Henry Feng
Undergraduate Researcher @Innovative Genomics Institute
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WORK HISTORY
Undergraduate Researcher @Innovative Genomics Institute
Berkeley, CA, US
As an undergraduate researcher in the Advanced Translational Genetics (ATG) Lab at the Innovative Genomics Institute, I work on developing and refining optical pooled screening (OPS) methodologies that integrate pooled CRISPR perturbations with high-content single-cell imaging. My work focuses on improving in situ sequencing strategies to enable more robust identification of sgRNAs at the single-cell level, including approaches for multiplexed sgRNA detection within individual cells.
EDUCATION
University of California, Berkeley
Cell/Cellular and Molecular Biology
ABOUT HENRY FENG
Publications:Wan L, Zhong P, Li P, Ren Y, Wang W, Yu M, Feng HY, Yan Z. CRISPR-based epigenetic editing of Gad1 improves synaptic inhibition and cognitive behavior in a Tauopathy mouse model. Neurobiol Dis. 2025 Mar;206:106826. doi: 10.1016/j.nbd.20••••••26. Epub 2025 Feb 1. PMID: N; Mazza, A.R; Roy, P; Kunwar, S; Zhang, D; Feng, H.Y; Arsky, K; Chen, A; Jia, Q. Anisotropic Properties of Epitaxial Ferroelectric Lead-Free 0.5[Ba(Ti0.8Zr0.2)O3]- 0.5(Ba0.7Ca0.3)TiO3 Films. Materials 2023, 16, 6671. https://doi.org/10.3390/ma16••••71Nicholas Cucciniello, Derek Lee, Henry Y. Feng, Zihao Yang, Hao Zeng, Nag Patibandla, Mingwei Zhu, Quanxi Jia (2022) Superconducting niobium nitride: A perspective from processing, microstructure, and superconducting property for single photon detectors. Journal of Physics: Condensed Matter 34: 374003. https://iopscience.iop.org/article/10.1088/13•••48X/ac7dd6Henry Y. Feng (2022) Continuous Fusion is Impossible without a Star. International Policy Digest https://intpolicydigest.org/the-platform/continuous-fusion-is-impossible-without-a-star/09/2023-Present:First year undergraduate student majoring in Molecular and Cellular Biology at UC Berkeley. Undergraduate researcher in Hockemeyer Lab focused on understanding human diseases with next generation genome editing and human stem cell techniques that provide dramatically improved recapitulation of human biology compared to traditional animal models and tissue culture systems.09/21-09/2023: Research in the laboratory of Professor Quanxi Jia, Department of Materials Design and Innovation, State University of New York at Buffalo, on thin-film superconducting materials processing and application in superconducting microelectronics. I studied thin film superconducting niobium nitride and its applications in low-dimensional nanostructured microdevices such as SNSPDs (superconducting nanowire single-photon detectors) and constructed a research paper discussing the effects of certain processing parameters on the properties of the product material. Additionally, I am researching thin film ferroelectric materials. I performed tests to characterize epitaxially grown ferroelectric films, specifically BZT-BCT and SRO-STO relaxor ferroelectrics.
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