recorded 9 job postings from CRISPR Therapeutics 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 CRISPR Therapeutics's hiring signals →
Ranked by semantic similarity — how close each company is to CRISPR Therapeutics by what it does, using Xcout's live company graph. Click any company for its full profile, or its competitor set.
Biotechnology
Beam Therapeutics Inc., founded in 2017 and based in Cambridge, Massachusetts, operates as a pioneering biopharmaceutical firm. Its core mission involves engineering precise genetic remedies to tackle a spectrum of severe human ailments, primarily within the United States. The company's developmental portfolio features several key candidates: BEAM-101 is being advanced to treat both sickle cell disease and beta thalassemia. BEAM-102 is specifically designed for addressing sickle cell disease. BEAM-201, an allogeneic chimeric antigen receptor T-cell therapy, is under investigation for individuals suffering from relapsed or refractory T-cell acute lymphoblastic leukemia. BEAM-301 is a liver-targeted candidate aimed at patients afflicted with Glycogen Storage Disease Type Ia. Beyond these flagship programs, Beam Therapeutics is also engaged in devising treatments for alpha-1 antitrypsin deficiency, various ocular conditions, and other disorders impacting the liver, muscular system, and central nervous system. To further its research and development objectives, Beam Therapeutics has forged numerous strategic alliances and partnerships. These include collaborations with Boston Children's Hospital; a research and clinical trial agreement with Magenta Therapeutics, Inc.; a licensing deal with Sana Biotechnology, Inc.; and a research partnership with the Institute of Molecular and Clinical Ophthalmology Basel. Additionally, the company maintains research collaborations with both Pfizer Inc. and Apellis Pharmaceuticals, Inc., alongside a comprehensive collaboration and license agreement with Verve Therapeutics, Inc.
Similar biotech company
Intellia Therapeutics, Inc. is a biotechnology firm dedicated to advancing therapeutic treatments through its expertise in genome editing. The company's pipeline includes several in vivo (administered within the body) programs. NTLA-2001 is currently undergoing a Phase 1 clinical trial for transthyretin amyloidosis, while NTLA-2002 targets hereditary angioedema. Additionally, Intellia is developing various other liver-focused therapies for conditions such as hemophilia A and B, hyperoxaluria Type 1, and alpha-1 antitrypsin deficiency. Its ex vivo (processed outside the body) pipeline features NTLA-5001, a candidate for acute myeloid leukemia. The company is also progressing proprietary programs focused on creating engineered cell therapies to address diverse oncological and autoimmune disorders. At the core of Intellia's technology is the Clustered, Regularly Interspaced Short Palindromic Repeats/CRISPR associated 9 (CRISPR/Cas9) system. Intellia Therapeutics, Inc. has established multiple licensing and collaboration agreements. These include a partnership with Novartis Institutes for BioMedical Research, Inc. to engineer hematopoietic stem cells for treating sickle cell disease, and a co-development agreement with Regeneron Pharmaceuticals, Inc. for potential products against hemophilia A and B. The company also collaborates with Ospedale San Raffaele and holds a strategic alliance with SparingVision SAS to develop novel genomic medicines for ocular diseases, leveraging CRISPR/Cas9 technology. The company, initially known as AZRN, Inc., was founded in 2014 and operates from its headquarters in Cambridge, Massachusetts.
Similar biotech company
Editas Medicine, Inc., a clinical stage genome editing company, focuses on developing transformative genomic medicines to treat a range of serious diseases. The company develops a proprietary gene editing platform based on CRISPR technology. Its lead program is EDIT-401, a one-time therapy designed to reduce LDL cholesterol through the upregulation of the LDL receptor to treat hyperlipidemia. The company also develops therapies to treat Sickle cell disease and transfusion-dependent beta thalassemia; and in vivo gene editing medicines indicated for other cells and tissues. It has a research collaboration with Juno Therapeutics, Inc. to develop alpha-beta T-cell experimental medicines for the treatment of solid and liquid tumors, and autoimmune disease. The company was formerly known as Gengine, Inc. and changed its name to Editas Medicine, Inc. in November 2013. Editas Medicine, Inc. was incorporated in 2013 and is based in Cambridge, Massachusetts.
Biotechnology
Precision BioSciences, Inc. is a clinical-stage biotechnology firm based in the United States, specializing in the creation of both in vivo gene editing solutions and ex vivo allogeneic CAR T-cell therapies. At its core is ARCUS, a proprietary genome editing platform designed to address and potentially cure genetic diseases. The company's portfolio also encompasses Ex vivo Allogeneic CAR T Immunotherapy, an innovative approach where specific immune cells, known as T-cells, are genetically modified outside the body to precisely identify and eliminate cancer cells. Among its prominent therapeutic candidates are: PBCAR0191, currently undergoing Phase 1/2a clinical trials for adult patients battling relapsed/refractory (R/R) non-Hodgkin lymphoma or R/R B-cell precursor acute lymphoblastic leukemia (B-ALL). PBCAR19B, an anti-CD19 CAR T candidate leveraging a "stealth cell" platform through a single-step gene edit, engineered to reduce the likelihood of chromosomal abnormalities. PBCAR269A, an investigational allogeneic CAR T immunotherapy formulated to target BCMA, intended for the treatment of R/R multiple myeloma. Precision BioSciences has strategically formed several collaborative alliances. These include an agreement with Les Laboratoires Servier for the development and commercialization of allogeneic chimeric antigen receptor T-cell therapies, aimed at various antigen targets, including hematological cancers beyond CD19, and solid tumors. The company is also partnering with Tiziana Life Sciences to assess foralumab, a fully human anti-CD3 monoclonal antibody, for its utility as a lymphodepleting agent in potential cancer treatments. Furthermore, a collaboration with iECURE, Inc. focuses on advancing ARCUS-based gene editing therapies. Established in 2006, Precision BioSciences, Inc. maintains its corporate headquarters in Durham, North Carolina.
Biotechnology
Epicrispr Biotechnologies is a pioneering therapeutics company dedicated to developing advanced genetic medicines. The organization focuses on scientific research, platforms, and clinical pipelines to treat serious diseases.
Similar biotech company
Voyager Therapeutics, Inc. operates as a gene therapy company, concentrating its efforts on developing innovative treatments and pioneering advanced platform technologies. Its leading clinical asset, VY-AADC, is presently undergoing an open-label Phase 1 clinical trial for the management of Parkinson's disease. The company's preclinical portfolio is extensive, featuring VY-SOD102 for amyotrophic lateral sclerosis (ALS), VY-HTT01 for Huntington's disease, and VY-FXN01 for Friedreich's ataxia. Additionally, Voyager is pursuing a Tau program aimed at various tauopathies, including Alzheimer's disease, progressive supranuclear palsy, and frontotemporal dementia, alongside initiatives for spinal muscular atrophy. To advance its gene therapy product pipeline, the company has forged strategic collaboration and licensing agreements with key industry players such as Neurocrine Biosciences, Inc., Pfizer Inc., and Novartis Pharma, A.G. These partnerships cover the research, development, and commercialization of adeno-associated virus-based gene therapy products. Voyager Therapeutics, Inc. was founded in 2013 and maintains its corporate headquarters in Cambridge, Massachusetts.
Biotechnology
Verve Therapeutics, Inc. is a biotechnology company headquartered in Boston, Massachusetts, dedicated to pioneering single-course gene editing medicines for cardiovascular disease.
Biotechnology
Base Therapeutics is a biotechnology company that develops next-generation gene editing technologies, including its proprietary AccuBase base editing system and enhanced prime editing technology. The company focuses on creating therapeutic solutions for cancer and genetic diseases, alongside engineered immune cell therapies such as BASE-NK and CAR-T products. It serves patients and partners with pharmaceutical and agricultural enterprises by licensing its precision gene editing tools.
Similar biotech company
Allogene Therapeutics, Inc. operates as a clinical-stage immuno-oncology firm dedicated to the creation and commercialization of genetically engineered allogeneic T-cell therapies for the treatment of various cancers. A pivotal product in their development pipeline is UCART19, an allogeneic chimeric antigen receptor (CAR) T-cell therapy. This candidate is being developed, manufactured, and prepared for market release to address relapsed/refractory (R/R) CD19-positive B-cell acute lymphoblastic leukemia (ALL) in both children and adults. The company's portfolio also encompasses ALLO-501, an anti-CD19 allogeneic CAR T-cell candidate currently in Phase I clinical trials for R/R non-Hodgkin lymphoma. A related therapeutic, ALLO-501A, is progressing through Phase I/II studies, targeting R/R large B-cell lymphoma or transformed follicular lymphoma. Furthermore, Allogene is advancing several other promising candidates: ALLO-715, an allogeneic CAR T-cell therapy in Phase I for R/R multiple myeloma; ALLO-605, another allogeneic CAR T-cell designed for multiple myeloma; and ALLO-647, an anti-CD52 monoclonal antibody. Their investigational therapies also include those targeting CD70 for renal cell cancer, ALLO-819 (an allogeneic CAR T-cell treatment) for acute myeloid leukemia, and DLL3 for small cell lung cancer and other aggressive neuroendocrine tumors. Allogene maintains a robust network of strategic alliances, which includes licensing and collaboration agreements with organizations such as Pfizer Inc., Servier, Cellectis S.A., and Notch Therapeutics Inc. They also hold a clinical trial collaboration with SpringWorks Therapeutics, Inc. Additionally, a strategic partnership with The University of Texas MD Anderson Cancer Center supports the preclinical and clinical evaluation of their allogeneic CAR T-cell product pipeline. Founded in 2017, the company's corporate headquarters are located in South San Francisco, California.
Similar biotech company
Caribou Biosciences, Inc. operates as a clinical-stage biopharmaceutical firm dedicated to pioneering genome-edited allogeneic cell therapies. These cutting-edge treatments are engineered to address both hematologic malignancies (blood cancers) and solid tumors, serving patients across the United States and internationally. Among its primary therapeutic candidates are CB-010, an allogeneic anti-CD19 CAR-T cell therapy currently undergoing Phase 1 clinical trials for relapsed or refractory B cell non-Hodgkin lymphoma, and CB-011, an allogeneic anti-BCMA CAR-T cell therapy targeting relapsed or refractory multiple myeloma. Caribou Biosciences is additionally developing CB-012, an allogeneic anti-CD371 CAR-T cell therapy for relapsed or refractory acute myeloid leukemia, along with CB-020, an allogeneic CAR-NK cell therapy aimed at solid tumors. The company also maintains a collaborative agreement with AbbVie Manufacturing Management Unlimited Company for the joint advancement of CAR-T cell therapies. Founded in 2011, Caribou Biosciences' headquarters are located in Berkeley, California.
Similar biotech company
Taysha Gene Therapies, Inc. is a biotech firm specializing in the creation and market introduction of gene therapies that utilize adeno-associated virus (AAV) vectors. Its core mission is to tackle inherited diseases affecting the central nervous system (CNS). The company's development pipeline features several key programs: TSHA-120 is aimed at giant axonal neuropathy; TSHA-102 is in development for Rett syndrome; TSHA-121 and TSHA-118 are both being advanced for CLN1 disease; TSHA-105 addresses SLC13A5 Deficiency; and TSHA-101 targets GM2 gangliosidosis. Furthermore, Taysha has forged a strategic alliance with The University of Texas Southwestern Medical Center to jointly advance and bring to market innovative gene therapy solutions. Founded in 2019, the company operates from its headquarters in Dallas, Texas.
Biotechnology
Rocket Pharmaceuticals, Inc., operating alongside its affiliates, is an innovative biotechnology enterprise dedicated to pioneering gene therapies for rare and severely debilitating diseases. The company's active clinical pipeline features multiple promising programs. It is currently progressing three ex vivo lentiviral vector therapies aimed at specific genetic conditions: Fanconi anemia, characterized by a bone marrow defect that hinders blood cell production; leukocyte adhesion deficiency-I, an inherited disorder resulting in a compromised immune system; and pyruvate kinase deficiency, a rare autosomal recessive red blood cell ailment leading to chronic non-spherocytic hemolytic anemia. Complementing these, Rocket Pharmaceuticals also has an in vivo adeno-associated virus program underway for Danon disease, a serious multi-organ lysosomal storage disorder that tragically often results in early mortality due to heart failure. To facilitate its extensive research and development efforts, the company has established key licensing partnerships with esteemed institutions such as the Fred Hutchinson Cancer Research Center, European research bodies including CIEMAT and its collaborators (Centro de Investigacion Biomedica En Red and Fundacion Instituto de investigacion Sanitaria Fundacion Jimenez Diaz), UCL Business PLC (in conjunction with CIEMAT), The Regents of the University of California, and REGENXBIO, Inc. Rocket Pharmaceuticals, Inc. maintains its primary corporate location in Cranbury, New Jersey.
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