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Mao’s contributions in therapeutic engineering include understanding the assembly mechanism of nanoparticles from the polyelectrolyte complex of plasmid DNA, RNA or protein therapeutics with charged polymer-carriers; engineering DNA nanoparticles with tunable shape and uniformity that mimic natural viral particles; the development of scalable production methods for these therapeutic nanoparticles; and their applications in local and systemic delivery of macromolecular therapeutics and vaccines.
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论文共 393 篇作者统计合作学者相似作者
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Molecular Therapy - Methods & Clinical Developmentno. 1 (2024): 101194-101194
Natalie K. Livingston,John W. Hickey, Hajin Sim,Sebastian F. Salathe,Joseph Choy,Jiayuan Kong,Aliyah B. Silver,Jessica L. Stelzel, Mary O. Omotoso, Shuyi Li,Worarat Chaisawangwong, Sayantika Roy,
Yining Zhu, Shuting Sarah Cai, Jingyao Ma,Leonardo Cheng, Christine Wei, Ataes Aggarwal,Wu Han Toh, Charles Shin, Ruochen Shen,Jiayuan Kong, Shuming Alan Mao,Yeh-Hsing Lao,
MOLECULAR THERAPYno. 4 (2023): 606-606
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Yining Zhu, Jingyao Ma, Ruochen Shen,Jinghan Lin, Shuyi Li,Xiaoya Lu,Jessica L. Stelzel,Jiayuan Kong,Leonardo Cheng,Ivan Vuong,Zhi-Cheng Yao, Christine Wei,
Thomas M. Harris,William Padovano,Chenhu Qiu,Visakha Suresh, Pierce Perkins, Mark Poisler, Nelson Lee,Karim A. Sarhane,Philip J. Hanwright, Kara Segna,Ahmet Höke,Hai‐Quan Mao,
Plastic and reconstructive surgery. Global openno. 5S (2023): 37-38
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MOLECULAR THERAPYno. 4 (2023): 629-630
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Plastic and reconstructive surgery. Global openno. 4S (2023): 71-72
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