Synergistic integration of bio-mineralized nanoparticles and porous microsphere scaffolds for dual bioactive delivery in bone regeneration
文献类型: 外文期刊
作者: Jian He;Liang Qiao;Qizhi Fu;Xiangchun Zhang;Jiayu Liu;Sanqiang Li;Xulin Hu
作者机构:
关键词: Antibacterial bone scaffolds;Magnesium;Porous microspheres;Self-assembled biomimetic mineralized nanoparticles;Tea polyphenols
期刊名称: Journal of Controlled Release
ISSN: 0168-3659
年卷期: 2025 年 386 卷
页码:
收录情况: SCIE(2025版) ; ; EI(2025版)
摘要: Conventional bone grafts face challenges in clinical applications, including donor shortages, immunological rejection, and mismatched degradation rates. This work introduces a porous microsphere scaffold loaded with self-assembled tea polyphenolic‑magnesium biomineralized nanoparticles to synergistically enhance antibacterial and osteogenic properties through a dual-factor spatiotemporal controlled release approach. Employing a biomimetic mineralization mechanism that mimics natural bone mineral formation, these nanoparticles integrate tea polyphenols with magnesium ions. This method achieves pH-responsive release kinetics: the antimicrobial component releases more effectively in mildly acidic infection microenvironments, while the mineral phase acts as a buffer against burst release, maintaining consistent local medication concentrations. Complementing this sustained-release behavior, polytrimethylene carbonate microspheres degrade via surface erosion, thereby extending therapeutic efficacy through dual “degradation-release” regulation. In vitro studies demonstrated effective eradication of methicillin-resistant Staphylococcus aureus biofilms, along with significant enhancement of osteoblast proliferation, differentiation, and mineralization activities by the scaffold. The scaffold's porous structure mimics cancellous bone, providing an appropriate compression modulus (∼195 MPa), supporting cell infiltration, and facilitating nutrient transport, thereby simulating the three-dimensional architecture of native bone tissue. Moreover, the scaffold modulates macrophage polarization toward the M2 phenotype and stimulates the secretion of anti-inflammatory cytokines (IL-37, IL-10), thereby fostering a favorable bone immune microenvironment. This work establishes a multifunctional bone tissue engineering platform by integrating spatiotemporal delivery (dual controlled release) with biomimetic mineral stabilization. By addressing infection control, promoting bone regeneration, and modulating immune responses simultaneously, this scaffold presents a promising solution for complicated infected bone defects.
分类号:
- 相关文献
作者其他论文 更多>>
-
Cyclodextrin inclusion complex enhances solubility and antimicrobial activity of chlortetracycline hydrochloride
作者:Chao Zhang;Lankun Yi;Yubin Bai;Xiaorong Yang;Jian He;Yuting Bai;Yong Zhang;Bing Li;Jiyu Zhang
关键词:Antibacterial activity in vivo and in vitro;Chlortetracycline hydrochloride;Freeze drying;Hydroxypropyl-β-cyclodextrin;Inclusion complex;Molecular docking
-
Multifunctional chitosan-hydroxyapatite-polyphenol nanoparticles from 3D printed bone scaffolds: Controlled release and therapeutic properties
作者:Jiafang Chen;Liang Qiao;Shuyi Zhao;Lingna Dai;Juanjuan Guo;Qizhi Fu;Jiancheng Liu;Mingchuan Yang;Sanqiang Li;Xiangchun Zhang;Jian He
关键词:3D-printed scaffolds;Immunomodulatory;Macrophage polarization;MRSA;Osteogenic differentiation
-
Bioavailability of Tea Polyphenols: A Key Factor in Understanding Their Mechanisms of Action In Vivo and Health Effects
作者:Mingchuan Yang;Xiangchun Zhang;Chung S. Yang
关键词:bioavailability;gut microbiota;health effects;mechanisms;metabolism;tea polyphenols
-
Recent advances in tea and other plant polyphenol biomaterials for antibacterial and disease treatment
作者:Shanshan Wang;Ziqi Wang;Zuguang Li;Xiangchun Zhang;Hongping Chen
关键词:Antimicrobial;Biomaterials;Drug delivery;Plant polyphenols
-
Photodegradation mechanisms of pyrrolizidine alkaloids and risk prediction of their degradation products based on high resolution mass spectrometry and theoretical calculations
作者:Xuchen Huang;Yunfeng Chai;Shiqi Li;Yuexin Yi;Chen Wang;Guicen Ma;Zhenxia Hao;Xiangchun Zhang;Pengyang Li;Jianjie Fu;Hongping Chen
关键词:Hepatotoxic pyrrolizidine alkaloids;High-resolution mass spectrometry (HRMS);Photodegradation mechanism;Photodegradation products;Toxicity prediction
-
Personalized design enzyme-like activity theanine coated Pt clusters for catalytic damage of bacterial and infection management
作者:Chao Xu;Juanjuan Guo;Qinqin Zheng;Mingchuan Yang;Zhenduo Han;Na Zhang;Chunyu Zhang;Hongping Chen;Xiangchun Zhang
关键词:Antibacterial mechanism;Biofilms;Enzyme-like catalytic activity;Pt cluster
-
Gut microbiota-related glutathione metabolism is key mechanism for sulforaphane ameliorating ulcerative colitis
作者:Yanan Lv;Jian He;Jing Peng;Hao Li;Yayuan Yang;Zeyi Liang;Wenxiang Shen;Ghasem Hosseini Salekdeh;Xuezhi Ding
关键词:Gut microbiota and metabolites;Intestinal barrier;MAPK/NF-κB signaling pathway;Sulforaphane