Mario Saletti, Simone Pepi, Marco Paolino, Jacopo Venditti, Germano Giuliani, Claudia Bonechi, Gemma Leone, Agnese Magnani, Claudio Rossi, Andrea Cappelli
{"title":"用点击化学法交联透明质酸接枝共聚物(涉及间苯二酚基肉桂酸酯衍生物),生成凝胶状物质。","authors":"Mario Saletti, Simone Pepi, Marco Paolino, Jacopo Venditti, Germano Giuliani, Claudia Bonechi, Gemma Leone, Agnese Magnani, Claudio Rossi, Andrea Cappelli","doi":"10.3390/gels10110751","DOIUrl":null,"url":null,"abstract":"<p><p>The well-known \"click chemistry\" reaction copper(I)-catalyzed azide-alkyne 1,3-dipolar cycloaddition (CuAAC) was used to transform under very mild conditions hyaluronan-based graft copolymers <b>HA(270)-FA-Pg</b> into the crosslinked derivatives <b>HA(270)-FA-TEGERA-CL</b> and <b>HA(270)-FA-HEGERA-CL</b>. In particular, medium molecular weight (i.e., 270 kDa) hyaluronic acid (HA) grafted at various extents (i.e., 10, 20, and 40%) with fluorogenic ferulic acid (FA) residue bonding propargyl groups were used in the CuAAC reaction with novel azido-terminated crosslinking agents <b>T</b>ri(<b>E</b>thylene <b>G</b>lycol) <b>E</b>thyl <b>R</b>esorcinol <b>A</b>crylate (<b>TEGERA</b>) and <b>H</b>exa(<b>E</b>thylene <b>G</b>lycol) <b>E</b>thyl <b>R</b>esorcinol <b>A</b>crylate (<b>HEGERA</b>). The resulting <b>HA(270)-FA-TEGERA-CL</b> and <b>HA(270)-FA-HEGERA-CL</b> materials were characterized from the point of view of their structure by performing NMR studies. Moreover, the swelling behavior and rheological features were assessed employing TGA and DSC analysis to evaluate the potential gel-like properties of the resulting crosslinked materials. Despite the 3D crosslinked structure, <b>HA(270)-FA-TEGERA-CL</b> and <b>HA(270)-FA-HEGERA-CL</b> frameworks showed adequate swelling performance, the required shear thinning behavior, and coefficient of friction values close to those of the main commercial HA solutions used as viscosupplements (i.e., 0.20 at 10 mm/s). Furthermore, the presence of a crosslinked structure guaranteed a longer residence time. Indeed, <b>HA(270)-FA-TEGERA-CL-40</b> and <b>HA(270)-FA-HEGERA-CL-40</b> after 48 h showed a four times greater enzymatic resistance than the commercial viscosupplements. Based on the promising obtained results, the crosslinked materials are proposed for their potential applicability as novel viscosupplements.</p>","PeriodicalId":12506,"journal":{"name":"Gels","volume":"10 11","pages":""},"PeriodicalIF":5.0000,"publicationDate":"2024-11-19","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Crosslinking by Click Chemistry of Hyaluronan Graft Copolymers Involving Resorcinol-Based Cinnamate Derivatives Leading to Gel-like Materials.\",\"authors\":\"Mario Saletti, Simone Pepi, Marco Paolino, Jacopo Venditti, Germano Giuliani, Claudia Bonechi, Gemma Leone, Agnese Magnani, Claudio Rossi, Andrea Cappelli\",\"doi\":\"10.3390/gels10110751\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>The well-known \\\"click chemistry\\\" reaction copper(I)-catalyzed azide-alkyne 1,3-dipolar cycloaddition (CuAAC) was used to transform under very mild conditions hyaluronan-based graft copolymers <b>HA(270)-FA-Pg</b> into the crosslinked derivatives <b>HA(270)-FA-TEGERA-CL</b> and <b>HA(270)-FA-HEGERA-CL</b>. In particular, medium molecular weight (i.e., 270 kDa) hyaluronic acid (HA) grafted at various extents (i.e., 10, 20, and 40%) with fluorogenic ferulic acid (FA) residue bonding propargyl groups were used in the CuAAC reaction with novel azido-terminated crosslinking agents <b>T</b>ri(<b>E</b>thylene <b>G</b>lycol) <b>E</b>thyl <b>R</b>esorcinol <b>A</b>crylate (<b>TEGERA</b>) and <b>H</b>exa(<b>E</b>thylene <b>G</b>lycol) <b>E</b>thyl <b>R</b>esorcinol <b>A</b>crylate (<b>HEGERA</b>). The resulting <b>HA(270)-FA-TEGERA-CL</b> and <b>HA(270)-FA-HEGERA-CL</b> materials were characterized from the point of view of their structure by performing NMR studies. Moreover, the swelling behavior and rheological features were assessed employing TGA and DSC analysis to evaluate the potential gel-like properties of the resulting crosslinked materials. Despite the 3D crosslinked structure, <b>HA(270)-FA-TEGERA-CL</b> and <b>HA(270)-FA-HEGERA-CL</b> frameworks showed adequate swelling performance, the required shear thinning behavior, and coefficient of friction values close to those of the main commercial HA solutions used as viscosupplements (i.e., 0.20 at 10 mm/s). Furthermore, the presence of a crosslinked structure guaranteed a longer residence time. Indeed, <b>HA(270)-FA-TEGERA-CL-40</b> and <b>HA(270)-FA-HEGERA-CL-40</b> after 48 h showed a four times greater enzymatic resistance than the commercial viscosupplements. 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Crosslinking by Click Chemistry of Hyaluronan Graft Copolymers Involving Resorcinol-Based Cinnamate Derivatives Leading to Gel-like Materials.
The well-known "click chemistry" reaction copper(I)-catalyzed azide-alkyne 1,3-dipolar cycloaddition (CuAAC) was used to transform under very mild conditions hyaluronan-based graft copolymers HA(270)-FA-Pg into the crosslinked derivatives HA(270)-FA-TEGERA-CL and HA(270)-FA-HEGERA-CL. In particular, medium molecular weight (i.e., 270 kDa) hyaluronic acid (HA) grafted at various extents (i.e., 10, 20, and 40%) with fluorogenic ferulic acid (FA) residue bonding propargyl groups were used in the CuAAC reaction with novel azido-terminated crosslinking agents Tri(Ethylene Glycol) Ethyl Resorcinol Acrylate (TEGERA) and Hexa(Ethylene Glycol) Ethyl Resorcinol Acrylate (HEGERA). The resulting HA(270)-FA-TEGERA-CL and HA(270)-FA-HEGERA-CL materials were characterized from the point of view of their structure by performing NMR studies. Moreover, the swelling behavior and rheological features were assessed employing TGA and DSC analysis to evaluate the potential gel-like properties of the resulting crosslinked materials. Despite the 3D crosslinked structure, HA(270)-FA-TEGERA-CL and HA(270)-FA-HEGERA-CL frameworks showed adequate swelling performance, the required shear thinning behavior, and coefficient of friction values close to those of the main commercial HA solutions used as viscosupplements (i.e., 0.20 at 10 mm/s). Furthermore, the presence of a crosslinked structure guaranteed a longer residence time. Indeed, HA(270)-FA-TEGERA-CL-40 and HA(270)-FA-HEGERA-CL-40 after 48 h showed a four times greater enzymatic resistance than the commercial viscosupplements. Based on the promising obtained results, the crosslinked materials are proposed for their potential applicability as novel viscosupplements.
期刊介绍:
The journal Gels (ISSN 2310-2861) is an international, open access journal on physical (supramolecular) and chemical gel-based materials. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. Therefore, there is no restriction on the maximum length of the papers, and full experimental details must be provided so that the results can be reproduced. Short communications, full research papers and review papers are accepted formats for the preparation of the manuscripts.
Gels aims to serve as a reference journal with a focus on gel materials for researchers working in both academia and industry. Therefore, papers demonstrating practical applications of these materials are particularly welcome. Occasionally, invited contributions (i.e., original research and review articles) on emerging issues and high-tech applications of gels are published as special issues.