Department of Biotechnology, Dr. B. R. Ambedkar National Institute of Technology, Jalandhar, Punjab, 1440081, India.
Chemical Biology Unit, Institute of Nanoscience and Technology, Sector 81, Mohali, Punjab, 140306, India.
Mol Biol Rep. 2024 Apr 5;51(1):482. doi: 10.1007/s11033-024-09394-9.
Natural bone grafts are the highly preferred materials for restoring the lost bone, while being constrained of donor availability and risk of disease transmission. As a result, tissue engineering is emerging as an efficacious and competitive technique for bone repair. Bone tissue engineering (TE) scaffolds to support bone regeneration and devoid of aforesaid limitations are being vastly explored and among these the avian eggshell membrane has drawn attention for TE owing to its low immunogenicity, similarity with the extracellular matrix, and easy availability.
In this study, the development of bone ingrowth support system from avian eggshell membrane derived collagen hydrolysates (Col-h) is reported. The hydrolysate, cross-linked with glutaraldehyde, was developed into hydrogels with poly-(vinyl alcohol) (PVA) by freeze-thawing and further characterized with ATR-FTIR, XRD, FESEM. The biodegradability, swelling, mechanical, anti-microbial, and biocompatibility evaluation were performed further for the suitability in bone regeneration. The presence of amide I, amide III, and -OH functional groups at 1639 cm,1264 cm, and 3308 cm respectively and broad peak between 16°-21° (2θ) in XRD data reinstated the composition and form.
The maximum ratio of Col-h/PVA that produced well defined hydrogels was 50:50. Though all the hydrogel matrices alluded towards their competitive attributes and applicability towards restorative bone repair, the hydrogel with 40:60 ratios showed better mechanical strength and cell proliferation than its counterparts. The prominent E. coli growth inhibition by the hydrogel matrices was also observed, along with excellent biocompatibility with MG-63 osteoblasts. The findings indicate strongly the promising application of avian eggshell-derived Col-h in supporting bone regeneration.
天然骨移植物是恢复丢失骨的首选材料,但受到供体可用性和疾病传播风险的限制。因此,组织工程作为一种有效的、有竞争力的骨修复技术正在兴起。为了支持骨再生并避免上述限制,人们正在广泛探索骨组织工程 (TE) 支架,其中,由于其免疫原性低、与细胞外基质相似以及易于获得,禽类蛋壳膜在 TE 中引起了关注。
本研究报告了从禽类蛋壳衍生的胶原蛋白水解物 (Col-h) 开发骨内生长支持系统的情况。将水解物与戊二醛交联,通过冻融法与聚乙烯醇 (PVA) 制成水凝胶,并通过 ATR-FTIR、XRD、FESEM 进一步进行特征描述。进一步进行了生物降解性、溶胀性、机械性能、抗菌性和生物相容性评估,以评估其在骨再生中的适用性。在 XRD 数据中,酰胺 I、酰胺 III 和-OH 官能团分别位于 1639 cm、1264 cm 和 3308 cm 处,2θ 之间的宽峰为 16°-21°,这表明存在组成和形式。
产生明确定义的水凝胶的 Col-h/PVA 最大比例为 50:50。尽管所有水凝胶基质都暗示了它们的竞争属性和在修复性骨修复中的适用性,但与其他水凝胶基质相比,40:60 比例的水凝胶具有更好的机械强度和细胞增殖能力。还观察到水凝胶基质对大肠杆菌生长的显著抑制作用,以及与 MG-63 成骨细胞的出色生物相容性。这些发现强烈表明禽类蛋壳衍生的 Col-h 在支持骨再生方面具有广阔的应用前景。