Kaur Kulwinder, Singh K J, Anand Vikas, Bhatia Gaurav, Kaur Raminderjit, Kaur Manpreet, Nim Lovedeep, Arora Daljit Singh
Department of Physics, Guru Nanak Dev University, Amritsar 143005, India.
Department of Physics, Guru Nanak Dev University, Amritsar 143005, India.
Mater Sci Eng C Mater Biol Appl. 2017 Feb 1;71:780-790. doi: 10.1016/j.msec.2016.10.055. Epub 2016 Oct 26.
Poly(1, 4-butyl succinate) extended 1, 6-diisocyanatohexane (PBSu-DCH) polymers and Polymethylmethacrylate (PMMA) scaffolds decorated with nano hydroxyl apatite have been prepared and characterized for regeneration of bone in cranio-maxillofacial region. Synthesized scaffolds revealed good response in bone regeneration and excellent cell viability in comparison to commercial available glass plate, which lead to better proliferation of MG-63 cell lines. Additionally, they demonstrate high porosity and excellent water retention ability. Moreover, controlled degradation (in pH=7.4) and sustained drug release in pH (4.5 and 7.4) are advantages of these scaffolds to serve as delivery vehicles for therapeutic drugs. Samples also provide the protection against Escherichia coli and Methicillin Resistant Staphylococcus aureus microorganisms which can be helpful for quick recovery of the patient. In-vitro inflammatory response has been assessed via adsorption of human plasma/serum proteins on the surface of the scaffolds. Results suggest that prepared scaffolds have good bone regeneration ability and provide friendly environment for the cell growth with the additional advantage of protection of the surrounding tissues from microbial infection. With all these features, it is speculated that these scaffolds will have wide utility in the area of tissue engineering and regenerative medicine.
已制备了聚(1,4 - 丁基琥珀酸酯)扩链的1,6 - 二异氰酸己酯(PBSu - DCH)聚合物以及装饰有纳米羟基磷灰石的聚甲基丙烯酸甲酯(PMMA)支架,并对其在颅颌面区域骨再生方面进行了表征。与市售玻璃板相比,合成的支架在骨再生方面显示出良好的反应以及优异的细胞活力,这导致MG - 63细胞系有更好的增殖。此外,它们表现出高孔隙率和出色的保水能力。而且,在pH = 7.4时可控降解以及在pH(4.5和7.4)时持续药物释放是这些支架作为治疗药物递送载体的优势。样品还对大肠杆菌和耐甲氧西林金黄色葡萄球菌微生物有防护作用,这有助于患者快速康复。已通过支架表面对人血浆/血清蛋白的吸附来评估体外炎症反应。结果表明,制备的支架具有良好的骨再生能力,为细胞生长提供了友好的环境,还有保护周围组织免受微生物感染的额外优势。具备所有这些特性,推测这些支架在组织工程和再生医学领域将有广泛的应用。