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      Fabrication and Evaluation of Silk Sericin-Derived Hydrogel for the Release of the Model Drug Berberine

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          Abstract

          Silk sericin (SS) produced by Bombyx mori is normally discarded as waste in manufacturing processes, which causes environmental pollution. Therefore, investigating the use of silk sericin has economic and environmental benefits. As a three-dimensional structure, the sericin-derived hydrogel was explored in different applications. However, many developed gelation procedures raise concerns regarding safety, cost, and duration of gelation time. In this work, “thiol-ene” click chemistry was used to quickly and controllably prepare an SS-derived hydrogel to resolve these early concerns. Then, berberine was loaded and used as a model for investigating the drug-release profiles of the prepared hydrogel. The experimental results revealed that this hydrogel is eligible for a long-term release of berberine. Throughout the antibacterial experiments, the released berberine maintained its antibacterial activity. Our work expands the application of SS in biomedical industries in an eco-friendly way. Furthermore, the discussed strategy could provide a reference for the subsequent development of SS-derived materials.

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          Most cited references35

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          Thiol-ene click chemistry.

          Following Sharpless' visionary characterization of several idealized reactions as click reactions, the materials science and synthetic chemistry communities have pursued numerous routes toward the identification and implementation of these click reactions. Herein, we review the radical-mediated thiol-ene reaction as one such click reaction. This reaction has all the desirable features of a click reaction, being highly efficient, simple to execute with no side products and proceeding rapidly to high yield. Further, the thiol-ene reaction is most frequently photoinitiated, particularly for photopolymerizations resulting in highly uniform polymer networks, promoting unique capabilities related to spatial and temporal control of the click reaction. The reaction mechanism and its implementation in various synthetic methodologies, biofunctionalization, surface and polymer modification, and polymerization are all reviewed.
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            A simple equation for description of solute release I. Fickian and non-fickian release from non-swellable devices in the form of slabs, spheres, cylinders or discs

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              Thiol-click chemistry: a multifaceted toolbox for small molecule and polymer synthesis.

              The merits of thiol-click chemistry and its potential for making new forays into chemical synthesis and materials applications are described. Since thiols react to high yields under benign conditions with a vast range of chemical species, their utility extends to a large number of applications in the chemical, biological, physical, materials and engineering fields. This critical review provides insight into emerging venues for application as well as new mechanistic understanding of this exceptional chemistry in its many forms (81 references).
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                Author and article information

                Journal
                Gels
                Gels
                gels
                Gels
                MDPI
                2310-2861
                20 February 2021
                March 2021
                : 7
                : 1
                : 23
                Affiliations
                [1 ]State Key Laboratory of Silkworm Genome Biology, College of Sericulture, Textile and Biomass Sciences, Southwest University, Chongqing 400715, China; yanchi123@ 123456email.swu.edu.cn (C.Y.); liangjw@ 123456email.swu.edu.cn (J.L.); fangritian@ 123456email.swu.edu.cn (H.F.); mxz9988@ 123456email.swu.edu.cn (X.M.); lovxury@ 123456email.swu.edu.cn (J.C.)
                [2 ]Key Laboratory of Mariculture and Enhancement of Zhejiang Province, Zhejiang Marine Fisheries Research Institute, Zhoushan 316021, China; 2008uky@ 123456gmail.com (Z.Z.); XZH239@ 123456uky.edu (Q.L.); huhm@ 123456zju.edu.cn (H.H.)
                Author notes
                [* ]Correspondence: xzhang@ 123456swu.edu.cn
                [†]

                These authors contributed equally to this work.

                Author information
                https://orcid.org/0000-0003-3750-3755
                https://orcid.org/0000-0002-1993-2970
                Article
                gels-07-00023
                10.3390/gels7010023
                8005982
                33672687
                f0e82ce8-a760-4d83-8d61-4b61dcaeb099
                © 2021 by the authors.

                Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license ( http://creativecommons.org/licenses/by/4.0/).

                History
                : 06 January 2021
                : 18 February 2021
                Categories
                Article

                silk sericin,thiol-ene,hydrogel,drug delivery
                silk sericin, thiol-ene, hydrogel, drug delivery

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