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1.
Drug Deliv ; 29(1): 2610-2620, 2022 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-35938574

RESUMO

Compelling data have indicated menopause-associated increase in cardiovascular disease in women, while the underlying mechanisms remain largely unknown. It is established that changes of intestinal microbiota affect cardiovascular function in the context of metabolic syndrome. We here aimed to explore the possible link between host intestinal function, microbiota, and cardiac function in the ovariectomy (OVX) mouse model. Mice were ovariectomized to induce estrogen-related metabolic syndrome and cardiovascular defect. Microbiota was analyzed by 16s rRNA sequencing. miRNA and mRNA candidates expression were tested by qPCR. Cardiac function was examined by echocardiography. Colon specific delivery of miRNA candidates was achieved by oral gavage of Eudragit S100 functionalized microspheres. In comparison with the sham-operated group, OVX mice showed compromised cardiac function, together with activated inflammation in the visceral adipose tissue and heart. Lactobacillus abundance was significantly decreased in the gut of OVX mice. Meanwhile, miR-155 was mostly upregulated in the intestinal epithelium and thus the feces over other candidates, which in turn decreased Lactobacillus abundance in the intestine when endocytosed. Oral delivery of miR-155 antagonist restored the protective microbiota and thus protected the cardiac function in the OVX mice. This study has established a possible regulatory axis of intestinal miRNAs-microbiota-estrogen deficiency related phenotype in the OVX model. Colon specific delivery of therapeutic miRNAs would possibly restore the microbiota toward protective phenotype in the context of metabolic syndrome.


Assuntos
Microbioma Gastrointestinal , Síndrome Metabólica , MicroRNAs , Animais , Colo/metabolismo , Estrogênios , Feminino , Humanos , Camundongos , MicroRNAs/genética , Fenótipo , RNA Ribossômico 16S
2.
Placenta ; 105: 85-93, 2021 02.
Artigo em Inglês | MEDLINE | ID: mdl-33556718

RESUMO

INTRODUCTION: There is a strong association between gestational obesity and fetal cardiac dysfunction, while the exact mechanisms remain largely unknown. The purpose of this study was to investigate the role of exosomes from maternal visceral adipose tissue in abnormal embryonic development in obese pregnancy. METHODS: Female C57BL/6J obese mice were induced by a high-fat diet (containing 60% fat). Fetal cardiac function and morphology were examined by echocardiography and histology. The placenta was extracted for histological examination. miRNA expression in exosomes from the visceral adipose tissue was profiled by RNA-seq. Gene expression of inflammatory factors was analyzed by qPCR. RESULTS: In the obese pregnant mice, there were obvious inflammation and lipid droplets in the placenta. And the fetal cardiac function in obese pregnancy was also compromised. Moreover, injection of the visceral adipose tissue exosomes from the obese mice significantly decreased the fetal cardiac function in the normal lean pregnant mice. Mechanistically, the decreased expression of miR-19b might be responsible for the enhanced inflammation in the placenta. DISCUSSION: Exosomes derived from visceral adipose tissue in obese mice contribute to fetal heart dysfunction, at least partially via affecting the function of the placenta.


Assuntos
Exossomos/metabolismo , Coração Fetal/fisiopatologia , Cardiopatias/fisiopatologia , Gordura Intra-Abdominal/metabolismo , Obesidade Materna/fisiopatologia , Animais , Dieta Hiperlipídica , Feminino , Cardiopatias/metabolismo , Camundongos , Camundongos Endogâmicos C57BL , Obesidade Materna/metabolismo , Placenta/metabolismo , Gravidez
3.
Nano Lett ; 19(1): 19-28, 2019 01 09.
Artigo em Inglês | MEDLINE | ID: mdl-30517011

RESUMO

In vitro and in vivo delivery of RNAs of interest holds promise for gene therapy. Recently, exosomes are considered as a kind of rational vehicle for RNA delivery, especially miRNA and/or siRNA, while the loading efficiency is limited. In this study, we engineered the exosomes for RNA loading by constructing a fusion protein in which the exosomal membrane protein CD9 was fused with RNA binding protein, while the RNA of interest either natively harbors or is engineered to have the elements for the binding. By proof-of-principle experiments, we here fused CD9 with HuR, an RNA binding protein interacting with miR-155 with a relatively high affinity. In the exosome packaging cells, the fused CD9-HuR successfully enriched miR-155 into exosomes when miR-155 was excessively expressed. Moreover, miR-155 encapsulated in the exosomes in turn could be efficiently delivered into the recipient cells and recognized the endogenous targets. In addition, we also revealed that the CD9-HuR exosomes could enrich the functional miRNA inhibitor or CRISPR/dCas9 when the RNAs were engineered to have the AU rich elements. Taken together, we here have established a novel strategy for enhanced RNA cargo encapsulation into engineered exosomes, which in turn functions in the recipient cells.


Assuntos
Proteína Semelhante a ELAV 1/química , Exossomos/química , MicroRNAs/química , Tetraspanina 29/química , Animais , Sistemas CRISPR-Cas/genética , Linhagem Celular , Proteína Semelhante a ELAV 1/genética , Exossomos/genética , Técnicas de Transferência de Genes , Humanos , Camundongos , MicroRNAs/genética , RNA Interferente Pequeno/química , RNA Interferente Pequeno/genética , Proteínas de Ligação a RNA/química , Proteínas de Ligação a RNA/genética , Tetraspanina 29/genética
4.
Biochem Biophys Res Commun ; 483(1): 602-608, 2017 01 29.
Artigo em Inglês | MEDLINE | ID: mdl-27998767

RESUMO

Maternal diabetes mellitus induces an increased risk of congenital heart defects (CHD), however, the exact mechanisms are still not fully illustrated. In this study, diabetic pregnant C57BL/6 mice were induced by injection of streptozotocin before mating. Compared with the control normal mice, diabetic pregnant mice displayed significant changes of the exosomal miRNA contents in the blood, as revealed by RNA-seq analysis. Multiple of these miRNAs were found involved in cardiac development regulation. Moreover, fluorescence labeled exosomes and gold nanoparticles could cross the placenta barrier and infiltrated into the embryonic organs/tissues, including the heart, during embryonic development. Injection of diabetic maternal exosomes strikingly increased the risk of CHD in the normal recipient pregnant mice. Taken together, we could draw the conclusion that maternal exosomes in diabetes could cross the maternal-fetal barrier and contribute to the cardiac development deficiency possibly via miRNAs, providing new insights in CHD prevention and treatment.


Assuntos
Complicações do Diabetes/metabolismo , Exossomos/metabolismo , Cardiopatias Congênitas/complicações , Coração/embriologia , Miocárdio/metabolismo , Animais , Diabetes Mellitus Experimental/metabolismo , Ecocardiografia , Feminino , Masculino , Camundongos , Camundongos Endogâmicos C57BL , MicroRNAs/metabolismo , Placenta/metabolismo , Gravidez
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