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1.
Adv Healthc Mater ; 12(29): e2301817, 2023 11.
Artículo en Inglés | MEDLINE | ID: mdl-37565814

RESUMEN

Conductive hydrogels have shown great potential in wound healing and skin tissue engineering, owing to their electroactive, mechanical, and chemical properties. However, it still remains as a challenge to incorporate other functions into conductive hydrogels, such as antibacterial ability, controllable drug release, and biodegradability. In this study, a black phosphorus-based conductive hydrogel (HA-DA@BP) is prepared by an amidation reaction coupled with a coordination of Fe3+ -catechol. The hydrogel could be changed from the sol phase to the gel phase under electrical stimulus (ES). The results show that BP could be released under slight acidity, which is cell compatible but could achieve synergistic electrical antibacterial action and promote wound healing. This study proves that BP is a strong candidate for electroactive materials and provides a new insight for the development of BP-based biomedical materials in skin tissue engineering.


Asunto(s)
Hidrogeles , Ingeniería de Tejidos , Ingeniería de Tejidos/métodos , Hidrogeles/química , Fósforo , Piel , Antibacterianos
2.
ACS Appl Mater Interfaces ; 13(36): 43820-43829, 2021 Sep 15.
Artículo en Inglés | MEDLINE | ID: mdl-34460222

RESUMEN

Biomimetic membrane materials have been widely explored and developed for drug loading and tissue engineering applications due to their excellent biocompatibility and abundant reaction sites. However, novel cytomembrane mimics have been lacking for a long time. In this study, black phosphorus (BP) was used as the foundation for a new generation of promising cytomembrane mimics due to its multiple similarities to cytomembranes. Inspired by the dual function of endotoxins on membranes, we prepared a BP-based cytomembrane mimic with controllable antibacterial ability via electrostatic interaction between BP and [1-pentyl-1-quaternary ammonium-3-vinyl-imidazole]Br ([PQVI]Br). The release of PQVI could be manipulated in different conditions by adjusting the electrostatic force, thereby achieving controllable antibacterial ability. This report confirms the possibility of using BP as a new material to mimic cytomembranes and provides a new concept of controllable antibacterial action based on endotoxins.


Asunto(s)
Antibacterianos/farmacología , Preparaciones de Acción Retardada/química , Imidazoles/farmacología , Membranas Artificiales , Fósforo/química , Compuestos de Amonio Cuaternario/farmacología , Antibacterianos/química , Liberación de Fármacos , Escherichia coli/efectos de los fármacos , Imidazoles/química , Pruebas de Sensibilidad Microbiana , Compuestos de Amonio Cuaternario/química
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