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Modification of Collagen Derivatives with Water-Soluble Polymers for the Development of Cross-Linked Hydrogels for Controlled Release

机译:用水溶性聚合物修饰胶原蛋白衍生物以开发用于控制释放的交联水凝胶

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摘要

Novel cross-linked hydrogels were synthesized as potential materials for the development of smart biofertilizers. For this purpose, hydrogels were prepared using collagen hydrolysate recovered from tannery waste. The water-soluble polymer poly(sodium 4-styrenesulfonate-co-glycidyl methacrylate) (P(SSNa-co-GMAx)) was among others used for the cross-linking reaction that combined hydrophilic nature with epoxide groups. The synthetic procedure was thoroughly investigated in order to ensure high percentage of epoxide groups in combination with water-soluble behavior. The copolymer did not show cytotoxicity against normal lung, skin fibroblasts, or nasal polyps fibroblasts. Through the present work, we also present the ability to control the properties of cross-linked hydrogels by altering copolymer’s composition and cross-linking parameters (curing temperature and time). Hydrogels were then studied in terms of water-uptake capacity for a period up to six days. The techniques Proton Nuclear Magnetic Resonance ( H NMR), Thermogravimetric Analysis (TGA), Size Exclusion Chromatography (SEC), and Attenuated Total Reflection Fourier Transform Infrared Spectroscopy (ATR-FTIR) were applied for the characterization of the synthesized copolymers and the cross-linked hydrogels. Three samples of biofertilizers based on collagen hydrolysate functionalized with P(SSNa-co-GMAx) and starch and having nutrients encapsulated (N, P, K) were prepared and characterized by physical–chemical analysis and Energy Dispersive X-ray analysis-Scanning Electron Microscope (EDAX-SEM) in terms of microstructure. Preliminary tests for application as fertilizers were performed including the release degree of oxidable organic compounds.
机译:合成了新型的交联水凝胶,作为开发智能生物肥料的潜在材料。为此,使用从制革厂废物中回收的胶原蛋白水解物制备水凝胶。水溶性聚合物聚(4-苯乙烯磺酸钠-共甲基丙烯酸缩水甘油酯)(P(SSNa-co-GMAx))用于结合亲水性和环氧基的交联反应。为了确保高比例的环氧基团结合水溶性行为,对合成步骤进行了彻底的研究。该共聚物对正常的肺,皮肤成纤维细胞或鼻息肉成纤维细胞没有细胞毒性。通过当前的工作,我们还展示了通过改变共聚物的组成和交联参数(固化温度和时间)来控制交联水凝胶性能的能力。然后根据吸水能力研究水凝胶长达六天。质子核磁共振(H NMR),热重分析(TGA),尺寸排阻色谱(SEC)和衰减全反射傅立叶变换红外光谱(ATR-FTIR)技术用于表征合成共聚物和交叉连接的水凝胶。制备了三份基于被P(SSNa-co-GMAx)和淀粉官能化的胶原蛋白水解产物并包封了养分(N,P,K)的生物肥料样品,并通过理化分析和能量色散X射线分析-扫描电子进行了表征。显微镜(EDAX-SEM)的微观结构。进行了用作肥料的初步测试,包括可氧化有机化合物的释放度。

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