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1.
Int J Pharm ; 659: 124281, 2024 Jun 25.
Artigo em Inglês | MEDLINE | ID: mdl-38802026

RESUMO

Hydrogel drug delivery systems (DDSs) for treating ulcerative colitis (UC) have garnered attention. However, there is a lack of meta-analysis summarizing their effectiveness. Therefore, this study aimed to conduct a meta-analysis of pre-clinical evidence comparing hydrogel DDSs with free drug administration. Subgroup analyses were performed based on hydrogel materials (polysaccharide versus non-polysaccharide) and administration routes of the hydrogel DDSs (rectal versus oral). The outcome indicators included colon length, histological scores, tumor necrosis factor-α (TNF-α), zonula occludens protein 1(ZO-1), and area under the curve (AUC). The results confirmed the therapeutic enhancement of the hydrogel DDSs for UC compared with the free drug group. Notably, no significant differences were found between polysaccharide and non-polysaccharide materials, however, oral administration was found superior regarding TNF-α and AUC. In conclusion, oral hydrogel DDSs can serve as potential excellent dosage forms in oral colon -targeting DDSs, and in the design of colon hydrogel delivery systems, polysaccharides do not show advantages compared with other materials.


Assuntos
Colite Ulcerativa , Sistemas de Liberação de Medicamentos , Hidrogéis , Colite Ulcerativa/tratamento farmacológico , Hidrogéis/química , Hidrogéis/administração & dosagem , Sistemas de Liberação de Medicamentos/métodos , Animais , Fator de Necrose Tumoral alfa , Humanos , Administração Oral , Colo/metabolismo , Colo/efeitos dos fármacos , Polissacarídeos/química , Polissacarídeos/administração & dosagem , Administração Retal , Área Sob a Curva
2.
RSC Adv ; 12(32): 20850-20856, 2022 Jul 14.
Artigo em Inglês | MEDLINE | ID: mdl-35919184

RESUMO

Porous nanostructures have been proposed a promising strategy to improve the electrochemical performance of Si materials as anodes of lithium-ion batteries (LIBs). However, expensive raw materials and the tedious preparation processes hinder their widespread adoption. In this work, silicon micron cages (SMCs) have been synthesized in molten AlCl3 through using spherical aluminum particles as a sacrificial template, and the earth-abundant and low-cost natural halloysite clay as a precursor. The aluminum spheres (1-3 µm) not only act as a sacrificial template but also facilitate the formation of silicon branches, which connect together to form SMCs. As anodes for LIBs, the SMC electrode exhibits a high reversible capacity of 1977.5 mA h g-1 after 50 cycles at a current density of 0.2 A g-1, and 1035.1 mA h g-1 after 300 cycles at a current density of 1.0 A g-1. The improved electrochemical performance of SMCs could be ascribed to the micron cage structure, providing abundant buffering space and mesopores for Si expansion. This promising method is expected to offer a pathway towards the scalable application of Si-based anode materials in the next-generation LIB technology.

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