Hybrid photo-crosslinked decellularized extracellular matrix scaffold from porcine Achilles tendon: a biocompatible and non-immunogenic matrix for tissue engineering

IF 6.1 3区 医学 Q1 MATERIALS SCIENCE, BIOMATERIALS
Shreeyash Shelar, Ujjwal Gupta, Mamta Kumari, Mohammed Shabib, Bitan Guchhait, Chandan Mandal, Santanu Kaity and Subhadeep Roy
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Abstract

A considerable number of xenogeneic tissues are still underutilised due to concerns about immunogenicity, biocompatibility, and structural integrity. Decellularized extracellular matrix (dECM) hydrogels are gaining popularity due to their ability to mimic natural biochemical cues and structural integrity required for tissue regeneration. In this study, we used pig tendon tissues, which are commonly discarded, to create photo-crosslinked dECM hydrogels. We created and comprehensively examined tendon-derived dECM hydrogels processed with three different decellularization techniques, assessing their physicochemical properties, biocompatibility, and immunogenicity. SEM, XRD, and FTIR were used to characterize the dECM hydrogel's structural and biochemical integrity. SEM demonstrated an intact collagenous architecture, while XRD proved the presence of a natural collagen fibrillar structure. The FTIR study revealed intact amide I and II bands, indicating minimal ECM disruption. Rheological experiments revealed good shear-thinning behaviour, which improves injectability. Furthermore, TGA verified thermal stability in the groups, and swelling experiments revealed consistent hydrogel stability, with CD exhibiting the largest equilibrium swelling due to improved water–polymer interaction without compromising flexibility. THP-1 cells were grown on dECM hydrogels to test biocompatibility and immunogenicity. Cellular morphology examination demonstrated that THP-1 cells cultivated on dECM hydrogels had good cell viability and structural integrity. Notably, the constant expression of CD14, a major monocyte surface marker, without any pro-inflammatory activation demonstrated the hydrogels' non-immunogenic character, implying a broader applicability. Our research confirms that dECM hydrogels generated from tendon are durable biomaterials that do not elicit an immune response. A biocompatible and non-immunogenic matrix is produced by the optimised decellularization approach, which has great potential for use in tissue engineering and regenerative medicine.

Abstract Image

杂交光交联猪跟腱脱细胞细胞外基质支架:用于组织工程的生物相容性和非免疫原性基质。
由于对免疫原性、生物相容性和结构完整性的担忧,相当数量的异种组织仍未得到充分利用。脱细胞细胞外基质(dECM)水凝胶由于其模拟自然生化信号和组织再生所需的结构完整性的能力而越来越受欢迎。在这项研究中,我们使用通常被丢弃的猪肌腱组织来制造光交联的dECM水凝胶。我们创建并全面检查了用三种不同的脱细胞技术处理的肌腱来源的dECM水凝胶,评估了它们的物理化学性质、生物相容性和免疫原性。利用SEM、XRD、FTIR等表征了dECM水凝胶的结构和生化完整性。SEM显示完整的胶原结构,而XRD证实存在天然胶原纤维结构。FTIR研究显示完整的酰胺I和II波段,表明最小的ECM破坏。流变试验表明,该材料具有良好的剪切减薄性能,提高了注射性能。此外,TGA验证了各组的热稳定性,膨胀实验显示了一致的水凝胶稳定性,其中CD表现出最大的平衡膨胀,这是由于水-聚合物相互作用的改善而不影响柔韧性。在dECM水凝胶上培养THP-1细胞,检测其生物相容性和免疫原性。细胞形态学检查表明,在dECM水凝胶上培养的THP-1细胞具有良好的细胞活力和结构完整性。值得注意的是,主要的单核细胞表面标志物CD14的持续表达,没有任何促炎激活,表明水凝胶具有非免疫原性,这意味着更广泛的适用性。我们的研究证实,由肌腱生成的dECM水凝胶是一种耐用的生物材料,不会引起免疫反应。通过优化的脱细胞方法制备了具有生物相容性和非免疫原性的基质,在组织工程和再生医学中具有很大的应用潜力。
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来源期刊
Journal of Materials Chemistry B
Journal of Materials Chemistry B MATERIALS SCIENCE, BIOMATERIALS-
CiteScore
11.50
自引率
4.30%
发文量
866
期刊介绍: Journal of Materials Chemistry A, B & C cover high quality studies across all fields of materials chemistry. The journals focus on those theoretical or experimental studies that report new understanding, applications, properties and synthesis of materials. Journal of Materials Chemistry A, B & C are separated by the intended application of the material studied. Broadly, applications in energy and sustainability are of interest to Journal of Materials Chemistry A, applications in biology and medicine are of interest to Journal of Materials Chemistry B, and applications in optical, magnetic and electronic devices are of interest to Journal of Materials Chemistry C.Journal of Materials Chemistry B is a Transformative Journal and Plan S compliant. Example topic areas within the scope of Journal of Materials Chemistry B are listed below. This list is neither exhaustive nor exclusive: Antifouling coatings Biocompatible materials Bioelectronics Bioimaging Biomimetics Biomineralisation Bionics Biosensors Diagnostics Drug delivery Gene delivery Immunobiology Nanomedicine Regenerative medicine & Tissue engineering Scaffolds Soft robotics Stem cells Therapeutic devices
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