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1.
J Gene Med ; 26(3): e3681, 2024 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-38484722

RESUMO

Doxorubicin is a commonly used anti-cancer drug used in treating a variety of malignancies. However, a major adverse effect is cardiotoxicity, which is dose dependent and can be either acute or chronic. Doxorubicin causes injury by DNA damage, the formation of free reactive oxygen radicals and induction of apoptosis. Our aim is to induce expression of the multidrug resistance-associated protein 1 (MRP1) in cardiomyocytes derived from human iPS cells (hiPSC-CM), to determine whether this will allow cells to effectively remove doxorubicin and confer cardioprotection. We generated a lentivirus vector encoding MRP1 (LV.MRP1) and validated its function in HEK293T cells and stem cell-derived cardiomyocytes (hiPSC-CM) by quantitative PCR and western blot analysis. The activity of the overexpressed MRP1 was also tested, by quantifying the amount of fluorescent dye exported from the cell by the transporter. We demonstrated reduced dye sequestration in cells overexpressing MRP1. Finally, we demonstrated that hiPSC-CM transduced with LV.MRP1 were protected against doxorubicin injury. In conclusion, we have shown that we can successfully overexpress MRP1 protein in hiPSC-CM, with functional transporter activity leading to protection against doxorubicin-induced toxicity.


Assuntos
Cardiotoxicidade , Proteínas Associadas à Resistência a Múltiplos Medicamentos , Miócitos Cardíacos , Humanos , Cardiotoxicidade/prevenção & controle , Cardiotoxicidade/metabolismo , Cardiotoxicidade/patologia , Células HEK293 , Doxorrubicina/farmacologia
2.
Gene Ther ; 31(3-4): 165-174, 2024 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-38177343

RESUMO

Ghrelin is commonly known as the 'hunger hormone' due to its role in stimulating food intake in humans. However, the roles of ghrelin extend beyond regulating hunger. Our aim was to investigate the ability of ghrelin to protect against hydrogen peroxide (H2O2), a reactive oxygen species commonly associated with cardiac injury. An in vitro model of oxidative stress was developed using H2O2 injured H9c2 cells. Despite lentiviral ghrelin overexpression, H9c2 cell viability and mitochondrial function were not protected following H2O2 injury. We found that H9c2 cells lack expression of the preproghrelin cleavage enzyme prohormone convertase 1 (encoded by PCSK1), required to convert ghrelin to its active form. In contrast, we found that primary rat cardiomyocytes do express PCSK1 and were protected from H2O2 injury by lentiviral ghrelin overexpression. In conclusion, we have shown that ghrelin expression can protect primary rat cardiomyocytes against H2O2, though this effect was not observed in other cell types tested.


Assuntos
Grelina , Peróxido de Hidrogênio , Humanos , Animais , Ratos , Peróxido de Hidrogênio/farmacologia , Grelina/genética , Grelina/metabolismo , Grelina/farmacologia , Apoptose , Transdução de Sinais , Estresse Oxidativo , Espécies Reativas de Oxigênio/metabolismo , Espécies Reativas de Oxigênio/farmacologia , Miócitos Cardíacos/metabolismo
3.
Nat Commun ; 14(1): 6304, 2023 10 09.
Artigo em Inglês | MEDLINE | ID: mdl-37813881

RESUMO

Liver fibrosis results from chronic liver injury triggered by factors such as viral infection, excess alcohol intake, and lipid accumulation. However, the mechanisms underlying liver fibrosis are not fully understood. Here, we demonstrate that the expression of fibroblast growth factor 18 (Fgf18) is elevated in mouse livers following the induction of chronic liver fibrosis models. Deletion of Fgf18 in hepatocytes attenuates liver fibrosis; conversely, overexpression of Fgf18 promotes liver fibrosis. Single-cell RNA sequencing reveals that overexpression of Fgf18 in hepatocytes results in an increase in the number of Lrat+ hepatic stellate cells (HSCs), thereby inducing fibrosis. Mechanistically, FGF18 stimulates the proliferation of HSCs by inducing the expression of Ccnd1. Moreover, the expression of FGF18 is correlated with the expression of profibrotic genes, such as COL1A1 and ACTA2, in human liver biopsy samples. Thus, FGF18 promotes liver fibrosis and could serve as a therapeutic target to treat liver fibrosis.


Assuntos
Células Estreladas do Fígado , Cirrose Hepática , Camundongos , Animais , Humanos , Células Estreladas do Fígado/metabolismo , Cirrose Hepática/patologia , Fígado/metabolismo , Fibrose , Proliferação de Células
4.
Mol Ther Methods Clin Dev ; 30: 459-473, 2023 Sep 14.
Artigo em Inglês | MEDLINE | ID: mdl-37674904

RESUMO

Recombinant adeno-associated viruses (rAAVs) have emerged as one of the most promising gene therapy vectors that have been successfully used in pre-clinical models of heart disease. However, this has not translated well to humans due to species differences in rAAV transduction efficiency. As a result, the search for human cardiotropic capsids is a major contemporary challenge. We used a capsid-shuffled rAAV library to perform directed evolution in human iPSC-derived cardiomyocytes (hiPSC-CMs). Five candidates emerged, with four presenting high sequence identity to AAV6, while a fifth divergent variant was related to AAV3b. Functional analysis of the variants was performed in vitro using hiPSC-CMs, cardiac organoids, human cardiac slices, non-human primate and porcine cardiac slices, as well as mouse heart and liver in vivo. We showed that cell entry was not the best predictor of transgene expression efficiency. The novel variant rAAV.KK04 was the best-performing vector in human-based screening platforms, exceeding the benchmark rAAV6. None of the novel capsids demonstrate a significant transduction of liver in vivo. The range of experimental models used revealed the value of testing for tropism differences under the conditions of human specificity, bona fide, myocardium and cell type of interest.

5.
Biomolecules ; 13(9)2023 09 16.
Artigo em Inglês | MEDLINE | ID: mdl-37759797

RESUMO

Lentiviral vectors are a robust gene delivery tool for inducing transgene expression in a variety of cells. They are well suited to facilitate the testing of therapeutic candidate genes in vitro, due to relative ease of packaging and ability to transduce dividing and non-dividing cells. Our goal was to identify a gene that could be delivered to the heart to protect against cancer-therapy-induced cardiotoxicity. We sought to generate a lentivirus construct with a ubiquitous CMV promoter driving expression of B-cell lymphocyte/leukemia 2 gene (Bcl-2), a potent anti-apoptotic gene. Contrary to our aim, overexpression of Bcl-2 induced cell death in the producer HEK293T cells, resulting in failure to produce usable vector titre. This was circumvented by exchanging the CMV promoter to the cardiac-specific NCX1 promoter, leading to the successful production of a lentiviral vector which could induce cardioprotective expression of Bcl-2. In conclusion, reduced expression of Bcl-2 driven by a weaker promoter improved vector yield, and led to the production of functional cardioprotective Bcl-2 in primary cardiomyocytes.


Assuntos
Cardiotoxicidade , Genes bcl-2 , Vetores Genéticos , Humanos , Células HEK293 , Miócitos Cardíacos , Transgenes , Lentivirus/genética , Vetores Genéticos/genética , Vetores Genéticos/uso terapêutico
6.
Methods Mol Biol ; 2455: 267-278, 2022.
Artigo em Inglês | MEDLINE | ID: mdl-35213001

RESUMO

Nonalcoholic steatohepatitis (NASH) is a metabolic liver disease that progresses from simple steatosis to the disease states such as chronic inflammation and fibrosis. In most liver diseases, immunological responses caused by tissue damages or viral infection contribute to the pathological advances, and various types of cell death have been reported to be implicated in their pathogenesis. However, the conventional detection of necrosis in vivo is not currently available, whereas the detection method for apoptosis has been relatively well-established. We recently reported a method for the in vivo detection of necrotic cells in liver disease models by an intravenous injection of Propidium Iodide (PI) into mice. We also provide standard methods for the evaluation of lipid accumulation and fibrosis characteristic of NASH. In addition, by utilizing these procedures and a murine model of steatohepatitis, we showed that ferroptosis, a type of regulated necrotic cell death, could be involved in the pathogenesis of NASH. These approaches allow us to explore the pathophysiological roles of cell death in liver diseases.


Assuntos
Ferroptose , Hepatopatia Gordurosa não Alcoólica , Animais , Modelos Animais de Doenças , Fígado/metabolismo , Cirrose Hepática/metabolismo , Camundongos , Camundongos Endogâmicos C57BL , Necrose/patologia , Hepatopatia Gordurosa não Alcoólica/patologia
7.
Cell Death Dis ; 10(6): 449, 2019 06 18.
Artigo em Inglês | MEDLINE | ID: mdl-31209199

RESUMO

Nonalcoholic steatohepatitis (NASH) is a metabolic liver disease that progresses from simple steatosis to the disease state of inflammation and fibrosis. Previous studies suggest that apoptosis and necroptosis may contribute to the pathogenesis of NASH, based on several murine models. However, the mechanisms underlying the transition of simple steatosis to steatohepatitis remain unclear, because it is difficult to identify when and where such cell deaths begin to occur in the pathophysiological process of NASH. In the present study, our aim is to investigate which type of cell death plays a role as the trigger for initiating inflammation in fatty liver. By establishing a simple method of discriminating between apoptosis and necrosis in the liver, we found that necrosis occurred prior to apoptosis at the onset of steatohepatitis in the choline-deficient, ethionine-supplemented (CDE) diet model. To further investigate what type of necrosis is involved in the initial necrotic cell death, we examined the effect of necroptosis and ferroptosis inhibition by administering inhibitors to wild-type mice in the CDE diet model. In addition, necroptosis was evaluated using mixed lineage kinase domain-like protein (MLKL) knockout mice, which is lacking in a terminal executor of necroptosis. Consequently, necroptosis inhibition failed to block the onset of necrotic cell death, while ferroptosis inhibition protected hepatocytes from necrotic death almost completely, and suppressed the subsequent infiltration of immune cells and inflammatory reaction. Furthermore, the amount of oxidized phosphatidylethanolamine, which is involved in ferroptosis pathway, was increased in the liver sample of the CDE diet-fed mice. These findings suggest that hepatic ferroptosis plays an important role as the trigger for initiating inflammation in steatohepatitis and may be a therapeutic target for preventing the onset of steatohepatitis.


Assuntos
Ferroptose , Fígado/patologia , Hepatopatia Gordurosa não Alcoólica/patologia , Animais , Apoptose/efeitos dos fármacos , Tetracloreto de Carbono/toxicidade , Cromanos/farmacologia , Citocinas/metabolismo , Dieta , Etionina , Ferroptose/efeitos dos fármacos , Hepatite/imunologia , Hepatite/metabolismo , Hepatócitos/citologia , Hepatócitos/efeitos dos fármacos , Hepatócitos/metabolismo , Quelantes de Ferro/farmacologia , Fígado/citologia , Fígado/efeitos dos fármacos , Fígado/metabolismo , Masculino , Camundongos , Camundongos Endogâmicos C57BL , Camundongos Knockout , Necroptose/efeitos dos fármacos , Necrose , Hepatopatia Gordurosa não Alcoólica/induzido quimicamente , Hepatopatia Gordurosa não Alcoólica/metabolismo
8.
Elife ; 72018 07 30.
Artigo em Inglês | MEDLINE | ID: mdl-30059007

RESUMO

Under chronic or severe liver injury, liver progenitor cells (LPCs) of biliary origin are known to expand and contribute to the regeneration of hepatocytes and cholangiocytes. This regeneration process is called ductular reaction (DR), which is accompanied by dynamic remodeling of biliary tissue. Although the DR shows apparently distinct mode of biliary extension depending on the type of liver injury, the key regulatory mechanism remains poorly understood. Here, we show that Lutheran (Lu)/Basal cell adhesion molecule (BCAM) regulates the morphogenesis of DR depending on liver disease models. Lu+ and Lu- biliary cells isolated from injured liver exhibit opposite phenotypes in cell motility and duct formation capacities in vitro. By overexpression of Lu, Lu- biliary cells acquire the phenotype of Lu+ biliary cells. Lu-deficient mice showed severe defects in DR. Our findings reveal a critical role of Lu in the control of phenotypic heterogeneity of DR in distinct liver disease models.


Assuntos
Ductos Biliares/metabolismo , Ductos Biliares/fisiologia , Moléculas de Adesão Celular/metabolismo , Regeneração Hepática , Sistema do Grupo Sanguíneo Lutheran/metabolismo , Glicoproteínas de Membrana/metabolismo , Animais , Especificidade de Anticorpos/imunologia , Movimento Celular/genética , Separação Celular , Colina , Dieta , Modelos Animais de Doenças , Molécula de Adesão da Célula Epitelial/metabolismo , Regulação da Expressão Gênica , Humanos , Integrina beta1/genética , Integrina beta1/metabolismo , Laminina/metabolismo , Fígado/metabolismo , Regeneração Hepática/genética , Glicoproteínas de Membrana/genética , Camundongos Endogâmicos C57BL , Camundongos Knockout , Modelos Biológicos , Fenótipo , RNA Mensageiro/genética , RNA Mensageiro/metabolismo , Reprodutibilidade dos Testes
9.
Hepatology ; 67(1): 296-312, 2018 01.
Artigo em Inglês | MEDLINE | ID: mdl-28779552

RESUMO

Fibrosis is an important wound-healing process in injured tissues, but excessive fibrosis is often observed in patients with chronic inflammation. Although oncostatin M (OSM) has been reported to play crucial roles for recovery from acute liver injury by inducing tissue inhibitor of metalloproteinase 1 (Timp1) expression, the role of OSM in chronic liver injury (CLI) is yet to be elucidated. Here, we show that OSM exerts powerful fibrogenic activity by regulating macrophage activation during CLI. Genetic ablation of the OSM gene alleviated fibrosis in a mouse model of chronic hepatitis. Conversely, continuous expression of OSM in a normal mouse liver by hydrodynamic tail vein injection (HTVi) induced severe fibrosis without necrotic damage of hepatocytes, indicating that OSM is involved in the fundamental process of liver fibrosis (LF) after hepatitis. In a primary coculture of hepatic stellate cells (HSCs) and hepatic macrophages (HMs), OSM up-regulated the expression of fibrogenic factors, such as transforming growth factor-ß and platelet-derived growth factor in HMs, while inducing Timp1 expression in HSCs, suggesting the synergistic roles of OSM for collagen deposition in the liver. Fluorescence-activated cell sorting analyses using OSM-HTVi and OSM knockout mice have revealed that bone-marrow-derived monocyte/macrophage are responsive to OSM for profibrotic activation. Furthermore, depletion or blocking of HMs by administration of clodronate liposome or chemokine inhibitor prevented OSM-induced fibrosis. CONCLUSION: OSM plays a crucial role in LF by coordinating the phenotypic change of HMs and HSCs. Our data suggest that OSM is a promising therapeutic target for LF. (Hepatology 2018;67:296-312).


Assuntos
Células Estreladas do Fígado/efeitos dos fármacos , Hepatócitos/patologia , Cirrose Hepática/patologia , Regeneração Hepática/fisiologia , Oncostatina M/metabolismo , Análise de Variância , Animais , Biomarcadores/metabolismo , Células Cultivadas , Cromatografia Líquida de Alta Pressão/métodos , Modelos Animais de Doenças , Células Estreladas do Fígado/metabolismo , Hepatócitos/metabolismo , Humanos , Cirrose Hepática/fisiopatologia , Masculino , Camundongos , Camundongos Endogâmicos C57BL , Camundongos Knockout , Distribuição Aleatória , Medição de Risco , Estatísticas não Paramétricas
10.
Hepatology ; 66(5): 1616-1630, 2017 11.
Artigo em Inglês | MEDLINE | ID: mdl-28599080

RESUMO

Upon mild liver injury, new hepatocytes originate from preexisting hepatocytes. However, if hepatocyte proliferation is impaired, a manifestation of severe liver injury, biliary epithelial cells (BECs) contribute to new hepatocytes through BEC dedifferentiation into liver progenitor cells (LPCs), also termed oval cells or hepatoblast-like cells (HB-LCs), and subsequent differentiation into hepatocytes. Despite the identification of several factors regulating BEC dedifferentiation and activation, little is known about factors involved in the regulation of LPC differentiation into hepatocytes during liver regeneration. Using a zebrafish model of near-complete hepatocyte ablation, we show that bone morphogenetic protein (Bmp) signaling is required for BEC conversion to hepatocytes, particularly for LPC differentiation into hepatocytes. We found that severe liver injury led to the up-regulation of genes involved in Bmp signaling, including smad5, tbx2b, and id2a, in the liver. Bmp suppression did not block BEC dedifferentiation into HB-LCs; however, the differentiation of HB-LCs into hepatocytes was impaired due to the maintenance of HB-LCs in an undifferentiated state. Later Bmp suppression did not affect HB-LC differentiation but increased BEC number through proliferation. Notably, smad5, tbx2b, and id2a mutants exhibited similar liver regeneration defects as those observed in Bmp-suppressed livers. Moreover, BMP2 addition promoted the differentiation of a murine LPC line into hepatocytes in vitro. CONCLUSIONS: Bmp signaling regulates BEC-driven liver regeneration through smad5, tbx2b, and id2a: it regulates HB-LC differentiation into hepatocytes through tbx2b and BEC proliferation through id2a; our findings provide insights into promoting innate liver regeneration as a novel therapy. (Hepatology 2017;66:1616-1630).


Assuntos
Proteínas Morfogenéticas Ósseas/metabolismo , Diferenciação Celular , Proteína 2 Inibidora de Diferenciação/metabolismo , Regeneração Hepática , Proteínas com Domínio T/metabolismo , Proteínas de Peixe-Zebra/metabolismo , Animais , Proliferação de Células , Hepatócitos/citologia , Peixe-Zebra
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