Use of photosensitive molecules in the crosslinking of biopolymers: applications and considerations in biomaterials development

Santos, Nicolas; Fuentes-Lemus, Eduardo; Ahumada, Manuel

Abstract

--- - The development of diverse types of biomaterials has significantly contributed to bringing new biomedical strategies to treat clinical conditions. Applications of these biomaterials can range from mechanical support and protection of injured tissues to joint replacement, tissue implants, and drug delivery systems. Among the strategies commonly used to prepare biomaterials, the use of electromagnetic radiation to initiate crosslinking stands out. The predominance of photo-induced polymerization methods relies on a fast, efficient, and straightforward process that can be easily adjusted to clinical needs. This strategy consists of irradiating the components that form the material with photons in the near ultraviolet-visible wavelength range (i.e., similar to 310 to 750 nm) in the presence of a photoactive molecule. Upon photon absorption, photosensitive molecules can generate excited species that initiate photopolymerization through different reaction mechanisms. However, this process could promote undesired side reactions depending on the target zone or treatment type (e.g., oxidative stress and modification of biomolecules such as proteins and lipids). This review explores the basic concepts behind the photopolymerization process of ex situ and in situ biomaterials. Particular emphasis was put on the photosensitization initiated by the most employed photosensitizers and the photoreactions that they mediate in aqueous media. Finally, the undesired oxidation reactions at the bio-interface and potential solutions are presented. - The photophysics and photochemical aspects of different photosensitive molecules (photosensitizers and photoinitiators) employed for biopolymers' crosslinking and their biological impact in developing biomaterials are reviewed.

Más información

Título según WOS: ID WOS:001252849300001 Not found in local WOS DB
Título de la Revista: JOURNAL OF MATERIALS CHEMISTRY B
Volumen: 12
Número: 27
Editorial: ROYAL SOC CHEMISTRY
Fecha de publicación: 2024
Página de inicio: 6550
Página final: 6562
DOI:

10.1039/d4tb00299g

Notas: ISI