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1.
ACS Appl Mater Interfaces ; 14(49): 54439-54457, 2022 Dec 14.
Artigo em Inglês | MEDLINE | ID: mdl-36468426

RESUMO

Smart microgels (µGels) made of polymeric particles doped with inorganic nanoparticles have emerged recently as promising multifunctional materials for nanomedicine applications. However, the synthesis of these hybrid materials is still a challenging task with the necessity to control several features, such as particle sizes and doping levels, in order to tailor their final properties in relation to the targeted application. We report herein an innovative modular strategy to achieve the rational design of well-defined and densely filled hybrid particles. It is based on the assembly of the different building blocks, i.e., µGels, dyes, and small gold nanoparticles (<4 nm), and the tuning of nanoparticle loading within the polymer matrix through successive incubation steps. The characterization of the final hybrid networks using UV-vis absorption, fluorescence, transmission electron microscopy, dynamic light scattering, and small-angle X-ray scattering revealed that they uniquely combine the properties of hydrogel particles, including high loading capacity and stimuli-responsive behavior, the photoluminescent properties of dyes (rhodamine 6G, methylene blue and cyanine 7.5), and the features of gold nanoparticle assembly. Interestingly, in response to pH and temperature stimuli, the smart hybrid µGels can shrink, leading to the aggregation of the gold nanoparticles trapped inside the polymer matrix. This stimuli-responsive behavior results in plasmon band broadening and red shift toward the near-infrared region (NIR), opening promising prospects in biomedical science. Particularly, the potential of these smart hybrid nanoplatforms for photoactivated hyperthermia, photoacoustic imaging, cellular internalization, intracellular imaging, and photothermal therapy was assessed, demonstrating well controlled multimodal opportunities for theranostics.


Assuntos
Hipertermia Induzida , Nanopartículas Metálicas , Microgéis , Nanopartículas , Técnicas Fotoacústicas , Ouro/química , Corantes Fluorescentes/química , Terapia Fototérmica , Técnicas Fotoacústicas/métodos , Nanopartículas Metálicas/química , Hipertermia Induzida/métodos , Nanopartículas/química , Polímeros/química , Microscopia Eletrônica de Transmissão , Concentração de Íons de Hidrogênio , Fototerapia , Linhagem Celular Tumoral
2.
Nat Prod Res ; 23(10): 963-72, 2009.
Artigo em Inglês | MEDLINE | ID: mdl-19521911

RESUMO

A new steroidal saponin, chloragin (1), was isolated and characterised from the aerial part of Chlorophytum nimonii. The structure of chloragin (1) was established as tigogenin-3-O-alpha-L-rhamnopyranosyl-(1 --> 4)-beta-D-glucopyranosyl-(1 --> 3)-beta-D-xylopyranosyl-(1 --> 4)-beta-D-glucopyranosyl-(1 --> 4)-beta-D-xyloopyranoside on the basis of detailed chemical and spectral evidence. The saponin showed potent antihyperglycaemic and antidyslipidaemic activities in albino rats.


Assuntos
Glicemia/efeitos dos fármacos , Clorófitas/química , Hipoglicemiantes , Saponinas/química , Esteroides/química , Animais , Cricetinae , Diabetes Mellitus Experimental/tratamento farmacológico , Dislipidemias/tratamento farmacológico , Hipoglicemiantes/química , Hipoglicemiantes/farmacologia , Masculino , Mesocricetus , Estrutura Molecular , Extratos Vegetais/química , Extratos Vegetais/farmacologia , Ratos , Ratos Sprague-Dawley
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