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1.
Nano Lett ; 23(8): 3516-3523, 2023 04 26.
Artigo em Inglês | MEDLINE | ID: mdl-37043775

RESUMO

The impact of nanoplastics (NPs) on human health is still not well understood, and more research is needed to better understand the risks associated with these particles. In this study, we found that oral administration of polyethylene (PE) NPs in a mice model significantly disrupted the intestinal microenvironment, which shapes adaptive immune response and favors the established in situ colorectal tumor growth. Using single-cell RNA sequencing technology, we show that NPs triggered colon IL-1ß-producing macrophages by inducing lysosome damage, leading to colonic Treg and Th17 differentiation associated with T cell exhaustion, which creates a colon environment that favors the tumor initiation and progress. A similar effect is also observed in polystyrene NPs. Our result provides insight into the potential link between NPs ingestion and colon tumorigenesis, and the urgency of addressing plastic pollution worldwide.


Assuntos
Colo , Microplásticos , Humanos , Animais , Camundongos , Intestinos , Imunidade Adaptativa , Macrófagos , Poliestirenos
2.
Cell Rep ; 42(4): 112346, 2023 04 25.
Artigo em Inglês | MEDLINE | ID: mdl-37022934

RESUMO

Nanoplastics (NPs) as contaminants in food and water have drawn increasing public attention. However, little is known about how NPs shape the gut immune landscape after injection. In this study, we fabricate NPs (∼500 nm) and microplastics (MPs) (∼2 µm) and evaluate their in vivo effects by feeding them to mice. The results suggest that NPs show a better ability to induce gut macrophage activation than MPs. In addition, NPs trigger gut interleukin-1 (IL-1)-producing macrophage reprogramming via inducing lysosomal damage. More importantly, IL-1 signaling from the intestine can affect brain immunity, leading to microglial activation and Th17 differentiation, all of which correlates with a decline in cognitive and short-term memory in NP-fed mice. Thus, this study provides insight into the mechanism of action of the gut-brain axis, delineates the way NPs reduce brain function, and highlights the importance of fixing the plastic pollution problem worldwide.


Assuntos
Interleucina-1 , Microplásticos , Animais , Camundongos , Microplásticos/toxicidade , Plásticos , Macrófagos , Encéfalo , Intestinos
3.
Adv Healthc Mater ; 9(3): e1901186, 2020 02.
Artigo em Inglês | MEDLINE | ID: mdl-31820852

RESUMO

The chronic inflammatory microenvironment is characterized by the elevated level of reactive oxygen species (ROS). Here, it is hypothesized that developing an ROS-scavenging scaffold loaded with rapamycin (Rapa@Gel) may offer a new strategy for modulating the local inflammatory microenvironment to improve intervertebral disk tissue regeneration. The therapeutic scaffold consisting of ROS-degradable hydrogel can be injected into the injured degeneration site of intervertebral disk (IVD) and can release therapeutics in a programmed manner. The ROS scavenged by scaffold reduces the inflammatory responses. It is found that when rats are treated with Rapa@Gel, this results in an increase in the percentage of M2-like macrophages and a decrease in M1-like macrophages in the inflammatory environment, respectively. Regeneration of IVD is achieved by Rapa@Gel local treatment, due to the increased M2 macrophages and reduced inflammation. This strategy may be extended to the treatment of many other inflammatory diseases.


Assuntos
Materiais Biocompatíveis/administração & dosagem , Materiais Biocompatíveis/química , Degeneração do Disco Intervertebral/tratamento farmacológico , Espécies Reativas de Oxigênio/metabolismo , Sirolimo/administração & dosagem , Animais , Materiais Biocompatíveis/metabolismo , Citocinas/metabolismo , Modelos Animais de Doenças , Sistemas de Liberação de Medicamentos , Hidrogéis , Degeneração do Disco Intervertebral/metabolismo , Masculino , Camundongos , Camundongos Endogâmicos C57BL , Células RAW 264.7 , Ratos Sprague-Dawley , Sirolimo/farmacocinética , Sirolimo/farmacologia
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