APID Academic Profile Identity
Xiaohe Jin

Xiaohe Jin

Research Scientist · Research and Development
Author
APID
4675
ORCID
0000-0003-1497-8037
Google Scholar
https://scholar.google.com/citations?hl=zh-CN&user=NADDqHAAAAAJ
Location
Raleigh, North Carolina, USA
Expertise
Synthetic biology and biotechnology
Areas of interest
lipid nanoparticle, biosensor, synthetic biology, cyanobacteria, photosynthesis, biochemistry, biotechnology
Member since
November 2023

Biography

Xiaohe (Jessie) Jin is an international scholar, a self-motivated learner, an enthusiastic communicator, and a results-driven scientist, as evidenced by her involvement in diverse research endeavors and seven peer-reviewed scientific publications.
Jessie holds a Doctor of Philosophy in Chemistry from North Carolina State University and a Bachelor of Science in Pharmacy from China Pharmaceutical University. Her research interests span multiple disciplines, including chemistry, biotechnology, and pharmaceuticals.
Dr. Jin's work on the microbiology of a cyanobacteria-dominant holobiont has significantly advanced the field and the work of Consequently, this work represents progress toward her larger goal of advancing the design of novel bioactive compounds, enzymes, and DNA-based lateral flow assays to improve chemoenzymatic methods of natural product development and create cost-effective infectious disease diagnostics.
Currently serving as a Scientist I at Atom Bioworks Inc. in Cary, NC, Jessie has been instrumental in designing a DNA biosensor-based lateral flow device targeting COVID-19. She has also synthesized lipid-nanoparticle-based drug delivery systems and conducted high throughput binding assays of DNA nanostructures using Surface Plasmon Resonance. With a robust academic background and extensive industry experience, she has made significant contributions to the development of diagnostics and drug delivery systems.

Sign in to see editorial board appointments, follow, and connect.

Publications

  1. Genome sequence, metabolic properties and cyanobacterial attachment of Porphyrobacter sp. HT-58-2 isolated from a filamentous cyanobacterium–microbial consortium
  2. Identification of Putative Biosynthetic Gene Clusters for Tolyporphins in Multiple Filamentous Cyanobacteria
  3. Natural Product Gene Clusters in the Filamentous Nostocales Cyanobacterium HT-58-2
  4. Natural Product Gene Clusters in the Filamentous Nostocales Cyanobacterium HT-58-2
  5. Net-Shaped DNA Nanostructure-Based Lateral Flow Assays for Rapid and Sensitive SARS-CoV-2 Detection
  6. Net-shaped DNA nanostructures designed for rapid/sensitive detection and potential inhibition of the SARS-CoV-2 virus
  7. Net-shaped DNA nanostructures designed for rapid/sensitive detection and potential inhibition of the SARS-CoV-2 virus
  8. Tolyporphins–Exotic Tetrapyrrole Pigments in a Cyanobacterium—A Review