Wound Healing Improvement by Polymer Surgical Suture Coated with Tannic Acid

Setiawati, Agustina and Setyajati, Flavia Domitila Erika and Saputra, Bakti Wahyu and Skolastika, Skolastika and Julianus, Jeffry and Ratri, Monica Cahyaning (2024) Wound Healing Improvement by Polymer Surgical Suture Coated with Tannic Acid. Trends in Sciences, 21 (2). ISSN 27740226

[thumbnail of A surgical suture is a vital medical device to uphold wounded tissue during surgery. However, the application to improve tissue healing must still be developed. This study offered to solve this problem by incorporating tannic acid (TA) into polydioxanone] Text (A surgical suture is a vital medical device to uphold wounded tissue during surgery. However, the application to improve tissue healing must still be developed. This study offered to solve this problem by incorporating tannic acid (TA) into polydioxanone)
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Abstract

A surgical suture is a vital medical device to uphold wounded tissue during surgery. However, the application to improve tissue healing must still be developed. This study offered to solve this problem by incorporating tannic acid (TA) into polydioxanone (PDS) sutures. The PDS suture was immersed in TA complexing with iron (III) solutions in pH 8.0 solution. The engineered suture was successful, as revealed by the OH peak of TA in FTIR spectra. Furthermore, it was confirmed by TA particle appearance under Scanning Electron Microscopy. Contact angle measurement showed better wettability in biological mimicking solutions, such as water, serum, and saline solution. Thereby, it improved in vitro wound healing activity. Moreover, our bioinformatics data showed that TA enhanced the wound healing process by addressing multiple targets in the early phase of inflammation. For instance, it induced platelets to reduce bleeding at the early wound healing stage, activated T cells at the inflammation stage, accelerated epidermis cell proliferation, and activated fibroblast as a key player in wound healing. Due to multiple wound healing targets, our suture system was expected to be emphasized in clinical applications. © 2024, Walailak University. All rights reserved.

Item Type: Article
Additional Information: Cited by: 0; All Open Access, Hybrid Gold Open Access
Uncontrolled Keywords: Tannic acid, Wound, Suture, Biocompatibility, Fibroblast
Subjects: R Medicine > RS Pharmacy and materia medica
Divisions: Faculty of Pharmacy
Depositing User: Yulistiarini Kumaraningrum KUMARANINGRUM
Date Deposited: 20 Nov 2024 08:10
Last Modified: 20 Nov 2024 08:10
URI: https://ir.lib.ugm.ac.id/id/eprint/10682

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