Fabrication and characterization of chitosanâ gelatinâ chondroitin sulfate-diclofenac scaffold with cross-linked glutaraldehyde for potential application in osteoarthritis

Nurfinti, Wa Ode and Ardianto, Chrismawan and Aryani, Toetik and Andarsari, Mareta Rindang and Muslimah, Anisa Cendekia and Ananta, Ita Pramudia and Pratama, Yusuf Alif and Huda Abd Rahim, Nour El and Mazidda, Sakinato and Hendradi, Esti and Khotib, Junaidi and Deapsari, Fani and Budiatin, Aniek Setiya (2025) Fabrication and characterization of chitosanâ gelatinâ chondroitin sulfate-diclofenac scaffold with cross-linked glutaraldehyde for potential application in osteoarthritis. Journal of Applied Pharmaceutical Science, 15 (12). 70 - 78. ISSN 22313354

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Official URL: https://www.scopus.com/pages/publications/10502385...

Abstract

The inadequate regenerative capacity of cartilage renders osteoarthritis (OA) and cartilage injuries difficult to manage. In tissue engineering, a scaffold facilitates establishing an environment favorable to cell proliferation, migration, and adhesion. Moreover, diclofenac sodium can be administered locally due to the scaffoldâs porous architecture, which possesses anti-inflammatory characteristics. This study investigated the development and characterization of an innovative scaffold formulation intended for potential application in cartilage repair associated with OA and cartilage injuries. The scaffold was cross-linked with varying concentrations of GA (0.00â2.50) and comprised chitosan, gelatin, chondroitin sulfate, and PEG 400. The scaffold also contained the anti-inflammatory agent, diclofenac sodium, which was dissolved in PEG 400 for targeted drug delivery. The pore diameter, porosity, compressive strength, and degradation of the scaffolds were assessed following their dried form. The results indicated that GA significantly influenced these attributes, with porosity, mechanical stability, and degradation control improved at an optimal concentration of 0.50 percent. GA cross-linking between polymer chains enhanced the scaffoldâs integrity and augmented its mechanical properties through the establishment of more rigid structures. The cross-linking of the amino group in chitosan with the sulfonate group in chondroitin sulfate enhanced the scaffoldâs stability. The studyâs findings indicated that GA-optimized chitosanâ gelatinâchondroitin sulfate-PEG 400-diclofenac scaffolds exhibited suitable physicochemical and mechanical properties, supporting their potential use in localized drug delivery systems for OA management. © 2025 Wa Ode Nurfinti et al.

Item Type: Article
Additional Information: Cited by: 0; All Open Access; Gold Open Access
Uncontrolled Keywords: antiinflammatory agent; chitosan; chondroitin sulfate; diclofenac; gelatin; glutaraldehyde; macrogol 400; antiinflammatory activity; Article; cartilage injury; cell adhesion; cell migration; cell proliferation; cell viability; chondrocyte; cytotoxicity; drug delivery system; extracellular matrix; freeze drying; human; human cell; MTT assay; osteoarthritis; particle size; pH; pore size distribution; tissue engineering
Subjects: R Medicine > RS Pharmacy and materia medica
Divisions: Artikel Ilmiah > SCOPUS INDEXED JOURNAL
Creators:
CreatorsNIM
Nurfinti, Wa OdeUNSPECIFIED
Ardianto, ChrismawanUNSPECIFIED
Aryani, ToetikUNSPECIFIED
Andarsari, Mareta RindangUNSPECIFIED
Muslimah, Anisa CendekiaUNSPECIFIED
Ananta, Ita PramudiaUNSPECIFIED
Pratama, Yusuf AlifUNSPECIFIED
Huda Abd Rahim, Nour ElUNSPECIFIED
Mazidda, SakinatoUNSPECIFIED
Hendradi, EstiUNSPECIFIED
Khotib, JunaidiUNSPECIFIED
Deapsari, FaniUNSPECIFIED
Budiatin, Aniek SetiyaUNSPECIFIED
Depositing User: Nurma Harumiaty
Date Deposited: 01 Oct 2026 08:21
Last Modified: 01 Oct 2026 08:21
URI: http://repository.unair.ac.id/id/eprint/145967
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