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Research Interests
Nanomaterials, single-molecule fluorescence microscopy, biophysics
Our research lies at the intersection of single-molecule biophysics and nanomaterial-polymer science to develop new tools to probe and characterize complex biological systems. In particular, near-infrared emitters (fluorophores, zero-dimensional, and one-dimensional nanomaterials) provide emission wavelengths that are maximally permeable to biological materials. As such, we explore the potential of near-infrared light emitters combined with conventional visible fluorophores to detect molecular processes in systems that are optically and physically dense. We develop these tools for single-molecule applications, with the goal of scaling them to the study of molecular processes in whole-organisms. We further explore nanoscale materials as scaffolds for the delivery of biological molecules into tissues, cells, and sub-cellular organelles. To these ends, we build and develop optical microscopy tools, functionalize and characterize nanomaterials, and combine these areas for in vitro and in vivo molecular detection.
Nanomaterials, single-molecule fluorescence microscopy, biophysics
Our research lies at the intersection of single-molecule biophysics and nanomaterial-polymer science to develop new tools to probe and characterize complex biological systems. In particular, near-infrared emitters (fluorophores, zero-dimensional, and one-dimensional nanomaterials) provide emission wavelengths that are maximally permeable to biological materials. As such, we explore the potential of near-infrared light emitters combined with conventional visible fluorophores to detect molecular processes in systems that are optically and physically dense. We develop these tools for single-molecule applications, with the goal of scaling them to the study of molecular processes in whole-organisms. We further explore nanoscale materials as scaffolds for the delivery of biological molecules into tissues, cells, and sub-cellular organelles. To these ends, we build and develop optical microscopy tools, functionalize and characterize nanomaterials, and combine these areas for in vitro and in vivo molecular detection.
研究兴趣
论文共 159 篇作者统计合作学者相似作者
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Ali Akbar Ashkarran,Hassan Gharibi,Seyed Majed Modaresi, Maryam Sayadi, Maryam Jafari,Zijin Lin,Danilo Ritz,David Kakhniashvili,Liangliang Sun,Markita P Landry, Amir Ata Saei,Morteza Mahmoudi
bioRxiv : the preprint server for biology (2024)
Journal of chemical information and modeling (2024)
Henry J. Squire, Minjae Kim, Cerise Wong, Amanda Seng, Autumn Y. Lee,Natalie S. Goh, Jeffery Wei-Ting Wang,Markita P. Landry
ACS APPLIED NANO MATERIALSno. 6 (2024): 6205-6213
Jaquesta A M Adams, Natsumi Komatsu, Nicole Navarro, Esther Leem, Xiaoqi Sun, Jiaxuan Zhao, Octavio I Arias-Soto,Markita P Landry
bioRxiv : the preprint server for biology (2024)
Angewandte Chemie (International ed. in English)no. 8 (2023): e202311476-e202311476
Francis Ledesma, Shoichi Nishitani,Francis J Cunningham,Joshua D Hubbard, Dabin Yim,Alison Lui,Linda Chio,Aishwarya Murali,Markita P Landry
bioRxiv : the preprint server for biology (2023)
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