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Raman probing of molecular interactions of alginate biopolymers with cells

机译:海藻酸盐生物聚合物与细胞分子相互作用的拉曼探测

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Abstract: The biological polymers extracted from brown algae, alginates, are novel materials in biotechnology and biomedicine. Their ability to form viscous gels is used to immobilize or encapsulate yeast, enzymes, living cells and drugs. Calcium-alginate fibers are extensively used in wound dressings since exhibit antihaemostatic and healing properties. The problem with alginate-made dressings in surgery is their slow biodegradability: if entrapped within tissues, they can induce a local cellular recruitment with an inflammatory response contemporaneous to the resorption phase. In part, this problem is a consequence of poor solubility of the calcium alginates in water. Although calcium alginate fibers can exchange calcium ions with sodium ions from the wound exudate to create a calcium/sodium alginate fibers, the residual alginates are thought to be not totally degradable in vivo. Rapid and non- destructive characterization of series of the crude alginates and calcium alginate fibers has been performed using Raman spectroscopy with near IR excitation. Study of structural organization of the polymeric chains within calcium alginate fibers have been previously reported as made by confocal Raman multispectral imaging (CRMSI) in visible. Here, the Raman approach has been used to monitor the ion exchange reactions for different types of alginates and their salts in vitro. For in vivo evaluation, histological sections of alginate-treated rat tissue have been analyzed by light microscopy and CRMSI. The in vitro Raman modeling and the histochemical mapping were a necessary precursor for application of the Raman microprobe to follow in a non-invasive way the alginate-cell molecular interactions in rat tissue. !37
机译:摘要:从褐藻中提取的生物聚合物藻酸盐是生物技术和生物医学领域的新型材料。它们形成粘性凝胶的能力用于固定或封装酵母,酶,活细胞和药物。海藻酸钙纤维由于具有止血和愈合特性而被广泛用于伤口敷料中。藻酸盐制成的敷料在手术中的问题在于它们的生物降解速度慢:如果被组织包埋,它们会诱导局部细胞募集,并伴有吸收阶段的炎症反应。部分地,该问题是藻酸钙在水中的不良溶解性的结果。尽管海藻酸钙纤维可以与伤口渗出液中的钠离子交换钙离子,从而形成海藻酸钙/钠纤维,但是残留的海藻酸被认为不能在体内完全降解。使用近红外激发的拉曼光谱已经对粗藻酸盐和藻酸钙纤维系列进行了快速且无损的表征。藻酸钙纤维内聚合物链结构组织的研究先前已报道为通过可见光共焦拉曼多光谱成像(CRMSI)进行。在此,拉曼方法已用于监测体外不同类型藻酸盐及其盐的离子交换反应。为了进行体内评估,已通过光学显微镜和CRMSI对藻酸盐处理的大鼠组织的组织学切片进行了分析。体外拉曼建模和组织化学作图是应用拉曼微探针以无创方式跟踪大鼠组织中藻酸盐-细胞分子相互作用的必要先兆。 !37

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