Full-Time

Associate Director

Process Chemistry

Posted on 1/31/2025

Verve Therapeutics

Verve Therapeutics

51-200 employees

Single-course gene editing for cardiovascular disease

No salary listed

Boston, MA, USA

In Person

Some travel to manufacturing sites will be required (up to 10%).

Category
Biology & Biotech (4)
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Requirements
  • Ph.D. in organic chemistry or related scientific field and 6+ years process engineering experience, M.S. with 8+ years experience, or B.S. with 12+ years experience.
  • Industry experience in a biotechnology or pharmaceutical company required.
  • Small molecule or lipid experience required.
  • Preference for strong chromatography experience at large manufacturing scale.
  • Strong gap assessment, relationship management, and organizational planning skills.
  • Knowledge of GMP requirements for manufacturing (especially raw materials), equipment, and process.
  • Collaborative and detail-oriented approach to work across multiple teams.
  • Strong communication and risk-based decision-making skills.
  • Attention to detail, critical analysis of data/reports, and troubleshooting abilities.
  • Proven ability to achieve results as an individual contributor and drive technical solutions to complex problems in a collaborative environment.
  • Domestic and international travel required (up to 10%).
Responsibilities
  • Support ongoing manufacturing from readiness through release, including troubleshooting in close cooperation with CMOs and internal stakeholders, review of executed batch records, and process trending.
  • Life cycle management of the manufacturing process, including authoring of change control, deviation investigations, and implementation of process improvements.
  • Collaborate with cross-functional groups to expand understanding of process and product impurities in novel excipients and LNP-based drug product.
  • Lead technical efforts to establish additional lipid excipient vendors.
  • Write technical reports and contribute to global regulatory filings to support clinical development of Verve’s products.
  • Collaborate with cross-functional teams including R&D Chemistry, Process Development, Preclinical Toxicology, Analytical Development, Quality Control, Quality Affairs, Regulatory Affairs, and External Manufacturing.
  • Contribute to a team that is focused on science-based understanding of lipids and LNP manufacturing for global GMP clinical supply.
  • Other duties as required.

Verve Therapeutics develops gene-editing medicines aimed at curing cardiovascular disease with a single-course treatment. Its therapies use gene editing to lower lipid levels by targeting genes such as PCSK9 and ANGPTL3, providing a long-term solution rather than daily or chronic therapy. The approach centers on deleting or inactivating disease-related genes to produce durable lipid lowering after one treatment, rather than ongoing drug administration. Verve differs from many competitors by pursuing one-time, genetic interventions designed to offer lasting benefits, rather than repeated dosing or traditional small-molecule drugs. The company’s goal is to deliver curative, long-lasting options for cardiovascular patients through precisely targeted gene-editing therapies and strategic partnerships to advance development and commercialization.

Company Size

51-200

Company Stage

IPO

Headquarters

Cambridge, Massachusetts

Founded

2018

Your Connections

People at Verve Therapeutics who can refer or advise you

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Simplify's Take

What believers are saying

  • Eli Lilly acquired Verve for $1.3B on June 17, 2025, providing resources.
  • VERVE-102 gained FDA Fast Track in April 2025, accelerating Phase 1b trials.
  • Lilly partnership secures $60M for VERVE-301 lipoprotein(a) program.

What critics are saying

  • Ridgeway's $1.3B bid triggers $39.7M termination fee and lawsuits.
  • FDA's Marks resignation delays gene editing approvals post-acquisition.
  • Beam Therapeutics advances BEAM-302 to Phase 2, eroding first-mover edge.

What makes Verve Therapeutics unique

  • Targets PCSK9 and ANGPTL3 genes for single-course cardiovascular gene editing.
  • Pioneers in vivo CRISPR editing to replace chronic lipid-lowering therapies.
  • Focuses on HeFH and premature coronary artery disease with VERVE-102.

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Benefits

Hybrid Work Options

Growth & Insights and Company News

Headcount

6 month growth

0%

1 year growth

3%

2 year growth

5%
Eli Lilly and Company
Jun 18th, 2025
Lilly to acquire Verve Therapeutics to advance one-time treatments for people with high cardiovascular risk | Eli Lilly and Company

The Investor Relations website contains information about Eli Lilly and Company's business for stockholders, potential investors, and financial analysts.

MarketScreener
Jun 17th, 2025
Ridgeway to Acquire Verve for $1.3B

Ridgeway Acquisition Corporation agreed to acquire Verve Therapeutics, Inc. from Sekar Kathiresan, Andrew Ashe, and entities affiliated with GV for $10.50 per share in cash, totaling approximately $1 billion, plus a contingent value right (CVR) for up to an additional $3.00 per share. The total potential consideration is up to $1.3 billion. The transaction, approved by both companies' boards, is expected to close in Q3 2025, subject to customary conditions. Verve faces a termination fee of $39.7 million.

Finimize Limited
Jun 17th, 2025
Eli Lilly's $1.3B Verve Acquisition Plan

Eli Lilly is considering acquiring Verve Therapeutics for $1.3 billion, potentially doubling Verve's market value. The deal includes an upfront payment of nearly $1 billion and $300 million tied to clinical milestones. Verve's shares surged over 82% in premarket trading. This move signals Eli Lilly's entry into the gene-editing market, reflecting broader trends in healthcare innovation and potentially encouraging other major players to explore similar strategies.

Securities.io
May 17th, 2024
From Blindness To Meat Substitutes: Crispr Gene-Editing Continues To Produce Promising Results

The CRISPR RevolutionCRISPR (Clustered Regularly Interspaced Short Palindromic Repeats) is a recently discovered tool for genetic editing. It allows for very precise and directed gene editing, and its discoverers have won the 2020 Nobel Prize.The initial CRISPR system discovered was CRISPR-Cas9, and many modified CRISPR systems have been discovered or created since. You can read more about the technical details of CRISPR in our article “What Is CRISPR-Cas12a2? Why Does It Matter?”CRISPR is at the forefront of the genomic revolution, with the first gene therapies using it now getting approved for blood diseases, something we explored in depth in “How CRISPR Companies Target Sickle Cell Anemia”.Almost every month that passes seems to bring a brand new revolutionary CRISPR therapy or application. The latest in date is curing a rare form of blindness.Curing Blindness With CRISPR?In a scientific paper titled “Gene Editing for CEP290-Associated Retinal Degeneration”, researchers and doctors at the Universities of Harvard Medical School, Pennsylvania, Michigan, Miami, Oregon Health and Science, as well as Perelman School of Medicine and Editas Medicine have seen remarkable results in treating a disease called Leber Congenital Amaurosis (LCA)LCA causes the degradation of the vision in the first early months of life. There is currently no treatment for LCA, and affects an estimated 50,000 people in the USA and 180,000 people worldwide.After a break in 2022,  Editas Medicine announced in May 2024 that the clinical trial for EDIT-101 has seen 79% of the 14 clinical trial participants experience measurable improvement after receiving the experimental gene therapy.“One of our trial participants has shared several examples, including being able to find their phone after misplacing it and knowing that their coffee machine is working by seeing its small lights.While these types of tasks might seem trivial to those who are normally sighted, such improvements can have a huge impact on quality of life for those with low vision.” – Mark Pennesi, M.D., Ph.D. – Oregon Health Science University’s lead scientistNext Steps For EDIT-101Now that the efficiency of the treatment is proven, and there were no serious side effects, the next step is determining the “ ideal dosing, whether a treatment effect is more pronounced in certain age groups such as younger patients, and include refined endpoints to measure impacts on activities of daily living.”“Our hope is that the study will pave the road for treatments of younger children with similar conditions and further improvements in vision.This trial represents a landmark in the treatment of genetic disease, in specific genetic blindness, by offering important alternative treatment when traditional forms of therapy, such as gene augmentation, are not an option.” – Tomas S. Aleman, M.D

BioSpace
Jan 23rd, 2024
What’S Next For Crispr?

Pictured: Illustration of a gloved hand holding tweezers and editing DNA/iStock, LadadikArtThe era of CRISPR gene-editing technology has arrived. With the approval of Vertex Pharmaceuticals and CRISPR Therapeutics’ Casgevy (exa-cel) in two indications, the question now is, what’s next?In short, the answer to that question is not much right now. While the cell and gene therapy sector as a whole is expecting continued growth in terms of approvals, CRISPR-based therapies are predominately early stage.CRISPR Pipeline Skews Toward DiscoveryThe December and January approvals of Casgevy for sickle cell disease and transfusion-dependent beta thalassemia represent a landmark for gene therapy. Casgevy is the first approved treatment that uses CRISPR/Cas9 gene-editing technology. The one-time treatment can be curative for these serious, life-altering blood disorders.But Casgevy will not open any immediate floodgates to CRISPR therapy approvals, as most potential CRISPR-based treatments are still in the earlier stages of development. According to a December 2023 report from GlobalData, discovery and preclinical assets account for 88% of the CRISPR drug candidates currently under investigation, with 24 CRISPR-based therapeutics in Phase II trials and one other than Casgevy in Phase III.Thus, despite the milestone approval of Casgevy, GlobalData analyst Jasper Morley believes the industry is “unlikely to see another [CRISPR] drug approval in the near future.”While hematological drugs are the most advanced, out of 262 active drugs in the discovery and preclinical stage, oncology dominates—accounting for some 25%—Morley told BioSpace in an email

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