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1.
Journal of Public Health and Preventive Medicine ; (6): 29-32, 2021.
Article in Chinese | WPRIM | ID: wpr-906612

ABSTRACT

Objective To analyze the relationship between the expression of TSP-1, VEGF, and Th17-related inflammatory factors and early acute lung injury (ALI) in COPD. Methods The clinical data of 140 randomly selected patients with COPD in our hospital from May 2016 to June 2018 were retrospectively analyzed. According to the condition of the disease, they were divided into control group (n = 70) and observation group (n = 70). The related indicators were determined by flow cytometry and enzyme-linked immunosorbent assay (ELISA). Statistical analysis of data was carried out by Pearson linear correlation analysis and logistic regression analysis. Results Compared with the control group, the levels of FEV1 and FEV1/FVC in the patients with COPD complicated with early ALI were significantly lower, while the ratio of Th17/Treg in peripheral blood was significantly higher in the observation group. The plasma levels of TSP-1, VEGF and related inflammatory factors were significantly higher in the observation group than those in the control group. Pearson correlation analysis showed that TSP-1 and VEGF were positively correlated with CD4+Th17 cell ratio. Logistic regression analysis showed that IL-17 was an independent risk factor for early acute lung injury in COPD. Conclusion The increased release of Th17-related inflammatory cytokines will aggravate the airway inflammatory response, cause abnormal expression of TSP-1 and VEGF, and lead to vascular endothelial dysfunction, which will further aggravate the condition of patients, and increase the risk of acute lung injury in patients with COPD.

2.
Journal of Biomedical Engineering ; (6): 590-595, 2019.
Article in Chinese | WPRIM | ID: wpr-774167

ABSTRACT

In order to study the mechanical behavior of degeneration and nucleotomy of lumbar intervertebral disc, compression experiments with porcine lumbar intervertebral discs were carried out. The lumbar intervertebral discs with trypsin-treated and nucleus nucleotomy served as the experimental group and the normal discs as the control group. Considering the effects of load magnitude and loading rate, the relationship between stress and strain, instantaneous elastic modulus and creep property of intervertebral disc were obtained. The creep constitutive model was established. The results show that the strain and creep strain of the experimental group increase significantly with the increase of compression load and loading rate, whereas the instantaneous elastic modulus decreases obviously, compared with the control group. It indicates that the effect of load magnitude and loading rate on load-bearing capacity of intervertebral disc after nucleotomy is larger obviously than that of normal disc. The creep behavior of the experimental group can be still predicted by the Kelvin three-parameter solid model. The results will provide theoretical foundation for clinical treatment and postoperative rehabilitation of intervertebral disc disease.


Subject(s)
Animals , Biomechanical Phenomena , Intervertebral Disc , Physiology , General Surgery , Lumbar Vertebrae , Stress, Mechanical , Swine , Weight-Bearing
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