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先进的抗菌和无菌等离子体聚丙烯接枝穆加(柞蚕)丝作为缝合生物材料的开发。

Development of advanced antimicrobial and sterilized plasma polypropylene grafted muga (Antheraea assama) silk as suture biomaterial.

作者信息

Gogoi Dolly, Choudhury Arup Jyoti, Chutia Joyanti, Pal Arup Ratan, Khan Mojibur, Choudhury Manash, Pathak Pallabi, Das Gouranga, Patil Dinkar S

机构信息

Physical Sciences Division, Institute of Advanced Study in Science and Technology, Guwahati, 781035, India.

出版信息

Biopolymers. 2014 Apr;101(4):355-65. doi: 10.1002/bip.22369.

Abstract

Surface modification of silk fibroin (SF) materials using environmentally friendly and non-hazardous process to tailor them for specific application as biomaterials has drawn a great deal of interest in the field of biomedical research. To further explore this area of research, in this report, polypropylene (PP) grafted muga (Antheraea assama) SF (PP-AASF) suture is developed using plasma treatment and plasma graft polymerization process. For this purpose, AASF is first sterilized in argon (Ar) plasma treatment followed by grafting PP onto its surface. AASF is a non-mulberry variety having superior qualities to mulberry SF and is still unexplored in the context of suture biomaterial. AASF, Ar plasma treated AASF (AASFAr) and PP-AASF are subjected to various characterization techniques for better comparison and the results are attempted to correlate with their observed properties. Excellent mechanical strength, hydrophobicity, antibacterial behavior, and remarkable wound healing activity of PP-AASF over AASF and AASFAr make it a promising candidate for application as sterilized suture biomaterial.

摘要

使用环保且无害的工艺对丝素蛋白(SF)材料进行表面改性,以使其适合作为生物材料的特定应用,这在生物医学研究领域引起了极大的兴趣。为了进一步探索这一研究领域,在本报告中,采用等离子体处理和等离子体接枝聚合工艺制备了聚丙烯(PP)接枝的穆加(柞蚕)丝素蛋白(PP-AASF)缝线。为此,首先在氩(Ar)等离子体处理中对AASF进行灭菌,然后将PP接枝到其表面。AASF是一种非桑蚕丝品种,具有优于桑蚕丝素蛋白的品质,在缝线生物材料方面仍未得到充分探索。对AASF、经Ar等离子体处理的AASF(AASFAr)和PP-AASF进行各种表征技术分析,以便进行更好的比较,并尝试将结果与它们观察到的性能相关联。与AASF和AASFAr相比,PP-AASF具有优异的机械强度、疏水性、抗菌性能和显著的伤口愈合活性,使其成为一种有前途的无菌缝线生物材料应用候选者。

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