Objective To investigate the effects of different levels of intra-abdominal pressure ( IAP) on respiration and hemodynamics in a porcine model of acute lung injury( ALI) .Methods A total of 8 domestic swine received mechanical ventilation. Following baseline observations, oleic acid 0. 1mL/kg in 20mL of normal saline was infused via internal jugular vein. Using a nitrogen gas pneumoperitongum, the IAP increased from0 to 15 and 25mmHg, and the groups were named IAP0 , IAP15 and IAP25 , respectively. During the experimental period, hemodynamic parameters including heart rate ( HR) , cardiac output ( CO) , mean arterial pressure( MAP) , central venous pressure( CVP) , intrathoracic blood volume index( ITBVI) and so on were obtained by using thermodilution technique of pulse induced continuous cardiac output( PiCCO) . The esophageal pressure( Pes) was dynamicly monitored by the esophageal catheter. Results Pes and peak airway pressure( Ppeak) increased and static lung compliance( Cstat) decreased significantly in IAP15 and IAP25 groups compared with IAP0 group( all P lt;0. 01) . Transpulmonary pressure( Ptp) showed a downward trend( P gt;0. 05) . PO2 and oxygenation index showed a downward trend while PCO2 showed a upward trend ( P gt;0. 05) . HR and CVP increased significantly, cardiac index( CI) and ITBV index decreased significantly ( all P lt;0. 05) ,MAP didn′t change significantly( P gt;0. 05) . The changes in Pes were negatively correlated with the changes in CI( r = - 0. 648, P = 0. 01) . Conclusion In the porcine model of ALI, Pes increases because of a rise in IAP which decreased pulmonary compliance and CI.
With the growth of offshore activities, the incidence rates of seawater drowning (SWD) induced acute lung injury (ALI) and acute respiratory distress syndrome (ARDS) increase significantly higher than before. Pulmonary interstitial edema, alveolar septum fracture, red blood cells, and inflammatory cells infiltration can be seen under light microscope in the pathologic changes of lungs. The major clinical manifestations are continual hyoxemia and acidosis, which lead to a severe condition, a high death rate, and a poor treatment effect. Bone marrow mesenchymal stem cells are capable of self-renewal, multilineage differentiation and injured lung-homing, which are induced to differentiate into alveolar epithelial cells and pulmonary vascular endothelial cells for tissues repairing. This may be a new way to treat SWD-ALI and SW-ARDS.
Acute lung injury is one of the common and serious complications of acute aortic dissection, and it greatly affects the recovery of patients. Old age, overweight, hypoxemia, smoking history, hypotension, extensive involvement of dissection and pleural effusion are possible risk factors for the acute lung injury before operation. In addition, deep hypothermia circulatory arrest and blood product infusion can further aggravate the acute lung injury during operation. In this paper, researches on risk factors, prediction model, prevention and treatment of acute aortic dissection with acute lung injury were reviewed, in order to provide assistance for clinical diagnosis and treatment.
Objective To study the effect and mechanism of Xuebijing injection on sepsis-induced acute lung injury (ALI) in mice by regulating autophagy. Methods A total of 80 BALB/c male mice were randomly divided into control group, model group, Xuebijing group and Xuebijing+3-methyladenosine (3-MA) group, with 20 mice in each group. The control group received sham operation, while sepsis-induced ALI model was established in the later three groups by cecal ligation and puncture, on that basis, the Xuebijing group was given 10 mL/kg Xuebijing by intraperitoneal injection and the Xuebijing+3-MA group was given 10 mL/kg Xuebijing and 10 mg/kg autophagy inhibitor 3-mA by intraperitoneal injection. The cumulative survival rates of the four groups were observed 72 h after modeling, and the pathological changes of lung tissues, lung wet weight /dry weight ratios, inflammatory cytokines [tumor necrosis factor-α (TNF-α), interleukin (IL)-1 β, and IL-18] contents, numbers of autophagosome, and the protein expression levels of autophagy genes [microtubule-associated protein light chain3 (LC3)-Ⅱ/LC3-Ⅰand Beclin-1] were detected. Results In the control group, the 72-hour cumulative survival rate was 100%, the lung wet weight /dry weight ratio was 3.89±0.85, the TNF-α, IL-1β, and IL-18 contents were (0.83±0.14) ng/mg, (0.74±0.15) ng/mg, and (84.51±13.25) pg/mg, respectively, the number of autophagosome was (0.41±0.09)/field, and the expression levels of LC3-Ⅱ/LC3-Ⅰ and Beclin-1 were 0.20±0.04 and 0.17±0.03, respectively. In the model group, the lung tissue showed typical ALI pathological changes, the 72-hour cumulative survival rate (50%) was lower than that in the control group, and the lung wet weight /dry weight ratio (6.77±0.94), contents of TNF-α, IL-1β, and IL-18 [(3.15±0.76) ng/mg, (2.88±0.62) ng/mg, (274.62±45.58) pg/mg], autophagosome number [(3.14±0.55)/field], and expression levels of LC3-Ⅱ/LC3-Ⅰ and Beclin-1 (0.69±0.09, 0.35±0.06) were higher than those in the control group (P<0.05). In the Xuebijing group, the ALI pathological changes alleviated, the 72-hour cumulative survival rate (75%), autophagosome number [(5.77±0.75)/field], and expression levels of LC3-Ⅱ/LC3-Ⅰ and Beclin-1 (0.98±0.13, 0.62±0.08) were higher than those in the model group (P<0.05), and the lung wet weight /dry weight ratio (4.23±0.76) and contents of TNF-α, IL-1β, and IL-18 [(1.52±0.32) ng/mg, (1.29±0.30) ng/mg, (121.36±26.51) pg/mg] were lower than those in the model group (P<0.05). In the Xuebijing+3MA group, the ALI pathological changes aggravated, the 72-hour cumulative survival rate (55%), autophagosome number [(0.78±0.16)/field], and expression levels of LC3-Ⅱ/LC3-Ⅰ and Beclin-1 (0.37±0.05, 0.32±0.05) were lower than those in the Xuebijing group (P<0.05), and the lung wet weight /dry weight ratio (6.31±0.91) and contents of TNF-α, IL-1β, and IL-18 [(2.88±0.56) ng/mg, (2.41±0.58) ng/mg, (252.35±37.65) pg/mg] were higher than those in the Xuebijing group (P<0.05). Conclusion Xuebijing injection can reduce ALI induced by sepsis in mice, and activation of autophagy is the molecular mechanism.
Objective To observe the protective effects of ambroxol hydrochloride ( AMB) on rabbit model of acute lung injury ( ALI) induced by oleic acid and explore its mechanisms. Methods The ALI model of rabbit was induced by oleic acid. Twenty-four Japanese white rabbits were divided into three groups randomly, ie. a normal saline group ( NC group) , an ALI group and an ALI plus ambroxol injection group ( AMB group) . The pathological changes and apoptotic index ( AI) in lung tissue, Caspase-3 activity in lung tissue homogenate were observed 6 hours after the intervention. Serum activity of superoxide dismutase ( SOD) and serum levels of malonaldehyde ( MDA) , interleukin-1β( IL-1β) , and tumor necrosis factor-α ( TNF-α) were measured simutanously. Results The pathological injury of lung in the AMB group was milder than that in the ALI group. Both the AI in lung tissue and Caspase-3 activity in homogenate in the AMB group were lower than those in the ALI group significantly ( P lt;0. 01, P lt;0. 05 respectively) , butwere higher than those in the NC group( both P lt; 0. 01) . The activity of SOD in serum measured 6 hours after AMB intervention was higher while the serum levels of MDA, IL-1βand TNF-αin serum were lower ( P lt;0. 01) than those in the ALI group significantly ( all P lt;0. 01) . Conclusions Ambroxol hydrochloride has protective effects on oleic acid-induced acute lung injury. The mechanisms may be related to inhibition of oxidative stress and suppression of cytokines synthesis ( IL-1βand TNF-α) , the activity of the Caspase-3,and the apoptosis of lung tissue.
ObjectiveTo explore the clinical value of three early predictive scale of lung injury (ALI) in patients with high risk of acute lung injury (ALI) after lung cancer surgery.MethodsA convenient sampling method was used in this study. A retrospective analysis was performed on patients with lung cancer underwent lung surgery. The patients were divided into an ALI group and a non-ALI group according to ALI diagnostic criteria. Three kinds of lung injury predictive scoring methods were used, including lung injury prediction score (LIPS), surgical lung injury prediction (SLIP) and SLIP-2. The differences in the scores of the two groups were compared. The correlation between the three scoring methods was also analyzed. The diagnostic value was analyzed by drawing receiver operating characteristic (ROC) curves.ResultsA total of 400 patients underwent lung cancer surgery, and 38 patients (9.5%) developed ALI after operation. Among them, 2 cases progressed to acute respiratory distress syndrome and were treated in intensive care unit. There were no deaths. The predictive scores of the patients in the ALI group were higher than those in the non-ALI group, and the difference was statistically significant (all P<0.001). There was a good correlation between the three scoring methods (allP<0.001). The three scoring methods had better diagnostic value for early prediction of high risk ALI patients after lung cancer surgery and their area under ROC curve (AUC) were larger than 0.8. LIPS score performed better than others, with an AUC of 0.833, 95%CI (0.79, 0.87).ConclusionThree predictive scoring methods may be applied to early prediction of high risk ALI patients after lung cancer surgery, in which LIPS performs better than others.
Objective To assess the efficacy of ambroxol on acute lung injury/acute respiratory distress syndrome ( ALI/ARDS) . Methods The randomized controlled study involving ambroxol on ALI/ARDS were searched and identified from Cochrane Library, PubMed, China Academic Journals Full-text Database, Chinese Biomedical Literature Database, WanFang Resource Database, and Chinese Journal Fulltext Database. The quality of the chosen randomized controlled studies was evaluated, and then the valid data was extracted for meta-analysis. Results Ten articles were included, all in Chinese, including 459 cases ofpatients ( 233 cases in experimental group,226 cases in control group) , with baseline comparability between the various experiments. Systematic review showed that in ALI/ARDS patients, high-dose ambroxol was in favor to improve PaO2 [ WMD =12. 23, 95% ( 9. 62, 14. 84) , P lt; 0. 0001] and PaO2 /FiO2 [ WMD = 32. 75,95% ( 30. 00, 35. 51) , P lt;0. 0001] , reduce lung injury score [ WMD = - 0. 49, 95% ( - 0. 66, - 0. 33) ,P lt;0. 0001] , decrease the duration of mechanical ventilation [ WMD = - 2. 70, 95% ( - 3. 24, - 1. 12) ,P lt;0. 0001] and the length of ICU stay [ WMD= - 2. 70, 95% ( - 3. 37, - 2. 04) , P lt;0. 0001] , and lower mortality [ OR=0. 46,95%( 0. 22, 1. 00) , P = 0. 05] . Conclusions The existing clinical evidence shows that, compared with conventional therapy, high-dose ambroxol plus can significantly improve PaO2 , PaO2 /FiO2 , lung injury score, duration of mechanical ventilation, length of ICU stay and mortality in ALI/ARDS patients. Due to the quality of research and the limitations of the study sample, there likely to exist a bias,and may affect the strength of result, so we expect more high-quality, large-scale randomized controlled clinical trial to verify.
Objective To investigate the transduction pathway of TREM-1 during endotoxininduced acute lung injury ( ALI) in mice through the specific activating or blocking TREM-1.Methods 40 mice were randomly divided into a saline control group, an ALI group, an antibody group, and a LP17 group ( 3.5 mg/kg) . All mice except the control group were intraperitoneally injected with lipopolysaccharide ( LPS) to establish mouse model of ALI. Two hours after LPS injection, anti-TREM-1mAb ( 250 μg/kg) was intraperitoneally injected in the antibody group to activation TREM-1, and synthetic peptide LP17 was injected via tail vein in the LP17 group to blocking TREM-1. After 6,12,24, 48 hours, 3 mice in each group were sacrificed for sampling. The expression of NF-κB in lung tissue was determined by immunohistochemistry. The levels of TNF-α, IL-10, TREM-1, and soluble TREM-1 ( sTREM-1) in lung tissue and serumwere measured by ELISA. Pathology changes of lung were observed under light microscope, and Smith’s score of pathology was compared. Results Administration of anti-TREM-1mAb after ALI modeling significantly increased the NF-κB expression in lung tissue at 48h, resulting in a large number of pro-inflammatory cytokines releasing in the lung tissue and serumand lung pathology Smith score increasing. Administration of LP17 after modeling significantly down-regulated the expressions of NF-κB and pro-inflammatory cytokines, while led to a slight increase of anti-inflammatory cytokines and a decline of lung pathology Smith’s score.Conclusion TREM-1 may involve in inflammatory response by promoting the generation of inflammatory factors via NF-κB pathway, thus lead to lung pathological changes in ALI.
Objective To investigate the expression of FLIP in the lung of rats and the protective effect in development of acute lung injury( ALI) with the adenovirus vector carrying FLIP gene( Ad-FLIP)inhaled. Methods Forty-eight rats were randomly divided into four groups, with 12 rats in each gruop. In treatment group, ALI rats model was eatablished by LPS intraperitoneal injection and then inhaled Ad-FLIP vector. In prevention group, the animals were infected with Ad-FLIP vector before ALI model wasestablished. Two control groups of treatment and prevention received Ad-EGFP vectors respectively.Pathological changes of lung were observed under light microscope. Wet/dry weight ( W/D) of lung lobes and lung permeability index( LPI) were also measured. The mRNA and protein expressions of FLIP in lungwere investigated by RT-PCR and immunohistochemistry, respectively. Results Lung histopathological changes were alleviated, the index of W/D and LPI were significantly lower, the expressions of FILP mRNA and protein in the lung were elevated both in the treatment group and prevention group compared to thecontrol groups ( all P lt;0. 01) . Conclusion Ad-FLIP transfection can up-regulate the expression of FLIP in lung of rats, and might protect respiratory membrane and lessen pulmonary edema to prevent the development of ALI.