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Construction and evaluation of detachable bone-targeting MOF carriers for the delivery of proteasome inhibitors

Tumor bone metastasis is an important cause of tumor recurrence and death. Although bone-targeting nanoparticles decorated with targeting ligands have shown good affinity for bone tissues with the properties of adhesion to the bone matrix, it is not easy to detach from the surface of the bone matrix...

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Autores principales: Yang, Hongbing, Yu, Zhenyan, Ji, Shuaishuai, Yan, Jie, Han, Lei, Liu, Yang, Wang, Yanjuan, Niu, Yimin, Huo, Qiang, Xu, Ming
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9109260/
https://www.ncbi.nlm.nih.gov/pubmed/35702207
http://dx.doi.org/10.1039/d2ra00051b
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author Yang, Hongbing
Yu, Zhenyan
Ji, Shuaishuai
Yan, Jie
Han, Lei
Liu, Yang
Wang, Yanjuan
Niu, Yimin
Huo, Qiang
Xu, Ming
author_facet Yang, Hongbing
Yu, Zhenyan
Ji, Shuaishuai
Yan, Jie
Han, Lei
Liu, Yang
Wang, Yanjuan
Niu, Yimin
Huo, Qiang
Xu, Ming
author_sort Yang, Hongbing
collection PubMed
description Tumor bone metastasis is an important cause of tumor recurrence and death. Although bone-targeting nanoparticles decorated with targeting ligands have shown good affinity for bone tissues with the properties of adhesion to the bone matrix, it is not easy to detach from the surface of the bone matrix in the tumor-bone microenvironment, attributed to the robust coordination force between the targeting ligands, such as bisphosphates with bone-deposited calcium. This may hinder the transport of nanoparticles from bone tissue to bone metastatic tumors. In this research, we designed a bone-targeting nanocarrier with detachable bone-targeting character for the therapy of bone metastases. The nanoparticles were constructed by using ZIF-8 and bone-targeting and MMP enzyme sensitive polypeptide-modified hyaluronic acid as a carrier and proteasome inhibitor Bortezomib (BTZ) as cargo. The results show that the constructed D8-M3-HA-ZIF8@BTZ nanoparticles possessed several favorable properties such as good colloidal stability, acid-sensitive drug release, D8 peptide mediated bone targeting and MMP enzyme-responsive desorption. Besides, nanoparticle endocytosis and cytotoxicity were enhanced through HA-mediated targeting to CD44 over-expressing tumor cells. Altogether, this study provides a potential cascade targeting strategy for improving the delivery effects of bone targeted nanoparticles for the delivery of proteasome inhibitors.
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spelling pubmed-91092602022-06-13 Construction and evaluation of detachable bone-targeting MOF carriers for the delivery of proteasome inhibitors Yang, Hongbing Yu, Zhenyan Ji, Shuaishuai Yan, Jie Han, Lei Liu, Yang Wang, Yanjuan Niu, Yimin Huo, Qiang Xu, Ming RSC Adv Chemistry Tumor bone metastasis is an important cause of tumor recurrence and death. Although bone-targeting nanoparticles decorated with targeting ligands have shown good affinity for bone tissues with the properties of adhesion to the bone matrix, it is not easy to detach from the surface of the bone matrix in the tumor-bone microenvironment, attributed to the robust coordination force between the targeting ligands, such as bisphosphates with bone-deposited calcium. This may hinder the transport of nanoparticles from bone tissue to bone metastatic tumors. In this research, we designed a bone-targeting nanocarrier with detachable bone-targeting character for the therapy of bone metastases. The nanoparticles were constructed by using ZIF-8 and bone-targeting and MMP enzyme sensitive polypeptide-modified hyaluronic acid as a carrier and proteasome inhibitor Bortezomib (BTZ) as cargo. The results show that the constructed D8-M3-HA-ZIF8@BTZ nanoparticles possessed several favorable properties such as good colloidal stability, acid-sensitive drug release, D8 peptide mediated bone targeting and MMP enzyme-responsive desorption. Besides, nanoparticle endocytosis and cytotoxicity were enhanced through HA-mediated targeting to CD44 over-expressing tumor cells. Altogether, this study provides a potential cascade targeting strategy for improving the delivery effects of bone targeted nanoparticles for the delivery of proteasome inhibitors. The Royal Society of Chemistry 2022-05-16 /pmc/articles/PMC9109260/ /pubmed/35702207 http://dx.doi.org/10.1039/d2ra00051b Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Yang, Hongbing
Yu, Zhenyan
Ji, Shuaishuai
Yan, Jie
Han, Lei
Liu, Yang
Wang, Yanjuan
Niu, Yimin
Huo, Qiang
Xu, Ming
Construction and evaluation of detachable bone-targeting MOF carriers for the delivery of proteasome inhibitors
title Construction and evaluation of detachable bone-targeting MOF carriers for the delivery of proteasome inhibitors
title_full Construction and evaluation of detachable bone-targeting MOF carriers for the delivery of proteasome inhibitors
title_fullStr Construction and evaluation of detachable bone-targeting MOF carriers for the delivery of proteasome inhibitors
title_full_unstemmed Construction and evaluation of detachable bone-targeting MOF carriers for the delivery of proteasome inhibitors
title_short Construction and evaluation of detachable bone-targeting MOF carriers for the delivery of proteasome inhibitors
title_sort construction and evaluation of detachable bone-targeting mof carriers for the delivery of proteasome inhibitors
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9109260/
https://www.ncbi.nlm.nih.gov/pubmed/35702207
http://dx.doi.org/10.1039/d2ra00051b
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