Your browser doesn't support javascript.
loading
Show: 20 | 50 | 100
Results 1 - 20 de 1.862
Filter
1.
Braz. j. med. biol. res ; 57: e13229, fev.2024. graf
Article in English | LILACS-Express | LILACS | ID: biblio-1534065

ABSTRACT

Abstract The incidence of non-alcoholic fatty liver (NAFLD) remains high, and many NAFLD patients suffer from severe ischemia-reperfusion injury (IRI). Currently, no practical approach can be used to treat IRI. Puerarin plays a vital role in treating multiple diseases, such as NAFLD, stroke, diabetes, and high blood pressure. However, its role in the IRI of the fatty liver is still unclear. We aimed to explore whether puerarin could protect the fatty liver from IRI. C57BL/6J mice were fed with a high‐fat diet (HFD) followed by ischemia reperfusion injury. We showed that hepatic IRI was more severe in the fatty liver compared with the normal liver, and puerarin could significantly protect the fatty liver against IRI and alleviate oxidative stress. The PI3K-AKT signaling pathway was activated during IRI, while liver steatosis decreased the level of activation. Puerarin significantly protected the fatty liver from IRI by reactivating the PI3K-AKT signaling pathway. However, LY294002, a PI3K-AKT inhibitor, attenuated the protective effect of puerarin. In conclusion, puerarin could significantly protect the fatty liver against IRI by activating the PI3K-AKT signaling pathway.

2.
Acta cir. bras ; 39: e390224, 2024. graf
Article in English | LILACS, VETINDEX | ID: biblio-1533355

ABSTRACT

Purpose: To investigate the protective effect of breviscapine on myocardial ischemia-reperfusion injury (MIRI) in diabetes rats. Methods: Forty rats were divided into control, diabetes, MIRI of diabetes, and treatment groups. The MIRI of diabetes model was established in the latter two groups. Then, the treatment group was treated with 100 mg/kg breviscapine by intraperitoneal injection for 14 consecutive days. Results: After treatment, compared with MIRI of diabetes group, in treatment group the serum fasting blood glucose, fasting insulin, homeostasis model assessment of insulin resistance, and glycosylated hemoglobin levels decreased, the serum total cholesterol, triacylglycerol, and low-density lipoprotein cholesterol levels decreased, the serum high-density lipoprotein cholesterol level increased, the heart rate decreased, the mean arterial pressure, left ventricular ejection fraction, and fractional shortening increased, the serum cardiac troponin I, and creatine kinase-MB levels decreased, the myocardial tumor necrosis factor α and interleukin-6 levels decreased, the myocardial superoxide dismutase level increased, and the myocardial malondialdehyde level decreased (all P < 0.05). Conclusions: For treating MIRI of diabetes in rats, the breviscapine can reduce the blood glucose and lipid levels, improve the cardiac function, reduce the myocardial injury, and decrease the inflammatory response and oxidative stress, thus exerting the alleviating effect.


Subject(s)
Animals , Rats , Myocardial Reperfusion Injury , Oxidative Stress , Diabetes Mellitus , Inflammation , Ischemia
3.
Journal of Public Health and Preventive Medicine ; (6): 74-78, 2024.
Article in Chinese | WPRIM | ID: wpr-1005910

ABSTRACT

Objective To investigate the potential effect and mechanism of curcumin in inhibiting synaptic injury in the cortex of rats with cerebral ischemia-reperfusion. Methods Sprague-Dawley rats were divided into sham-operated group, model group, low-dose curcumin (50 mg/kg) group, and high-dose curcumin (100 mg/kg) group. A model of middle cerebral artery occlusion for 2 hours and reperfusion for 24 hours was constructed, and curcumin was administered. Based on the neurological function score, the effects of curcumin on cerebral infarct volume, synaptic ultrastructure changes, inflammatory cell infiltration, and the expression of NLRP3, Caspase-1, Synapsin1, and CAMKⅡ were observed after the end of the animal treatment. Results The neurological function scores were 0, 3.25±0.43, 2.50±0.50, and 1.50±0.50 for the sham-operated group, model group, low-dose curcumin group, and high-dose curcumin group, respectively. The percentage of cerebral infarct volume was 0, (38.89±2.21)%, (33.48±1.77)%, and (23.69±2.19)%, respectively. Compared with the sham operation group, the model group had severe synaptic ultrastructure damage, extensive inflammatory cell infiltration, significantly increased expression of Caspase-1 and NLRP3 (P < 0.5), and significantly decreased expression of Synapsin1 and CAMKⅡ (P < 0.5). Curcumin treatment significantly inhibited synaptic damage, reduced inflammatory cell infiltration, decreased the expression of Caspase-1 and NLRP3 (P < 0.5), and increased the expression of Synapsin1 and CAMKII (P < 0.5), when compared with the model group. Conclusion Ischemia-reperfusion-mediated synaptic injury in rat brain triggers an inflammatory response in cortical nerve cells, and curcumin alleviates synaptic damage and reduces brain injury by inhibiting inflammatory factor levels.

4.
World Journal of Emergency Medicine ; (4): 10-15, 2024.
Article in English | WPRIM | ID: wpr-1005314

ABSTRACT

@#BACKGROUND: Resuscitative endovascular balloon occlusion of the aorta (REBOA) can temporarily control traumatic bleeding. However, its prolonged use potentially leads to ischemia-reperfusion injury (IRI). Partial REBOA (pREBOA) can alleviate ischemic burden; however, its security and effectiveness prior to operative hemorrhage control remains unknown. Hence, we aimed to estimate the efficacy of pREBOA in a swine model of liver injury using an experimental sliding-chamber ballistic gun. METHODS: Twenty Landrace pigs were randomized into control (no aortic occlusion) (n=5), intervention with complete REBOA (cREBOA) (n=5), continuous pREBOA (C-pREBOA) (n=5), and sequential pREBOA (S-pREBOA) (n=5) groups. In the cREBOA and C-pREBOA groups, the balloon was inflated for 60 min. The hemodynamic and laboratory values were compared at various observation time points. Tissue samples immediately after animal euthanasia from the myocardium, liver, kidneys, and duodenum were collected for histological assessment using hematoxylin and eosin staining. RESULTS: Compared with the control group, the survival rate of the REBOA groups was prominently improved (all P<0.05). The total volume of blood loss was markedly lower in the cREBOA group (493.14±127.31 mL) compared with other groups (P<0.01). The pH was significantly lower at 180 min in the cREBOA and S-pREBOA groups (P<0.05). At 120 min, the S-pREBOA group showed higher alanine aminotransferase (P<0.05) but lower blood urea nitrogen compared with the cREBOA group (P<0.05). CONCLUSION: In this trauma model with liver injury, a 60-minute pREBOA resulted in improved survival rate and was effective in maintaining reliable aortic pressure, despite persistent hemorrhage. Extended tolerance time for aortic occlusion in Zone I for non-compressible torso hemorrhage was feasible with both continuous partial and sequential partial measures, and the significant improvement in the severity of acidosis and distal organ injury was observed in the sequential pREBOA.

5.
Organ Transplantation ; (6): 131-137, 2024.
Article in Chinese | WPRIM | ID: wpr-1005243

ABSTRACT

Organ preservation fluid could mitigate cold ischemia injury and maintain normal function of the grafts. At present, how to reduce a series of injury caused by cold ischemia of donor liver and improve the preservation quality of grafts are the hot and challenging spots in this field. Currently, preservation fluid in clinical practice has not achieved ideal preservation effect, especially for the protection of marginal donor organs. In the context of severe donor shortage, the key solution is still to explore the optimal preservation protocol for donor liver to prevent grafts from cold ischemia injury. In this article, the mechanism of donor liver injury during cold ischemia, the classification and evolution of donor liver preservation fluid were summarized, the development direction and challenges of donor liver preservation fluid were discussed, aiming to provide novel ideas and references for the research and development of donor liver preservation fluid.

6.
Organ Transplantation ; (6): 70-81, 2024.
Article in Chinese | WPRIM | ID: wpr-1005236

ABSTRACT

Objective To analyze the core genes of lung ischemia-reperfusion injury and construct a competitive endogenous RNA (ceRNA) network. Methods Original data of GSE145989 were downloaded from the Gene Expression Omnibus (GEO) database as the training set, and the GSE172222 and GSE9634 datasets were used as the validation sets, and the differentially-expressed genes (DEG) were identified. Gene ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway enrichment analysis were performed. Protein-protein interaction (PPI) network was constructed, and the core genes were screened, and the diagnostic values of these core genes and the immune infiltration levels of immune cells were evaluated. The ceRNA network was constructed and validated. The targeted drugs based on ceRNA network were assessed. Results A total of 179 DEG were identified, including 61 down-regulated and 118 up-regulated genes. GO analysis showed that DEGs were associated with multiple biological processes, such as cell migration, differentiation and regulation, etc. They were correlated with cell components, such as vesicle membrane, serosa and membrane raft, etc. They were also associated with multiple molecular functions, such as chemokine receptor, G protein-coupled receptor, immune receptor activity and antigen binding, etc. KEGG pathway enrichment analysis revealed that DEG were involved in tumor necrosis factor (TNF), Wnt, interleukin (IL)-17 and nuclear factor (NF)-κB signaling pathways, etc. PPI network suggested that CD8A, IL2RG, STAT1, CD3G and SYK were the core genes of lung ischemia-reperfusion injury. The ceRNA network prompted that miR-146a-3p, miR-28-5p and miR-593-3p were related to the expression level of CD3G. The miR-149-3p, miR-342-5p, miR-873-5p and miR-491-5p were correlated with the expression level of IL-2RG. The miR-194-3p, miR-512-3p, miR-377-3p and miR-590-3p were associated with the expression level of SYK. The miR-590-3p and miR-875-3p were related to the expression level of CD8A. The miR-143-5p, miR-1231, miR-590-3p and miR-875-3p were associated with the expression level of STAT1. There were 13 targeted drugs for CD3G, 4 targeted drugs for IL-2RG, 28 targeted drugs for SYK and 3 targeted drugs for lncRNA MUC2. No targeted drugs were identified for CD8A, STAT1 and other ceRNA network genes. Conclusions CD8A, IL2RG, STAT1, CD3G and SYK are the core genes of lung ischemia-reperfusion injury. The research and analysis of these core genes probably contribute to the diagnosis of lung ischemia-reperfusion injury and providing novel research ideas and therapeutic targets.

7.
Organ Transplantation ; (6): 46-54, 2024.
Article in Chinese | WPRIM | ID: wpr-1005233

ABSTRACT

Objective To investigate the role and mechanism of spliced X-box binding protein 1 (XBP1s) in the senescence of primary renal tubular epithelial cells induced by hypoxia/reoxygenation (H/R). Methods Primary renal tubular epithelial cells were divided into the normal control group (NC group), H/R group, empty adenovirus negative control group (Ad-shNC group), targeted silencing XBP1s adenovirus group (Ad-shXBP1s group), empty adenovirus+H/R treatment group (Ad-shNC+H/R group) and targeted silencing XBP1s adenovirus+H/R treatment group (Ad-shXBP1s +H/R group), respectively. The expression levels of XBP1s in the NC, H/R, Ad-shNC and Ad-shXBP1s groups were measured. The number of cells stained with β-galactosidase, the expression levels of cell aging markers including p53, p21 and γH2AX, and the levels of reactive oxygen species (ROS), malondialdehyde (MDA) and superoxide dismutase (SOD) were determined in the Ad-shNC, Ad-shNC+H/R and Ad-shXBP1s+H/R groups. Chromatin immunoprecipitation was employed to verify Sirtuin 3 (Sirt3) of XBP1s transcription regulation, and the expression levels of Sirt3 and downstream SOD2 after down-regulation of XBP1s were detected. Mitochondrial reactive oxygen species (mtROS) were detected by flow cytometry. Results Compared with the NC group, the expression level of XBP1s was up-regulated in the H/R group. Compared with the Ad-shNC group, the expression level of XBP1s was down-regulated in the Ad-shXBP1s group (both P<0.001). Compared with the Ad-shNC group, the number of cells stained with β-galactosidase was increased, the expression levels of p53, p21 and γH2AX were up-regulated, the levels of ROS, MDA and mtROS were increased, the SOD activity was decreased, the expression level of Sirt3 was down-regulated, and the ratio of Ac-SOD2/SOD2 was increased in the Ad-shNC+H/R group. Compared with the Ad-shNC+H/R group, the number of cells stained with β-galactosidase was decreased, the expression levels of p53, p21 and γH2AX were down-regulated, the levels of ROS, MDA and mtROS were decreased, the SOD activity was increased, the expression level of Sirt3 was up-regulated and the ratio of Ac-SOD2/SOD2 was decreased in the Ad-shXBP1s+H/R group (all P<0.05). Conclusions Down-regulation of XBP1s may ameliorate the senescence of primary renal tubular epithelial cells induced by H/R, which probably plays a role through the Sirt3/SOD2/mtROS signaling pathway.

8.
Organ Transplantation ; (6): 40-45, 2024.
Article in Chinese | WPRIM | ID: wpr-1005232

ABSTRACT

Ischemia-reperfusion injury (IRI) is an extremely complicated pathophysiological process, which may occur during the process of myocardial infarction, stroke, organ transplantation and temporary interruption of blood flow during surgery, etc. As key molecules of immune system, macrophages play a vital role in the pathogenesis of IRI. M1 macrophages are pro-inflammatory cells and participate in the elimination of pathogens. M2 macrophages exert anti-inflammatory effect and participate in tissue repair and remodeling and extracellular matrix remodeling. The balance between macrophage phenotypes is of significance for the outcome and treatment of IRI. This article reviewed the role of macrophages in IRI, including the balance between M1/M2 macrophage phenotype, the mechanism of infiltration and recruitment into different ischemic tissues. In addition, the potential therapeutic strategies of targeting macrophages during IRI were also discussed, aiming to provide reference for alleviating IRI and promoting tissue repair.

9.
China Pharmacy ; (12): 124-128, 2024.
Article in Chinese | WPRIM | ID: wpr-1005226

ABSTRACT

Myocardial ischemia-reperfusion injury (MIRI) is a serious complication of revascularization in patients with myocardial infarction. The nuclear factor erythroid 2-related factor 2 (Nrf2)/heme oxygenase-1 (HO-1) signaling pathway plays an important role in the pathological process of MIRI. Currently,research has found that traditional Chinese medicine has a good effect on myocardial injury caused by ischemia-reperfusion. Based on the Nrf2/HO-1 signaling pathway,this article summarizes the action mechanism of traditional Chinese medicine formulas and monomers in intervening with MIRI. It is found that traditional Chinese medicine formulas (Yixin formula,Wenyang tongmai formula,Dingxin formula Ⅰ),monomers such as terpenoids (ginkgolides, astragaloside Ⅳ,ginsenosides),phenols (brazilin,hematoxylin A,resveratrol) and quinones (aloe,emodin) can alleviate MIRI by activating the Nrf2/HO-1 signaling pathway,inhibiting oxidative stress and inflammatory reactions,etc.

10.
Rev. chil. cardiol ; 42(3)dic. 2023.
Article in Spanish | LILACS-Express | LILACS | ID: biblio-1529986

ABSTRACT

El precondicionamiento isquémico remoto es una manera eficaz de disminuir el daño por isquemia y reperfusión en el corazón y otros órganos como cerebro o riñón, en modelos experimentales. Este consiste en realizar entre 3 y 5 ciclos de 5 minutos de isquemia seguidos del mismo tiempo de reperfusión, en un tejido alejado del que se quiere proteger, normalmente una extremidad. Estudios preclínicos en animales indican que la isquemia precondicionante inicia señales nerviosas y humorales en el tejido isquémico remoto, que en el corazón activan mecanismos de protección. La señal nerviosa se origina en fibras sensoriales que a nivel cerebral producen una activación del sistema parasimpático. El nervio vago activa ganglios cardíacos intrínsecos del corazón lo que induce protección. Además, desde el tejido isquémico se liberan a la circulación diferentes mediadores que viajan en forma libre o en vesículas lipídicas (exosomas) que inician vías de señalización protectoras en el corazón. A pesar del éxito del precondicionamiento isquémico remoto en animales de experimentación, su aplicación en seres humanos no ha tenido resultados claros. Esta discrepancia puede deberse a una diversidad de factores tales como la edad, la existencia de otras patologías, uso de fármacos u otros tratamientos que afectan la respuesta de los pacientes. Se requiere un mayor conocimiento de las bases moleculares de este mecanismo de protección para que su aplicación en clínica sea exitosa.


In experimental models, remote ischemic preconditioning effectively decreases ischemia reperfusion injury to the heart and other organs such as the brain or kidney. It consists of 3 to 5 cycles of 5 minutes of ischemia followed by 5 minutes of reperfusion, in a remote tissue, usually a limb. Preclinical studies in animals indicate that preconditioning ischemia initiates neural and humoral signals in the remote ischemic tissue, which activate protective mechanisms in the heart. The nervous signal originates in sensory fibers that activate the parasympathetic system in the brain. The vagus nerve activates the intrinsic cardiac ganglia of the heart, leading to protection from ischemic injury. Furthermore, mediators are released from the ischemic tissue into the circulation that travels freely or in lipid vesicles (exosomes) to the heart where they initiate protective signaling pathways. Despite the success of remote ischemic preconditioning in experimental animals, its application in humans has not produced clear results. This discrepancy may be due to a variety of factors such as age, the existence of other pathologic processes, or the use of drugs or other treatments that affect the patient´s response. An increased knowledge of the molecular bases of this protective mechanism is required for its clinical application to be successful.

11.
Rev. nefrol. diál. traspl ; 43(1): 2-2, mar. 2023.
Article in English | LILACS-Express | LILACS | ID: biblio-1515447

ABSTRACT

ABSTRACT Introduction: Renal ischemia (I) could develop due to decreased or ceased blood flow to the kidney in some clinical conditions such as shock, sepsis, and kidney transplantation. The re-supply of blood to the kidney is called reperfusion (R). Ischemia and reperfusion periods can cause severe kidney damage. Objectives: When we examined the I/R molecular progression, antioxidant molecules such as vitamin A seem promising treatment agents. This study aimed to investigate the effects of vitamin A on renal I/R injury. Material and Methods: In the study, 40 Sprague-Dawley male rats were divided into five groups (n=8): the control group, only I/R, I/R+1000, I/R+3000, and I/R+9000 IU/kg of Vitamin A groups. Vitamin A was administrated to each group for seven days via oral gavage. Blood and kidney tissue samples were collected at the end of the experiment. We took blood samples for Superoxide dismutase (SOD), malondialdehyde (MDA), catalase (CAT), blood urea nitrogen (BUN), and creatinine (Cr) levels, and determined their values. The tissue samples were stained with hematoxylin/eosin to examine the renal changes histopathologically and stereologically under a light microscope. Results: Histopathological changes caused by I/R were decreased with vitamin A administration in a dose-dependent manner (p<0.05). Vitamin A administration decreased MDA levels and increased SOD and CAT activities (p<0.05). The most effective dose among treatment groups was 9000 IU/kg. There was no significant difference between the controls and all other groups regarding BUN and Cr concentrations. Conclusions: Consequently, administration of vitamin A after renal I/R reduced the histological damage and ameliorated the antioxidant state. These results showed that vitamin A could be a promising agent in treating I/R-induced acute kidney injury.


RESUMEN Introducción: La isquemia renal (I) puede desarrollarse debido a la disminución o interrupción del flujo sanguíneo al riñón en algunas condiciones clínicas como shock, sepsis y trasplante renal. El reabastecimiento de sangre al riñón se denomina reperfusión (R). Tanto la isquemia como los períodos de reperfusión pueden causar graves daños renales. Objetivos: Cuando examinamos la progresión molecular I/R, las moléculas antioxidantes como la vitamina A parecen agentes de tratamiento prometedores. El objetivo de este estudio fue investigar los efectos de la vitamina A sobre la lesión renal I/R. Material y Métodos: En el estudio, 40 ratas macho Sprague-Dawley se dividieron en 5 grupos (n=8) como: control, solo I/R, I/R+1000, I/R+3000 e I/R+9000 UI/kg de la Vitamina A. La vitamina A se administró a cada grupo durante 7 días por vía oral forzada. Al final del experimento se recolectaron muestras de sangre y tejido del riñón. A partir de muestras de sangre se determinaron los niveles de superóxido dismutasa (SOD), malondialdehído (MDA), catalasa (CAT), nitrógeno ureico en sangre (BUN) y creatinina (Cr). Las muestras de tejido se tiñeron con hematoxilina/eosina y los cambios en la histología renal se examinaron histopatológicamente y estereológicamente al microscopio de luz. Resultados: Los cambios histopatológicos causados por I/R disminuyeron con la administración de la vitamina A de manera dependiente de la dosis (p<0,05). La administración de la vitamina A disminuyó los niveles de MDA, aumentó las actividades de SOD y CAT (p<0,05). La dosis más eficaz entre los grupos del tratamiento fue de 9000 UI/kg. No hubo una diferencia significativa entre el grupo control y todos los demás grupos con respecto a las concentraciones de BUN y Cr. Conclusiones: Consiguientemente, la administración de la vitamina A, después de I/R renal, redujo el daño histológico y mejoró el estado antioxidante. Estos resultados mostraron que la vitamina A puede ser un agente promisorio en el tratamiento de la lesión renal aguda (LRA) inducida por I/R.

12.
Rev. bras. cir. cardiovasc ; 38(1): 79-87, Jan.-Feb. 2023. tab, graf
Article in English | LILACS-Express | LILACS | ID: biblio-1423099

ABSTRACT

ABSTRACT Objective: To explore the effect of ischemic postconditioning on myocardial ischemia-reperfusion-induced acute lung injury (ALI). Methods: Forty adult male C57BL/6 mice were randomly divided into sham operation group (SO group), myocardial ischemia-reperfusion group (IR group), ischemic preconditioning group (IPRE group) and ischemic postconditioning group (IPOST group) (10 mice in each group). Anterior descending coronary artery was blocked for 60 min and then reperfused for 15 min to induce myocardial IR. For the IPRE group, 3 consecutive cycles of 5 min of occlusion and 5 minutes of reperfusion of the coronary arteries were performed before ischemia. For the IPOST group, 3 consecutive cycles of 5 min reperfusion and 5 minutes of occlusion of the coronary arteries were performed before reperfusion. Pathological changes of lung tissue, lung wet-to-dry (W/D) weight ratio, inflammatory factors, oxidative stress indicators, apoptosis of lung cells and endoplasmic reticulum stress (ERS) protein were used to evaluate lung injury. Results: After myocardial IR, lung injury worsened significantly, manifested by alveolar congestion, hemorrhage, structural destruction of alveolar septal thickening, and interstitial neutrophil infiltration. In addition, lung W/D ratio was increased, plasma inflammatory factors, including interleukin (IL)-6, tumor necrosis factor (TNF)-α, and IL-17A, were increased, malondialdehyde (MDA) activity of lung tissue was increased, and superoxide dismutase (SOD) activity was decreased after myocardial IR. It was accompanied by the increased protein expression levels of ERS-related protein glucose regulatory protein 78 (GRP78), CCAAT/enhancer-binding protein (C/EBP) homologous protein (CHOP), and caspase-12, and the increased apoptotic indices of lung tissues. Conclusion: IPOST can effectively improve myocardial IR-induced ALI by inhibiting ERS-induced apoptosis of alveolar epithelial cells.

13.
Chinese Journal of Emergency Medicine ; (12): 637-643, 2023.
Article in Chinese | WPRIM | ID: wpr-989834

ABSTRACT

Objective:To explore the role of thioredoxin interaction protein (TXNIP)/NOD-like receptor protein 3 (NLRP3) pathway in renal interstitial fibrosis induced by renal ischemia-reperfusion injury (IRI) in mice.Methods:Adult male C57BL/6J mice aged 6 to 8 weeks and TXNIP knockout mice with the same genetic background were selected. The wild type mice were divided into the sham operation (Sham) group and renal IRI group. The TXNIP knockout mice were divided into the sham+TXNIP KO group and IRI+TXNIP KO group, with 12 mice in each group. The model of renal ischemia-reperfusion injury was established by clamping bilateral renal pedicles for 45 min and then restoring perfusion. The sham operation model was only dissociated bilateral renal arteries without other treatment. Blood creatinine, urea nitrogen, kidney injury molecule-1 (Kim-1) and neutrophil gelatinase-associated lipocalin (NGAL), blood transforming growth factor-β (TGF-β) and interleukin 6 (IL-6) were measured on the 1st, 7th and 28th days after reperfusion. The renal cortex was taken on the 1st and 28th days for Masson staining, in which the renal tubule-interstitial injury score was obtained. TGF-β and IL-6 mRNA expression were detected by qPCR, TXNIP, NLRP3, Pro-IL-1β, IL-1β and α-SMA protein expression were detected by Western blot, and MDA and SOD levels were detected by ELISA. Homogeneity test of variance was performed before the statistics of normal distribution measurement data, one-way ANOVA was used for the comparison between multiple groups, and LSD- t test was used for the comparison between the two groups. Results:On the 1st, 7th and 28th days after IRI, compared with the sham group, the Scr, BUN, Kim-1, NGAL, TGF-β and IL-6 were increased continuously in the IRI group ( P<0.05). On the 28th day after IRI, large areas of collagen fibers and inflammatory cell infiltration were observed in the renal interstitium of the IRI group. In the IRI group, the scores of renal tubular injury and renal interstitial fibrosis on the 28th day were significantly higher than those on the 1st day (all P<0.05). On the 1st, 7th and 28th days after IRI, compared with the IRI group, the levels of Scr, BUN, Kim-1, NGAL, TGF-β and IL-6 were significantly decreased in the IRI+TXNIP KO group (all P<0.05). On the 1st and 28th days after IRI, compared to the IRI group, the areas of collagen fibers and inflammatory cell infiltration in the renal interstitium of the IRI+TXNIP KO group were decreased. The renal tubule injury score [Day 1, (192.2 ± 62.4) vs. (103.2 ± 49.1); Day 28, (154.3 ± 93.6) vs. (64.3 ± 24.8), both P<0.05] and interstitial fibrosis score [Day 1, (7.3 ± 3.2) vs. (4.8 ± 1.7); Day 28, (12.8 ± 3.9) vs. (2.3 ± 0.8), both P<0.05] were all decreased. The expression of TGF-β, IL-6 mRNA, TXNIP, NLRP3, Pro-IL-1 β, IL-1 β and α-SMA protein in renal cortex were significantly decreased (both P<0.05). In renal cortex, MDA level was decreased and SOD level was increased (all P<0.05). Conclusions:TXNIP/NLRP3 pathway is involved in the development of renal interstitial inflammation and fibrosis after renal ischemia and reperfusion. Knockout or inhibition of TXNIP can inhibit the progression of acute renal injury to chronic renal disease.

14.
Journal of Prevention and Treatment for Stomatological Diseases ; (12): 837-843, 2023.
Article in Chinese | WPRIM | ID: wpr-988504

ABSTRACT

@#Free tissue flap transplantation is the preferred option for repairing and reconstructing postoperative defects in oral and maxillofacial-head malignant tumors. However, challenges remain for oral and maxillofacial-head and neck oncology surgeons in terms of ischemia-reperfusion (I/R) injury, airway management, quality of life and prognosis. I/R injury is an inevitable complication of free-flap transplantation surgery. In addition to shortening the vascular anastomosis time as much as possible during the surgical process, many studies have attempted to further prevent and treat free-flap I/R injury using physical intervention therapy, antioxidant and reactive oxygen species (ROS) scavenger therapy, hyperbaric oxygen therapy, etc. However, there is a lack of large-scale clinical randomized controlled trial evidence to further support these methods. Postoperative tracheal management of patients receiving free tissue flap transplantation is very important. In recent years, delayed extubation has been proposed as an alternative to traditional tracheostomy. This method can facilitate wound care for patients, reduce infections, speed up patient recovery, and reduce the incidence of vascular crises. In the future, such management is expected to improve the practicality and safety of delayed extubation by formulating more appropriate patient selection criteria and intensive care plans. Preoperative selection of suitable free tissue flaps according to the defect for repair and reconstruction is beneficial for improving the quality of life and survival rate of patients. At the same time, for patients who require postoperative radiotherapy, reducing the complications of postoperative radiotherapy and improving the quality of life of patients can be achieved through intraoperative nerve anastomosis, preradiation oral hygiene maintenance, early speech training, and other methods.

15.
Journal of Traditional Chinese Medicine ; (12): 1862-1865, 2023.
Article in Chinese | WPRIM | ID: wpr-987270

ABSTRACT

Coronary microcirculation disorder after myocardial ischemia reperfusion (MIR) is a prominent problem in the treatment of coronary heart disease. According to the physiological commonality between “collaterals-sweat pore qi and fluid” and coronary microcirculation, and the evolution of the course of MIR, it is believed that “heart collateral stasis obstruction, sweat pore constraint and block” is the cause of coronary microcirculation disorder. The evolution of the pathogenesis can be divided into three periods. During the myocardial ischemia period, the pathogenesis is heart collaterals obstruction and sweat pores empty, while during the ischemia reperfusion period, it is internal formulation of deficiency wind, spasms of collaterals or slight heart collaterals obstruction; in the coronary microcirculation disorder period, sweat pores constraint and block, constraint transforming into heat, qi and fluid failing to diffuse are the pathogenesis. The corresponding treatment principle is assisting dredge with supplementation, and supplementing deficiency to dispel stasis; treating wind and blood simultaneously, and extinguishing wind to arrest convulsion; clearing heat and cooling blood, and diffusing qi and unblocking qi and fluid. Moreover, it is recommended to treat the heart and lungs simultaneously, and regulate the heart and liver at the same time.

16.
Organ Transplantation ; (6): 736-744, 2023.
Article in Chinese | WPRIM | ID: wpr-987126

ABSTRACT

Prevention and treatment of complications after liver transplantation play a significant role in maintaining liver graft function and improving clinical prognosis of the recipients. Neutrophil extracellular trap (NET) are fibrous net-like structures composed of DNA as the skeleton and histones and granular proteins released by activated neutrophils. Studies have shown that the activation of neutrophils and the release of NET in donor liver after liver transplantation are involved in the incidence of multiple liver transplantation-related complications including ischemia-reperfusion injury, acute rejection, acute liver failure and recurrence of hepatocellular carcinoma, etc. In this article, the effect of NET on the complications after liver transplantation was mainly assessed, and research progress on NET as a potential target for the prevention and treatment of complications after liver transplantation was reviewed, aiming to provide reference for the prevention and treatment of complications after liver transplantation, enhance clinical efficacy of liver transplantation and improve clinical prognosis of the recipients.

17.
Organ Transplantation ; (6): 730-735, 2023.
Article in Chinese | WPRIM | ID: wpr-987125

ABSTRACT

Human leukocyte antigen (HLA) is a product encoded by HLA gene complex, which is located on the short arm of chromosome 6 and is the main target of alloimmunity. However, positive HLA antibody is not responsible for all kinds of rejections in kidney transplantation. Non-HLA antibody is the product of donor gene expression in allogeneic kidney transplantation. Intraoperative ischemia-reperfusion injury, the interaction between alloimmunity and autoimmunity and the mediation of extracellular vesicles may trigger immune system response and promote the production of non-HLA antibody. Multiple studies have demonstrated that non-HLA antibody is an important factor of inducing rejection and affecting the outcomes of kidney transplantation. Consequently, the types and formation mechanism of non-HLA antibody in kidney transplantation were reviewed, and research progress on kidney transplantation rejection associated with non-HLA antibody was summarized, aiming to provide reference for in-depth study of kidney transplantation rejection associated with non-HLA antibody.

18.
Organ Transplantation ; (6): 723-729, 2023.
Article in Chinese | WPRIM | ID: wpr-987124

ABSTRACT

Ischemia-reperfusion injury, rejection, nephrotoxicity caused by calcineurin inhibitors and other factors cause excessive accumulation of renal extracellular matrix after kidney transplantation, which gradually induce renal fibrosis and eventually lead to renal failure. In recent years, the mechanism of macrophages in renal allograft fibrosis has gradually captivated widespread attention. Studies have shown that some drugs like mammalian target of rapamycin inhibitors may mitigate renal allograft fibrosis through the macrophage. In this article, the main pathogenesis and pathophysiological mechanism of renal allograft fibrosis, the role of different macrophages in the progression of renal allograft fibrosis, the infiltration of peripherally-recruited macrophages and renal resident macrophages into renal injury areas, the induction of myofibroblasts by macrophages and potential treatment regimens of macrophage-associated renal allograft fibrosis were reviewed, aiming to provide reference for investigating the role of macrophages in renal allograft fibrosis.

19.
Organ Transplantation ; (6): 662-668, 2023.
Article in Chinese | WPRIM | ID: wpr-987116

ABSTRACT

Ferroptosis is a newly-emerged pattern of programmed cell death discovered in recent years, which is defined as iron-dependent programmed necrosis mediated by lipid peroxidation damage. As a conservative procedure, ferroptosis plays a vital role in the development and diseases of multiple organisms including plants and animals. Since ferroptosis was first reported in 2012, growing interests have been diverted to the process of ferroptosis and its role in disease treatment. Ischemia-reperfusion injury is a common pathological process during organ transplantation, and ferroptosis is considered as one of the main patterns inducing ischemia-reperfusion injury. Consequently, the definition, regulatory mechanism and the mechanisms of ferroptosis in ischemia-reperfusion injury after kidney, liver, heart and lung transplantations were reviewed, aiming to provide theoretical basis for the prevention and treatment of ischemia-reperfusion injury in organ transplantation.

20.
Organ Transplantation ; (6): 656-661, 2023.
Article in Chinese | WPRIM | ID: wpr-987115

ABSTRACT

Renal ischemia-reperfusion injury (RIRI) is the main cause of acute kidney injury (AKI), which commonly occurs in surgery, severe trauma, shock and drug-induced kidney injury. At present, effective treatment for RIRI is still lacking. Oxidative stress is the major pathological injury mechanism of RIRI. Nuclear factor E2-related factor 2 (Nrf2) is the key transcription factor of anti-oxidative stress response, which may activate various cytoprotective genes related to redox and detoxification. Recent studies have shown that Nrf2 may play a protective role in the protection and treatment of RIRI by regulating oxidative stress, inflammation, cell apoptosis and autophagy, etc. Consequently, the structure and biological function of Nrf2, related signaling pathways, its role in the incidence and development of RIRI and potential mechanism were reviewed in this article, aiming to provide novel ideas for the prevention and treatment of RIRI.

SELECTION OF CITATIONS
SEARCH DETAIL