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可注射明胶-棕榈酰-GDPH水凝胶作为未来皮肤再生的生物墨水:物理化学表征和细胞毒性评估。

Injectable Gelatin-Palmitoyl-GDPH Hydrogels as Bioinks for Future Cutaneous Regeneration: Physicochemical Characterization and Cytotoxicity Assessment.

作者信息

Nizam Aifa Asyhira Khairul, Md Fadilah Nur Izzah, Ahmad Haslina, Maarof Manira, Fauzi Mh Busra

机构信息

Department of Tissue Engineering and Regenerative Medicine, Faculty of Medicine, Universiti Kebangsaan Malaysia, Cheras, Kuala Lumpur 56000, Malaysia.

Advance Bioactive Materials-Cells UKM Research Group, Universiti Kebangsaan Malaysia, Bangi 43600, Selangor, Malaysia.

出版信息

Polymers (Basel). 2024 Dec 27;17(1):41. doi: 10.3390/polym17010041.

Abstract

Tissue engineering and regenerative medicine have made significant breakthroughs in creating complex three-dimensional (3D) constructs that mimic human tissues. This progress is largely driven by the development of hydrogels, which enable the precise arrangement of biomaterials and cells to form structures resembling native tissues. Gelatin-based bioinks are widely used in wound healing due to their excellent biocompatibility, biodegradability, non-toxicity, and ability to accelerate extracellular matrix formation. However, the role of a novel fatty acid conjugated tetrapeptide, palmitic acid-glycine-aspartic acid-proline-histidine (palmitoyl-GDPH), in enhancing hydrogel performance with human dermal fibroblasts (HDFs) concerning cell survival, proliferation, growth, and metabolism remains poorly understood. This study fabricated gelatin-palmitoyl-GDPH hydrogels at various concentrations (GE_GNP_ELS_PAL12.5 and GE_GNP_ELS_PAL25) using an injectable method and preliminary extrusion-based 3D bioprinting at 24 °C. Physicochemical characterization revealed superior water absorption, biocompatibility, and stability, aligning with optimal wound-healing criteria. In vitro cytotoxicity assays demonstrated >90% cell viability of HDFs cultured on these scaffolds for five days. These results highlight their ability to promote cell survival, proliferation, and adhesion, establishing them as strong contenders for wound healing. This study underscores the potential of gelatin-palmitoyl-GDPH hydrogels as effective bioinks for 3D bioprinting, offering a promising platform for skin tissue engineering and regenerative medicine.

摘要

组织工程和再生医学在创建模拟人体组织的复杂三维(3D)结构方面取得了重大突破。这一进展在很大程度上是由水凝胶的发展推动的,水凝胶能够精确排列生物材料和细胞,以形成类似于天然组织的结构。基于明胶的生物墨水因其优异的生物相容性、生物可降解性、无毒性以及加速细胞外基质形成的能力而被广泛应用于伤口愈合。然而,一种新型脂肪酸共轭四肽,棕榈酸-甘氨酸-天冬氨酸-脯氨酸-组氨酸(棕榈酰-GDPH),在增强水凝胶与人类真皮成纤维细胞(HDFs)在细胞存活、增殖、生长和代谢方面的性能方面的作用仍知之甚少。本研究在24℃下使用可注射方法和基于初步挤压的3D生物打印技术制备了不同浓度(GE_GNP_ELS_PAL12.5和GE_GNP_ELS_PAL25)的明胶-棕榈酰-GDPH水凝胶。物理化学表征显示出优异的吸水性、生物相容性和稳定性,符合最佳伤口愈合标准。体外细胞毒性试验表明,在这些支架上培养五天的HDFs细胞活力>90%。这些结果突出了它们促进细胞存活、增殖和黏附的能力,使其成为伤口愈合的有力竞争者。本研究强调了明胶-棕榈酰-GDPH水凝胶作为3D生物打印有效生物墨水的潜力,为皮肤组织工程和再生医学提供了一个有前景的平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e38e/11722577/16f370494088/polymers-17-00041-g001.jpg

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