Casdin Capital

Casdin Capital, LLC is a New York-based investment firm established in 2012, specializing in the life sciences and healthcare sectors. The firm focuses on venture capital investments across various areas, including oncology, digital health, agtech, and broader healthcare. It operates as a Registered Investment Adviser and manages a long-short equity fund. Casdin Capital engages in both early-stage and late-stage private investments, utilizing a fundamental research approach to identify promising opportunities in its target industries. As of October 2020, the firm manages approximately $2.2 billion in assets. The founder and Chief Investment Officer, Eli Casdin, has been instrumental in shaping the firm’s investment strategy and direction.

Suzanne Angell

Director of Therapeutics Research

Lawrence Canzoneri

CFO

Eli Casdin

Managing Partner

Yi Chi Song

Associate

Past deals in TMT

Maze Therapeutics

Venture Round in 2022
Maze Therapeutics is a biotechnology company based in South San Francisco, California, that specializes in the development of genetic modifier therapeutics. Founded in 2017 and formerly known as Modulus Therapeutics, the company is dedicated to translating genetic insights into innovative medicines. Maze Therapeutics utilizes a comprehensive approach that integrates large-scale human genetics data, functional genomics, and various drug discovery methodologies. This approach allows the company to identify modifier genes that offer protection against diseases, enhancing the understanding of target biology and informing drug development strategies. By leveraging these insights, Maze Therapeutics aims to facilitate the creation of novel therapies that can benefit patients.

Thyme Care

Series A in 2021
Thyme Care is a Nashville TN-based provider of oncology care management solutions.

T-knife

Series B in 2021
T-knife is a biotechnology company focused on developing T cell receptor therapies aimed at treating cancer. Utilizing a humanized T cell receptor (TCR) mice platform, the company is capable of carrying human TCRαβ gene loci and recombining a diverse array of human TCRs. This innovative approach facilitates the efficient generation and virtual selection of T cell receptors tailored for specific human tumor antigens, enhancing the potential for effective cancer therapies. Through its advanced technology, T-knife aims to improve treatment options for patients battling cancer.

TMRW Life Sciences

Series C in 2021
TMRW Life Sciences is a developer of a cryo-storage platform intended to improve the success rates of assisted reproductive technology. The company's platform offers an in-clinic robotic storage system and a fully digital chain of custody from clinic to offsite longterm storage, continuous remote and local monitoring and electronically integrated processes characterized by digital health signals received from every oocyte and embryo daily, enabling clients to streamline embryology lab operations, eliminate manual steps and integrates digital quality control.

Monte Rosa Therapeutics

Series C in 2021
Monte Rosa Therapeutics is a biotechnology company based in Basel, Switzerland, that specializes in developing innovative cancer therapeutics through the modulation of protein degradation pathways. The company focuses on molecular glue degraders (MGDs), a class of small molecule drugs that utilize the body's natural mechanisms for protein degradation to selectively target and degrade proteins relevant to cancer treatment. Monte Rosa employs its QuEEN platform, which integrates artificial intelligence and proprietary experimental tools, to identify and develop target proteins for degradation. With a library of over 50,000 MGD molecules, its leading product candidate, MRT-2359, specifically targets the translation termination factor protein GSPT1, showing potential for treating MYC-driven tumors. The company is committed to advancing its pipeline of novel therapeutics to address unmet medical needs in oncology.

Monte Rosa Therapeutics

Series B in 2020
Monte Rosa Therapeutics is a biotechnology company based in Basel, Switzerland, that specializes in developing innovative cancer therapeutics through the modulation of protein degradation pathways. The company focuses on molecular glue degraders (MGDs), a class of small molecule drugs that utilize the body's natural mechanisms for protein degradation to selectively target and degrade proteins relevant to cancer treatment. Monte Rosa employs its QuEEN platform, which integrates artificial intelligence and proprietary experimental tools, to identify and develop target proteins for degradation. With a library of over 50,000 MGD molecules, its leading product candidate, MRT-2359, specifically targets the translation termination factor protein GSPT1, showing potential for treating MYC-driven tumors. The company is committed to advancing its pipeline of novel therapeutics to address unmet medical needs in oncology.

MoMa Therapeutics

Series A in 2020
MoMa Therapeutics, Inc. discovers precision medicines by targeting the molecular machines that underlie human disease. MoMa Therapeutics, Inc. was formerly known as ATPases NewCo, Inc. and changed its name to MoMa Therapeutics, Inc. in March 2020. The company was founded in 2019 and is based in Cambridge, Massachusetts.

Maze Therapeutics

Series A in 2019
Maze Therapeutics is a biotechnology company based in South San Francisco, California, that specializes in the development of genetic modifier therapeutics. Founded in 2017 and formerly known as Modulus Therapeutics, the company is dedicated to translating genetic insights into innovative medicines. Maze Therapeutics utilizes a comprehensive approach that integrates large-scale human genetics data, functional genomics, and various drug discovery methodologies. This approach allows the company to identify modifier genes that offer protection against diseases, enhancing the understanding of target biology and informing drug development strategies. By leveraging these insights, Maze Therapeutics aims to facilitate the creation of novel therapies that can benefit patients.
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