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首页> 外文期刊>Journal of biomaterials applications >Genipin as a sporicidal agent for the treatment of cortical bone allografts
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Genipin as a sporicidal agent for the treatment of cortical bone allografts

机译:Genipin作为杀菌剂,用于治疗皮质骨同种异体移植

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Introduction: Microbial bioburden in bone allografts can be reduced by gamma radiation; however, the radiation compromises collagen and increases the risk of graft failure. Genipin is an agent that may reduce bioburden by chemical crosslinking without causing mechanical detriment or cytotoxicity. Methods: To evaluate genipin's ability to penetrate cortical bone while maintaining sporicidal activity, Bacillus subtilis spore strips were isolated between slices of bovine femoral cortical bone and immersed in genipin solutions for up to one week; spore viability was assessed with media-based assays. The mechanical effects of genipin treatment were assessed by performing three-point bending tests on genipin-treated cortical beams. Cytotoxicity studies were conducted by evaluating the adhesion and proliferation of murine MC3T3-E1 (P21) preosteoblasts on cortical bone slices which were treated with genipin and rinsed to different extents. Results: Genipin successfully penetrated cortical bone slices and sterilized B. subtilis populations after 48 hours (p>0.05) and one week (p<0.05). Genipin-treated cortical beams demonstrated dose-dependent increases in yield strain (p=0.02) and resilience (p<0.01), whereas other mechanical properties were not affected by genipin treatment. Seeding cells onto inadequately rinsed genipin-treated bones proved cytotoxic. However, with adequate post-treatment rinsing of the residual genipin, cell adhesion and proliferation was comparable to phosphate-buffered saline-treated controls (no genipin). Conclusions: Genipin solutions can sterilize bacterial spore populations entrapped within the continuum of bone tissue while preserving mechanical properties of bone and allowing cell adhesion and proliferation. Provided that antimicrobial effects seen with bacterial spores extend broadly to all microbial and viral species, genipin holds strong potential for bone allograft sterilization.
机译:简介:γ射线可减少同种异体骨中的微生物负荷。但是,辐射会损害胶原蛋白并增加移植失败的风险。 Genipin是一种可以通过化学交联减少生物负荷而不引起机械损害或细胞毒性的物质。方法:为评估京尼平在保持杀孢子活性的同时穿透皮质骨的能力,在牛股皮质骨切片之间分离枯草芽孢杆菌孢子条,并将其浸入京尼平溶液中长达1周。用基于培养基的测定法评估孢子的生存力。通过对经过Genipin处理的皮质束进行三点弯曲测试,评估了Genipin处理的机械效果。通过评估鼠MC3T3-E1(P21)前成骨细胞在用genipin处理并漂洗至不同程度的皮质骨切片上的粘附和增殖来进行细胞毒性研究。结果:Genipin在48小时(p> 0.05)和1周(p <0.05)后成功穿透了皮质骨切片和无菌枯草芽孢杆菌种群。 Genipin处理的皮质束表现出剂量应变(p = 0.02)和弹性(p <0.01)随剂量的增加,而其他机械性能不受Genipin处理的影响。将细胞接种到未充分冲洗的,经京尼平处理过的骨头上证明具有细胞毒性。但是,用残留的京尼平进行充分的后处理漂洗,细胞粘附和增殖与磷酸盐缓冲液处理过的对照(无京尼平)相当。结论:Genipin溶液可以对截留在骨组织连续区内的细菌孢子群进行杀菌,同时保留骨骼的机械特性并允许细胞粘附和增殖。只要细菌孢子具有的抗菌作用广泛地扩展到所有微生物和病毒物种,Genipin就有很强的潜力用于骨同种异体移植灭菌。

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