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Novel one-pot strategy for fabrication of a pH-Responsive bone-targeted drug self-frame delivery system for treatment of osteoporosis()

Osteoporosis (OP) is a systemic metabolic orthopedic disorder prevalent in elderly people, that is characterized by a decrease in bone mass. Although many therapeutics have been adopted for OP treatment, many of them are still not well satisfied clinical requirements and therefore development of nov...

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Autores principales: Yang, Xinmin, Yang, Xiaowei, Luo, Peng, Zhong, Yanlong, Zhang, Bin, Zhu, Weifeng, Liu, Meiying, Zhang, Xiaoyong, Lai, Qi, Wei, Yen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10333685/
https://www.ncbi.nlm.nih.gov/pubmed/37441135
http://dx.doi.org/10.1016/j.mtbio.2023.100688
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author Yang, Xinmin
Yang, Xiaowei
Luo, Peng
Zhong, Yanlong
Zhang, Bin
Zhu, Weifeng
Liu, Meiying
Zhang, Xiaoyong
Lai, Qi
Wei, Yen
author_facet Yang, Xinmin
Yang, Xiaowei
Luo, Peng
Zhong, Yanlong
Zhang, Bin
Zhu, Weifeng
Liu, Meiying
Zhang, Xiaoyong
Lai, Qi
Wei, Yen
author_sort Yang, Xinmin
collection PubMed
description Osteoporosis (OP) is a systemic metabolic orthopedic disorder prevalent in elderly people, that is characterized by a decrease in bone mass. Although many therapeutics have been adopted for OP treatment, many of them are still not well satisfied clinical requirements and therefore development of novel therapeutics is of great significance. In this work, a novel bone-targeting drug self-frame delivery system (DSFDS) with high drug loading efficiency and pH responsive drug release was fabricated by condensation of curcumin (Cur), amino group terminated polyethylene glycol (NH(2)-PEG), and alendronate (ALN) using hexachlorocyclotriphosphonitrile (HCCP) as the linker. The final product named as HCCP-Cur-PEG-ALN (HCPA NPs) displayed excellent water dispersity with small size (181.9 ​± ​25.9 ​nm). Furthermore, the drug loading capacity of Cur can reach 25.8%, and Cur can be released from HCPA NPs under acidic environment. Owing to the introduction of ALN, HCPA NPs exhibited strong binding to HAp in vitro and excellent bone-targeting effect in vivo. Results from cellular and biochemical analyses revealed that HCPA NPs could effectively inhibit the formation and differentiation function of osteoclasts. More importantly, we also demonstrated that HCPA NPs could effectively reduce bone loss in OVX mice with low toxicity to major organs. The above results clearly demonstrated that HCPA NPs are promising for OP treatment. Given the simplicity and well designability of fabrication strategy, explicit therapy efficacy and low toxicity of HCPA NPs, we believe that this work should be of great interest for fabrication of various DSFDS to deal with many diseases.
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spelling pubmed-103336852023-07-12 Novel one-pot strategy for fabrication of a pH-Responsive bone-targeted drug self-frame delivery system for treatment of osteoporosis() Yang, Xinmin Yang, Xiaowei Luo, Peng Zhong, Yanlong Zhang, Bin Zhu, Weifeng Liu, Meiying Zhang, Xiaoyong Lai, Qi Wei, Yen Mater Today Bio Full Length Article Osteoporosis (OP) is a systemic metabolic orthopedic disorder prevalent in elderly people, that is characterized by a decrease in bone mass. Although many therapeutics have been adopted for OP treatment, many of them are still not well satisfied clinical requirements and therefore development of novel therapeutics is of great significance. In this work, a novel bone-targeting drug self-frame delivery system (DSFDS) with high drug loading efficiency and pH responsive drug release was fabricated by condensation of curcumin (Cur), amino group terminated polyethylene glycol (NH(2)-PEG), and alendronate (ALN) using hexachlorocyclotriphosphonitrile (HCCP) as the linker. The final product named as HCCP-Cur-PEG-ALN (HCPA NPs) displayed excellent water dispersity with small size (181.9 ​± ​25.9 ​nm). Furthermore, the drug loading capacity of Cur can reach 25.8%, and Cur can be released from HCPA NPs under acidic environment. Owing to the introduction of ALN, HCPA NPs exhibited strong binding to HAp in vitro and excellent bone-targeting effect in vivo. Results from cellular and biochemical analyses revealed that HCPA NPs could effectively inhibit the formation and differentiation function of osteoclasts. More importantly, we also demonstrated that HCPA NPs could effectively reduce bone loss in OVX mice with low toxicity to major organs. The above results clearly demonstrated that HCPA NPs are promising for OP treatment. Given the simplicity and well designability of fabrication strategy, explicit therapy efficacy and low toxicity of HCPA NPs, we believe that this work should be of great interest for fabrication of various DSFDS to deal with many diseases. Elsevier 2023-06-03 /pmc/articles/PMC10333685/ /pubmed/37441135 http://dx.doi.org/10.1016/j.mtbio.2023.100688 Text en © 2023 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Full Length Article
Yang, Xinmin
Yang, Xiaowei
Luo, Peng
Zhong, Yanlong
Zhang, Bin
Zhu, Weifeng
Liu, Meiying
Zhang, Xiaoyong
Lai, Qi
Wei, Yen
Novel one-pot strategy for fabrication of a pH-Responsive bone-targeted drug self-frame delivery system for treatment of osteoporosis()
title Novel one-pot strategy for fabrication of a pH-Responsive bone-targeted drug self-frame delivery system for treatment of osteoporosis()
title_full Novel one-pot strategy for fabrication of a pH-Responsive bone-targeted drug self-frame delivery system for treatment of osteoporosis()
title_fullStr Novel one-pot strategy for fabrication of a pH-Responsive bone-targeted drug self-frame delivery system for treatment of osteoporosis()
title_full_unstemmed Novel one-pot strategy for fabrication of a pH-Responsive bone-targeted drug self-frame delivery system for treatment of osteoporosis()
title_short Novel one-pot strategy for fabrication of a pH-Responsive bone-targeted drug self-frame delivery system for treatment of osteoporosis()
title_sort novel one-pot strategy for fabrication of a ph-responsive bone-targeted drug self-frame delivery system for treatment of osteoporosis()
topic Full Length Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10333685/
https://www.ncbi.nlm.nih.gov/pubmed/37441135
http://dx.doi.org/10.1016/j.mtbio.2023.100688
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