Campus Science News

The following news items are from various campus, college and department sources.

 Ron McPeak, courtesy of the Santa Barbara Coastal Long Term Ecological Research Program

Biologists believed that urchin reproduction along the Pacific Coast would only be affected by marine heat waves at lethal ocean temperatures, a new study conducted by IB Assistant Professor Daniel Okamoto and other marine biologists at UC Berkeley suggests that this threshold of susceptibility, for urchins and other marine species, may be at lower temperatures than previously thought. Read the full article here.

Pictured is a microscopic level image of microorganisms.

The origins of ever-evolving life are never sufficiently explained; innovations in the complex origins of life are continually being expanded into new horizons. Join Wonderfest’s guest speaker, Distinguished IB Professor and Director of the University of California Museum of Paleontology, Dr. Charles Marshall, on November 18, 2025, as he explores the integral role of energy and information in the past, present, and future of life on Earth. Read the full article here.

Michael J. Chamberlin Michael Chamberlin

Evan MillerAssociate Professor of Biochemistry, Biophysics and Structural Biology Evan Miller was selected as one of 16 Camille Dreyfus Teacher-Scholar Supplemental Grant recipients for 2025. This award, from the Camille and Henry Dreyfus Foundation, provides funds to support Miller's research project "A Generalizable Method to Improve the Brightness of Long-Wavelength Fluorophores". Read more about the award and 2025 recipients here

A team led by Professors Kevin Healy and Niren Murthy have developed a microfluidic heart-on-a-chip, with which they were able to discover a lipid nanoparticle that could penetrate the dense heart muscle and efficiently deliver its cargo of therapeutic mRNA into heart muscle cells. This new drug delivery method and testing platform may pave the way to new cardiac treatments.
Adjunct Professor Taner Sen and his colleagues at the USDA and beyond have assembled and annotated the genomes of 33 wild and domesticated oat lines, along with an atlas of gene expression across in 23 of these lines, which will enable future efforts to even more hardy and productive strains of the popular grain.