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1.
Vet Res ; 55(1): 95, 2024 Jul 29.
Artigo em Inglês | MEDLINE | ID: mdl-39075562

RESUMO

Infection of piglets with Glaesserella parasuis (G. parasuis) induces host immunosuppression. However, the mechanism underlying the immunosuppression of piglets remains unclear. Activation of the PD-1/PD-L1 axis has been shown to trigger host immunosuppression. Baicalin possesses anti-inflammatory and immunomodulatory functions. However, whether baicalin inhibits PD-1/PD-L1 activation and thus alleviates host immunosuppression has not been investigated. In this study, the effect of baicalin on the attenuation of piglet immunosuppression induced by G. parasuis was evaluated. Seventy piglets were randomly divided into the control group, infection group, levamisole group, BMS-1 group, 25 mg/kg baicalin group, 50 mg/kg baicalin group and 100 mg/kg baicalin group. Following pretreatment with levamisole, BMS-1 or baicalin, the piglets were challenged with 1 × 108 CFU of G. parasuis. Our results showed that baicalin, levamisole and BMS-1 modified routine blood indicators and biochemical parameters; downregulated IL-1ß, IL-10, IL-18, TNF-α and IFN-γ mRNA expression; and upregulated IL-2 and IL-8 mRNA expression in blood. Baicalin, levamisole and BMS-1 increased the proportions of CD3+ T cells, CD3+CD4+ T cells, CD3+CD8+ T cells and CD3-CD21+ B cells in the splenocyte population, increased the proportions of CD3+ T cells, CD3+CD4+ T cells and CD3+CD8+ T cells in the blood, and inhibited PD-1/PD-L1 and TIM-3 activation. Baicalin, levamisole and BMS-1 reduced p-PI3K, p-Akt, and p-mTOR expression, the p-MEK1/2/MEK1/2 and p-ERK1/2/ERK1/2 ratios and increased RAS expression. Baicalin, levamisole and BMS-1 provided substantial protection against G. parasuis challenge and relieved tissue histopathological damage. Our findings might provide new strategies for controlling G. parasuis infection and other immunosuppressive diseases.


Assuntos
Flavonoides , Doenças dos Suínos , Serina-Treonina Quinases TOR , Animais , Flavonoides/farmacologia , Suínos , Doenças dos Suínos/microbiologia , Doenças dos Suínos/tratamento farmacológico , Doenças dos Suínos/imunologia , Serina-Treonina Quinases TOR/metabolismo , Sistema de Sinalização das MAP Quinases/efeitos dos fármacos , Fosfatidilinositol 3-Quinases/metabolismo , Transdução de Sinais/efeitos dos fármacos , Haemophilus parasuis/efeitos dos fármacos , Receptor de Morte Celular Programada 1/metabolismo , Antígeno B7-H1/metabolismo , Proteínas Proto-Oncogênicas c-akt/metabolismo , Tolerância Imunológica/efeitos dos fármacos , Terapia de Imunossupressão/veterinária
2.
Vet Res ; 55(1): 96, 2024 Jul 29.
Artigo em Inglês | MEDLINE | ID: mdl-39075542

RESUMO

Glaesserella parasuis (G. parasuis) induces vascular damage and systemic inflammation. However, the mechanism by which it causes vascular damage is currently unclear. Baicalin has important anti-inflammatory, antibacterial and immunomodulatory functions. In this study, we explored the ability of baicalin and probenecid to protect against G. parasuis challenge in a piglet model. Sixty piglets were randomly divided into a control group; an infection group; a probenecid group; and 25 mg/kg, 50 mg/kg and 100 mg/kg baicalin groups. The probenecid group and the 25 mg/kg, 50 mg/kg and 100 mg/kg baicalin groups were injected intramuscularly with 20 mg/kg body weight (BW) probenecid and 25 mg/kg BW, 50 mg/kg BW and 100 mg/kg BW baicalin, respectively. All piglets except those from the control group were injected intraperitoneally with 1 × 108 CFU of G. parasuis. The control group was injected intraperitoneally with TSB. The results showed baicalin and probenecid protected piglets against G. parasuis challenge, improved body weight and decreased temperature changes in piglets. Baicalin and probenecid attenuated IL-1ß, IL-10, IL-18, TNF-α and IFN-γ mRNA levels in the blood for 48 h, inhibited the production of the nucleosides ATP, ADP, AMP and UMP from 24 to 72 h, reduced Panx-1/P2Y6/P2X7 expression, weakened NF-kB, AP-1, NLRP3/Caspase-1 and ROCK/MLCK/MLC signalling activation, and upregulated VE-cadherin expression in the blood vessels of piglets challenged with G. parasuis. Baicalin and probenecid alleviated pathological tissue damage in piglets induced by G. parasuis. Our results might provide a promising strategy to control and treat G. parasuis infection in the clinical setting.


Assuntos
Flavonoides , Haemophilus parasuis , Probenecid , Doenças dos Suínos , Animais , Probenecid/farmacologia , Flavonoides/farmacologia , Flavonoides/administração & dosagem , Suínos , Doenças dos Suínos/microbiologia , Doenças dos Suínos/prevenção & controle , Haemophilus parasuis/efeitos dos fármacos , Infecções por Haemophilus/veterinária , Infecções por Haemophilus/prevenção & controle
3.
BMC Vet Res ; 20(1): 141, 2024 Apr 06.
Artigo em Inglês | MEDLINE | ID: mdl-38582846

RESUMO

Glaesserella parasuis, an important respiratory bacterial pathogen, causes Glässer's disease in piglets, with potential immunosuppression. We established a piglet infection model and explored the immunosuppression mechanism to improve our understanding of the host immune response to G. parasuis. Twenty piglets were randomly divided into two groups (n = 10). The infection group was intraperitoneally challenged with 2 × 108 CFU of G. parasuis in 2 mL TSB. The control group was intraperitoneally injected with equivalent TSB. After 72 h, the piglets were sacrificed, and spleen tissue was collected. PD-1/PD-L1 expression was determined. The splenocytes were isolated to detect CD3+ T, CD3+CD4+ T, CD3+CD8+ T and CD3-CD21+cell differentiation. Via data-independent acquisition (DIA), we compared the proteomics of healthy and infected spleen tissues. Glaesserella parasuis modified CD3+ T, CD3+CD4+ T, CD3+CD8+ T and CD3-CD21+ cell differentiation and PD-1/PD-L1 expression in the spleen. The infection group had 596 proteins with significant differences in expression, of which 301 were significantly upregulated and 295 downregulated. Differentially expressed proteins (DEPs) were mainly related to immune responses. This is the first study on PD-1/PD-L1 expression in the spleen associated with immunosuppression in a piglet model to explore the protein changes related to immune responses via DIA.


Assuntos
Infecções por Haemophilus , Haemophilus parasuis , Doenças dos Suínos , Animais , Antígeno B7-H1 , Infecções por Haemophilus/microbiologia , Infecções por Haemophilus/veterinária , Terapia de Imunossupressão/veterinária , Fosfatidilinositol 3-Quinases , Receptor de Morte Celular Programada 1 , Proteínas Proto-Oncogênicas c-akt , Suínos , Doenças dos Suínos/microbiologia , Serina-Treonina Quinases TOR
4.
Ecotoxicol Environ Saf ; 243: 113989, 2022 Sep 15.
Artigo em Inglês | MEDLINE | ID: mdl-35994905

RESUMO

Colistin has broad-spectrum activity against Gram-negative bacteria and has been considered as the last-resort treatment for multiantibiotic-resistant Gram-negative bacteria infections in human. And it is also world widely utilized as a veterinary medicine for the promotion of growth, prevention and control of diseases in livestock and poultry. Extensive use of colistin in husbandry results in the introduction of large amounts of colistin to the surrounding environment via animals' urine and feces, potentially inducing the prevalence of colistin resistance bacteria and the impact of the ecological environment. The study investigated the adsorption, desorption and degradation of colistin in soils using high sensitivity UPLC-MS/MS assays. An MS based assay was established to directly determine colistin in the soil. It was observed that the moderate adsorption affinity of colistin to the three soils with adsorption strength (1/n) ranging from 0.6897 to 1.3333. Colistin exhibited the highest adsorption affinity to the sandy loam, followed by the sand and loam. Despite of different characteristics of three soils, the adsorption capacity of the three soils was comparable. The adsorption of colistin to the three types of soils analyzed was irreversible. The degradation experiments showed that the degradation of colistin in the sandy loam was relatively slow with a degradation half-life in a range of 13.2-29.7 days when colistin was applied to the sandy loam at a level of 10 ~ 40 µg/g. The degradation of colistin occurred in the mixture of the sandy loam and feces recovered from the colistin treated broiler as well. 25% of colistin remained in the mixture under environmental conditions after 14 days. Composting the sandy loam by directly covering the soil surface with colistin treated broilers' feces resulted in the introduction of colistin to the sandy loam. Colistin was observed in both the topsoil from the contact surface and sandy loam samples collected 20 cm below the contact surface. The understanding of adsorption-desorption behaviors, degradation and mobility of colistin in soils might offer insights into the potential impact of colistin on the emergence and prevalence of resistant bacteria and the ecological environment.


Assuntos
Poluentes do Solo , Solo , Adsorção , Animais , Galinhas/metabolismo , Cromatografia Líquida , Colistina/farmacologia , Humanos , Poluentes do Solo/análise , Espectrometria de Massas em Tandem
5.
Molecules ; 27(16)2022 Aug 10.
Artigo em Inglês | MEDLINE | ID: mdl-36014323

RESUMO

Glaesserella parasuis (GPS), a causative agent of Glässer's disease, is thought to be the main fatal cause of peritonitis in swine, thus resulting in high mortality and morbidity and significant economic losses to the swine industry. However, the mechanisms of GPS infection-induced apoptosis and possible therapeutic pathway for GPS infection in peritonitis remain unclear. Baicalin has important biological functions during disease treatment, such as antiviral, bacterial inhibition, anti-apoptosis, and anti-inflammatory. However, whether baicalin has anti-apoptotic effects during the process of GPS infection in peritonitis is unclear. In the present study, the anti-apoptotic effect and mechanisms of baicalin in GPS infection-induced apoptosis were investigated in porcine peritoneal mesothelial cells (PPMC). The results showed that baicalin could inhibit the apoptosis rate occurrence of PPMC induced by GPS to various degrees and inhibit the expression of apoptosis-related genes and cleaved caspase-3. Meanwhile, baicalin significantly antagonized the expression of p-JNK, p-p38, and p-ERK induced by GPS in PPMC. These findings for the first time demonstrate that baicalin exerted the effect of antagonizing GPS induced apoptosis in PPMC by inhibiting the activation of the PKC-MAPK pathway and could be a therapeutic option in the management of GPS infection.


Assuntos
Haemophilus parasuis , Peritonite , Doenças dos Suínos , Animais , Flavonoides/farmacologia , Flavonoides/uso terapêutico , Peritonite/tratamento farmacológico , Suínos , Doenças dos Suínos/tratamento farmacológico
6.
Molecules ; 26(5)2021 Feb 26.
Artigo em Inglês | MEDLINE | ID: mdl-33652818

RESUMO

Glaesserella parasuis (G. parasuis) causes inflammation and damage to piglets. Whether polyserositis caused by G. parasuis is due to tight junctions damage and the protective effect of baicalin on it have not been examined. Therefore, this study aims to investigate the effects of baicalin on peritoneal tight junctions of piglets challenged with G. parasuis and its underlying molecular mechanisms. Piglets were challenged with G. parasuis and treated with or without baicalin. RT-PCR was performed to examine the expression of peritoneal tight junctions genes. Immunofluorescence was carried out to detect the distribution patterns of tight junctions proteins. Western blot assays were carried out to determine the involved signaling pathways. Our data showed that G. parasuis infection can down-regulate the tight junctions expression and disrupt the distribution of tight junctions proteins. Baicalin can alleviate the down-regulation of tight junctions mRNA in peritoneum, prevent the abnormalities and maintain the continuous organization of tight junctions. Our results provide novel evidence to support that baicalin has the capacity to protect peritoneal tight junctions from G. parasuis-induced inflammation. The protective mechanisms of baicalin could be associated with inhibition of the activation of PKC and MLCK/MLC signaling pathway. Taken together, these data demonstrated that baicalin is a promising natural agent for the prevention and treatment of G. parasuis infection.


Assuntos
Flavonoides/farmacologia , Infecções por Pasteurellaceae/tratamento farmacológico , Pasteurellaceae/efeitos dos fármacos , Doenças dos Suínos/tratamento farmacológico , Animais , Pasteurellaceae/genética , Pasteurellaceae/patogenicidade , Infecções por Pasteurellaceae/genética , Infecções por Pasteurellaceae/microbiologia , Infecções por Pasteurellaceae/veterinária , Peritônio/efeitos dos fármacos , Peritônio/microbiologia , RNA Mensageiro/efeitos dos fármacos , RNA Mensageiro/genética , Suínos , Doenças dos Suínos/microbiologia , Junções Íntimas/efeitos dos fármacos , Junções Íntimas/genética , Junções Íntimas/microbiologia
7.
Mol Cell Biochem ; 472(1-2): 45-56, 2020 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-32519231

RESUMO

Glässer's disease, caused by Haemophilus parasuis (H. parasuis), is associated with vascular damage and vascular inflammation in pigs. Therefore, early assessment and treatment are essential to control the inflammatory disorder. MicroRNAs have been shown to be involved in the vascular pathology. Baicalin has important pharmacological functions, including anti-inflammatory, antimicrobial and antioxidant effects. In this study, we investigated the changes of microRNAs in porcine aortic vascular endothelial cells (PAVECs) induced by H. parasuis and the effect of baicalin in this model by utilizing high-throughput sequencing. The results showed that 155 novel microRNAs and 76 differentially expressed microRNAs were identified in all samples. Subsequently, Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway enrichment analysis of the target genes of the differentially expressed microRNAs demonstrated that regulation of actin cytoskeleton, focal adhesion, ECM-receptor interaction, bacterial invasion of epithelial cells, and adherens junction were the most interesting pathways after PAVECs were infected with H. parasuis. In addition, when the PAVECs were pretreated with baicalin, mismatch repair, peroxisome, oxidative phosphorylation, DNA replication, and ABC transporters were the most predominant signaling pathways. STRING analysis showed that most of the target genes of the differentially expressed microRNAs were associated with each other. The expression levels of the differentially expressed microRNAs were negatively co-regulated with their target genes' mRNA following pretreatment with baicalin in the H. parasuis-induced PAVECs using co-expression networks analysis. This is the first report that microRNAs might have key roles in inflammatory damage of vascular tissue during H. parasuis infection. Baicalin regulated the microRNAs changes in the PAVECs following H. parasuis infection, which may represent useful novel targets to prevent or treat H. parasuis infection.


Assuntos
Aorta/metabolismo , Endotélio Vascular/metabolismo , Flavonoides/farmacologia , Regulação da Expressão Gênica/efeitos dos fármacos , Infecções por Haemophilus/microbiologia , MicroRNAs/genética , Transcriptoma/efeitos dos fármacos , Animais , Animais Recém-Nascidos , Anti-Inflamatórios não Esteroides/farmacologia , Aorta/citologia , Aorta/microbiologia , Endotélio Vascular/citologia , Endotélio Vascular/microbiologia , Haemophilus parasuis/isolamento & purificação , Suínos
8.
Vet Res ; 51(1): 102, 2020 Aug 14.
Artigo em Inglês | MEDLINE | ID: mdl-32795339

RESUMO

Glaesserella parasuis (G. parasuis) causes porcine vascular inflammation and damage. Baicalin is reported to have antioxidant and anti-inflammatory functions. However, whether baicalin protects piglets against G. parasuis challenge and the potential protective mechanism have not been investigated. Therefore, in this study, we comprehensively examined the protective efficacy of baicalin in piglets challenged with G. parasuis and the possible protective mechanism. Our results show that baicalin attenuated the release of the inflammation-related cytokines interleukin (IL) 1ß, IL6, IL8, IL10, and tumour necrosis factor α (TNF-α) and reduced high mobility group box 1 (HMGB1) production and cell apoptosis in piglets infected with G. parasuis. Baicalin also inhibited the activation of the mitogen-activated protein kinase (MAPK) signalling pathway and protected piglets against G. parasuis challenge. Taken together, our data suggest that baicalin could protect piglets from G. parasuis by reducing HMGB1 release, attenuating cell apoptosis, and inhibiting MAPK signalling activation, thereby alleviating the inflammatory response induced by the bacteria. Our results suggest that baicalin has utility as a novel therapeutic drug to control G. parasuis infection.


Assuntos
Anti-Infecciosos/uso terapêutico , Flavonoides/uso terapêutico , Infecções por Haemophilus/veterinária , Haemophilus parasuis/fisiologia , Substâncias Protetoras/uso terapêutico , Doenças dos Suínos/prevenção & controle , Animais , Relação Dose-Resposta a Droga , Infecções por Haemophilus/microbiologia , Infecções por Haemophilus/prevenção & controle , Sus scrofa , Suínos , Doenças dos Suínos/microbiologia
9.
BMC Vet Res ; 15(1): 98, 2019 Mar 25.
Artigo em Inglês | MEDLINE | ID: mdl-30909903

RESUMO

BACKGROUND: Haemophilus parasuis (HPS) is the causative agent of Glässer's disease, characterized by arthritis, fibrinous polyserositis and meningitis, and resulting in worldwide economic losses in the swine industry. Baicalin (BA), a commonly used traditional Chinese medication, has been shown to possess a series of activities, such as anti-bacterial, anti-viral, anti-tumor, anti-oxidant and anti-inflammatory activities. However, whether BA has anti-apoptotic effects following HPS infection is unclear. Here, we investigated the anti-apoptotic effects and mechanisms of BA in HPS-induced apoptosis via the protein kinase C (PKC)-mitogen-activated protein kinase (MAPK) pathway in piglet's mononuclear phagocytes (PMNP). RESULTS: Our data demonstrated that HPS could induce reactive oxygen species (ROS) production, arrest the cell cycle and promote apoptosis via the PKC-MAPK signaling pathway in PMNP. Moreover, when BA was administered, we observed a reduction in ROS production, suppression of cleavage of caspase-3 in inducing apoptosis, and inhibition of activation of the PKC-MAPK signaling pathway for down-regulating p-JNK, p-p38, p-ERK, p-PKC-α and PKC-δ in PMNP triggered by HPS. CONCLUSIONS: Our data strongly suggest that BA can reverse the apoptosis initiated by HPS through regulating the PKC-MAPK signaling pathway, which represents a promising therapeutic agent in the treatment of HPS infection.


Assuntos
Antibacterianos/uso terapêutico , Flavonoides/uso terapêutico , Haemophilus parasuis/efeitos dos fármacos , Sistema de Sinalização das MAP Quinases/efeitos dos fármacos , Monócitos/metabolismo , Doenças dos Suínos/tratamento farmacológico , Animais , Animais Recém-Nascidos/metabolismo , Animais Recém-Nascidos/microbiologia , Antibacterianos/farmacologia , Apoptose/efeitos dos fármacos , Relação Dose-Resposta a Droga , Flavonoides/farmacologia , Infecções por Haemophilus/tratamento farmacológico , Infecções por Haemophilus/metabolismo , Infecções por Haemophilus/veterinária , Monócitos/efeitos dos fármacos , Monócitos/microbiologia , Espécies Reativas de Oxigênio/metabolismo , Suínos , Doenças dos Suínos/metabolismo , Doenças dos Suínos/microbiologia
10.
J Vet Pharmacol Ther ; 42(5): 580-584, 2019 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-31373697

RESUMO

The purpose of this study was to determine the pharmacokinetics of baicalin after intravenous and intramuscular administration of sodium baicalin at 50 mg/kg to piglets. Plasma baicalin levels were determined by high-performance liquid chromatography. The plasma concentration-time data of baicalin for both administration routes were best described by two-compartmental open model. The area under the plasma concentration-time curve and the elimination half-lives were 77.47 ± 6.14 µg/ml × h and 1.73 ± 0.16 hr for intravenous and 64.85 ± 5.67 µg/ml × h and 2.42 ± 0.15 hr for intramuscular administration, respectively. The apparent volume of distribution and body clearance were 1.63 ± 0.23 L/kg and 2.74 ± 0.30 L h-1  kg-1 for intravenous and 0.51 ± 0.10 L/kg and 0.78 ± 0.08 L h-1  kg-1 for intramuscular routes, respectively. An intramuscular injection of sodium baicalin in piglets resulted in rapid and complete absorption, with a mean maximal plasma concentration of 77.28 ± 7.40 µg/ml at 0.17 hr and a high absolute bioavailability of 83.73 ± 5.53%.


Assuntos
Anti-Infecciosos/farmacocinética , Flavonoides/farmacocinética , Suínos/sangue , Animais , Anti-Infecciosos/administração & dosagem , Anti-Infecciosos/sangue , Área Sob a Curva , Flavonoides/administração & dosagem , Flavonoides/sangue , Meia-Vida , Injeções Intramusculares , Injeções Intravenosas
11.
Int J Mol Sci ; 20(10)2019 May 14.
Artigo em Inglês | MEDLINE | ID: mdl-31091773

RESUMO

The gut microbiome has important effects on gastrointestinal diseases. Diarrhea attenuation functions of baicalin (BA) is not clear. Baicalin-aluminum complexes (BBA) were synthesized from BA, but the BBA's efficacy on the diarrhea of piglets and the gut microbiomes have not been explored and the mechanism remains unclear. This study has explored whether BBA could modulate the composition of the gut microbiomes of piglets during diarrhea. The results showed that the diarrhea rate reduced significantly after treatment with BBA. BBA altered the overall structure of the gut microbiomes. In addition, the Gene Ontology (GO) enrichment analysis indicated that the functional differentially expressed genes, which were involved in the top 30 GO enrichments, were associated with hydrogenase (acceptor) activity, nicotinamide-nucleotide adenylyltransferase activity, and isocitrate lyase activity, belong to the molecular function. Kyoto Encyclopedia of Genes and Genomes (KEGG) enrichment analysis showed that flagellar assembly, bacterial chemotaxis, lipopolysaccharide biosynthesis, ATP-binding cassette transporters (ABC) transporters, biosynthesis of amino acids, and phosphotransferase system (PTS) were the most enriched during BBA treatment process. Taken together, our results first demonstrated that BBA treatment could modulate the gut microbiomes composition of piglets with diarrhea, which may provide new potential insights on the mechanisms of gut microbiomes associated underlying the antimicrobial efficacy of BBA.


Assuntos
Anti-Infecciosos/farmacologia , Fezes/microbiologia , Flavonoides/farmacologia , Microbioma Gastrointestinal/efeitos dos fármacos , Alumínio/química , Animais , Anti-Infecciosos/química , Anti-Infecciosos/uso terapêutico , Diarreia/tratamento farmacológico , Diarreia/veterinária , Flavonoides/química , Flavonoides/uso terapêutico , Suínos , Doenças dos Suínos/tratamento farmacológico
12.
Int J Mol Sci ; 19(5)2018 Apr 27.
Artigo em Inglês | MEDLINE | ID: mdl-29702580

RESUMO

Haemophilus parasuis (H. parasuis) can cause Glässer’s disease in pigs. However, the molecular mechanism of the inflammation response induced by H. parasuis remains unclear. The high-mobility group box 1 (HMGB1) protein is related to the pathogenesis of various infectious pathogens, but little is known about whether H. parasuis can induce the release of HMGB1 in piglet peripheral blood monocytes. Baicalin displays important anti-inflammatory and anti-microbial activities. In the present study, we investigated whether H. parasuis can trigger the secretion of HMGB1 in piglet peripheral blood monocytes and the anti-inflammatory effect of baicalin on the production of HMGB1 in peripheral blood monocytes induced by H. parasuis during the inflammation response. In addition, host cell responses stimulated by H. parasuis were determined with RNA-Seq. The RNA-Seq results showed that H. parasuis infection provokes the expression of cytokines and the activation of numerous pathways. In addition, baicalin significantly reduced the release of HMGB1 in peripheral blood monocytes induced by H. parasuis. Taken together, our study showed that H. parasuis can induce the release of HMGB1 and baicalin can inhibit HMGB1 secretion in an H. parasuis-induced peripheral blood monocytes model, which may provide a new strategy for preventing the inflammatory disorders induced by H. parasuis.


Assuntos
Anti-Infecciosos/farmacologia , Anti-Inflamatórios/farmacologia , Flavonoides/farmacologia , Proteína HMGB1/metabolismo , Doenças dos Suínos/tratamento farmacológico , Animais , Anti-Infecciosos/uso terapêutico , Anti-Inflamatórios/uso terapêutico , Sequência de Bases , Citocinas/genética , Citocinas/metabolismo , Relação Dose-Resposta a Droga , Flavonoides/uso terapêutico , Proteína HMGB1/genética , Infecções por Haemophilus/tratamento farmacológico , Infecções por Haemophilus/veterinária , Haemophilus parasuis/patogenicidade , Inflamação/tratamento farmacológico , Inflamação/veterinária , Monócitos/efeitos dos fármacos , Cultura Primária de Células , Suínos
13.
Int J Mol Sci ; 19(5)2018 Apr 29.
Artigo em Inglês | MEDLINE | ID: mdl-29710817

RESUMO

Haemophilus parasuis is the causative agent of Glässer’s disease in pigs. H. parasuis can cause vascular damage, although the mechanism remains unclear. In this study, we investigated the host cell responses involved in the molecular pathway interactions in porcine aortic vascular endothelial cells (PAVECs) induced by H. parasuis using RNA-Seq. The transcriptome results showed that when PAVECs were infected with H. parasuis for 24 h, 281 differentially expressed genes (DEGs) were identified; of which, 236 were upregulated and 45 downregulated. The 281 DEGs were involved in 136 KEGG signaling pathways that were organismal systems, environmental information processing, metabolism, cellular processes, and genetic information processing. The main pathways were the Rap1, FoxO, and PI3K/Akt signaling pathways, and the overexpressed genes were determined and verified by quantitative reverse transcription polymerase chain reaction. In addition, 252 genes were clustered into biological processes, molecular processes, and cellular components. Our study provides new insights for understanding the interaction between bacterial and host cells, and analyzed, in detail, the possible mechanisms that lead to vascular damage induced by H. parasuis. This may lead to development of novel therapeutic targets to control H. parasuis infection.


Assuntos
Células Endoteliais/metabolismo , Infecções por Haemophilus/genética , Transcriptoma , Animais , Células Cultivadas , Células Endoteliais/microbiologia , Endotélio Vascular/citologia , Fatores de Transcrição Forkhead/genética , Fatores de Transcrição Forkhead/metabolismo , Infecções por Haemophilus/metabolismo , Haemophilus parasuis/patogenicidade , Fosfatidilinositol 3-Quinases/genética , Fosfatidilinositol 3-Quinases/metabolismo , Proteínas Proto-Oncogênicas c-akt/genética , Proteínas Proto-Oncogênicas c-akt/metabolismo , Suínos
14.
Can J Microbiol ; 63(4): 312-320, 2017 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-28177794

RESUMO

Haemophilus parasuis can cause a severe membrane inflammation disorder. It has been documented that superoxide dismutase (SOD) is a potential target to treat systemic inflammatory diseases. Therefore, we constructed an experimental H. parasuis subunit vaccine SOD and determined the protective efficacy of SOD using a lethal dose challenge against H. parasuis serovar 4 strain MD0322 and serovar 5 strain SH0165 in a mouse model. The results demonstrated that SOD could induce a strong humoral immune response in mice and provide significant immunoprotection efficacy against a lethal dose of H. parasuis serovar 4 strain MD0322 or serovar 5 strain SH0165 challenge. IgG subtype analysis indicated SOD protein could trigger a bias toward a Th1-type immune response and induce the proliferation of splenocytes and secretion of IL-2 and IFN-γ of splenocytes. In addition, serum in mice from the SOD-immunized group could inhibit the growth of strain MD0322 and strain SH0165 in the whole-blood killing bacteria assay. This is the first report that immunization of mice with SOD protein could provide protective effect against a lethal dose of H. parasuis serovar 4 and serovar 5 challenge in mice, which may provide a novel approach against heterogeneous serovar infection of H. parasuis in future.


Assuntos
Vacinas Anti-Haemophilus/imunologia , Haemophilus parasuis/imunologia , Superóxido Dismutase/imunologia , Animais , Citocinas/biossíntese , Modelos Animais de Doenças , Feminino , Haemophilus parasuis/enzimologia , Imunização , Camundongos , Camundongos Endogâmicos BALB C , Vacinas Sintéticas/imunologia
15.
Vet Res ; 47(1): 80, 2016 08 08.
Artigo em Inglês | MEDLINE | ID: mdl-27502767

RESUMO

Haemophilus parasuis (H. parasuis) is the causative agent of Glässer's disease, a severe membrane inflammation disorder. Previously we showed that Baicalin (BA) possesses anti-inflammatory effects via the NLRP3 inflammatory pathway in an LPS-challenged piglet model. However, whether BA has anti-inflammatory effects upon H. parasuis infection is still unclear. This study investigated the anti-inflammatory effects and mechanisms of BA on H. parasuis-induced inflammatory responses via the NF-κB and NLRP3 inflammasome pathway in piglet mononuclear phagocytes (PMNP). Our data demonstrate that PMNP, when infected with H. parasuis, induced ROS (reactive oxygen species) production, promoted apoptosis, and initiated transcription expression of IL-6, IL-8, IL-10, PGE2, COX-2 and TNF-α via the NF-κB signaling pathway, and IL-1ß and IL-18 via the NLRP3 inflammasome signaling pathway. Moreover, when BA was administrated, we observed a reduction in ROS production, suppression of apoptosis, and inhibition of the activation of NF-κB and NLRP3 inflammasome signaling pathway in PMNP treated with H. parasuis. To our best knowledge, this is the first example that uses piglet primary immune cells for an H. parasuis infection study. Our data strongly suggest that BA can reverse the inflammatory effect initiated by H. parasuis and possesses significant immunosuppression activity, which represents a promising therapeutic agent in the treatment of H. parasuis infection.


Assuntos
Anti-Inflamatórios/uso terapêutico , Flavonoides/uso terapêutico , Infecções por Haemophilus/veterinária , Haemophilus parasuis , Inflamassomos/efeitos dos fármacos , NF-kappa B/metabolismo , Proteína 3 que Contém Domínio de Pirina da Família NLR/metabolismo , Transdução de Sinais/efeitos dos fármacos , Doenças dos Suínos/microbiologia , Animais , Apoptose/efeitos dos fármacos , Citocinas/metabolismo , Infecções por Haemophilus/tratamento farmacológico , Infecções por Haemophilus/metabolismo , Inflamassomos/metabolismo , Monócitos/metabolismo , Espécies Reativas de Oxigênio/metabolismo , Transdução de Sinais/fisiologia , Suínos , Doenças dos Suínos/tratamento farmacológico , Doenças dos Suínos/imunologia
16.
Int J Mol Sci ; 16(9): 22438-55, 2015 Sep 16.
Artigo em Inglês | MEDLINE | ID: mdl-26389897

RESUMO

MicroRNAs (miRNAs) constitute a class of non-coding RNAs that play a crucial regulatory role in skeletal muscle development and disease. Several acute inflammation conditions including sepsis and cancer are characterized by a loss of skeletal muscle due primarily to excessive muscle catabolism. As a well-known inducer of acute inflammation, a lipopolysaccharide (LPS) challenge can cause serious skeletal muscle wasting. However, knowledge of the role of miRNAs in the course of inflammatory muscle catabolism is still very limited. In this study, RNA extracted from the skeletal muscle of pigs injected with LPS or saline was subjected to small RNA deep sequencing. We identified 304 conserved and 114 novel candidate miRNAs in the pig. Of these, four were significantly increased in the LPS-challenged samples and five were decreased. The expression of five miRNAs (ssc-miR-146a-5p, ssc-miR-221-5p, ssc-miR-148b-3p, ssc-miR-215 and ssc-miR-192) were selected for validation by quantitative polymerase chain reaction (qPCR), which found that ssc-miR-146a-5p and ssc-miR-221-5p were significantly upregulated in LPS-challenged pig skeletal muscle. Moreover, we treated mouse C2C12 myotubes with 1000 ng/mL LPS as an acute inflammation cell model. Expression of TNF-α, IL-6, muscle atrophy F-box (MAFbx) and muscle RING finger 1 (MuRF1) mRNA was strongly induced by LPS. Importantly, miR-146a-5p and miR-221-5p also showed markedly increased expression in LPS-treated C2C12 myotubes, suggesting the two miRNAs may be involved in muscle catabolism systems in response to acute inflammation caused by a LPS challenge. To our knowledge, this study is the first to examine miRNA expression profiles in weaned pig skeletal muscle challenged with LPS, and furthers our understanding of miRNA function in the regulation of inflammatory muscle catabolism.


Assuntos
Lipopolissacarídeos/toxicidade , MicroRNAs/genética , Músculo Esquelético/metabolismo , Transcriptoma , Animais , Linhagem Celular , Inflamação/etiologia , Inflamação/metabolismo , Músculo Esquelético/crescimento & desenvolvimento , Sus scrofa
17.
Toxicon ; 237: 107531, 2024 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-38013056

RESUMO

Contamination with fumonisin B1 (FB1) represents a global health problem. FB1 exposure may also trigger intestinal injury by activating inflammatory responses, leading to a reduction in production performance and economic benefits. However, the mechanism of FB1-induced intestinal inflammatory injury is still unclear. At the same time, it is urgent to develop antibiotic alternatives and therapeutic targets to alleviate antibiotic resistance and to ensure effective treatment of intestinal inflammatory injury. We combined network pharmacology and in vitro experiments to explore the core therapeutic targets and potential mechanism of luteolin in FB1-induced intestinal inflammatory injury. Network pharmacology and molecular docking revealed that nuclear factor kappa B (NF-κB) p65, extracellular signal-regulated kinase (ERK), interleukin 6 (IL-6) and IL-1ß are the important targets, and the NF-κB and ERK signalling pathways are critical in FB1-induced intestinal inflammatory injury. Besides, in vitro experiments further demonstrated that luteolin can inhibit FB1-induced intestinal inflammatory injury by inhibiting activation of the NF-κB and ERK signalling pathways and reducing the expression of IL-6 and IL-1ß in IPEC-J2 cells. We have comprehensively illustrated the potential targets and molecular mechanism by which luteolin can alleviate FB1-induced intestinal inflammatory injury. Luteolin may be an effective antibiotic alternative to prevent intestinal inflammatory injury.


Assuntos
Luteolina , NF-kappa B , NF-kappa B/metabolismo , Luteolina/farmacologia , Interleucina-6 , Simulação de Acoplamento Molecular , Farmacologia em Rede , Antibacterianos
18.
Heliyon ; 10(1): e23632, 2024 Jan 15.
Artigo em Inglês | MEDLINE | ID: mdl-38187335

RESUMO

Glaesserella parasuis can induce endothelial barrier damage in piglets, although the mechanism by which this pathogen triggers inflammatory damage remains unclear. Baicalin possesses anti-inflammatory and anti-oxidant activities. However, whether baicalin can relieve endothelial barrier damage caused by Glaesserella parasuis infection has not yet been studied. Hence, we evaluated the ability of baicalin to counteract the changes induced by Glaesserella parasuis in porcine aortic vascular endothelial cells. The results showed that Glaesserella parasuis could upregulate the expression of pannexin 1 channel protein and promote the release of adenosine triphosphate, adenosine diphosphate, adenosine 3'-monophosphate, uridine triphosphate, uridine diphosphate, and uridine monophosphate in porcine aortic vascular endothelial cells. The expression level of purinergic receptor P2Y6 was upregulated in porcine aortic vascular endothelial cells triggered by Glaesserella parasuis. In addition, Glaesserella parasuis could activate phospholipase C-protein kinase C and myosin light chain kinase-myosin light chain signaling pathways in porcine aortic vascular endothelial cells. Baicalin could inhibit pannexin 1 channel protein expression, reduce adenosine triphosphate, adenosine diphosphate, adenosine 3'-monophosphate, uridine triphosphate, uridine diphosphate, and uridine monophosphate release, and attenuate the expression level of P2Y6 in porcine aortic vascular endothelial cells induced by Glaesserella parasuis. Baicalin could also reduce the activation of phospholipase C-protein kinase C and myosin light chain kinase-myosin light chain signaling pathways in porcine aortic vascular endothelial cells triggered by Glaesserella parasuis. Our study report that Glaesserella parasuis could promote pannexin 1 channel protein expression, induce nucleosides substance release, and P2Y6 expression in porcine aortic vascular endothelial cells and baicalin could inhibit the expression levels of pannexin 1, nucleosides substance, and P2Y6 in the porcine aortic vascular endothelial cells induced by Glaesserella parasuis, which might be served as some targets for treatment of inflammation disease caused by Glaesserella parasuis.

19.
Toxicon ; 243: 107709, 2024 May 28.
Artigo em Inglês | MEDLINE | ID: mdl-38615996

RESUMO

Deoxynivalenol is a widespread feed contaminant that leads to vomit, which results in serious symptom such as increased intestinal permeability and even intestinal mucosal necrosis. Recent studies have reported the role of quercetin in alleviating deoxynivalenol-induced intestinal injury; however, the mechanisms and targets remain unclear. Thus, we aimed to identify the mechanisms of action by using a combination of network pharmacology and molecular docking. We identified 151 quercetin targets, 235 deoxynivalenol targets and 47 porcine intestinal injury targets by searching compound database and PubMed database, among which there were two common targets. The PPI network showed that the key proteins involved are NQO1 and PPAR-γ. The PPI network showed that the key proteins involved were NQO1 and PPARG. GO analysis found that genes were enriched primarily in response to oxidative stress. The PPI network showed that the key proteins involved are NQO1 and PPAR-γ. The genes are enriched primarily in response to oxidative stress. KEGG analysis showed enrichment of the HIF, reactive oxygen species and other signaling pathways. The molecular docking results indicated key binding activity between NQO1-quercetin and PPAR-γ-quercetin. By using network pharmacology, we have revealed the potential molecular mechanisms by which quercetin alleviates deoxynivalenol-induced porcine intestinal injury, which lays the foundation for the development of drugs to treat deoxynivalenol-induced intestinal injury in pigs.


Assuntos
Simulação de Acoplamento Molecular , Farmacologia em Rede , PPAR gama , Quercetina , Tricotecenos , Quercetina/farmacologia , Animais , Tricotecenos/toxicidade , Suínos , PPAR gama/metabolismo , Estresse Oxidativo/efeitos dos fármacos , Intestinos/efeitos dos fármacos , NAD(P)H Desidrogenase (Quinona)/metabolismo , Mucosa Intestinal/efeitos dos fármacos , Mucosa Intestinal/metabolismo
20.
Biomolecules ; 14(4)2024 Apr 08.
Artigo em Inglês | MEDLINE | ID: mdl-38672469

RESUMO

Porcine extraintestinal pathogenic Escherichia coli (ExPEC) is a pathogenic bacterium that causes huge economic losses to the pig farming industry and considerably threatens human health. The quorum sensing (QS) system plays a crucial role in the survival and pathogenesis of pathogenic bacteria. Hence, it is a viable approach to prevent ExPEC infection by compromising the QS system, particularly the LuxS/AI-2 system. In this study, we investigated the effects of baicalin on the LuxS/AI-2 system of ExPEC. Baicalin at concentrations of 25, 50, and 100 µg/mL significantly diminished the survival ability of ExPEC in hostile environments and could inhibit the biofilm formation and autoagglutination ability in ExPEC. Moreover, baicalin dose-dependently decreased the production of AI-2 and down-regulated the expression level of luxS in PCN033. These results suggest that baicalin can weaken the virulence of PCN033 by inhibiting the LuxS/AI-2 system. After the gene luxS was deleted, AI-2 production in PCN033 was almost completely eliminated, similar to the effect of baicalin on the production of AI-2 in PCN033. This indicates that baicalin reduced the production of AI-2 by inhibiting the expression level of luxS in ExPEC. In addition, the animal experiment further showed the potential of baicalin as a LuxS/AI-2 system inhibitor to prevent ExPEC infection. This study highlights the potential of baicalin as a natural quorum-sensing inhibitor for therapeutic applications in preventing ExPEC infection by targeting the LuxS/AI-2 system.


Assuntos
Proteínas de Bactérias , Liases de Carbono-Enxofre , Escherichia coli Extraintestinal Patogênica , Flavonoides , Homosserina , Homosserina/análogos & derivados , Percepção de Quorum , Percepção de Quorum/efeitos dos fármacos , Flavonoides/farmacologia , Animais , Liases de Carbono-Enxofre/genética , Liases de Carbono-Enxofre/metabolismo , Suínos , Virulência/efeitos dos fármacos , Proteínas de Bactérias/metabolismo , Proteínas de Bactérias/genética , Homosserina/metabolismo , Escherichia coli Extraintestinal Patogênica/efeitos dos fármacos , Escherichia coli Extraintestinal Patogênica/patogenicidade , Escherichia coli Extraintestinal Patogênica/genética , Biofilmes/efeitos dos fármacos , Biofilmes/crescimento & desenvolvimento , Infecções por Escherichia coli/tratamento farmacológico , Infecções por Escherichia coli/microbiologia , Lactonas/farmacologia , Regulação Bacteriana da Expressão Gênica/efeitos dos fármacos , Doenças dos Suínos/microbiologia , Doenças dos Suínos/tratamento farmacológico
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