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用于皮肤伤口愈合的双层混合生物基质的特性研究,以备未来使用。

Characterization of Dual-Layer Hybrid Biomatrix for Future Use in Cutaneous Wound Healing.

作者信息

Zulkiflee Izzat, Amirrah Ibrahim N, Fadilah Nur Izzah Md, Wee M F Mohd Razip, Yusop Salma Mohamad, Maarof Manira, Fauzi Mh Busra

机构信息

Centre for Tissue Engineering and Regenerative Medicine, Faculty of Medicine, Universiti Kebangsaan Malaysia, Jalan Yaakob Latiff, Bandar Tun Razak, Cheras, Kuala Lumpur 56000, Malaysia.

Institute of Microengineering and Nanoelectrics, Universiti Kebangsaan Malaysia, Bangi 43600, Malaysia.

出版信息

Materials (Basel). 2023 Jan 29;16(3):1162. doi: 10.3390/ma16031162.

Abstract

A skin wound without immediate treatment could delay wound healing and may lead to death after severe infection (sepsis). Any interruption or inappropriate normal wound healing, mainly in these wounds, commonly resulted in prolonged and excessive skin contraction. Contraction is a common mechanism in wound healing phases and contributes 40-80% of the original wound size post-healing. Even though it is essential to accelerate wound healing, it also simultaneously limits movement, mainly in the joint area. In the worst-case scenario, prolonged contraction could lead to disfigurement and loss of tissue function. This study aimed to fabricate and characterise the elastin-fortified gelatin/polyvinyl alcohol (PVA) film layered on top of a collagen sponge as a bilayer hybrid biomatrix. Briefly, the combination of halal-based gelatin (4% (/)) and PVA ((4% (/)) was used to fabricate composite film, followed by the integration of poultry elastin (0.25 mg/mL) and 0.1% (/) genipin crosslinking. Furthermore, further analysis was conducted on the composite bilayer biomatrix's physicochemical and mechanical strength. The bilayer biomatrix demonstrated a slow biodegradation rate (0.374967 ± 0.031 mg/h), adequate water absorption (1078.734 ± 42.33%), reasonable water vapour transmission rate (WVTR) (724.6467 ± 70.69 g/m h) and porous (102.5944 ± 28.21%). The bilayer biomatrix also exhibited an excellent crosslinking degree and was mechanically robust. Besides, the elastin releasing study presented an acceptable rate post-integration with hybrid biomatrix. Therefore, the ready-to-use bilayer biomatrix will benefit therapeutic effects as an alternative treatment for future diabetic skin wound management.

摘要

未经及时处理的皮肤伤口可能会延迟伤口愈合,并可能在严重感染(脓毒症)后导致死亡。任何对正常伤口愈合的干扰或不当处理,主要是在这些伤口中,通常会导致皮肤过度且长期收缩。收缩是伤口愈合阶段的常见机制,在愈合后占原始伤口大小的40 - 80%。尽管加速伤口愈合至关重要,但它同时也会限制活动,主要是在关节部位。在最糟糕的情况下,长期收缩可能导致毁容和组织功能丧失。本研究旨在制备并表征一种弹性蛋白强化的明胶/聚乙烯醇(PVA)薄膜,该薄膜层叠在胶原海绵之上,形成一种双层混合生物基质。简而言之,使用基于清真的明胶(4%(/))和PVA(4%(/))的组合来制备复合薄膜,随后加入家禽弹性蛋白(0.25 mg/mL)并进行0.1%(/)京尼平交联。此外,还对复合双层生物基质的物理化学性质和机械强度进行了进一步分析。该双层生物基质显示出缓慢的生物降解速率(0.374967 ± 0.031 mg/h)、充足的吸水性(达1078.734 ± 42.33%)、合理的水蒸气透过率(WVTR)(724.6467 ± 70.69 g/m² h)以及多孔性(102.5944 ± 28.21%)。该双层生物基质还表现出优异的交联度且机械性能强劲。此外,弹性蛋白释放研究表明与混合生物基质整合后其释放速率是可接受的。因此,这种即用型双层生物基质作为未来糖尿病皮肤伤口管理的替代治疗方法将有利于治疗效果展示。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2aaa/9919111/6776a3e77e2a/materials-16-01162-g001.jpg

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