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1.
BMC Anesthesiol ; 24(1): 200, 2024 Jun 05.
Artigo em Inglês | MEDLINE | ID: mdl-38840092

RESUMO

BACKGROUND: The inhalational anesthetic isoflurane is commonly utilized in clinical practice, particularly in the field of pediatric anesthesia. Research has demonstrated its capacity to induce neuroinflammation and long-term behavioral disorders; however, the underlying mechanism remains unclear [1]. The cation-chloride cotransporters Na+-K+-2Cl--1 (NKCC1) and K+-2Cl--2 (KCC2) play a pivotal role in regulating neuronal responses to gamma-aminobutyric acid (GABA) [2]. Imbalances in NKCC1/KCC2 can disrupt GABA neurotransmission, potentially leading to neural circuit hyperexcitability and reduced inhibition following neonatal exposure to anesthesia [3]. Therefore, this study postulates that anesthetics have the potential to dysregulate NKCC1 and/or KCC2 during brain development. METHODS: We administered 1.5% isoflurane anesthesia to neonatal rats for a duration of 4 h at postnatal day 7 (PND7). Anxiety levels were assessed using the open field test at PND28, while cognitive function was evaluated using the Morris water maze test between PND31 and PND34. Protein levels of NKCC1, KCC2, BDNF, and phosphorylated ERK (P-ERK) in the hippocampus were measured through Western blotting analysis. Pro-inflammatory cytokines IL-1ß, IL-6, and TNF-α were quantified using ELISA. RESULTS: We observed a decrease in locomotion trajectories within the central region and a significantly shorter total distance in the ISO group compared to CON pups, indicating that isoflurane induces anxiety-like behavior. In the Morris water maze (MWM) test, rats exposed to isoflurane exhibited prolonged escape latency onto the platform. Additionally, isoflurane administration resulted in reduced time spent crossing in the MWM experiment at PND34, suggesting long-term impairment of memory function. Furthermore, we found that isoflurane triggered activation of pro-inflammatory cytokines IL-1ß, IL-6, and TNF-α; downregulated KCC2/BDNF/P-ERK expression; and increased the NKCC1/KCC2 ratio in the hippocampus of PND7 rats. Bumetadine (NKCC1 specific inhibitors) reversed cognitive damage and effective disorder induced by isoflurane in neonatal rats by inhibiting TNF-α activation, normalizing IL-6 and IL-1ß levels, restoring KCC2 expression levels as well as BDNF and ERK signaling pathways. Based on these findings, it can be speculated that BDNF, P-ERK, IL-1ß, IL-6 and TNF - α may act downstream of the NKCC1/KCC2 pathway. CONCLUSIONS: Our findings provide evidence that isoflurane administration in neonatal rats leads to persistent cognitive deficits through dysregulation of the Cation-Chloride Cotransporters NKCC1 and KCC2, BDNF, p-ERK proteins, as well as neuroinflammatory processes.


Assuntos
Anestésicos Inalatórios , Animais Recém-Nascidos , Isoflurano , Cotransportadores de K e Cl- , Membro 2 da Família 12 de Carreador de Soluto , Simportadores , Animais , Isoflurano/farmacologia , Membro 2 da Família 12 de Carreador de Soluto/metabolismo , Simportadores/metabolismo , Anestésicos Inalatórios/farmacologia , Anestésicos Inalatórios/efeitos adversos , Ratos , Camundongos , Ratos Sprague-Dawley , Masculino , Doenças Neuroinflamatórias/induzido quimicamente , Doenças Neuroinflamatórias/metabolismo , Feminino , Disfunção Cognitiva/induzido quimicamente , Disfunção Cognitiva/metabolismo
2.
PLoS One ; 19(6): e0304512, 2024.
Artigo em Inglês | MEDLINE | ID: mdl-38829838

RESUMO

The Organic Cation Transporter Novel 1 (OCTN1), also known as SLC22A4, is widely expressed in various human tissues, and involved in numerous physiological and pathological processes remains. It facilitates the transport of organic cations, zwitterions, with selectivity for positively charged solutes. Ergothioneine, an antioxidant compound, and acetylcholine (Ach) are among its substrates. Given the lack of experimentally solved structures of this protein, this study aimed at generating a reliable 3D model of OCTN1 to shed light on its substrate-binding preferences and the role of sodium in substrate recognition and transport. A chimeric model was built by grafting the large extracellular loop 1 (EL1) from an AlphaFold-generated model onto a homology model. Molecular dynamics simulations revealed domain-specific mobility, with EL1 exhibiting the highest impact on overall stability. Molecular docking simulations identified cytarabine and verapamil as highest affinity ligands, consistent with their known inhibitory effects on OCTN1. Furthermore, MM/GBSA analysis allowed the categorization of substrates into weak, good, and strong binders, with molecular weight strongly correlating with binding affinity to the recognition site. Key recognition residues, including Tyr211, Glu381, and Arg469, were identified through interaction analysis. Ach demonstrated a low interaction energy, supporting the hypothesis of its one-directional transport towards to outside of the membrane. Regarding the role of sodium, our model suggested the involvement of Glu381 in sodium binding. Molecular dynamics simulations of systems at increasing levels of Na+ concentrations revealed increased sodium occupancy around Glu381, supporting experimental data associating Na+ concentration to molecule transport. In conclusion, this study provides valuable insights into the 3D structure of OCTN1, its substrate-binding preferences, and the role of sodium in the recognition. These findings contribute to the understanding of OCTN1 involvement in various physiological and pathological processes and may have implications for drug development and disease management.


Assuntos
Simulação de Acoplamento Molecular , Simulação de Dinâmica Molecular , Proteínas de Transporte de Cátions Orgânicos , Humanos , Proteínas de Transporte de Cátions Orgânicos/química , Proteínas de Transporte de Cátions Orgânicos/metabolismo , Proteínas de Transporte de Cátions Orgânicos/genética , Simportadores/química , Simportadores/metabolismo , Sítios de Ligação , Ligação Proteica , Ergotioneína/química , Ergotioneína/metabolismo , Sódio/metabolismo , Sódio/química , Simulação por Computador , Acetilcolina/metabolismo , Acetilcolina/química , Ligantes
3.
Cell Mol Life Sci ; 81(1): 206, 2024 May 06.
Artigo em Inglês | MEDLINE | ID: mdl-38709307

RESUMO

The epithelial-mesenchymal transformation (EMT) process of alveolar epithelial cells is recognized as involved in the development of pulmonary fibrosis. Recent evidence has shown that lipopolysaccharide (LPS)-induced aerobic glycolysis of lung tissue and elevated lactate concentration are associated with the pathogenesis of sepsis-associated pulmonary fibrosis. However, it is uncertain whether LPS promotes the development of sepsis-associated pulmonary fibrosis by promoting lactate accumulation in lung tissue, thereby initiating EMT process. We hypothesized that monocarboxylate transporter-1 (MCT1), as the main protein for lactate transport, may be crucial in the pathogenic process of sepsis-associated pulmonary fibrosis. We found that high concentrations of lactate induced EMT while moderate concentrations did not. Besides, we demonstrated that MCT1 inhibition enhanced EMT process in MLE-12 cells, while MCT1 upregulation could reverse lactate-induced EMT. LPS could promote EMT in MLE-12 cells through MCT1 inhibition and lactate accumulation, while this could be alleviated by upregulating the expression of MCT1. In addition, the overexpression of MCT1 prevented LPS-induced EMT and pulmonary fibrosis in vivo. Altogether, this study revealed that LPS could inhibit the expression of MCT1 in mouse alveolar epithelial cells and cause lactate transport disorder, which leads to lactate accumulation, and ultimately promotes the process of EMT and lung fibrosis.


Assuntos
Transição Epitelial-Mesenquimal , Ácido Láctico , Lipopolissacarídeos , Transportadores de Ácidos Monocarboxílicos , Fibrose Pulmonar , Simportadores , Transportadores de Ácidos Monocarboxílicos/metabolismo , Transportadores de Ácidos Monocarboxílicos/genética , Transportadores de Ácidos Monocarboxílicos/antagonistas & inibidores , Animais , Transição Epitelial-Mesenquimal/efeitos dos fármacos , Lipopolissacarídeos/farmacologia , Simportadores/metabolismo , Simportadores/genética , Simportadores/antagonistas & inibidores , Camundongos , Ácido Láctico/metabolismo , Fibrose Pulmonar/metabolismo , Fibrose Pulmonar/patologia , Fibrose Pulmonar/induzido quimicamente , Camundongos Endogâmicos C57BL , Linhagem Celular , Masculino , Células Epiteliais Alveolares/metabolismo , Células Epiteliais Alveolares/patologia , Células Epiteliais Alveolares/efeitos dos fármacos , Regulação para Cima/efeitos dos fármacos
4.
Sci Rep ; 14(1): 10689, 2024 05 09.
Artigo em Inglês | MEDLINE | ID: mdl-38724641

RESUMO

Homeostatic plasticity, the ability of neurons to maintain their averaged activity constant around a set point value, is thought to account for the central hyperactivity after hearing loss. Here, we investigated the putative role of GABAergic neurotransmission in this mechanism after a noise-induced hearing loss larger than 50 dB in high frequencies in guinea pigs. The effect of GABAergic inhibition is linked to the normal functioning of K + -Cl- co-transporter isoform 2 (KCC2) which maintains a low intracellular concentration of chloride. The expression of membrane KCC2 were investigated before and after noise trauma in the ventral and dorsal cochlear nucleus (VCN and DCN, respectively) and in the inferior colliculus (IC). Moreover, the effect of gabazine (GBZ), a GABA antagonist, was also studied on the neural activity in IC. We show that KCC2 is downregulated in VCN, DCN and IC 3 days after noise trauma, and in DCN and IC 30 days after the trauma. As expected, GBZ application in the IC of control animals resulted in an increase of spontaneous and stimulus-evoked activity. In the noise exposed animals, on the other hand, GBZ application decreased the stimulus-evoked activity in IC neurons. The functional implications of these central changes are discussed.


Assuntos
Perda Auditiva Provocada por Ruído , Cotransportadores de K e Cl- , Simportadores , Ácido gama-Aminobutírico , Animais , Simportadores/metabolismo , Simportadores/antagonistas & inibidores , Cobaias , Perda Auditiva Provocada por Ruído/metabolismo , Perda Auditiva Provocada por Ruído/fisiopatologia , Ácido gama-Aminobutírico/metabolismo , Masculino , Núcleo Coclear/metabolismo , Piridazinas/farmacologia , Neurônios/metabolismo
5.
Cancer J ; 30(3): 194-201, 2024.
Artigo em Inglês | MEDLINE | ID: mdl-38753754

RESUMO

ABSTRACT: Differentiated thyroid carcinoma (DTC) has been increasing in incidence in the United States over the last several decades, although mortality rates have remained low. Radioactive iodine therapy (RAI-T) has been a mainstay of treatment for DTC since the 1940s. Imaging of DTC before and after RAI-T primarily focuses on molecular imaging of the sodium iodide symporter. The expanding understanding of the molecular profile of DTC has increased available treatment options. Incorporation of risk stratification to treatment approaches has led to deintensification of both surgical and nonsurgical treatments, leading to decreased morbidity without compromising disease control.


Assuntos
Radioisótopos do Iodo , Imagem Molecular , Neoplasias da Glândula Tireoide , Humanos , Neoplasias da Glândula Tireoide/terapia , Neoplasias da Glândula Tireoide/diagnóstico , Neoplasias da Glândula Tireoide/patologia , Neoplasias da Glândula Tireoide/diagnóstico por imagem , Imagem Molecular/métodos , Radioisótopos do Iodo/uso terapêutico , Adulto , Simportadores/genética , Simportadores/metabolismo
6.
Int J Mol Sci ; 25(10)2024 May 12.
Artigo em Inglês | MEDLINE | ID: mdl-38791314

RESUMO

Obesity is associated with alterations in lipid metabolism and gut microbiota dysbiosis. This study investigated the effects of puerarin, a bioactive isoflavone, on lipid metabolism disorders and gut microbiota in high-fat diet (HFD)-induced obese mice. Supplementation with puerarin reduced plasma alanine aminotransferase, liver triglyceride, liver free fatty acid (FFA), and improved gut microbiota dysbiosis in obese mice. Puerarin's beneficial metabolic effects were attenuated when farnesoid X receptor (FXR) was antagonized, suggesting FXR-mediated mechanisms. In hepatocytes, puerarin ameliorated high FFA-induced sterol regulatory element-binding protein (SREBP) 1 signaling, inflammation, and mitochondrial dysfunction in an FXR-dependent manner. In obese mice, puerarin reduced liver damage, regulated hepatic lipogenesis, decreased inflammation, improved mitochondrial function, and modulated mitophagy and ubiquitin-proteasome pathways, but was less effective in FXR knockout mice. Puerarin upregulated hepatic expression of FXR, bile salt export pump (BSEP), and downregulated cytochrome P450 7A1 (CYP7A1) and sodium taurocholate transporter (NTCP), indicating modulation of bile acid synthesis and transport. Puerarin also restored gut microbial diversity, the Firmicutes/Bacteroidetes ratio, and the abundance of Clostridium celatum and Akkermansia muciniphila. This study demonstrates that puerarin effectively ameliorates metabolic disturbances and gut microbiota dysbiosis in obese mice, predominantly through FXR-dependent pathways. These findings underscore puerarin's potential as a therapeutic agent for managing obesity and enhancing gut health, highlighting its dual role in improving metabolic functions and modulating microbial communities.


Assuntos
Dieta Hiperlipídica , Microbioma Gastrointestinal , Isoflavonas , Fígado , Obesidade , Receptores Citoplasmáticos e Nucleares , Animais , Isoflavonas/farmacologia , Microbioma Gastrointestinal/efeitos dos fármacos , Dieta Hiperlipídica/efeitos adversos , Receptores Citoplasmáticos e Nucleares/metabolismo , Camundongos , Obesidade/metabolismo , Obesidade/tratamento farmacológico , Fígado/metabolismo , Fígado/efeitos dos fármacos , Masculino , Disbiose , Camundongos Obesos , Camundongos Endogâmicos C57BL , Membro 11 da Subfamília B de Transportadores de Cassetes de Ligação de ATP/metabolismo , Membro 11 da Subfamília B de Transportadores de Cassetes de Ligação de ATP/genética , Colesterol 7-alfa-Hidroxilase/metabolismo , Colesterol 7-alfa-Hidroxilase/genética , Camundongos Knockout , Transportadores de Ânions Orgânicos Dependentes de Sódio/metabolismo , Transportadores de Ânions Orgânicos Dependentes de Sódio/genética , Simportadores/metabolismo , Simportadores/genética , Metabolismo dos Lipídeos/efeitos dos fármacos , Hepatócitos/metabolismo , Hepatócitos/efeitos dos fármacos , Akkermansia
7.
J Neurosci Res ; 102(5): e25355, 2024 May.
Artigo em Inglês | MEDLINE | ID: mdl-38808645

RESUMO

Gamma aminobutyric acid (GABA) is a critical inhibitory neurotransmitter in the central nervous system that plays a vital role in modulating neuronal excitability. Dysregulation of GABAergic signaling, particularly involving the cotransporters NKCC1 and KCC2, has been implicated in various pathologies, including epilepsy, schizophrenia, autism spectrum disorder, Down syndrome, and ischemia. NKCC1 facilitates chloride influx, whereas KCC2 mediates chloride efflux via potassium gradient. Altered expression and function of these cotransporters have been associated with excitotoxicity, inflammation, and cellular death in ischemic events characterized by reduced cerebral blood flow, leading to compromised tissue metabolism and subsequent cell death. NKCC1 inhibition has emerged as a potential therapeutic approach to attenuate intracellular chloride accumulation and mitigate neuronal damage during ischemic events. Similarly, targeting KCC2, which regulates chloride efflux, holds promise for improving outcomes and reducing neuronal damage under ischemic conditions. This review emphasizes the critical roles of GABA, NKCC1, and KCC2 in ischemic pathologies and their potential as therapeutic targets. Inhibiting or modulating the activity of these cotransporters represents a promising strategy for reducing neuronal damage, preventing excitotoxicity, and improving neurological outcomes following ischemic events. Furthermore, exploring the interactions between natural compounds and NKCC1/KCC2 provides additional avenues for potential therapeutic interventions for ischemic injury.


Assuntos
Isquemia Encefálica , Morte Celular , Cotransportadores de K e Cl- , Membro 2 da Família 12 de Carreador de Soluto , Simportadores , Ácido gama-Aminobutírico , Animais , Humanos , Ácido gama-Aminobutírico/metabolismo , Simportadores/metabolismo , Membro 2 da Família 12 de Carreador de Soluto/metabolismo , Morte Celular/fisiologia , Morte Celular/efeitos dos fármacos , Isquemia Encefálica/metabolismo , Isquemia Encefálica/tratamento farmacológico
8.
J Cell Mol Med ; 28(10): e18409, 2024 May.
Artigo em Inglês | MEDLINE | ID: mdl-38769917

RESUMO

Farnesoid X receptor (FXR), a ligand-activated transcription factor, plays an important role in maintaining water homeostasis by up-regulating aquaporin 2 (AQP2) expression in renal medullary collecting ducts; however, its role in the survival of renal medullary interstitial cells (RMICs) under hypertonic conditions remains unclear. We cultured primary mouse RMICs and found that the FXR was expressed constitutively in RMICs, and that its expression was significantly up-regulated at both mRNA and protein levels by hypertonic stress. Using luciferase and ChIP assays, we found a potential binding site of nuclear factor kappa-B (NF-κB) located in the FXR gene promoter which can be bound and activated by NF-κB. Moreover, hypertonic stress-induced cell death in RMICs was significantly attenuated by FXR activation but worsened by FXR inhibition. Furthermore, FXR increased the expression and nuclear translocation of hypertonicity-induced tonicity-responsive enhance-binding protein (TonEBP), the expressions of its downstream target gene sodium myo-inositol transporter (SMIT), and heat shock protein 70 (HSP70). The present study demonstrates that the NF-κB/FXR/TonEBP pathway protects RMICs against hypertonic stress.


Assuntos
Medula Renal , NF-kappa B , Transdução de Sinais , Animais , NF-kappa B/metabolismo , Camundongos , Medula Renal/metabolismo , Medula Renal/citologia , Pressão Osmótica , Aquaporina 2/metabolismo , Aquaporina 2/genética , Fatores de Transcrição/metabolismo , Fatores de Transcrição/genética , Masculino , Camundongos Endogâmicos C57BL , Proteínas de Choque Térmico HSP70/metabolismo , Proteínas de Choque Térmico HSP70/genética , Regiões Promotoras Genéticas , Células Cultivadas , Regulação da Expressão Gênica , Simportadores/metabolismo , Simportadores/genética , Receptores Citoplasmáticos e Nucleares
9.
World J Gastroenterol ; 30(19): 2575-2602, 2024 May 21.
Artigo em Inglês | MEDLINE | ID: mdl-38817665

RESUMO

BACKGROUND: Lactate, previously considered a metabolic byproduct, is pivotal in cancer progression and maintaining the immunosuppressive tumor microenvironment. Further investigations confirmed that lactate is a primary regulator, introducing recently described post-translational modifications of histone and non-histone proteins, termed lysine lactylation. Pancreatic adenocarcinomas are characterized by increased glycolysis and lactate accumulation. However, our understanding of lactylation-related genes in pancreatic adenocarcinomas remains limited. AIM: To construct a novel lactylation-related gene signature to predict the survival of patients with pancreatic cancer. METHODS: RNA-seq and clinical data of pancreatic adenocarcinoma (PDAC) were obtained from the GTEx (Genotype-Tissue Expression) and TCGA (The Cancer Genome Atlas) databases via Xena Explorer, and GSE62452 datasets from GEO. Data on lactylation-related genes were obtained from publicly available sources. Differential expressed genes (DEGs) were acquired by using R package "DESeq2" in R. Univariate COX regression analysis, LASSO Cox and multivariate Cox regressions were produced to construct the lactylation-related prognostic model. Further analyses, including functional enrichment, ESTIMATE, and CIBERSORT, were performed to analyze immune status and treatment responses in patients with pancreatic cancer. PDAC and normal human cell lines were subjected to western blot analysis under lactic acid intervention; two PDAC cell lines with the most pronounced lactylation were selected. Subsequently, RT-PCR was employed to assess the expression of LRGs genes; SLC16A1, which showed the highest expression, was selected for further investigation. SLC16A1-mediated lactylation was analyzed by immunofluorescence, lactate production analysis, colony formation, transwell, and wound healing assays to investigate its role in promoting the proliferation and migration of PDAC cells. In vivo validation was performed using an established tumor model. RESULTS: In this study, we successfully identified 10 differentially expressed lactylation-related genes (LRGs) with prognostic value. Subsequently, a lactylation-related signature was developed based on five OS-related lactylation-related genes (SLC16A1, HLA-DRB1, KCNN4, KIF23, and HPDL) using Lasso Cox hazard regression analysis. Subsequently, we evaluated the clinical significance of the lactylation-related genes in pancreatic adenocarcinoma. A comprehensive examination of infiltrating immune cells and tumor mutation burden was conducted across different subgroups. Furthermore, we demonstrated that SLC16A1 modulates lactylation in pancreatic cancer cells through lactate transport. Both in vivo and in vitro experiments showed that decreasing SLC16A1 Level and its lactylation significantly inhibited tumor progression, indicating the potential of targeting the SLC16A1/Lactylation-associated signaling pathway as a therapeutic strategy against pancreatic adenocarcinoma. CONCLUSION: We constructed a novel lactylation-related prognostic signature to predict OS, immune status, and treatment response of patients with pancreatic adenocarcinoma, providing new strategic directions and antitumor immunotherapies.


Assuntos
Regulação Neoplásica da Expressão Gênica , Neoplasias Pancreáticas , Microambiente Tumoral , Humanos , Neoplasias Pancreáticas/genética , Neoplasias Pancreáticas/patologia , Neoplasias Pancreáticas/mortalidade , Neoplasias Pancreáticas/imunologia , Neoplasias Pancreáticas/metabolismo , Prognóstico , Linhagem Celular Tumoral , Microambiente Tumoral/imunologia , Biomarcadores Tumorais/genética , Biomarcadores Tumorais/metabolismo , Transportadores de Ácidos Monocarboxílicos/genética , Transportadores de Ácidos Monocarboxílicos/metabolismo , Processamento de Proteína Pós-Traducional , Adenocarcinoma/genética , Adenocarcinoma/patologia , Adenocarcinoma/mortalidade , Adenocarcinoma/imunologia , Adenocarcinoma/metabolismo , Ácido Láctico/metabolismo , Simportadores/genética , Simportadores/metabolismo , Proliferação de Células/genética , Perfilação da Expressão Gênica , Masculino , Carcinoma Ductal Pancreático/genética , Carcinoma Ductal Pancreático/mortalidade , Carcinoma Ductal Pancreático/patologia , Carcinoma Ductal Pancreático/imunologia , Carcinoma Ductal Pancreático/terapia , Feminino , Animais , Transcriptoma
10.
Nat Commun ; 15(1): 4386, 2024 May 23.
Artigo em Inglês | MEDLINE | ID: mdl-38782953

RESUMO

Sialin, a member of the solute carrier 17 (SLC17) transporter family, is unique in its ability to transport not only sialic acid using a pH-driven mechanism, but also transport mono and diacidic neurotransmitters, such as glutamate and N-acetylaspartylglutamate (NAAG), into synaptic vesicles via a membrane potential-driven mechanism. While most transporters utilize one of these mechanisms, the structural basis of how Sialin transports substrates using both remains unclear. Here, we present the cryogenic electron-microscopy structures of human Sialin: apo cytosol-open, apo lumen-open, NAAG-bound, and inhibitor-bound. Our structures show that a positively charged cytosol-open vestibule accommodates either NAAG or the Sialin inhibitor Fmoc-Leu-OH, while its luminal cavity potentially binds sialic acid. Moreover, functional analyses along with molecular dynamics simulations identify key residues in binding sialic acid and NAAG. Thus, our findings uncover the essential conformational states in NAAG and sialic acid transport, demonstrating a working model of SLC17 transporters.


Assuntos
Microscopia Crioeletrônica , Simulação de Dinâmica Molecular , Humanos , Ácido N-Acetilneuramínico/metabolismo , Ácido N-Acetilneuramínico/química , Lisossomos/metabolismo , Células HEK293 , Conformação Proteica , Transportadores de Ânions Orgânicos/metabolismo , Transportadores de Ânions Orgânicos/química , Transportadores de Ânions Orgânicos/antagonistas & inibidores , Dipeptídeos/química , Dipeptídeos/metabolismo , Dipeptídeos/farmacologia , Simportadores
11.
Theriogenology ; 225: 152-161, 2024 Sep 01.
Artigo em Inglês | MEDLINE | ID: mdl-38805997

RESUMO

Oocytes and embryos are highly sensitive to environmental stress in vivo and in vitro. During in vitro culture, many stressful conditions can affect embryo quality and viability, leading to adverse clinical outcomes such as abortion and congenital abnormalities. In this study, we found that valeric acid (VA) increased the mitochondrial membrane potential and ATP content, decreased the level of reactive oxygen species that the mitochondria generate, and thus improved mitochondrial function during early embryonic development in pigs. VA decreased expression of the autophagy-related factors LC3B and BECLIN1. Interestingly, VA inhibited expression of autophagy-associated phosphorylation-adenosine monophosphate-activated protein kinase (p-AMPK), phosphorylation-UNC-51-like autophagy-activated kinase 1 (p-ULK1, Ser555), and ATG13, which reduced apoptosis. Short-chain fatty acids (SCFAs) can signal through G-protein-coupled receptors on the cell membrane or enter the cell directly through transporters. We further show that the monocarboxylate transporter 1 (MCT1) was necessary for the effects of VA on embryo quality, which provides a new molecular perspective of the pathway by which SCFAs affect embryos. Importantly, VA significantly inhibited the AMPK-ULK1 autophagic signaling pathway through MCT1, decreased apoptosis, increased expression of embryonic pluripotency genes, and improved embryo quality.


Assuntos
Proteínas Quinases Ativadas por AMP , Proteína Homóloga à Proteína-1 Relacionada à Autofagia , Autofagia , Desenvolvimento Embrionário , Mitocôndrias , Transportadores de Ácidos Monocarboxílicos , Animais , Proteína Homóloga à Proteína-1 Relacionada à Autofagia/metabolismo , Proteína Homóloga à Proteína-1 Relacionada à Autofagia/genética , Suínos/embriologia , Desenvolvimento Embrionário/efeitos dos fármacos , Autofagia/efeitos dos fármacos , Proteínas Quinases Ativadas por AMP/metabolismo , Proteínas Quinases Ativadas por AMP/genética , Mitocôndrias/metabolismo , Mitocôndrias/efeitos dos fármacos , Transportadores de Ácidos Monocarboxílicos/metabolismo , Transportadores de Ácidos Monocarboxílicos/genética , Transdução de Sinais/efeitos dos fármacos , Blastocisto/efeitos dos fármacos , Blastocisto/metabolismo , Potencial da Membrana Mitocondrial/efeitos dos fármacos , Técnicas de Cultura Embrionária/veterinária , Simportadores
12.
Cell Rep Med ; 5(5): 101543, 2024 May 21.
Artigo em Inglês | MEDLINE | ID: mdl-38697101

RESUMO

Cognitive impairment in the elderly is associated with alterations in bile acid (BA) metabolism. In this study, we observe elevated levels of serum conjugated primary bile acids (CPBAs) and ammonia in elderly individuals, mild cognitive impairment, Alzheimer's disease, and aging rodents, with a more pronounced change in females. These changes are correlated with increased expression of the ileal apical sodium-bile acid transporter (ASBT), hippocampal synapse loss, and elevated brain CPBA and ammonia levels in rodents. In vitro experiments confirm that a CPBA, taurocholic acid, and ammonia induced synaptic loss. Manipulating intestinal BA transport using ASBT activators or inhibitors demonstrates the impact on brain CPBA and ammonia levels as well as cognitive decline in rodents. Additionally, administration of an intestinal BA sequestrant, cholestyramine, alleviates cognitive impairment, normalizing CPBAs and ammonia in aging mice. These findings highlight the potential of targeting intestinal BA absorption as a therapeutic strategy for age-related cognitive impairment.


Assuntos
Envelhecimento , Amônia , Ácidos e Sais Biliares , Disfunção Cognitiva , Absorção Intestinal , Animais , Ácidos e Sais Biliares/metabolismo , Disfunção Cognitiva/metabolismo , Disfunção Cognitiva/patologia , Absorção Intestinal/efeitos dos fármacos , Masculino , Feminino , Humanos , Camundongos , Envelhecimento/metabolismo , Amônia/metabolismo , Idoso , Camundongos Endogâmicos C57BL , Resina de Colestiramina/farmacologia , Simportadores/metabolismo , Transportadores de Ânions Orgânicos Dependentes de Sódio/metabolismo , Transportadores de Ânions Orgânicos Dependentes de Sódio/genética , Doença de Alzheimer/metabolismo , Doença de Alzheimer/patologia , Hipocampo/metabolismo , Hipocampo/patologia , Ratos , Idoso de 80 Anos ou mais
13.
Biochim Biophys Acta Mol Cell Res ; 1871(5): 119740, 2024 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-38697303

RESUMO

γ-Aminobutyric acid (GABA) is the major inhibitory neurotransmitter in the central nervous system. The termination of GABA transmission is through the action of GABA transporters (GATs). mGAT4 (encoded by Slc6a11) is another GAT besides GAT1 (encoded by Slc6a1) that functions in GABA reuptake in CNS. Research on the function of mGAT4 is still in its infancy. We developed an mGat4 knockout mouse model (mGat4-/- mice) and performed a series of behavioral analyses for the first time to study the effect of mGat4 on biological processes in CNS. Our results indicated that homozygous mGat4-/- mice had less depression, anxiety-like behavior and more social activities than their wild-type littermate controls. However, they had weight loss and showed motor incoordination and imbalance. Meanwhile, mGat4-/- mice showed increased pain threshold and hypoalgesia behavior in nociceptive stimulus and learning and memory impairments. The expression of multiple components of the GABAergic system including GAD67, GABAA and KCC2 was altered. There is little or no compensatory change in mGat1. In a word, mGat4 may play a key role in normal motor coordination, sensation, emotion, learning and memory and could be the potential target of neurological disorders.


Assuntos
Proteínas da Membrana Plasmática de Transporte de GABA , Camundongos Knockout , Animais , Masculino , Camundongos , Ansiedade/genética , Ansiedade/metabolismo , Comportamento Animal , Depressão/genética , Depressão/metabolismo , Proteínas da Membrana Plasmática de Transporte de GABA/genética , Proteínas da Membrana Plasmática de Transporte de GABA/metabolismo , Ácido gama-Aminobutírico/metabolismo , Glutamato Descarboxilase/metabolismo , Glutamato Descarboxilase/genética , Cotransportadores de K e Cl- , Camundongos Endogâmicos C57BL , Simportadores/genética , Simportadores/metabolismo
14.
J Med Chem ; 67(8): 6687-6704, 2024 Apr 25.
Artigo em Inglês | MEDLINE | ID: mdl-38574002

RESUMO

In the face of escalating metabolic disease prevalence, largely driven by modern lifestyle factors, this study addresses the critical need for novel therapeutic approaches. We have identified the sodium-coupled citrate transporter (NaCT or SLC13A5) as a target for intervention. Utilizing rational drug design, we developed a new class of SLC13A5 inhibitors, anchored by the hydroxysuccinic acid scaffold, refining the structure of PF-06649298. Among these, LBA-3 emerged as a standout compound, exhibiting remarkable potency with an IC50 value of 67 nM, significantly improving upon PF-06649298. In vitro assays demonstrated LBA-3's efficacy in reducing triglyceride levels in OPA-induced HepG2 cells. Moreover, LBA-3 displayed superior pharmacokinetic properties and effectively lowered triglyceride and total cholesterol levels in diverse mouse models (PCN-stimulated and starvation-induced), without detectable toxicity. These findings not only spotlight LBA-3 as a promising candidate for hyperlipidemia treatment but also exemplify the potential of targeted molecular design in advancing metabolic disorder therapeutics.


Assuntos
Hiperlipidemias , Humanos , Animais , Camundongos , Hiperlipidemias/tratamento farmacológico , Células Hep G2 , Relação Estrutura-Atividade , Simportadores/antagonistas & inibidores , Simportadores/metabolismo , Masculino , Hipolipemiantes/farmacologia , Hipolipemiantes/química , Hipolipemiantes/uso terapêutico , Hipolipemiantes/farmacocinética , Descoberta de Drogas , Camundongos Endogâmicos C57BL , Triglicerídeos/sangue , Triglicerídeos/metabolismo , Desenho de Fármacos
15.
Biomolecules ; 14(4)2024 Mar 25.
Artigo em Inglês | MEDLINE | ID: mdl-38672410

RESUMO

Inflammation is a physiological condition characterized by a complex interplay between different cells handled by metabolites and specific inflammatory-related molecules. In some pathological situations, inflammation persists underlying and worsening the pathological state. Over the years, two membrane transporters namely OCTN1 (SLC22A4) and OCTN2 (SLC22A5) have been shown to play specific roles in inflammation. These transporters form the OCTN subfamily within the larger SLC22 family. The link between these proteins and inflammation has been proposed based on their link to some chronic inflammatory diseases such as asthma, Crohn's disease (CD), and rheumatoid arthritis (RA). Moreover, the two transporters show the ability to mediate the transport of several compounds including carnitine, carnitine derivatives, acetylcholine, ergothioneine, and gut microbiota by-products, which have been specifically associated with inflammation for their anti- or proinflammatory action. Therefore, the absorption and distribution of these molecules rely on the presence of OCTN1 and OCTN2, whose expression is modulated by inflammatory cytokines and transcription factors typically activated by inflammation. In the present review, we wish to provide a state of the art on OCTN1 and OCTN2 transport function and regulation in relationships with inflammation and inflammatory diseases focusing on the metabolic signature collected in different body districts and gene polymorphisms related to inflammatory diseases.


Assuntos
Inflamação , Proteínas de Transporte de Cátions Orgânicos , Membro 5 da Família 22 de Carreadores de Soluto , Simportadores , Humanos , Inflamação/metabolismo , Membro 5 da Família 22 de Carreadores de Soluto/metabolismo , Membro 5 da Família 22 de Carreadores de Soluto/genética , Animais , Proteínas de Transporte de Cátions Orgânicos/metabolismo , Proteínas de Transporte de Cátions Orgânicos/genética , Ergotioneína/metabolismo , Doença de Crohn/metabolismo , Doença de Crohn/genética , Doença de Crohn/patologia , Artrite Reumatoide/metabolismo , Artrite Reumatoide/genética , Microbioma Gastrointestinal , Carnitina/metabolismo , Asma/metabolismo , Asma/genética , Acetilcolina/metabolismo
16.
Sci Rep ; 14(1): 9355, 2024 04 23.
Artigo em Inglês | MEDLINE | ID: mdl-38654093

RESUMO

Thyroid hormones (TH) play critical roles during nervous system development and patients carrying coding variants of MCT8 (monocarboxylate transporter 8) or THRA (thyroid hormone receptor alpha) present a spectrum of neurological phenotypes resulting from perturbed local TH action during early brain development. Recently, human cerebral organoids (hCOs) emerged as powerful in vitro tools for disease modelling recapitulating key aspects of early human cortex development. To begin exploring prospects of this model for thyroid research, we performed a detailed characterization of the spatiotemporal expression of MCT8 and THRA in developing hCOs. Immunostaining showed MCT8 membrane expression in neuronal progenitor cell types including early neuroepithelial cells, radial glia cells (RGCs), intermediate progenitors and outer RGCs. In addition, we detected robust MCT8 protein expression in deep layer and upper layer neurons. Spatiotemporal SLC16A2 mRNA expression, detected by fluorescent in situ hybridization (FISH), was highly concordant with MCT8 protein expression across cortical cell layers. FISH detected THRA mRNA expression already in neuroepithelium before the onset of neurogenesis. THRA mRNA expression remained low in the ventricular zone, increased in the subventricular zone whereas strong THRA expression was observed in excitatory neurons. In combination with a robust up-regulation of known T3 response genes following T3 treatment, these observations show that hCOs provide a promising and experimentally tractable model to probe local TH action during human cortical neurogenesis and eventually to model the consequences of impaired TH function for early cortex development.


Assuntos
Córtex Cerebral , Transportadores de Ácidos Monocarboxílicos , Neurogênese , Organoides , RNA Mensageiro , Simportadores , Receptores alfa dos Hormônios Tireóideos , Feminino , Humanos , Gravidez , Córtex Cerebral/embriologia , Córtex Cerebral/metabolismo , Regulação da Expressão Gênica no Desenvolvimento , Transportadores de Ácidos Monocarboxílicos/genética , Transportadores de Ácidos Monocarboxílicos/metabolismo , Células-Tronco Neurais/metabolismo , Células-Tronco Neurais/citologia , Neurogênese/genética , Neurônios/metabolismo , Organoides/metabolismo , Primeiro Trimestre da Gravidez/metabolismo , RNA Mensageiro/genética , RNA Mensageiro/metabolismo , Simportadores/genética , Simportadores/metabolismo , Receptores alfa dos Hormônios Tireóideos/genética , Receptores alfa dos Hormônios Tireóideos/metabolismo , Hormônios Tireóideos/metabolismo , Hormônios Tireóideos/genética
17.
J Cell Mol Med ; 28(9): e18352, 2024 May.
Artigo em Inglês | MEDLINE | ID: mdl-38685685

RESUMO

Gliomas, the most lethal tumours in brain, have a poor prognosis despite accepting standard treatment. Limited benefits from current therapies can be attributed to genetic, epigenetic and microenvironmental cues that affect cell programming and drive tumour heterogeneity. Through the analysis of Hi-C data, we identified a potassium-chloride co-transporter SLC12A5 associated with disrupted topologically associating domain which was downregulated in tumour tissues. Multiple independent glioma cohorts were included to analyse the characterization of SLC12A5 and found it was significantly associated with pathological features, prognostic value, genomic alterations, transcriptional landscape and drug response. We constructed two SLC12A5 overexpression cell lines to verify the function of SLC12A5 that suppressed tumour cell proliferation and migration in vitro. In addition, SLC12A5 was also positively associated with GABAA receptor activity and negatively associated with pro-tumour immune signatures and immunotherapy response. Collectively, our study provides a comprehensive characterization of SLC12A5 in glioma and supports SLC12A5 as a potential suppressor of disease progression.


Assuntos
Neoplasias Encefálicas , Proliferação de Células , Regulação Neoplásica da Expressão Gênica , Glioma , Cotransportadores de K e Cl- , Simportadores , Humanos , Glioma/genética , Glioma/patologia , Glioma/metabolismo , Proliferação de Células/genética , Linhagem Celular Tumoral , Neoplasias Encefálicas/genética , Neoplasias Encefálicas/patologia , Neoplasias Encefálicas/metabolismo , Simportadores/genética , Simportadores/metabolismo , Movimento Celular/genética , Prognóstico , Receptores de GABA-A/metabolismo , Receptores de GABA-A/genética
18.
eNeuro ; 11(4)2024 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-38604775

RESUMO

A sublethal ischemic episode [termed preconditioning (PC)] protects neurons in the brain against a subsequent severe ischemic injury. This phenomenon is known as brain ischemic tolerance and has received much attention from researchers because of its robust neuroprotective effects. We have previously reported that PC activates astrocytes and subsequently upregulates P2X7 receptors, thereby leading to ischemic tolerance. However, the downstream signals of P2X7 receptors that are responsible for PC-induced ischemic tolerance remain unknown. Here, we show that PC-induced P2X7 receptor-mediated lactate release from astrocytes has an indispensable role in this event. Using a transient focal cerebral ischemia model caused by middle cerebral artery occlusion, extracellular lactate levels during severe ischemia were significantly increased in mice who experienced PC; this increase was dependent on P2X7 receptors. In addition, the intracerebroventricular injection of lactate protected against cerebral ischemic injury. In in vitro experiments, although stimulation of astrocytes with the P2X7 receptor agonist BzATP had no effect on the protein levels of monocarboxylate transporter (MCT) 1 and MCT4 (which are responsible for lactate release from astrocytes), BzATP induced the plasma membrane translocation of these MCTs via their chaperone CD147. Importantly, CD147 was increased in activated astrocytes after PC, and CD147-blocking antibody abolished the PC-induced facilitation of astrocytic lactate release and ischemic tolerance. Taken together, our findings suggest that astrocytes induce ischemic tolerance via P2X7 receptor-mediated lactate release.


Assuntos
Astrócitos , Precondicionamento Isquêmico , Ácido Láctico , Camundongos Endogâmicos C57BL , Transportadores de Ácidos Monocarboxílicos , Receptores Purinérgicos P2X7 , Animais , Astrócitos/metabolismo , Astrócitos/efeitos dos fármacos , Precondicionamento Isquêmico/métodos , Ácido Láctico/metabolismo , Ácido Láctico/farmacologia , Receptores Purinérgicos P2X7/metabolismo , Masculino , Transportadores de Ácidos Monocarboxílicos/metabolismo , Basigina/metabolismo , Isquemia Encefálica/metabolismo , Simportadores/metabolismo , Infarto da Artéria Cerebral Média/metabolismo , Modelos Animais de Doenças , Proteínas Musculares/metabolismo , Trifosfato de Adenosina/metabolismo , Trifosfato de Adenosina/farmacologia , Camundongos , Células Cultivadas , Encéfalo/metabolismo , Camundongos Knockout
20.
Regul Toxicol Pharmacol ; 149: 105619, 2024 May.
Artigo em Inglês | MEDLINE | ID: mdl-38614220

RESUMO

The Xenopus Eleutheroembryonic Thyroid Assay (XETA) was recently published as an OECD Test Guideline for detecting chemicals acting on the thyroid axis. However, the OECD validation did not cover all mechanisms that can potentially be detected by the XETA. This study was therefore initiated to investigate and consolidate the applicability domain of the XETA regarding the following mechanisms: thyroid hormone receptor (THR) agonism, sodium-iodide symporter (NIS) inhibition, thyroperoxidase (TPO) inhibition, deiodinase (DIO) inhibition, glucocorticoid receptor (GR) agonism, and uridine 5'-diphospho-glucuronosyltransferase (UDPGT) induction. In total, 22 chemicals identified as thyroid-active or -inactive in Amphibian Metamorphosis Assays (AMAs) were tested using the XETA OECD Test Guideline. The comparison showed that both assays are highly concordant in identifying chemicals with mechanisms of action related to THR agonism, DIO inhibition, and GR agonism. They also consistently identified the UDPGT inducers as thyroid inactive. NIS inhibition, investigated using sodium perchlorate, was not detected in the XETA. TPO inhibition requires further mechanistic investigations as the reference chemicals tested resulted in opposing response directions in the XETA and AMA. This study contributes refining the applicability domain of the XETA, thereby helping to clarify the conditions where it can be used as an ethical alternative to the AMA.


Assuntos
Bioensaio , Disruptores Endócrinos , Metamorfose Biológica , Simportadores , Glândula Tireoide , Animais , Glândula Tireoide/efeitos dos fármacos , Glândula Tireoide/metabolismo , Metamorfose Biológica/efeitos dos fármacos , Bioensaio/métodos , Disruptores Endócrinos/toxicidade , Xenopus laevis , Receptores dos Hormônios Tireóideos/metabolismo , Receptores dos Hormônios Tireóideos/agonistas , Iodeto Peroxidase/metabolismo
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