Media Center

11-Mar-2024
Workshop Alert

12th Build-a-Cell Workshop hosted at J. Craig Venter Institute in La Jolla

The workshop will take place March 29, 2024 with registration closing March 19

22-Feb-2024
Collaborator Release

New LongCOVID research launched by PolyBio’s global consortium of scientists

Funding will deepen research on the persistence of the SARS-CoV-2 virus in LongCOVID patients and launch new clinical trials

30-Jan-2024
Press Release

J. Craig Venter Institute contracted by the Centers for Disease Control and Prevention to rapidly construct synthetic influenza genes

Genes will be used to help develop seasonal and pandemic vaccines, improving response time and vaccine efficacy

10-Nov-2023
Press Release

Coastal upwelling regions threatened by increased ocean acidification

Increased acidification shown to limit iron availability, a critical element for the survival of phytoplankton, the foundation of the oceanic food web

12-Sep-2023
Press Release

J. Craig Venter Institute scientists awarded five-year, $5.7M grant from NIH to develop phage treatment

Phage research accelerates with the rise of antibiotic resistance to address increasingly prevalent and difficult to treat bacterial infections

07-Sep-2023
Collaborator Release

Bringing cells to life … and to Minecraft: $30 million NSF grant to support whole-cell modeling at the Beckman Institute

Beckman researchers and collaborators received $30 million from the U.S. National Science Foundation to establish the NSF Science and Technology Center for Quantitative Cell Biology. The center will develop whole-cell models to transform our understanding of how cells function and share that knowledge with diverse communities through the popular computer game Minecraft.

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Ocean Sampling Day 2018

J. Craig Venter Institute (JCVI) scientists, led by Lisa Ziegler Allen, PhD, are collaborating with Kelly Goodwin, PhD (NOAA), Brian Palenik, PhD (UCSD), and Maitreyi Nagarkar (UCSD) to participate in this year’s Ocean Sampling Day on June 21. The team, which also includes Sarah Schwenck...

J. Craig Venter Institute Education Program Fosters Learning Opportunities with Salisbury University Students and Faculty

Patti Erickson, PhD first connected with the J. Craig Venter Institute (JCVI) in the Fall of 2016 as an associate professor at Salisbury University looking for opportunities to expose undergraduate students to biology outside of the classroom. Soon thereafter, she and a group from Salisbury...

JCVI Makes Strides in Microbial Analysis of Artwork which May Lead to Better Preservation

Through the da Vinci DNA Project, researchers at JCVI began taking samples from aging artwork with the aim of understanding which microbial species are present are present on each.

BioVision Alexandria 2018

The BioVision Alexandria conference convened at the Bibliotheca Alexandrina, in Alexandria, Egypt this past April. The Bibliotheca Alexandrina is a commemoration of the Ancient Library of Alexandria and an attempt to rekindle the global cultural and scholarship role of the library....

J. Craig Venter Institute Inspires Kids on “Take Your Child to Work Day”

Last month when my kindergarten-aged daughter brought home a note from school to dress up as their future career choice, I was pleasantly surprised to hear from her that she aspired to be a scientist just like me. So, we dug through my clothes and found her an old lab coat and decorated the...

JCVI to Receive Grant from Chan Zuckerberg Initiative to Define the Language of Human Cell Classification

Researchers at J. Craig Venter Institute (JCVI), led by Richard Scheuermann, PhD, director of JCVI’s La Jolla Campus, have been awarded a grant from the Chan Zuckerberg Initiative DAF, an advised fund of Silicon Valley Community Foundation as part of the Human Cell Atlas project. JCVI will be...

J. Craig Venter Institute Teaches Students about Genomics at Annual High Tech Fair

In January, JCVI was one of more than 40 San Diego STEM-related organizations who participated in the Fleet Science Center’s annual High Tech Fair. This year more than 3,000 local middle and high-school students, their teachers, and families descended upon Balboa Park throughout the...

Dr. Scheuermann featured on the Illumina Genomics Podcast

In Episode 14 of the Illumina Genomics Podcast, Dr. Richard Scheuermann is the featured guest. Dr. Scheuermann discusses advancements in cell ontology, informatics, machine learning, and how his approach to biology has adapted over the years to incorporate the massive increases of data and...

New Method for Genome-wide Engineering of Viruses

Researchers at JCVI have been developing synthetic genomics assembly methods since 2000, addressing fundamental biological questions. Together, with researchers at Oregon Health and Science University, Johns Hopkins University School of Medicine, Synthetic Genomics, Inc., and Vir Biotechnology,...

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10-Jan-2020
Issues in Science and Tech

Gene Drives: New and Improved

As the science advances, policy-makers and regulators need to develop responses that reflect the latest developments and the diversity of approaches and applications.

13-Nov-2019
The San Diego Union-Tribune

Pink shoes and a lab jacket: Finding your way as a female scientist

Women in science tell high school girls they, too, can change the world

01-Jun-2019
Asia Times

How AI can help us decode immunity

Artificial intelligence and machine learning will be the keys to unraveling how the human immune system prevents and controls disease

30-May-2019
Nature News and Views

Construction of an Escherichia coli genome with fewer codons sets records

The biggest synthetic genome so far has been made, with a smaller set of amino-acid-encoding codons than usual — raising the prospect of encoding proteins that contain unnatural amino-acid residues.

30-May-2019
UC San Diego News Center

Public Health is the Next Big Thing at UC San Diego

15-May-2019
MIT Technology Review

Researchers have swapped the genome of gut germ E. coli for an artificial one

By creating a new genome, scientists could create organisms tailored to produce desirable compounds

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