Talodthaisong Chanon, Patramanon Rina, Thammawithan Saengrawee, Lapmanee Sarawut, Maikaeo Lamai, Sricharoen Phitchan, Khongkow Mattaka, Namdee Katawut, Jantimaporn Angkana, Kayunkid Navaphun, Hutchison James A, Kulchat Sirinan
Materials Chemistry Research Center, Department of Chemistry and Center of Excellence for Innovation in Chemistry, Faculty of Science, Khon Kaen University, Khon Kaen, 40002, Thailand.
Department of Biochemistry, Faculty of Science, Khon Kaen University, Khon Kaen, 40002, Thailand.
Macromol Biosci. 2023 Dec;23(12):e2300250. doi: 10.1002/mabi.202300250. Epub 2023 Aug 16.
A shear-thinning and self-healing hydrogel based on a gelatin biopolymer is synthesized using vanillin and Fe as dual crosslinking agents. Rheological studies indicate the formation of a strong gel found to be injectable and exhibit rapid self-healing (within 10 min). The hydrogels also exhibited a high degree of swelling, suggesting potential as wound dressings since the absorption of large amounts of wound exudate, and optimum moisture levels, lead to accelerated wound healing. Andrographolide, an anti-inflammatory natural product is used to fabricate silver nanoparticles, which are characterized and composited with the fabricated hydrogels to imbue them with anti-microbial activity. The nanoparticle/hydrogel composites exhibit activity against Escherichia coli, Staphylococcus aureus, and Burkholderia pseudomallei, the pathogen that causes melioidosis, a serious but neglected disease affecting southeast Asia and northern Australia. Finally, the nanoparticle/hydrogel composites are shown to enhance wound closure in animal models compared to the hydrogel alone, confirming that these hydrogel composites hold great potential in the biomedical field.
以明胶生物聚合物为基础,使用香草醛和铁作为双交联剂合成了一种具有剪切变稀和自愈性能的水凝胶。流变学研究表明形成了一种强凝胶,该凝胶可注射且具有快速自愈能力(10分钟内)。水凝胶还表现出高度的溶胀性,这表明其具有作为伤口敷料的潜力,因为吸收大量伤口渗出液以及保持最佳水分水平可加速伤口愈合。穿心莲内酯,一种抗炎天然产物,用于制备银纳米颗粒,对其进行表征并与制备的水凝胶复合,使其具有抗菌活性。纳米颗粒/水凝胶复合材料对大肠杆菌、金黄色葡萄球菌和伯克霍尔德菌(引起类鼻疽病的病原体,类鼻疽病是一种影响东南亚和澳大利亚北部的严重但被忽视的疾病)具有活性。最后,与单独的水凝胶相比,纳米颗粒/水凝胶复合材料在动物模型中显示出能增强伤口闭合,证实这些水凝胶复合材料在生物医学领域具有巨大潜力。