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Dr. Gao’s research program lies at the interface of chemical biology and biomolecular engineering with primary focus on small- and macro-molecule discovery and their applications to human health, agriculture, and energy. Natural products from microorganisms of diverse origins have played an extremely important role historically in drug discovery. Recent advances in human microbiome research have expanded our understanding of interactions between microbes and hosts related to human health. This unique microbial community also provides a golden opportunity for the discovery of new therapeutics. One of her main research is microbiome-based natural product discovery and engineering, and moreover, to develop enzymes involved in the natural product biosynthesis as powerful biocatalysts for difficult chemical reactions in the pharmaceutical and biotechnology industries. The recently discovered microbial ribonucleoprotein, CRISPR/Cas9, in complex with a single guide RNA, has been extensively applied to mediate genome—editing both in vitro and in vivo. Human genetic diseases were previously recognized to be untreatable until recent advances in genome-editing research, which have been revolutionizing medicine for treating human genetic diseases. Another main research interest of her group is to discover and develop advanced genome-editing agents and delivery systems and apply these genome-editing tools as next-generation therapeutics to clinical treatment of human genetic diseases.
Dr. Gao’s research program lies at the interface of chemical biology and biomolecular engineering with primary focus on small- and macro-molecule discovery and their applications to human health, agriculture, and energy. Natural products from microorganisms of diverse origins have played an extremely important role historically in drug discovery. Recent advances in human microbiome research have expanded our understanding of interactions between microbes and hosts related to human health. This unique microbial community also provides a golden opportunity for the discovery of new therapeutics. One of her main research is microbiome-based natural product discovery and engineering, and moreover, to develop enzymes involved in the natural product biosynthesis as powerful biocatalysts for difficult chemical reactions in the pharmaceutical and biotechnology industries. The recently discovered microbial ribonucleoprotein, CRISPR/Cas9, in complex with a single guide RNA, has been extensively applied to mediate genome—editing both in vitro and in vivo. Human genetic diseases were previously recognized to be untreatable until recent advances in genome-editing research, which have been revolutionizing medicine for treating human genetic diseases. Another main research interest of her group is to discover and develop advanced genome-editing agents and delivery systems and apply these genome-editing tools as next-generation therapeutics to clinical treatment of human genetic diseases.
Research Interests
Papers共 71 篇Author StatisticsCo-AuthorSimilar Experts
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HELIYONno. 6 (2024)
Bo Gao,Yi Jiang,Mingyu Han,Xiaowen Ji,Dejun Zhang,Lihua Wu,Xue Gao,Shasha Huang,Chaoyue Zhao,Yu Su,Suyan Yang,Xin Zhang,Na Liu, Lu Han, Lihai Wang, Lina Ren,Jinyuan Yang,Jian Wu,Yongyi Yuan,Pu Dai
The Journal of molecular diagnostics/The journal of molecular diagnostics (2024)
Current opinion in biotechnology (2024): 103071-103071
BMC medical genomicsno. 1 (2024): 32-32
Bo Gao, Yi Jiang,Mingyu Han, Xiaowen Ji,Dejun Zhang,Xue Gao, Shasha Huang,Chaoyue Zhao,Yu Su, Suyan Yang,Xin Zhang,Na Liu, Lu Han, Lihai Wang, Lina Ren, Jinyuan Yang,Jian Wu,Yongyi Yuan,Pu Dai
JOURNAL OF MOLECULAR DIAGNOSTICSno. 7 (2024): 638-651
Lab on a chipno. 17 (2023): 3862-3873
Zhengyan Weng,Zheng You,Huijie Li,Guangfu Wu,Yang Song,He Sun, Ava Fradlin, Camille Neal-Harris,Mengshi Lin,Xue Gao,Yi Zhang
ACS SENSORSno. 4 (2023): 1489-1499
Synthetic biology (Oxford, England)no. 1 (2023): ysad017-ysad017
Chemical reviewsno. 12 (2023): 7782-7853
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Author Statistics
#Papers: 71
#Citation: 3488
H-Index: 22
G-Index: 55
Sociability: 6
Diversity: 3
Activity: 97
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