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Bone-Targeting Liposome-Encapsulated Salvianic Acid A Improves Nonunion Healing Through the Regulation of HDAC3-Mediated Endochondral Ossification

AIM: Nonunion is a major complication in fracture repair and remains a challenge in orthopaedics and trauma surgery. In this study, we aimed to evaluate the effectiveness of treatment of nonunion with a large radial defect using a bone-targeting liposome-encapsulated salvianic acid A (SAA-BTL)-incor...

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Autores principales: Zhou, Limin, Wu, Haojun, Gao, Xiang, Zheng, Xiaoyan, Chen, Hang, Li, Hailong, Peng, Jun, Liang, Weichong, Wang, Wenxing, Qiu, Zuocheng, Udduttula, Anjaneyulu, Wu, Kefeng, Li, Lin, Liu, Yuyu, Liu, Yanzhi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Dove 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7502027/
https://www.ncbi.nlm.nih.gov/pubmed/32982168
http://dx.doi.org/10.2147/DDDT.S263787
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author Zhou, Limin
Wu, Haojun
Gao, Xiang
Zheng, Xiaoyan
Chen, Hang
Li, Hailong
Peng, Jun
Liang, Weichong
Wang, Wenxing
Qiu, Zuocheng
Udduttula, Anjaneyulu
Wu, Kefeng
Li, Lin
Liu, Yuyu
Liu, Yanzhi
author_facet Zhou, Limin
Wu, Haojun
Gao, Xiang
Zheng, Xiaoyan
Chen, Hang
Li, Hailong
Peng, Jun
Liang, Weichong
Wang, Wenxing
Qiu, Zuocheng
Udduttula, Anjaneyulu
Wu, Kefeng
Li, Lin
Liu, Yuyu
Liu, Yanzhi
author_sort Zhou, Limin
collection PubMed
description AIM: Nonunion is a major complication in fracture repair and remains a challenge in orthopaedics and trauma surgery. In this study, we aimed to evaluate the effectiveness of treatment of nonunion with a large radial defect using a bone-targeting liposome-encapsulated salvianic acid A (SAA-BTL)-incorporated collagen sponge and further elucidate whether the effects were closely related to histone deacetylase 3 (HDAC 3)-mediated endochondral ossification in nonunion healing process. METHODS: Fifteen New Zealand female rabbits were randomly divided into three groups. Segmental radius critical size defects (15 mm) were created via surgery on both the forelimbs of the rabbits. The SAA-BTL/SAA/saline-incorporated collagen sponges were implanted into the defects in the three groups, respectively, for four weeks of treatment. X-ray imaging, micro-computed tomography (CT) analysis, histology, and immunofluorescence analysis (HDAC3, collagen II, VEGFA, and osteocalcin) were performed to determine the effects of the treatments. In addition, a short interfering RNA was applied to induce HDAC3 knockdown in the chondrogenic cell line ATDC5 to investigate the roles of HDAC3 and SAA intervention in endochondral ossification in nonunion healing. RESULTS: X-ray imaging and micro-CT results revealed that SAA-BTL-incorporated collagen sponges significantly stimulated bone formation in the nonunion defect rabbit model. Furthermore, immunofluorescence double staining and histology analysis confirmed that SAA-BTL significantly increased the expression of P-HDAC3, collagen II, RUNX2, VEGFA, and osteocalcin in vivo; accelerated endochondral ossification turnover from cartilage to bone; and promoted long bone healing of nonunion defects. ATDC5 cells knocked down for HDAC3 showed significantly decreased expression of HDAC3, which resulted in reduced expression of chondrogenesis, osteogenesis, and angiogenesis biomarker genes (Sox9, Col10a1, VEGFA, RUNX2, and Col1a1), and increased expression of extracellular matrix degradation marker (MMP13). SAA treatment reversed these effects in the HDAC3 knockdown cell model. CONCLUSION: SAA-BTL can improve nonunion healing through the regulation of HDAC3-mediated endochondral ossification.
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spelling pubmed-75020272020-09-24 Bone-Targeting Liposome-Encapsulated Salvianic Acid A Improves Nonunion Healing Through the Regulation of HDAC3-Mediated Endochondral Ossification Zhou, Limin Wu, Haojun Gao, Xiang Zheng, Xiaoyan Chen, Hang Li, Hailong Peng, Jun Liang, Weichong Wang, Wenxing Qiu, Zuocheng Udduttula, Anjaneyulu Wu, Kefeng Li, Lin Liu, Yuyu Liu, Yanzhi Drug Des Devel Ther Original Research AIM: Nonunion is a major complication in fracture repair and remains a challenge in orthopaedics and trauma surgery. In this study, we aimed to evaluate the effectiveness of treatment of nonunion with a large radial defect using a bone-targeting liposome-encapsulated salvianic acid A (SAA-BTL)-incorporated collagen sponge and further elucidate whether the effects were closely related to histone deacetylase 3 (HDAC 3)-mediated endochondral ossification in nonunion healing process. METHODS: Fifteen New Zealand female rabbits were randomly divided into three groups. Segmental radius critical size defects (15 mm) were created via surgery on both the forelimbs of the rabbits. The SAA-BTL/SAA/saline-incorporated collagen sponges were implanted into the defects in the three groups, respectively, for four weeks of treatment. X-ray imaging, micro-computed tomography (CT) analysis, histology, and immunofluorescence analysis (HDAC3, collagen II, VEGFA, and osteocalcin) were performed to determine the effects of the treatments. In addition, a short interfering RNA was applied to induce HDAC3 knockdown in the chondrogenic cell line ATDC5 to investigate the roles of HDAC3 and SAA intervention in endochondral ossification in nonunion healing. RESULTS: X-ray imaging and micro-CT results revealed that SAA-BTL-incorporated collagen sponges significantly stimulated bone formation in the nonunion defect rabbit model. Furthermore, immunofluorescence double staining and histology analysis confirmed that SAA-BTL significantly increased the expression of P-HDAC3, collagen II, RUNX2, VEGFA, and osteocalcin in vivo; accelerated endochondral ossification turnover from cartilage to bone; and promoted long bone healing of nonunion defects. ATDC5 cells knocked down for HDAC3 showed significantly decreased expression of HDAC3, which resulted in reduced expression of chondrogenesis, osteogenesis, and angiogenesis biomarker genes (Sox9, Col10a1, VEGFA, RUNX2, and Col1a1), and increased expression of extracellular matrix degradation marker (MMP13). SAA treatment reversed these effects in the HDAC3 knockdown cell model. CONCLUSION: SAA-BTL can improve nonunion healing through the regulation of HDAC3-mediated endochondral ossification. Dove 2020-08-26 /pmc/articles/PMC7502027/ /pubmed/32982168 http://dx.doi.org/10.2147/DDDT.S263787 Text en © 2020 Zhou et al. http://creativecommons.org/licenses/by-nc/3.0/ This work is published and licensed by Dove Medical Press Limited. The full terms of this license are available at https://www.dovepress.com/terms.php and incorporate the Creative Commons Attribution – Non Commercial (unported, v3.0) License (http://creativecommons.org/licenses/by-nc/3.0/). By accessing the work you hereby accept the Terms. Non-commercial uses of the work are permitted without any further permission from Dove Medical Press Limited, provided the work is properly attributed. For permission for commercial use of this work, please see paragraphs 4.2 and 5 of our Terms (https://www.dovepress.com/terms.php).
spellingShingle Original Research
Zhou, Limin
Wu, Haojun
Gao, Xiang
Zheng, Xiaoyan
Chen, Hang
Li, Hailong
Peng, Jun
Liang, Weichong
Wang, Wenxing
Qiu, Zuocheng
Udduttula, Anjaneyulu
Wu, Kefeng
Li, Lin
Liu, Yuyu
Liu, Yanzhi
Bone-Targeting Liposome-Encapsulated Salvianic Acid A Improves Nonunion Healing Through the Regulation of HDAC3-Mediated Endochondral Ossification
title Bone-Targeting Liposome-Encapsulated Salvianic Acid A Improves Nonunion Healing Through the Regulation of HDAC3-Mediated Endochondral Ossification
title_full Bone-Targeting Liposome-Encapsulated Salvianic Acid A Improves Nonunion Healing Through the Regulation of HDAC3-Mediated Endochondral Ossification
title_fullStr Bone-Targeting Liposome-Encapsulated Salvianic Acid A Improves Nonunion Healing Through the Regulation of HDAC3-Mediated Endochondral Ossification
title_full_unstemmed Bone-Targeting Liposome-Encapsulated Salvianic Acid A Improves Nonunion Healing Through the Regulation of HDAC3-Mediated Endochondral Ossification
title_short Bone-Targeting Liposome-Encapsulated Salvianic Acid A Improves Nonunion Healing Through the Regulation of HDAC3-Mediated Endochondral Ossification
title_sort bone-targeting liposome-encapsulated salvianic acid a improves nonunion healing through the regulation of hdac3-mediated endochondral ossification
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7502027/
https://www.ncbi.nlm.nih.gov/pubmed/32982168
http://dx.doi.org/10.2147/DDDT.S263787
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