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1.
Medicina (B.Aires) ; Medicina (B.Aires);84(3): 560-563, ago. 2024. graf
Artigo em Espanhol | LILACS-Express | LILACS | ID: biblio-1575238

RESUMO

Resumen El vapeo es la práctica de inhalar un aerosol creado al calentar un líquido con cigarrillo electrónico. Estos aerosoles contienen tóxicos, compuestos cancerígenos y nicotina, sustancia adictiva. En nuestro país está pro hibida la comercialización del cigarrillo electrónico. La lesión pulmonar aguda asociada al vapeo (EVALI) es una enfermedad respiratoria aguda potencialmente mortal. Se presenta el caso de un varón de 18 años, tabaquis ta, que consultó por falta de aire y fiebre. Presentaba insuficiencia respiratoria hipoxémica y leucocitosis, refiriendo reciente inicio de utilización de cigarrillo electrónico. En la tomografía computarizada de tórax (TC) se observaban extensas áreas en "vidrio esmerilado" bilaterales y áreas de consolidación con broncograma aéreo. Se inició tratamiento antibiótico y se realizó una fibrobroncoscopia que mostró restos hemáticos sin lesiones endoluminales. Se interpretó como EVALI y se indicaron corticoides sistémicos. El paciente evolu cionó favorablemente y egresó a las 48 h de finalizado el tratamiento. En TC de control se observó mejoría de las lesiones. El diagnóstico de EVALI es de exclusión. Existen dife rentes scores que describen la probabilidad de un EVALI. Los Centers for Disease Control and Prevention (CDC), pro pusieron en 2019 una definición de caso confirmado de EVALI basado en la exposición al vapeo, las imágenes, la presentación clínica y los antecedentes. La primera notificación de un caso de EVALI en la Argentina fue en el año 2019. Es importante conocer los criterios diagnós ticos para poder iniciar un tratamiento preciso y precoz, considerando el aumento exponencial del uso de ciga rrillo electrónico, principalmente en la población joven.


Abstract Vaping is the practice of inhaling an aerosol cre ated by heating a liquid with an electronic cigarette. These aerosols contain toxic, carcinogenic compounds and nicotine, an addictive substance. In Argentina, the commercialization of electronic cigarettes is prohibited. Acute lung injury associated with vaping (EVALI) is an acute respiratory disease that can be life threatening. An 18-year-old male patient, smoker, consulted for shortness of breath and fever. He presented with hypox emic respiratory failure, and leukocytosis. The patient reported use of electronic cigarettes. Chest computed tomography (CT) showed extensive areas of ground glass opacities with areas of consolidation with air bronchogram. Antibiotic treatment was started and a fibrobronchoscopy was performed, which showed he matic debris, without endoluminal lesions. A diagnosis of EVALI was done and high doses systemic corticoste roids were prescribed. The patient evolved favorably, hewas discharged 48 hours after the end of treatment. In the control ambulatory CT was observed an improve ment of the lesions.561 EVALI is an exclusion diagnosis, so it is necessary to rule out infectious diseases and pulmonary inflamma tory processes. There are different scores that describe the probability of EVALI. The Centers for Disease Control and Prevention (CDC), developed in 2019 a definition of confirmed case based on vape exposure, imaging, clinical presentation and history. In 2019 was first reported an EVALI in Argentina. It is important to know the criteria for a confirmed case to initiate accurate and early treat ment, considering the exponential increase in electronic cigarette use, mainly in the young population.

2.
Braz. j. med. biol. res ; 57: e13235, fev.2024. tab, graf
Artigo em Inglês | LILACS-Express | LILACS | ID: biblio-1550145

RESUMO

Abstract The imbalance between pro-inflammatory M1 and anti-inflammatory M2 macrophages plays a critical role in the pathogenesis of sepsis-induced acute lung injury (ALI). Peroxisome proliferator-activated receptor gamma coactivator 1-alpha (PGC-1α) may modulate macrophage polarization toward the M2 phenotype by altering mitochondrial activity. This study aimed to investigate the role of the PGC-1α agonist pioglitazone (PGZ) in modulating sepsis-induced ALI. A mouse model of sepsis-induced ALI was established using cecal ligation and puncture (CLP). An in vitro model was created by stimulating MH-S cells with lipopolysaccharide (LPS). qRT-PCR was used to measure mRNA levels of M1 markers iNOS and MHC-II and M2 markers Arg1 and CD206 to evaluate macrophage polarization. Western blotting detected expression of peroxisome proliferator-activated receptor gamma (PPARγ) PGC-1α, and mitochondrial biogenesis proteins NRF1, NRF2, and mtTFA. To assess mitochondrial content and function, reactive oxygen species levels were detected by dihydroethidium staining, and mitochondrial DNA copy number was measured by qRT-PCR. In the CLP-induced ALI mouse model, lung tissues exhibited reduced PGC-1α expression. PGZ treatment rescued PGC-1α expression and alleviated lung injury, as evidenced by decreased lung wet-to-dry weight ratio, pro-inflammatory cytokine secretion (tumor necrosis factor-α, interleukin-1β, interleukin-6), and enhanced M2 macrophage polarization. Mechanistic investigations revealed that PGZ activated the PPARγ/PGC-1α/mitochondrial protection pathway to prevent sepsis-induced ALI by inhibiting M1 macrophage polarization. These results may provide new insights and evidence for developing PGZ as a potential ALI therapy.

3.
Rev. colomb. cir ; 39(2): 319-325, 20240220. fig
Artigo em Espanhol | LILACS | ID: biblio-1532716

RESUMO

Introducción. El edema pulmonar por reexpansión es una complicación poco frecuente, secundaria a una rápida reexpansión pulmonar posterior al drenaje por toracentesis o toracostomía cerrada. Al día de hoy, se ha descrito una incidencia menor al 1 % tras toracostomía cerrada, con mayor prevalencia en la segunda y tercera década de la vida. Su mecanismo fisiopatológico exacto es desconocido; se ha planteado un proceso multifactorial de daño intersticial pulmonar asociado con un desequilibrio de las fuerzas hidrostáticas. Caso clínico. Presentamos el caso de un paciente que desarrolló edema pulmonar por reexpansión posterior a toracostomía cerrada. Se hizo una revisión de la literatura sobre esta complicación. Resultados. Aunque la clínica sugiere el diagnóstico, la secuencia de imágenes desempeña un papel fundamental. En la mayoría de los casos suele ser autolimitado, por lo que su manejo es principalmente de soporte; sin embargo, se han reportado tasas de mortalidad que alcanzan hasta el 20 %, por tanto, es importante conocer los factores de riesgo y las medidas preventivas. Conclusión. El edema pulmonar de reexpansión posterior a toracostomía es una complicación rara en los casos con neumotórax, aunque es una complicación que se puede presentar en la práctica diaria, por lo cual debe tenerse en mente para poder hacer el diagnóstico y un manejo adecuado.


Introduction. Re-expansion pulmonary edema is a rare complication secondary to rapid pulmonary re-expansion after drainage by thoracentesis and/or closed thoracostomy. As of today, an incidence of less than 1% has been described after closed thoracostomy, with a higher prevalence in the second and third decades of life. Its exact pathophysiological mechanism is unknown; a multifactorial process of lung interstitial damage associated with an imbalance of hydrostatic forces has been proposed. Clinical case. We present the case of a patient who developed pulmonary edema due to re-expansion after closed thoracostomy, conducting a review of the literature on this complication. Results. Although the clinic suggests the diagnosis, the sequence of images plays a fundamental role. In most cases, it tends to be a self-limited disease, so its management is mainly supportive. However, mortality rates of up to 20% have been recorded. Therefore, it is important to identify patients with major risk factors and initiate preventive measures in these patients. Conclusions. Re-expansion pulmonary edema after thoracostomy is a rare complication in cases with pneumothorax; however, it is a complication that can occur in daily practice. Therefore, it must be kept in mind to be able to make the diagnosis and an adequate management.


Assuntos
Humanos , Pneumotórax , Edema Pulmonar , Doença Iatrogênica , Complicações Pós-Operatórias , Toracostomia , Lesão Pulmonar Aguda
4.
Basic & Clinical Medicine ; (12): 281-287, 2024.
Artigo em Chinês | WPRIM | ID: wpr-1018610

RESUMO

Objective To explore the impact of macrophage-to-myofibroblast transition(MMT)on pulmonary fibro-sis induced by acute lung injury by LPS.Methods Totally 21 male mice were randomly classified into 7 groups:control group,model group(LPS-PF)at different time points and intervention group of clodronate-liposomes(CL-LIP)treatement at different time points(n=3).Pulmonary fibrosis was identified by HE and Masson staining microscopy.The immuno-fluorescence technology was used for the evaluation of numbers of macrophage-to-myofi-broblast transition cells(MMT cell which co-expressed CD68 and α-SMA).Bone marrow-derived macrophages(BMDMs)were randomly classified into two group:control(Ctrl)group and TGF-β1-treated group induced by transforming growthfactor-β1.α-SMA,FN and Col1 were detected by RT-qPCR.The expression of α-SMA,Smad3 and p-Smad3 protein was evaluated by Western blot.Results At day 7,the Ashcroft score of lung tissue in LPS-PF mouse model was significantly increased when compared with the Ctrl group(P<0.01);While the score signifi-cantly declined when the model was pretreated with CL-LIP(P<0.05).As detected by immuno-fluorescence stai-ning,in CL-LIP group the number of CD68-positive cells co-labeled with α-SMA was obviously less then that of LPS-PF group of the corresponding time point(P<0.01).When the BMDMs were stimulated by TGF-β1 at 24 h,48 h and 96 h respectively,a higher expression of α-SMA,FN,Col1,were found in TGF-β1-treated group than that in Ctrl group at the corresponding time point(P<0.01).The expression of Smad3,p-Smad3 significantly higher in LPS-PF group(at both day 7 and day 10)and TGF-β1-treated group(at both 48 h and 96 h)as compared to cor-responding control group(P<0.01).Conclusions MMT promotes pulmonary fibrosis induced by ALI via LPS.Smad3 is proved to be involved in the MMT process.

5.
Basic & Clinical Medicine ; (12): 339-345, 2024.
Artigo em Chinês | WPRIM | ID: wpr-1018618

RESUMO

Objective To investigate the effect of dexmedetom idine(DEX)on lung tissue and Ras homolog gene family member A(RhoA)/Rho kinase 1(ROCK1)signaling pathway in lung tissue of rats with ventilator-induced lung injury(VILI).Methods A VILI rat model was established and separated into control group,model group(VILI group),dexmedetomidine low and high dose groups(DEX-L,DEX-H group),and high dose dexmedetomi-dine+lysophosphatidic acid(LPA)group(DEX-H+LPA group).Determination of wet/dry mass ratio of rat lung tissue(W/D);HE staining microscopy was applied to observe morphology of lung tissue;ELISA kit was applied to detect the level of tumor necrosis factor-α(TNF-α),interleukin-1β(IL-1β)and interleukin-6(IL-6)in bronchoalveolar lavage fluid(BALF);TUNEL staining method was applied to detect lung epithelial cell death;Immunoblotting was applied to detect the expression levels of apoptosis-related proteins,and RhoA,ROCK1 pro-teins.Results DEX could reduce lung injury,lung injury score,W/D,apoptosis rate,levels of TNF-α,IL-1β,IL-6,and expression of Bax,cleaved caspase-3,RhoA,ROCK,α-SMA in VILI rats(P<0.05),while increased the expression of Bcl-2(P<0.05);LPA could aggravate lung injury and increase lung injury score,W/D,apopto-sis rate,level of TNF-α,IL-1β,IL-6 and expressions of Bax,cleaved caspase-3,RhoA,ROCK and α-SMA(P<0.05);Bcl-2 expression level was decreased(P<0.05).Conclusions Dexmedetomidine may protect rats with ventilator-induced lung injury by the inhibition of RhoA/ROCK1 signaling pathway.

6.
Artigo em Chinês | WPRIM | ID: wpr-1018953

RESUMO

Objective:To investigate the effect of glabridin on neutrophil extracellular traps (NETs) formation and pyroptosis in rats with sepsis-induced lung injury.Methods:Twenty-four male Wistar rats were divided into three groups according to the random number table method. The sepsis group was established by cecal ligation and puncture (CLP). The Glabridin group underwent CLP and glabridin gavage (30 mg/kg)(CLP+GLA). The sham operation group underwent cecal exploration, and only the abdomen was closed after cecal turning(Sham). After 12 hours, plasma、alveolar lavage fluid and lung tissue samples were taken for detection . Then, protein content of the alveolar lavage fluid was determined; The wet/dry weight(W/D) ratio of the lung tissue was determined; The pathological changes in lung tissue were observed after hematoxylin-eosin (HE) staining. The levels of NETs marker MPO-DNA complex and related inflammatory factors IL-18 and IL-1β in plasma were detected by enzyme-linked immunosorbent assay. The changes of Caspase-1and Cleaved-caspase-1 protein in lung tissue were detected by Western blot.Results:The total protein concentration of alveolar lavage fluid was significantly higher in the sepsis group compared with the Sham group ( P<0.01), and it decreased in the glabridin group compared with the sepsis group ( P<0. 05). Significant aggravation of pulmonary edema in the sepsis group, and the glabridin group reduced pulmonary edema compared with the sepsis group.The pathological results of lung tissue under the light microscope showed: The structure of lung tissue in the Sham group was normal, and the alveoli were clear; In the sepsis group, the alveolar wall was thickened widely and inflammatory cells infiltrated obviously; Compared with the sepsis group, the lung tissue injury was significantly reduced in the light licorice group. The enzyme-linked immunosorbent assay results showed that the levels of NETs marker MPO-DNA complex and inflammatory factors IL-18 and IL-1β in the plasma of the sepsis group were significantly higher than those in the Sham group ( P<0.001). The levels of NETs marker MPO-DNA complex and inflammatory factors IL-18 and IL-1β in the glabridin group were significantly lower than those in the sepsis group (MPO-DNA: P<0. 01; IL-18、IL-1β: P<0.05) . Western blot Technical results showed that the expression of Caspase-1 and Cleaved-caspase-1 protein positive signal was significantly enhanced in the lung tissue of the rats in the sepsis group compared with the Sham group; the distribution of Caspase-1 positive cells in the lung tissue of the sepsis + glabridin group was similar to that of the Sham group, and the expression of Cleaved-caspase-1 positive signal was higher than that of the Sham group. Conclusions:Glabridin can effectively reduce lung inflammation and play a protective role in lung injury in septic rats by inhibiting NETs production and pyroptosis.

7.
Artigo em Chinês | WPRIM | ID: wpr-1019183

RESUMO

Objective To observe the effect of Shenfu injection on lung injury caused by hemor-rhagic shock(HS)in rats and explore the related potential mechanism.Methods Thirty-six SPF healthy male SD rats,aged 16-17 weeks,weighing 400-600 g,were randomly divided into three groups:sham op-eration group(group SH),HS group(group HS),and Shenfu injection group(group SF),12 rats in each group.In group SH,only the right femoral vein and femoral artery were separated after anesthesia,and ve-nous catheterization was not performed.HS model was established in groups SF and HS.In group HS,liquid resuscitation was performed through an intravenous catheter,and the resuscitation fluid consisted of the auto-blood lost and the compound sodium chloride injection equivalent to 1.5 times the blood loss and 10 ml/kg normal saline.In group SF,the resuscitation fluid consisted of the lost autoblood and the compound sodium chloride injection equivalent to 1.5 times the blood loss and Shenfu injection 10 ml/kg.The whole perfusion time was about 60 minutes.Six rats in the three groups were randomly anesthetized 24 and 48 hours after op-eration.The wet/dry weight ratio(W/D)of lung tissues was detected.The concentrations of interleukin-6(IL-6),IL-17,IL-10,and transforming growth factor-β(TGF-β)were detected by ELISA,the mRNA ex-pression of retinoic acid-related orphan nuclear receptor γt(RORγt),transcription factor forkhead box pro-tein 3(Foxp3),and hypoxia-inducible factor-1α(HIF-1α)in lung tissues were detected by PCR.The pro-tein contents of RORγt,Foxp3,HIF-1α,aquaporin 1(AQP1),and AQP5 in lung tissue were detected by Western blot.Pathological changesunder HE staining light microscope and lung injury scores were observed.Results Compared with 24 hours after operation,W/D,the concentrations of IL-6 and IL-17,mRNA ex-pression and protein content of RORγt and HIF-1α,and lung injury score were significantly decreased(P<0.05),the concentrations of IL-10,and TGF-β,Foxp3 mRNA expression and protein content,and AQP1 protein content were significantly increased in group SF 48 hours after operation(P<0.05).Compared with group SH,W/D,the concentrations of IL-6,IL-17,IL-10,and TGF-β,mRNA expression and protein content of RORγt,Foxp 3,and HIF-1α,and lung injury score were significantly increased(P<0.05),AQP1 and AQP5 protein contents were significantly decreased in groups HS and SF 24 and 48 hours after operation(P<0.05),and alveolar structure was damaged under light microscope and alveolar interstitium was filled with a large amount of edematous fluid,during which a large number of inflammatory cells infiltra-ted.Compared with group HS,W/D,the concentrations of IL-6 and IL-17,mRNA expression and protein content of RORγt and HIF-1α,and lung injury score were significantly decreased(P<0.05),the concen-trations of IL-10 and TGF-β,Foxp3 mRNA expression and protein content,AQP1 and AQP5 protein con-tents were significantly increased in group SF 24 and 48 hours after surgery(P<0.05),and the alveolar structure was improved under light microscope,and edema was reduced,and the number of inflammatory cells was reduced.Conclusion Shenfu injection can regulate the balance between pro-inflammatory factors IL-6 and IL-17,and anti-inflammatory factors IL-10 and TGF-β,increase the protein content of AQP1 and AQP5 in lung tissue,and decrease the W/D and injury score in lung tissue,thus alleviating lung injury in HS rats.The mechanism may be related to the regulation of HIF-1α-RORγt/Foxp3 balance.

8.
Artigo em Chinês | WPRIM | ID: wpr-1019920

RESUMO

Objective To investigate the serum levels of C-C motif chemokine ligand 25(CCL25)and human Parkinson's disease protein 7(PARK7)in patients with sepsis and their relationship with acute lung injury(ALI).Methods 138 sepsis patients diagnosed and treated in Hefei Jingdongfang Hospital from February 2019 to February 2023 were selected as sepsis group.They were divided into ALI group(n=40)and non-ALI group(n=98)based on whether ALI occurred.70 healthy individuals who underwent physical examinations at the same time were taken as a control group.Enzyme linked immunosorbent assay was used to detect serum levels of CCL25 and PARK7.The correlation between serum CCL25,PARK7 and clinical indicators were analyzed by Pearson correlation analysis.Risk factors for secondary ALI in sepsis were conducted by multivariate logistic regression analysis.The value of serum CCL25 and PARK7 levels in predicting secondary ALI in sepsis were conducted by the receiver operating characteristic curve.Results Serum CCL25(367.52±46.87ng/L)and PARK7(54.26±17.45μg/L)in patients with sepsis was higher than that of the control group(48.17±5.26ng/L,12.31±4.12 μg/L),and the differences were statistically significant(t=46.825,19.813,all P<0.05).ALI group patients CCL25(434.65±52.87ng/L vs 340.12±42.64ng/L),PARK7(103.47±22.51μg/L vs 34.18±7.46 μg/L),respiratory index(1.58±0.48 vs 0.88±0.07),PaCO2(50.11±6.27mmHg vs 40.42±5.20mmHg),APACHE Ⅱ score(23.37±3.82 point vs 17.15±3.41 point)and SOFA score(13.56±2.93 point vs 10.18±2.81 point)were all higher in the non-ALI group,while oxygenation index(237.14±23.56 point vs 341.14±21.37 point)and PaO2(55.87±8.03mmHg vs 63.11±7.14mmHg)were lower in the non-ALI group,and the differences were statistically significant(t=10.998,27.151,14.145,9.342,9.385,6.332,25.172,5.210,all P<0.05).The serum levels of CCL25 and PARK7 in ALI patients were positively correlated with APACHE II score,SOFA score,respiratory index and PaCO2(r=0.579~0.801,all P<0.05),while negatively correlated with oxygenation index and PaO2(r=-0.687,-0.643;-0.654,-0.712,all P<0.05).Serum CCL25(OR=1.309,95%CI:1.040~1.646),PARK7(OR=1.288,95%CI:1.016~1.633),APACHE II score(OR=1.188,95%CI:1.019~1.384)and SOFA score(OR=1.197,95%CI:1.006~1.425)were independent risk factors for secondary ALI in sepsis patients.The area under the curve(95%CI)of the combination of serum CCL25 and PARK7 for predicting secondary ALI in sepsis was 0.833(0.784~0.872),which was greater than the individual indicators 0.770(0.725~0.835)and 0.741(0.691~0.790),and the differences were statistically significant(Z=4.602,4.318,P<0.05).Conclusion Elevated serum levels of CCL25 and PARK7 in patients with sepsis are independent risk factors affecting the occurrence of secondary ALI in sepsis.The combination of the two has high predictive value for secondary ALI in sepsis.

9.
Artigo em Chinês | WPRIM | ID: wpr-1020729

RESUMO

Objective To explore the role of 4-hydroxynonenal(HNE)in alleviating acute lung injury(ALI)induced by neonatal sepsis by inhibiting the focal death of endothelial cells(ECs).Methods Newborn mice were randomly divided into five groups:(1)Sham operation group(Sham group),(2)sham operation mice receiving HNE treatment group(Sham + HNE group),(3)cecal serosity(CS group),and(4)CS-treated GS-DMD-/-mice group(CS + GSDMD-/-group).The degree of lung injury was evaluated by lung histopathology and lung wet/dry weight ratio.The ECs of mice were isolated and divided into the Ctrl group,LPS + ATP group,LPS + ATP + HNE-L group and LPS + ATP + HNE-H group.Western blot was used to evaluate the expression of HNE and caspase-1 pathway.Results Compared with CS group,the lung tissue scores of CS + HNE group and CS + GSDMD-/-group were significantly decreased(P<0.05),and the ratio of wet to dry weight of lung tissues was significantly decreased(P<0.05).Compared with the CS group,the 72-hour survival rates of mice in the CS + HNE group and CS + GSDMD-/-group were significantly improved(P<0.05).The expressions of GSDMD-N,C-caspase-1,NLRP3,IL-18 and IL-1β in lung ECs of the CS + HNE group and CS + GSDMD-/-group were signifi-cantly lower than those of the CS group(P<005).Compared with the Ctrl cells,LPS + ATP significantly decreased the cell viability(P<0.05)and increased the protein expressions of GSDMD,C-caspase-1,NLRP3,IL-18 and IL-1β(P<0.05),and these effects were also inhibited by HNE.Conclusion HNE can inhibit the focal death of lung ECs cells by inhibiting NLRP3/caspase-1 signal transduction,and improve ALI in septic mice.

10.
Artigo em Chinês | WPRIM | ID: wpr-1020855

RESUMO

Objective To observe the protective effects of codonopsis pilosulae polysaccharide on lung tissues in mice with acute lung injury(ALI)induced by lipopolysaccharide(LPS)and its mechanism.Methods Fifty male Kunming mice were randomly divided into control group,model group,dexamethasone group,codonopsis polysaccharide high-dose group(300 mg/kg)and codonopsis polysaccharide low-dose group(150 mg/kg).The ALI model was established by intraperitoneal injection of LPS.All mice were given gavage administration according to the grouping except for the control group.0.3 s force expiratory volume(FEV 0.3)and force spirometry(FVC)and their ratios were measured using multiparametric lung function test system.The histopathology change of mouse lung was detected by hematoxylin-eosin(HE)staining,and the classification and count of inflammatory cells in alveolar lavage fluid(BALF)was detected by Richter-Giemsa staining.Levels of IL-1β,IL-6,MPO and TNF-α were measured by ELISA in BALF,and Western blot was used to detect the protein expression level of p-p38,p-IκB-α and p-p65.Results Compared with those in the control group,lung histopathological damage was more pronounced in the model mice,with significantly lower FEV 0.3,FVC,FEV0.3/FVC assay value,but signifi-cantly higher lung tissue wet mass/dry mass(W/D),neutrophils,lymphocytes,IL-1β,IL-6,MPO,TNF-α,p-p38 MAPK,p-IκB-α,and p-p65(P<0.05);while codonopsis pilosulae polysaccharide could significantly reverse these effects.Conclusion Codonopsis pilosulae polysaccharide plays a protective role against LPS-induced ALI via inhibiting MAPK/NF-κB pathway to reduce the pathological damage of lung tissue,and the level of inflammatory factors,thus to improve lung function in ALI model mice.

11.
Tianjin Medical Journal ; (12): 161-166, 2024.
Artigo em Chinês | WPRIM | ID: wpr-1020989

RESUMO

Objective To investigate the impacts of phillyrin on exudates and lung injury in rats with acute pleurisy by regulating the NLRP3 inflammatory pathway.Methods Ninety rats were randomly divided into the control group,the model group,the low-dose phillyrin(PH-L,5 mg/kg)group,the medium-dose phillyrin(PH-M,10 mg/kg)group,the high-dose phillyrin(PH-H,20 mg/kg)group and the NLRP3 pathway inhibitor(PJ34,10 mg/kg)group.FVC,FEV 0.1 and FEV 0.3 were detected by lung function analyzer.Electronic balance was used to weigh the mass of chest exudate.The number of white blood cells in exudate was detected by Wright staining.Contents of prostaglandin E2(PGE2),monocyte chemoattractant protein-1(MCP-1),interleukin(IL)-6 and tumor necrosis factor-α(TNF-α)in exudate were detected by ELISA.Automatic blood gas analyzer was used to detect p(CO2)and p(O2)of rats.HE staining was used to observe pathological changes of lung tissue.The expression levels of NLRP3 and Caspase-1 protein were detected by immunohistochemistry.Western blot assay was used to detect the expression of NLRP3 pathway protein.Results Compared with the control group,the quality of pleural exudate and the number of white blood cells,the contents of PGE2,MCP-1,IL-6,TNF-α,the expression of p(CO2)and NLRP3 pathway proteins in exudate of the model group increased obviously,FVC,FEV 0.1,FEV 0.3 and p(O2)decreased obviously,and the lung tissue showed obvious pathological damage(P<0.05).Compared with the model group,the quality of pleural exudate and the number of white blood cells,the contents of PGE2,MCP-1,IL-6,TNF-α,the expression of p(CO2),NLRP3 pathway proteins in the exudate of rats decreased obviously in the PH group and the PJ34 group,FVC,FEV 0.1,FEV 0.3 and p(O2)increased obviously,the pathological injury of lung tissue was obviously improved(P<0.05).Compared with the PH-H group,there were no significant differences in the above indexes in the PJ34 group(P>0.05).Conclusion PH can improve lung injury induced by acute pleurisy in rats by inhibiting the activation of NLRP3 pathway and inhibiting inflammatory reaction.

12.
Herald of Medicine ; (12): 520-525, 2024.
Artigo em Chinês | WPRIM | ID: wpr-1023743

RESUMO

Objective To explore the protective effect and mechanism of Jinyinqingre oral liquid on acute lung injury in-duced by lipopolysaccharide(LPS)in mice.Methods C57BL/6J mice were randomly divided into six groups according to the random number table method:blank control group,model control group,Jinyinqingre oral liquid low-dose group,Jinyinqingre oral liquid medium-dose group,Jinyinqingre oral liquid high-dose group,and dexamethasone group.Except for the blank control group,the other groups were injected with lipopolysac charide(LPS)(5 mg·kg-1)into the trachea to establish the acute lung injury model of mice,and the Jinyinqingre oral liquid low,medium,and high groups were continuously administered the drug by gavage for three days.After 24 h,lung tissue and bronchoalveolar lavage fluid(BALF)were collected from the six groups for follow-up detection.The pathological injury of lung tissue in each group was observed by HE staining.The total number of cells in BALF was detected.The to-tal protein content of BALF was detected by the BCA method.The contents of inflammatory cytokines TNF-α,IL-1β,IL-6,and IgM in BALF were detected by ELISA.The expression of NF-κB and NLRP3 proteins in lung tissues was detected by immunohistochemistry and Western blotting.Results Compared with model control group,Jinyinqingre oral liquid alleviated the pathological injury of lung tissue(P<0.05),decreased the total cell count,total protein content and IgM expression in BALF(P<0.01),and the expres-sion of inflammatory cytokines TNF-α,IL-6 and IL-1β in BALF was dreased(P<0.05),the protein expressions of NF-κB and NL-RP3 in lung tissues was dreased(P<0.05).Conclusion Jinyinqingre oral liquid attenuated the pathological injury,inflammatory exudation,and expression of inflammatory cytokines in LPS-induced lung injury in mice,and its mechanism may be through the reg-ulation of NF-κB/NLRP3 signaling pathway,providing a theoretical basis for its clinical application.

13.
Artigo em Chinês | WPRIM | ID: wpr-1023850

RESUMO

AIM:To elucidate the possible biological mechanism of silica-induced acute lung injury in rats.METHODS:Sixteen Male Sprague-Dawley rats were divided into control and acute silicosis model groups,and instilled intratracheally with 1 mL of normal saline and 50 g/L silica suspension,respectively.After 7 d,the rats were sacrificed for collection of lung tissue and serum.The serum levels of interleukin-1β(IL-1β),IL-18 and tumor necrosis factor-α(TNF-α)were measured by using ELISA.The protein expression levels of nucleotide-binding oligomerization domain-like receptor protein 3(NLRP3)and gasdermin D(GSDMD)were measured by immunohistochemistry.Bacterial DNA was ex-tracted from the lung tissue for 16S ribosomal RNA gene sequencing to characterize changes in the composition of lung flo-ra.The differences in the structure of bacterial flora between control and model groups were analyzed by bioinformatic analy-ses.RESULTS:Immunohistochemical analysis showed that the protein expression levels of NLRP3 and GSDMD were higher in the lungs of the rats in model group.In addition,serum cytokine profiling showed that IL-1β,IL-18 and TNF-α levels were significantly higher in model group.The most abundant bacterial genera in the lung flora of the rats in model group were Bifidobacterium,Clostridium sensu stricto 1,and Parasutterella.The NLRP3 and GSDMD levels in the lung tissue and IL-1β and TNF-α levels in serum were positively correlated with the abundance of Parasutterella.CONCLU-SION:The alterations in lung flora structure and increased inflammation levels may be the actual biological mechanisms underlying silica-induced acute lung injury.The modulation of lung flora may provide a basis for the prevention and treat-ment of silica-induced acute lung injury.

14.
Artigo em Chinês | WPRIM | ID: wpr-1023852

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AIM:To investigate the effects of saponin from Panax japonicus IVa(SPJ IVa)on acute lung inju-ry in rats and to explore its possible protective mechanism.METHODS:Sixty SD rats were randomly divided into four groups,15 rats in each group:the control group,model group,low-dose SPJ IVa group,and high-dose SPJ IVa group.A rat model of ALI was established via intratracheal instillation of lipopolysaccharide(LPS,2 mg/kg).Rats in the low-and high-dose SPJ IVa groups were intraperitoneally injected with 15 and 45 mg/kg SPJ IVa,respectively,30 min after model-ing.Serum,bronchoalveolar lavage fluid(BALF),and lungs were collected 24 h after modeling.Pathomorphological changes in lung tissues were assessed using HE staining.The wet weight/dry weight ratio of lung tissues was measured us-ing the weighing method,whereas ELISA was used to measure the levels of interleukin-1β(IL-1β),IL-6,and tumor ne-crosis factor-α(TNF-α)in the serum and BALF.The levels of malondialdehyde(MDA),superoxide dismutase(SOD),and glutathione(GSH)were assessed using the kit method.Cell apoptosis in lung tissues was evaluated by immunohisto-chemical staining of cleaved caspase-3 and TUNEL.Western blot was used to measure the expression of nuclear factor E2-related factor 2(Nrf2),heme oxygenase-1(HO-1),nuclear factor-κB(NF-κB)p65,and Toll-like receptor 4(TLR4)in lung tissues.RESULTS:Compared with control group,the lung tissues of the model group were significantly damaged,and the lung injury scores(0.21±0.22 vs 2.98±0.46)and lung wet/dry weight ratios(3.09±0.41 vs 6.36±0.61)were significantly increased(P<0.01).Compared with model group,the lung injury scores(1.80±0.31 and 1.05±0.25 vs 2.98±0.46)and lung wet/dry weight ratios(5.25±0.44 and 3.89±0.35 vs 6.36±0.61)in low-and high-dose SPJ IVa groups were significantly reduced(P<0.01).The administration of LPS resulted in elevated levels of pro-inflammatory cy-tokines(IL-1β,IL-6,and TNF-α)as well as the oxidative marker MDA in both serum and BALF(P<0.01).Additional-ly,it led to a decrease in antioxidant markers SOD and GSH(P<0.01).However,treatment with both low and high doses of SPJ IVa effectively attenuated the LPS-induced production of pro-inflammatory factors and oxidative markers MDA(P<0.01),while also increasing SOD and GSH levels(P<0.05 or P<0.01).In the model group,evident apoptosis was ob-served in lung tissues,whereas treatment with low and high doses of SPJ IVa significantly suppressed TUNEL-positive cells and the expression of cleaved caspase-3(P<0.01).The expression levels of Nrf2,HO-1,NF-κB p65,and TLR4 in lung tissues were significantly higher in the model group than in the control group(P<0.01);in turn,after treatment with low and high doses of SPJ IVa,Nrf2 and HO-1 were further upregulated(P<0.01),whereas NF-κB p65 and TLR4 were downregulated(P<0.01).CONCLUSION:The inhibitory effect of SPJ IVa on LPS-induced ALI in rats may be attribut-ed to its ability to suppress the TLR4/NF-κB-and Nrf2/HO-1-mediated inflammatory response and oxidative stress.

15.
Artigo em Chinês | WPRIM | ID: wpr-1023902

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AIM:To investigate the effects of cannabinoid receptor agonist WIN55212-2(WIN)on acute lung injury(ALI)in septic mice,and to explore its potential mechanisms through glycolysis.METHODS:A mouse model of septic ALI was established by intraperitoneal injections of lipopolysaccharide(LPS).Male C57BL/6J mice were randomly divided into 4 groups(n=6):(1)control group;(2)LPS group,receiving intraperitoneal injections of LPS at 10 mg/kg;(3)LPS+WIN group,receiving 1 mg/kg WIN intraperitoneally 30 min prior to LPS injection;(4)LPS+WIN+MHY1485[mammalian target of rapamycin(mTOR)activator]group,receiving 10 mg/kg MHY1485 intraperitoneally 1 d before LPS injection and 1 mg/kg WIN plus 10 mg/kg MHY1485 30 min before LPS injection.Tissues were collected 24 h after modeling for analysis.Lung indexes were calculated,and histopathological changes of lung tissues were observed via he-matoxylin-eosin(HE)staining.Inflammatory cytokines interleukin-1β(IL-1β)and IL-10 in lung tissues,and lactic acid and lactate dehydrogenase A(LDHA)in serum were quantified using ELISA.The levels of mTOR/hypoxia-inducible fac-tor-1α(HIF-1α)/6-phosphofructo-2-kinase/fructose-2,6-biphosphatase 3(PFKFB3)signaling pathway-related proteins were assessed by Western blot.RESULTS:Compared with control group,the LPS group exhibited an increased lung in-dex,significant lung tissue damage,an increase in IL-1β levels(P<0.05),a decrease in IL-10 levels(P<0.05),and el-evated expressions of lactate and LDHA(P<0.05),along with increased levels of phosphorylated mTOR(p-mTOR),HIF-1α and PFKFB3 proteins(P<0.05).The LPS+WIN group showed improvements with a reduced lung index(P<0.05),lessened lung injury,decreased IL-1β levels(P<0.05),increased IL-10 levels(P<0.05),and lower levels of lactic acid,LDHA,p-mTOR,HIF-1α,and PFKFB3(P<0.05).Conversely,the LPS+WIN+MHY1485 group displayed increased lung indexes and lung tissue damage,elevated IL-1β levels(P<0.05),reduced IL-10 levels(P<0.05),and higher expressions of lactic acid,LDHA,p-mTOR,HIF-1α and PFKFB3(P<0.05)compared to the LPS+WIN group.CONCLUSION:WIN55212-2 mitigates sepsis-induced ALI,potentially by modulating the mTOR/HIF-1α/PFKFB3 sig-naling pathway,thereby inhibiting glycolysis and alleviating inflammatory responses.

16.
Artigo em Chinês | WPRIM | ID: wpr-1024349

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Objective To investigate the protective effect and mechanism of hyperoside(HYP)on paraquat(PQ)-induced acute lung injury in rats.Methods Rats were randomly divided into the control group,the PQ group,the low-dose hyperoside group(HYP-L group),the middle-dose hyperoside group(HYP-M group)and the high-dose hyperoside group(HYP-H group),with 12 rats in each group.After 7 days of corresponding treatment,the levels of interleukin(IL)-1β,IL-6 and macrophage inflammatory protein-2(MIP-2)in bronchoalveolar lavage fluid(BALF)of rats in each group,as well as the levels of malondialdehyde(MDA)and superoxide dismutase(SOD)in lung tissue were detected.The degree of lung injury and fibrosis of rats were evaluated by hematoxylin-eosin(HE)staining and Masson's trichrome staining.The expression levels of E-cadherin,α-smooth muscle actin(α-SMA),Vimentin,and protein expression levels of nuclear factor erythroid 2-related factor 2(Nrf2),nuclear factor-κB(NF-κB)p65,p-NF-κB p65,transforming growth factor-β1(TGF-β1),Smad3 and p-Smad3 in lung tissue were detected by Western blot.Results Compared with the control group,the levels of IL-1β,IL-6 and MIP-2 in BALF of rats in the PQ group increased(P<0.05),the level of SOD in the lung tissue decreased,while the level of MDA increased(P<0.05),and the lung tissue showed obvious damage and fibrosis(P<0.05).Compared with the PQ group,the levels of IL-1β,IL-6 and MIP-2 in BALF of rats in the HYP-L group,the HYP-M group and the HYP-H group decreased(P<0.05),the levels of SOD in the lung tissue increased(P<0.05),while the levels of MDA decreased(P<0.05),and the lung tissue damages were alleviated,and the fibrosis score decreased(P<0.05).Compared with the control group,the expression level of E-cadherin in the lung tissue of rats in the PQ group decreased(P<0.05),the expression levels of α-SMA and Vimentin increased(P<0.05),the protein expression level of Nrf2 decreased(P<0.05),the protein expression level of TGF-β1 and the phosphorylation levels of NF-κB p65 and Smad3 proteins increased(P<0.05).Compared with the PQ group,the expression levels of E-cadherin in the lung tissues of rats in the HYP-L group,the HYP-M group and the HYP-H group increased(P<0.05),the expression levels of α-SMA and Vimentin decreased(P<0.05),the protein expression levels of Nrf2 increased(P<0.05),the protein expression level of TGF-β1 and the phosphorylation levels of NF-κB p65 and Smad3 proteins decreased(P<0.05).Conclusion Hyperoside effectively alleviates paraquat-induced acute lung injury in rats,and it may reduce lung oxidative stress,inflammation and fibrosis by regulating Nrf2,NF-κB and TGF-β1/Smad2/3 signal pathways.

17.
Artigo em Chinês | WPRIM | ID: wpr-1025038

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Objective A feasible and stable mouse model of thoracic aortic dissection(TAD)combined with acute lung injury(ALI)was established using β-aminopropionitrile monofumarate(BAPN)1 g/(kg·d)administered in drinking water.The mouse model of TAD combined with acute lung injury(ALI)was established to provide a rational animal model to study TAD combined with ALI.Methods Forty-five SPF-grade 3-week-old C57BL/6J male mice were selected and randomly allocated to a CON group(normal dietary water;15 mice)or BAPN group(administration in sterile water at 1 g/(kg·d);30 mice)for 4 weeks.During the experimental period,the general condition and modeling rate of mice were observed.TAD model mice were validated,and the BAPN group was divided into TAD and non-TAD groups by measuring the maximum diameter of the thoracic aorta and HE staining of aortic tissues.HE pathological staining,the wet/dry weight(W/D)ratio,total protein level in bronchioalveolar lavage fluid(BALF),and interleukin(IL)-1 β,IL-6,and tumor necrosis factor-α(TNF-α)in BALF)were used to validate the TAD combined ALI model in mice.Results BAPN treatment significantly delayed the increase in body mass and water intake of mice.Compared with CON and non-TAD groups,the maximum diameter of the thoracic aorta of mice in the TAD group was significantly thickened(P<0.05).HE staining of the aorta showed significant thickening of the middle aortic layer,and the structure of the aortic wall was damaged and disordered.HE staining of lung tissues showed significant interstitial edema and inflammatory exudation accompanied by enlargement of alveolar lumen,alveolar wall epithelial exfoliation and hyaline membrane formation,and a significant increase in the pathological scores of lung injury(P<0.05).Total protein levels and expression of IL-1β,IL-6,and TNF-α in lung tissue,W/D ratio,and BALF were also significantly increased(P<0.05),whereas no significant difference was observed in the above indexes between the other two groups.Conclusions A mouse model of thoracic aortic dissection combined with acute lung injury can be established by BAPN administration in drinking water.

18.
Artigo em Chinês | WPRIM | ID: wpr-1025342

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Objective:To observe and verify the changes of transcriptome in hyperoxia-induced acute lung injury (HALI), and to further clarify the changes of pathways in HALI.Methods:Twelve healthy male C57BL/6J mice were randomly divided into normoxia group and HALI group according to the random number table, with 6 mice in each group. The mice in the normoxia group were fed normally in the room, and the mice in the HALI group was exposed to 95% oxygen to reproduce the HALI animal model. After 72 hours of hyperoxia exposure, the lung tissues were taken for transcriptome sequencing, and then Kyoto Encyclopedia of Genes and Genomes database (KEGG) pathway enrichment analysis was performed. The pathological changes of lung tissue were observed under light microscope after hematoxylin-eosin (HE) staining. Real-time fluorescence quantitative reverse transcription-polymerase chain reaction (RT-PCR) and Western blotting were used to verify the key molecules in the signal pathways closely related to HALI identified by transcriptomics analysis.Results:Transcriptomic analysis showed that hyperoxia induced 537 differentially expressed genes in lung tissue of mice as compared with the normoxia group including 239 up-regulated genes and 298 down-regulated genes. Further KEGG pathway enrichment analysis identified 20 most significantly enriched pathway entries, and the top three pathways were ferroptosis signaling pathway, p53 signaling pathway and glutathione (GSH) metabolism signaling pathway. The related genes in the ferroptosis signaling pathway included the up-regulated gene heme oxygenase-1 (HO-1) and the down-regulated gene solute carrier family 7 member 11 (SLC7A11). The related genes in the p53 signaling pathway included the up-regulated gene tumor suppressor gene p53 and the down-regulated gene murine double minute 2 (MDM2). The related gene in the GSH metabolic signaling pathway was up-regulated gene glutaredoxin 1 (Grx1). The light microscope showed that the pulmonary alveolar structure of the normoxia group was normal. In the HALI group, the pulmonary alveolar septum widened and thickened, and the alveolar cavity shrank or disappeared. RT-RCR and Western blotting confirmed that compared with the normoxia group, the mRNA and protein expressions of HO-1 and p53 in lung tissue of the HALI group were significantly increased [HO-1 mRNA (2 -ΔΔCt): 2.16±0.17 vs. 1.00±0.00, HO-1 protein (HO-1/β-actin): 1.05±0.01 vs. 0.79±0.01, p53 mRNA (2 -ΔΔCt): 2.52±0.13 vs. 1.00±0.00, p53 protein (p53/β-actin): 1.12±0.02 vs. 0.58±0.03, all P < 0.05], and the mRNA and protein expressions of Grx1, MDM2, SLC7A11 were significantly decreased [Grx1 mRNA (2 -ΔΔCt): 0.53±0.05 vs. 1.00±0.00, Grx1 protein (Grx1/β-actin): 0.54±0.03 vs. 0.93±0.01, MDM2 mRNA (2 -ΔΔCt): 0.48±0.03 vs. 1.00±0.00, MDM2 protein (MDM2/β-actin): 0.57±0.02 vs. 1.05±0.01, SLC7A11 mRNA (2 -ΔΔCt): 0.50±0.06 vs. 1.00±0.00, SLC7A11 protein (SLC7A11/β-actin): 0.72±0.03 vs. 0.98±0.01, all P < 0.05]. Conclusions:HALI is closely related to ferroptosis, p53 and GSH metabolism signaling pathways. Targeting the key targets in ferroptosis, p53 and GSH metabolism signaling pathways may be an important strategy for the prevention and treatment of HALI.

19.
Chinese Critical Care Medicine ; (12): 102-105, 2024.
Artigo em Chinês | WPRIM | ID: wpr-1025356

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Sepsis-induced acute lung injury (ALI) is a serious condition with a high incidence. Mitochondrial dysfunction and the release of mitochondrial DNA (mtDNA) play a crucial role in the occurrence and development of sepsis-induced ALI. In sepsis, mitochondrial dysfunction causes energy depletion of cells and dysfunction of tissue cell repair mechanisms, leading to ALI. In addition, the release of mtDNA leads to a more intense inflammatory response, exacerbating sepsis-induced ALI. This article reviews the pathophysiological mechanism of mitochondrial dysfunction and mtDNA release in sepsis and the current research status, in order to provide direction for the evaluation, treatment and prevention of sepsis-induced ALI.

20.
Chinese Critical Care Medicine ; (12): 166-171, 2024.
Artigo em Chinês | WPRIM | ID: wpr-1025368

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Objective:To investigate the protective effect of Xuebijing injection on acute lung injury (ALI) associated with cardiopulmonary bypass (CPB) by regulating the apoptosis of polymorphonuclear neutrophils (PMN).Methods:Thirty male Sprague-Dawley (SD) rats were randomly divided into sham operation group (Sham group), CPB model group (CPB group) and Xuebijing pretreatment group (XBJ group) according to the random number table method, with 10 rats in each group. Rats in the CPB group and XBJ group undergoing CPB procedures for 60 minutes. Rats in the Sham group did not undergo CPB. Rats in the XBJ group received intraperitoneal injection of 4 mL/kg Xuebijing injection 2 hours before CPB. Rats in the Sham group and CPB group were injected with an equal amount of normal saline. 4 hours after CPB, arterial blood was collected for blood gas analysis to calculate respiratory index (RI), and lung tissue of rats was collected for determination of lung index (LI) and pulmonary water containing rate. PMN in bronchoalveolar lavage fluid (BALF) were collected and the activity of caspase-3 was detected. The apoptosis rate was detected by flow cytometry. The expressions of microRNA-142-3p (miR-142-3p) and FoxO1 mRNA were detected by real-time fluorescence quantitative polymerase chain reaction (RT-qPCR). The protein expression of FoxO1 was detected by Western blotting. In addition, HL-60 cells were divided into control oligonucleotide transfection group, miR-142-3p mimics transfection group, and miR-142-3p inhibitor transfection group. After 48 hours of transfection, the activity of miR-142-3p binding to FoxO1 was detected using dual luciferase reporter genes.Results:Compared with Sham group, RI, LI and pulmonary water containing rate were significantly increased in CPB group. The caspase-3 activity and apoptosis rate of PMN obtained from BALF were significantly decreased, the expression of miR-142-3p was decreased, and the expression of FoxO1 protein was increased. However, compared with CPB group, RI, LI and pulmonary water containing rate were significantly decreased in XBJ group [RI: 0.281±0.066 vs. 0.379±0.071, LI: 4.50±0.26 vs. 5.71±0.42, pulmonary water containing rate: (80.31±32.50)% vs. (84.59±3.41)%, all P < 0.01]. The caspase-3 activity and apoptosis rate of PMN obtained from BALF were significantly increased [caspase-3 activity: 0.350±0.021 vs. 0.210±0.014, apoptosis rate: (15.490±1.382)% vs. (8.700±0.701)%, both P < 0.01], the expression of miR-142-3p was significantly up-regulated (2 -ΔΔCt: 2.61±0.17 vs. 0.62±0.05, P < 0.01), and the protein expression of FoxO1 was decreased [FoxO1/GAPDH (relative expression level): 0.81±0.04 vs. 1.22±0.06, P < 0.01]. However, there was no statistically significant difference in FoxO1 mRNA expression among the three groups. The bioinformatics analysis results showed that miR-142-3p can bind to the FoxO1 3'untranslated region (3'UTR). In HL-60 cells, compared with control oligonucleotide transfection group, the transfection of miR-142-3p mimics could reduce the expression of FoxO1 protein [FoxO1/GAPDH (relative expression level): 0.48±0.06 vs. 1.00±0.05, P < 0.01], however, the transfection of miR-142-3p inhibitor increased the expression of FoxO1 protein [FoxO1/GAPDH (relative expression level): 1.37±0.21 vs. 1.00±0.05, P < 0.05]. But, transfection with miR-142-3p mimics or inhibitor had no effect on FoxO1 mRNA expression. The luciferase reporter gene showed that miR-142-3p could bind to the FoxO1 3'UTR to inhibit FoxO1 expression. Conclusion:Xuebijing injection may promote the apoptosis of pulmonary alveolar PMN through the miR-142-3p/FoxO1 axis, and play a role in the prevention and treatment of CPB-induced ALI.

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