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Reverse-QTY code design of active human serum albumin self-assembled amphiphilic nanoparticles for effective anti-tumor drug doxorubicin release in mice

Human serum albumin (HSA) is a highly water-soluble protein with 67% alpha-helix content and three distinct domains (I, II, and III). HSA offers a great promise in drug delivery with enhanced permeability and retention effect. But it is hindered by protein denaturation during drug entrapment or conj...

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Autores principales: Meng, Run, Hao, Shilei, Sun, Changfa, Hou, Zongkun, Hou, Yao, Wang, Lili, Deng, Peiying, Deng, Jia, Yang, Yaying, Xia, Haijian, Wang, Bochu, Qing, Rui, Zhang, Shuguang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10214157/
https://www.ncbi.nlm.nih.gov/pubmed/37186820
http://dx.doi.org/10.1073/pnas.2220173120
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author Meng, Run
Hao, Shilei
Sun, Changfa
Hou, Zongkun
Hou, Yao
Wang, Lili
Deng, Peiying
Deng, Jia
Yang, Yaying
Xia, Haijian
Wang, Bochu
Qing, Rui
Zhang, Shuguang
author_facet Meng, Run
Hao, Shilei
Sun, Changfa
Hou, Zongkun
Hou, Yao
Wang, Lili
Deng, Peiying
Deng, Jia
Yang, Yaying
Xia, Haijian
Wang, Bochu
Qing, Rui
Zhang, Shuguang
author_sort Meng, Run
collection PubMed
description Human serum albumin (HSA) is a highly water-soluble protein with 67% alpha-helix content and three distinct domains (I, II, and III). HSA offers a great promise in drug delivery with enhanced permeability and retention effect. But it is hindered by protein denaturation during drug entrapment or conjugation that result in distinct cellular transport pathways and reduction of biological activities. Here we report using a protein design approach named reverse-QTY (rQTY) code to convert specific hydrophilic alpha-helices to hydrophobic to alpha-helices. The designed HSA undergo self-assembly of well-ordered nanoparticles with highly biological actives. The hydrophilic amino acids, asparagine (N), glutamine (Q), threonine (T), and tyrosine (Y) in the helical B-subdomains of HSA were systematically replaced by hydrophobic leucine (L), valine (V), and phenylalanine (F). HSA(rQTY) nanoparticles exhibited efficient cellular internalization through the cell membrane albumin binding protein GP60, or SPARC (secreted protein, acidic and rich in cysteine)-mediated pathways. The designed HSA(rQTY) variants displayed superior biological activities including: i) encapsulation of drug doxorubicin, ii) receptor-mediated cellular transport, iii) tumor cell targeting, and iv) antitumor efficiency compare to denatured HSA nanoparticles. HSA(rQTY) nanoparticles provided superior tumor targeting and antitumor therapeutic effects compared to the albumin nanoparticles fabricated by antisolvent precipitation method. We believe that the rQTY code is a robust platform for specific hydrophobic modification of functional hydrophilic proteins with clear-defined binding interfaces.
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spelling pubmed-102141572023-05-27 Reverse-QTY code design of active human serum albumin self-assembled amphiphilic nanoparticles for effective anti-tumor drug doxorubicin release in mice Meng, Run Hao, Shilei Sun, Changfa Hou, Zongkun Hou, Yao Wang, Lili Deng, Peiying Deng, Jia Yang, Yaying Xia, Haijian Wang, Bochu Qing, Rui Zhang, Shuguang Proc Natl Acad Sci U S A Biological Sciences Human serum albumin (HSA) is a highly water-soluble protein with 67% alpha-helix content and three distinct domains (I, II, and III). HSA offers a great promise in drug delivery with enhanced permeability and retention effect. But it is hindered by protein denaturation during drug entrapment or conjugation that result in distinct cellular transport pathways and reduction of biological activities. Here we report using a protein design approach named reverse-QTY (rQTY) code to convert specific hydrophilic alpha-helices to hydrophobic to alpha-helices. The designed HSA undergo self-assembly of well-ordered nanoparticles with highly biological actives. The hydrophilic amino acids, asparagine (N), glutamine (Q), threonine (T), and tyrosine (Y) in the helical B-subdomains of HSA were systematically replaced by hydrophobic leucine (L), valine (V), and phenylalanine (F). HSA(rQTY) nanoparticles exhibited efficient cellular internalization through the cell membrane albumin binding protein GP60, or SPARC (secreted protein, acidic and rich in cysteine)-mediated pathways. The designed HSA(rQTY) variants displayed superior biological activities including: i) encapsulation of drug doxorubicin, ii) receptor-mediated cellular transport, iii) tumor cell targeting, and iv) antitumor efficiency compare to denatured HSA nanoparticles. HSA(rQTY) nanoparticles provided superior tumor targeting and antitumor therapeutic effects compared to the albumin nanoparticles fabricated by antisolvent precipitation method. We believe that the rQTY code is a robust platform for specific hydrophobic modification of functional hydrophilic proteins with clear-defined binding interfaces. National Academy of Sciences 2023-05-15 2023-05-23 /pmc/articles/PMC10214157/ /pubmed/37186820 http://dx.doi.org/10.1073/pnas.2220173120 Text en Copyright © 2023 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/This open access article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Biological Sciences
Meng, Run
Hao, Shilei
Sun, Changfa
Hou, Zongkun
Hou, Yao
Wang, Lili
Deng, Peiying
Deng, Jia
Yang, Yaying
Xia, Haijian
Wang, Bochu
Qing, Rui
Zhang, Shuguang
Reverse-QTY code design of active human serum albumin self-assembled amphiphilic nanoparticles for effective anti-tumor drug doxorubicin release in mice
title Reverse-QTY code design of active human serum albumin self-assembled amphiphilic nanoparticles for effective anti-tumor drug doxorubicin release in mice
title_full Reverse-QTY code design of active human serum albumin self-assembled amphiphilic nanoparticles for effective anti-tumor drug doxorubicin release in mice
title_fullStr Reverse-QTY code design of active human serum albumin self-assembled amphiphilic nanoparticles for effective anti-tumor drug doxorubicin release in mice
title_full_unstemmed Reverse-QTY code design of active human serum albumin self-assembled amphiphilic nanoparticles for effective anti-tumor drug doxorubicin release in mice
title_short Reverse-QTY code design of active human serum albumin self-assembled amphiphilic nanoparticles for effective anti-tumor drug doxorubicin release in mice
title_sort reverse-qty code design of active human serum albumin self-assembled amphiphilic nanoparticles for effective anti-tumor drug doxorubicin release in mice
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10214157/
https://www.ncbi.nlm.nih.gov/pubmed/37186820
http://dx.doi.org/10.1073/pnas.2220173120
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