基本信息
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Bio
My research utilizes self-assembly, molecular design, and microfluidic technologies to generate biologically relevant microenvironments for the study and application of biomacromolecules. Individually, microfluidics represent an enabling technology for the time-resolved analysis of enzyme structural dynamics, while control over molecular interactions in self-assembling polyelectrolyte systems can be used to examine the interplay between biomacromolecules and the intracellular environment. Together, these capabilities can be coupled to generate artificial organelle-like structures for use in applications ranging from biochemistry to bioenergetics, biocatalysis, and biomedicine. Furthermore, this work has tremendous pedagogical potential to inspire students to work at the intersection of chemistry, biology, and engineering.
Research Interests
Papers共 111 篇Author StatisticsCo-AuthorSimilar Experts
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Jonathan W. P. Zajac, Praveen Muralikrishnan, Idris Tohidian, Xianci Zeng,Caryn L. Heldt,Sarah L. Perry,Sapna Sarupria
arxiv(2024)
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Isaac A. Ramírez Marrero, Luke Boudreau,Weiguo Hu, Rainer Gutzler, Nadine Kaiser,Bernhard von Vacano,Rupert Konradi,Sarah L. Perry
Macromolecules (2024)
Accounts of chemical researchno. 3 (2024): 386-398
arxiv(2024)
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Akanksha Patel,Allen C. Chang, Abigail Mastromonaco, Mauricio Acosta Diaz,Sarah Perry,Olivia Ferki,Christian Ayafor,Umer Abid,Hsi-Wu Wong,Dongming Xie,Margaret J. Sobkowicz
POLYMER (2023): 126370-126370
MACROMOLECULESno. 11 (2023): 3973-3988
Trends in biochemical sciencesno. 9 (2023): 746-747
Lab on a chipno. 8 (2023): 2075-2090
BIOMACROMOLECULESno. 2 (2023): 741-753
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