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Nitric oxide-releasing photocrosslinked chitosan cryogels

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Author(s):
de Almeida, Herllan Vieira ; da Silva, Laura Caetano Escobar ; de Oliveira, Marcelo Ganzarolli
Total Authors: 3
Document type: Journal article
Source: NITRIC OXIDE-BIOLOGY AND CHEMISTRY; v. 146, p. 10-pg., 2024-04-06.
Abstract

The highly porous morphology of chitosan cryogels, with submicrometric-sized pore cell walls, provides a large surface area which leads to fast water absorption and elevated swelling degrees. These characteristics are crucial for the applications of nitric oxide (NO) releasing biomaterials, in which the release of NO is triggered by the hydration of the material. In the present study, we report the development of chitosan cryogels (CS) with a porous structure of interconnected cells, with wall thicknesses in the range of 340-881 nm, capable of releasing NO triggered by the rapid hydration process. This property was obtained using an innovative strategy based on the functionalization of CS with two previously synthesized S-nitrosothiols: S-nitrosothioglycolic acid (TGA (SNO)) and S-nitrosomercaptosuccinic acid (MSA(SNO)). For this purpose, CS was previously methacrylated with glycidyl methacrylate and subsequently submitted to photocrosslinking and freeze-drying processes. The photocrosslinked hydrogels thus obtained were then functionalized with TGA(SNO) and MSA(SNO) in reactions mediated by carbodiimide. After functionalization, the hydrogels were frozen and freeze-dried to obtain porous S-nitrosated chitosan cryogels with high swelling capacities. Through chemiluminescence measurements, we demonstrated that CS-TGA(SNO) and CS-MSA(SNO) cryogels spontaneously release NO upon water absorption at rates of 3.34 x 10-2 nmol mg-1 min-1 and 1.27 x 10-1 nmol mg-1 min-1, respectively, opening new perspectives for the use of CS as a platform for localized NO delivery in biomedical applications. (AU)

FAPESP's process: 16/02414-5 - Topical and absorbable biomaterials for the local nitric oxide release
Grantee:Marcelo Ganzarolli de Oliveira
Support Opportunities: Research Projects - Thematic Grants
FAPESP's process: 18/14142-5 - Hybrid hydrogels for local and prolonged nitric oxide release
Grantee:Laura Caetano Escobar da Silva
Support Opportunities: Scholarships in Brazil - Post-Doctoral
FAPESP's process: 22/14645-2 - Nitric oxide releasing hydrogels and vascular prosthesis for cardiovascular applications
Grantee:Marcelo Ganzarolli de Oliveira
Support Opportunities: Research Projects - Thematic Grants