Bioprinting-Enabled Biomaterials: A Cutting-Edge Strategy for Future Osteoarthritis Therapy

Xinquan Yang,* Peilong Liu,* Yan Zhang, Jun Lu, Hongmou Zhao Department of Foot and Ankle Surgery, Honghui Hospital of Xi’an Jiaotong University, Xi’an, Shaanxi, 710054, People’s Republic of China*These authors contributed equally to this workCorrespondence: Hongmou Zhao, Dep...

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Main Authors: Yang X, Liu P, Zhang Y, Lu J, Zhao H
Format: Article
Language:English
Published: Dove Medical Press 2023-11-01
Series:International Journal of Nanomedicine
Subjects:
Online Access:https://www.dovepress.com/bioprinting-enabled-biomaterials-a-cutting-edge-strategy-for-future-os-peer-reviewed-fulltext-article-IJN
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author Yang X
Liu P
Zhang Y
Lu J
Zhao H
author_facet Yang X
Liu P
Zhang Y
Lu J
Zhao H
author_sort Yang X
collection DOAJ
description Xinquan Yang,* Peilong Liu,* Yan Zhang, Jun Lu, Hongmou Zhao Department of Foot and Ankle Surgery, Honghui Hospital of Xi’an Jiaotong University, Xi’an, Shaanxi, 710054, People’s Republic of China*These authors contributed equally to this workCorrespondence: Hongmou Zhao, Department of Foot and Ankle Surgery, Honghui Hospital of Xi’an Jiaotong University, Xi’an, Shaanxi, 710054, People’s Republic of China, Email zhaohongmou@xiyi.edu.cnAbstract: Bioprinting is an advanced technology that allows for the precise placement of cells and biomaterials in a controlled manner, making significant contributions in regenerative medicine. Notably, bioprinting-enabled biomaterials have found extensive application as drug delivery systems (DDS) in the treatment of osteoarthritis (OA). Despite the widespread utilization of these biomaterials, there has been limited comprehensive research summarizing the recent advances in this area. Therefore, this review aims to explore the noteworthy developments and challenges associated with utilizing bioprinting-enabled biomaterials as effective DDS for the treatment of OA. To begin, we provide an overview of the complex pathophysiology of OA, highlighting the shortcomings of current treatment modalities. Following this, we conduct a detailed examination of various bioprinting technologies and discuss the wide range of biomaterials employed in DDS applications for OA therapy. Finally, by placing emphasis on their transformative potential, we discuss the incorporation of crucial cellular components such as chondrocytes and mesenchymal stem cells into bioprinted constructs, which play a pivotal role in promoting tissue regeneration and repair.Graphical Abstract: Keywords: drug delivery, bioprinting, osteoarthritis, biomaterials, translation
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spelling doaj.art-f155756a01124af699f27a1465fc651f2023-11-02T17:13:57ZengDove Medical PressInternational Journal of Nanomedicine1178-20132023-11-01Volume 186213623287784Bioprinting-Enabled Biomaterials: A Cutting-Edge Strategy for Future Osteoarthritis TherapyYang XLiu PZhang YLu JZhao HXinquan Yang,* Peilong Liu,* Yan Zhang, Jun Lu, Hongmou Zhao Department of Foot and Ankle Surgery, Honghui Hospital of Xi’an Jiaotong University, Xi’an, Shaanxi, 710054, People’s Republic of China*These authors contributed equally to this workCorrespondence: Hongmou Zhao, Department of Foot and Ankle Surgery, Honghui Hospital of Xi’an Jiaotong University, Xi’an, Shaanxi, 710054, People’s Republic of China, Email zhaohongmou@xiyi.edu.cnAbstract: Bioprinting is an advanced technology that allows for the precise placement of cells and biomaterials in a controlled manner, making significant contributions in regenerative medicine. Notably, bioprinting-enabled biomaterials have found extensive application as drug delivery systems (DDS) in the treatment of osteoarthritis (OA). Despite the widespread utilization of these biomaterials, there has been limited comprehensive research summarizing the recent advances in this area. Therefore, this review aims to explore the noteworthy developments and challenges associated with utilizing bioprinting-enabled biomaterials as effective DDS for the treatment of OA. To begin, we provide an overview of the complex pathophysiology of OA, highlighting the shortcomings of current treatment modalities. Following this, we conduct a detailed examination of various bioprinting technologies and discuss the wide range of biomaterials employed in DDS applications for OA therapy. Finally, by placing emphasis on their transformative potential, we discuss the incorporation of crucial cellular components such as chondrocytes and mesenchymal stem cells into bioprinted constructs, which play a pivotal role in promoting tissue regeneration and repair.Graphical Abstract: Keywords: drug delivery, bioprinting, osteoarthritis, biomaterials, translationhttps://www.dovepress.com/bioprinting-enabled-biomaterials-a-cutting-edge-strategy-for-future-os-peer-reviewed-fulltext-article-IJNdrug deliverybioprintingosteoarthritisbiomaterialstranslation
spellingShingle Yang X
Liu P
Zhang Y
Lu J
Zhao H
Bioprinting-Enabled Biomaterials: A Cutting-Edge Strategy for Future Osteoarthritis Therapy
International Journal of Nanomedicine
drug delivery
bioprinting
osteoarthritis
biomaterials
translation
title Bioprinting-Enabled Biomaterials: A Cutting-Edge Strategy for Future Osteoarthritis Therapy
title_full Bioprinting-Enabled Biomaterials: A Cutting-Edge Strategy for Future Osteoarthritis Therapy
title_fullStr Bioprinting-Enabled Biomaterials: A Cutting-Edge Strategy for Future Osteoarthritis Therapy
title_full_unstemmed Bioprinting-Enabled Biomaterials: A Cutting-Edge Strategy for Future Osteoarthritis Therapy
title_short Bioprinting-Enabled Biomaterials: A Cutting-Edge Strategy for Future Osteoarthritis Therapy
title_sort bioprinting enabled biomaterials a cutting edge strategy for future osteoarthritis therapy
topic drug delivery
bioprinting
osteoarthritis
biomaterials
translation
url https://www.dovepress.com/bioprinting-enabled-biomaterials-a-cutting-edge-strategy-for-future-os-peer-reviewed-fulltext-article-IJN
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