Patole Vinita, Swami Dhaneshwari, Ingavle Ganesh, Behere Isha, Ottoor Divya, Vyawahare Nikita, Jha Abhishek, Deshkar Sanjeevani, Undale Vaishali, Sanap Avinash, Kheur Supriya, Kumar Avinash
Department of Pharmaceutics, Dr. D. Y. Patil Institute of Pharmaceutical Sciences and Research, Pune, India.
Advanced Cell and Gene Therapy Manufacturing (GMP) Unit, NIHR Biomedical Research Centre Guy's and St Thomas' NHS Foundation Trust and King's College London, Clinical Research Facility, Guy's Hospital, London, UK.
J Biomater Sci Polym Ed. 2025 Jun;36(9):1189-1222. doi: 10.1080/09205063.2024.2439668. Epub 2025 Jan 6.
Recently, there has been a great interest in the development of innovative wound dressing materials based on natural bioactives, as they can accelerate the healing process and address the issues related to traditional wound dressings. The current study focuses on developing a novel derivative of guar gum (GG) and gallic acid (GA) using a simple, free radical-mediated polymerization reaction aimed at enhancing the antioxidant properties of GG. Multiple spectroscopic investigations were performed to validate the GA-GG conjugate. NMR and FTIR confirmed GA integration, UV spectroscopy indicated changes in electronic transition, DSC analysis suggested a reduction in crystallinity, and XRD revealed structural modifications. SEM revealed a porous structure that reflected its polymerized nature. Due to inadequate mechanical strength and film-forming ability of the synthesized GA-GG conjugate, polyelectrolyte complexation method using chitosan was explored to form a polyelectrolyte complex (PEC) film. The film exhibited a high swelling rate, excellent antioxidant properties, and was both hemocompatible and exhibited improved antimicrobial properties. , , and characterizations were performed to compare the performance of these biocomposite films to those of their counterparts. It promoted angiogenesis in the chick yolk sac membrane and demonstrated good cytocompatibility in cell proliferation studies on the viability of the L929 mouse fibroblast cell line. wound healing efficacy of the PEC film in wound closure was 94.5% as compared to the untreated disease control group ( < 0.001). This work highlights the development of an innovative GA-GG conjugate/chitosan PEC-based film with significant potential for wound healing applications.
近年来,基于天然生物活性物质开发创新型伤口敷料材料备受关注,因为它们可以加速愈合过程并解决传统伤口敷料相关的问题。当前的研究重点是通过简单的自由基介导聚合反应开发一种新型的瓜尔胶(GG)和没食子酸(GA)衍生物,旨在增强GG的抗氧化性能。进行了多项光谱研究以验证GA-GG共轭物。核磁共振(NMR)和傅里叶变换红外光谱(FTIR)证实了GA的整合,紫外光谱表明电子跃迁发生了变化,差示扫描量热法(DSC)分析表明结晶度降低,X射线衍射(XRD)显示结构发生了改变。扫描电子显微镜(SEM)显示出一种多孔结构,反映了其聚合性质。由于合成的GA-GG共轭物的机械强度和成膜能力不足,探索了使用壳聚糖的聚电解质络合方法来形成聚电解质复合物(PEC)膜。该膜表现出高溶胀率、优异的抗氧化性能,具有血液相容性且抗菌性能有所改善。进行了……、……和……表征,以比较这些生物复合膜与其对应物的性能。它促进了鸡胚卵黄囊膜中的血管生成,并在L929小鼠成纤维细胞系活力的细胞增殖研究中表现出良好的细胞相容性。与未处理的疾病对照组相比,PEC膜在伤口闭合方面的伤口愈合效果为94.5%(P < 0.001)。这项工作突出了一种创新的基于GA-GG共轭物/壳聚糖PEC的膜的开发,该膜在伤口愈合应用中具有巨大潜力。