首页|Magnesium-reinforced Electrospun Synthetic-polymer Nanofibers Designed for Promoting Tissue Growth

Magnesium-reinforced Electrospun Synthetic-polymer Nanofibers Designed for Promoting Tissue Growth

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The creation of 3D nanofibers offering desirable functions for bone regeneration is developed due to the latest improvisa-tions to the electrospinning technique.Synthetic polymers are among the best choices for medical usage due to their lower costs,high tensile properties,and ease of spinnability compared to natural polymers.In this communication,we report a series of interventions to polymers modified with Mg-based fillers for ideal tissue engineering applications.The literature survey indicated that these filler materials(e.g.,nano-sized particles)enhanced biocompatibility,antibacterial activity,tensile strength,and anti-corrosive properties.This review discusses electrospinning parameters,properties,and applica-tions of the poly(ε-caprolactone),poly(lactic acid),poly(3-hydroxybutyric acid-co-3-hydroxy valeric acid),polyurethane,and poly(vinyl pyrrolidone)nanofibers when modified with Mg-based fillers.This report encourages researchers to use synthetic polymers with Mg as fillers and validate them for tissue engineering applications.

Bone regenerationMagnesiumNanofibersTissue engineering

Muheeb Rafiq、Anjum Hamid Rather、Rumysa Saleem Khan、Taha Umair Wani、Haseeb A.Khan、Abdullah S.Alhomida、Faheem A.Sheikh

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Nanostructured and Biomimetic Lab,Department of Nanotechnology,University of Kashmir Hazratbal,Srinagar,Jammu and Kashmir 190006,India

Non-Clinical Evaluation Center,Biomedical Research Institute,Jeonbuk National University Hospital,Jeonju,Jeollabuk-do 54907,South Korea

College of Pharmacy and Research Institute of Pharmaceutical Sciences,Gyeongsang National University,Jinju 52828,South Korea

Research Chair for Biomedical Applications of Nanomaterials,Department of Biochemistry,College of Science,King Saud University,Riyadh 11451,Saudi Arabia

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Council of Scientific & Industrial Research(CSIR)

220846/20/EMR-Ⅱ

2024

仿生工程学报(英文版)
吉林大学

仿生工程学报(英文版)

CSTPCDEI
影响因子:0.837
ISSN:1672-6529
年,卷(期):2024.21(3)
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