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Solvent Composition is Critical for Carbodiimide Cross-Linking of Hyaluronic Acid as an Ophthalmic Biomaterial

机译:溶剂组成对于透明质酸作为眼科生物材料的碳二亚胺交联至关重要

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摘要

Hyaluronic acid (HA) is one of the most important ophthalmic biomaterials, while also being used for tissue engineering and drug delivery. Although chemical cross-linking is an effective way to improve the material performance, it may as a consequence be detrimental to the living cells/tissues. Given that the cross-linking efficiency is mediated by the solvent composition during the chemical modification, this study aims to explore the stability and biocompatibility of carbodiimide cross-linked HA in relation to material processing conditions by varying the acetone/water volume ratio (from 70:30 to 95:5) at a constant 1-ethyl-3-(3-dimethyl aminopropyl) carbodiimide (EDC) concentration of 100 mM. Our results indicated that after the EDC treatment in the presence of an acetone/water mixture (85:15, v/v), the HA hydrogel membranes have the lowest equilibrium water content, the highest stress at break and the greatest resistance to hyaluronidase digestion. Live/Dead assays and pro-inflammatory cytokine expression analyses showed that the cross-linked HA hydrogel membranes, irrespective of the solvent composition, are compatible with human RPE cell lines without causing toxicity and inflammation. However, it should be noted that the test samples prepared by the cross-linking in the presence of acetone/water mixtures containing 70, 75, and 95 vol % of acetone slightly inhibit the metabolic activity of viable ARPE-19 cultures, probably due to the alteration in the ionic interaction between the medium nutrients and polysaccharide biomaterials. In summary, the water content, mechanical strength and RPE cell proliferative capacity strongly depends on the solvent composition for carbodiimide cross-linking of HA materials.
机译:透明质酸(HA)是最重要的眼用生物材料之一,同时也用于组织工程和药物输送。尽管化学交联是改善材料性能的有效方法,但其结果可能对活细胞/组织有害。鉴于交联效率是由化学改性过程中的溶剂组成介导的,本研究旨在通过改变丙酮/水的体积比(从70开始,探讨碳二亚胺交联的HA与材料加工条件的稳定性和生物相容性)。 :30至95:5)在恒定的1-乙基-3-(3-二甲基氨基丙基)碳二亚胺(EDC)浓度为100mM的情况下。我们的结果表明,在丙酮/水混合物(85:15,v / v)存在下进行EDC处理后,HA水凝胶膜的最低平衡水含量,最高的断裂应力和最大的透明质酸酶消化能力。活/死分析和促炎细胞因子表达分析表明,无论溶剂组成如何,交联的HA水凝胶膜均与人RPE细胞系相容,而不会引起毒性和炎症。但是,应注意的是,在含有70、75和95%(体积)丙酮的丙酮/水混合物的存在下,通过交联制备的测试样品可能会稍微抑制ARPE-19活菌的代谢活性。培养基养分与多糖生物材料之间离子相互作用的改变。总之,水含量,机械强度和RPE细胞增殖能力在很大程度上取决于用于HA材料的碳二亚胺交联的溶剂组成。

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