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1.
Langmuir ; 33(5): 1210-1216, 2017 02 07.
Artigo em Inglês | MEDLINE | ID: mdl-28092951

RESUMO

Mussel-inspired polydopamine (PDA) coatings have been broadly exploited for constructing functional membrane surfaces. One-step codeposition of PDA with antifouling polymers, especially zwitterionic polymers, has been regarded as a promising strategy for fabricating antifouling membrane surfaces. However, one challenge is that the codeposition is usually a slow process over 10 h or even several days. Herein, we report that CuSO4/H2O2 is able to notably accelerate the codeposition process of PDA with poly(sulfobetaine methacrylate) (PSBMA). In our case, PSBMA is facilely anchored to the polypropylene microporous membrane (PPMM) surfaces within 1 h with the assistance of PDA because of its strong interfacial adhesion. The PDA/PSBMA-coated PPMMs show excellent surface hydrophilicity, high water permeation flux (7506 ± 528 L/m2·h at 0.1 MPa), and an outstanding antifouling property. Moreover, the antifouling property is maintained after the membranes are treated with acid and alkali solutions as well as organic solvents. To recap, it provides a facile, universal, and time-saving strategy for exploiting high-efficiency and durable antifouling membrane surfaces.


Assuntos
Incrustação Biológica/prevenção & controle , Sulfato de Cobre/química , Peróxido de Hidrogênio/química , Indóis/química , Metacrilatos/química , Polímeros/química , Animais , Bovinos , Escherichia coli/química , Hemoglobinas/química , Interações Hidrofóbicas e Hidrofílicas , Indóis/síntese química , Lisina/química , Metacrilatos/síntese química , Polímeros/síntese química , Soroalbumina Bovina/química , Propriedades de Superfície
2.
ACS Appl Bio Mater ; 4(4): 3579-3586, 2021 04 19.
Artigo em Inglês | MEDLINE | ID: mdl-35014443

RESUMO

Phacoemulsification with implantation of intraocular lens (IOLs) has been widely applied as a standard treatment for cataract, which is the leading cause of vision impairment. However, it still remains a critical challenge to prevent posterior capsule opacification (PCO) in terms of postoperative visual quality. Herein, we report IOLs with mussel-inspired coatings for inhibiting lens epithelial cells and then preventing PCO through photothermal conversion effect. The mussel-inspired coatings are deposited on the nonoptical surface areas of IOLs, endowing the modified IOLs with efficient photothermal conversion property. The temperature can be facilely raised to 50-60 °C for the photothermal IOLs (PT-IOLs) by near-infrared (NIR) laser irradiation at a safe intensity of 0.3 W/cm2. These PT-IOLs display high capability of inhibiting lens epithelial cells (LECs) in vitro. Therefore, under routine NIR laser irradiation, New Zealand white rabbits implanted with the PT-IOLs demonstrate significantly lower evaluation of PCO (EPCO) scores than the control groups. The overall results indicate that our PT-IOLs provide a promising choice for the clinical prevention of PCO, thus opening a way to maintain the postoperative visual qualities for cataract patients.


Assuntos
Bivalves/química , Opacificação da Cápsula/tratamento farmacológico , Materiais Revestidos Biocompatíveis/uso terapêutico , Lentes Intraoculares , Terapia Fototérmica , Animais , Materiais Revestidos Biocompatíveis/química , Materiais Revestidos Biocompatíveis/farmacologia , Feminino , Teste de Materiais , Tamanho da Partícula , Coelhos
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