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Updated: Apr 15, 2026

Rapid Optimization of a Light-Inducible System to Control Mammalian Gene Expression
Published on: November 4, 2025
Massively parallel delivery of large cargo into mammalian cells with light pulses
Yi-Chien Wu1, Ting-Hsiang Wu2, Daniel L Clemens3
1Department of Mechanical and Aerospace Engineering, University of California at Los Angeles, Los Angeles, California, USA.
Abstract:
We report a high-throughput platform for delivering large cargo elements into 100,000 cells in 1 min. Our biophotonic laser-assisted surgery tool (BLAST) generates an array of microcavitation bubbles that explode in response to laser pulsing, forming pores in adjacent cell membranes through which cargo is gently driven by pressurized flow. The platform delivers large items including bacteria, enzymes, antibodies and nanoparticles into diverse cell types with high efficiency and cell viability. We used this platform to explore the intracellular lifestyle of Francisella novicida and discovered that the iglC gene is unexpectedly required for intracellular replication even after phagosome escape into the cell cytosol.

