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1.
Colloids Surf B Biointerfaces ; 222: 113043, 2023 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-36455361

RESUMO

Nanocarriers can deliver drugs to specific organs or cells, potentially bridging the gap between a drug's function and its interaction with biological systems such as human physiology. The untapped potential of nanotechnology stems from its ability to manipulate materials, allowing control over physical and chemical properties and overcoming drug-related problems, e.g., poor solubility or poor bioavailability. For example, most protein drugs are administered parenterally, each with challenges and peculiarities. Some problems faced by bioengineered macromolecule drugs leading to poor bioavailability are short biological half-life, large size and high molecular weight, low permeability through biological membranes, and structural instability. Nanotechnology emerges as a promising strategy to overcome these problems. Nevertheless, the delivery system should be carefully chosen considering loading efficiency, physicochemical properties, production conditions, toxicity, and regulations. Moving from the bench to the bedside is still one of the major bottlenecks in nanomedicine, and toxicological issues are the greatest challenges to overcome. This review provides an overview of biotech drug delivery approaches, associated nanotechnology novelty, toxicological issues, and regulations.


Assuntos
Nanopartículas , Nanotecnologia , Humanos , Sistemas de Liberação de Medicamentos , Nanomedicina , Preparações Farmacêuticas/química , Proteínas , Substâncias Macromoleculares , Nanopartículas/química
2.
Nat Prod Res ; 36(17): 4475-4481, 2022 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-34618614

RESUMO

Baru nuts (Dipteryx alata Vog.) are a native species from Brazil, rich in phenols and other antioxidants, with high socioeconomic value and possible pharmaceutical applications. Here we investigated baru nut ethanolic extract (BNEE) antioxidant and wound healing activities in human NCI-H441 and A549 lung epithelial cell lines for a possible use in conditions related to oxidative stress and wound healing impairments, such as chronic obstructive pulmonary disease (COPD). BNEE was characterised with high DPPH free radical scavenging activity and high total phenolics content, amongst them gallic acid, that was identified and quantified by HPLC. BNEE was not cytotoxic at concentrations studied, reduced the levels of reactive oxygen species before and during oxidative stress and increased wound healing in cell monolayers. These are the first steps to investigate the beneficial properties of baru in diseases related to oxidative stress and wound healing impairments such as COPD.


Assuntos
Dipteryx , Doença Pulmonar Obstrutiva Crônica , Antioxidantes/análise , Antioxidantes/farmacologia , Dipteryx/química , Células Epiteliais , Humanos , Pulmão , Nozes/química , Fenóis/análise , Fenóis/farmacologia , Extratos Vegetais/análise , Extratos Vegetais/farmacologia , Doença Pulmonar Obstrutiva Crônica/tratamento farmacológico , Cicatrização
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