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1.
Chinese Journal of Lung Cancer ; (12): 577-582, 2021.
Article in Chinese | WPRIM | ID: wpr-888577

ABSTRACT

BACKGROUND@#At present, an ultrafine chest tube combined with a traditional thick tube were often used after pulmonary uniportal video-assisted thoracoscopic surgery (U-VATS). However, the thick tube was often placed in the incision, which increased the risk of poor wound healing and postoperative pain. The aim of this study is to investigate the feasibility and safety of using two ultrafine chest tubes (10 F pigtail tube) for drainage after pulmonary U-VATS.@*METHODS@#The medical records of patients who underwent pulmonary U-VATS during June 2018 and June 2020 in the department of cardiothoracic surgery of the second affiliated hospital of Soochow university were retrospectively reviewed to compare two different drainage strategies, receiving two 10 F pigtail tubes as chest tube (group A) or one 10 F pigtail tube as lower chest tube combined with one 24 F tube as upper chest tube (group B).@*RESULTS@#106 patients in group A receiving two 10 F pigtail tubes during June 2019 and June 2020 and 183 patients in group B receiving one 10 F pigtail tube as lower chest tube combined with one 24 F tube as upper chest tube during June 2018 and June 2019 were included. There was no significant difference between two groups in terms of the postoperative thoracic drainage (mL) (1st: 199.54±126.56 vs 203.59±139.32, P=0.84; 2nd: 340.30±205.47 vs 349.74±230.92, P=0.76; 3rd: 435.19±311.51 vs 451.37±317.03, P=0.70; 4th: 492.58±377.33 vs 512.57±382.94, P=0.69; Total: 604.57±547.24 vs 614.64±546.08, P=0.88), drainage time (d) (upper chest tube: 2.54±2.20 vs 3.40±2.07, P=0.21; lower chest tube: (2.24±2.43 vs 3.82±2.12, P=0.10), postoperative hospital stays (d) (6.87±3.17 vs 7.06±3.21, P=0.63), poor wound healing (0 vs 3.28%, P=0.09), replacement of lower chest tube (0.94% vs 2.19%, P=0.66) and the VAS1 (3.00±0.24 vs 2.99±0.15, P=0.63). Notably, there were significant differences between two groups in terms of the VAS₂ (2.28±0.63 vs 2.92±0.59, P<0.01) and VAS₃ (2.50±1.58 vs 2.79±1.53, P=0.02), as well as the frequency of using additional analgesics (25.47% vs 38.25%, P=0.03) and replacement of the upper chest tube (0 vs 4.37%, P=0.03).@*CONCLUSIONS@#It's feasible and safe to use two 10 F pigtail tubes for drainage after pulmonary U-VATS, which can achieve less postoperative pain and lower frequency of replacement of the upper chest tube on some specific patients.

2.
Chinese Journal of Lung Cancer ; (12): 434-440, 2021.
Article in Chinese | WPRIM | ID: wpr-880275

ABSTRACT

Lung adenocarcinoma (LUAD) is the most common subtype of lung cancer and one of the main causes of cancer-related deaths. In the past decade, with the widespread use of computed tomography (CT) in routine screening for lung cancer, the incidence of LUAD presenting as small pulmonary nodules radiologically, has increased remarkably. The mechanisms of the occurrence and progression of LUADs are complex, and the prognoses of patients with LUAD vary significantly. Although significant progress has been made in targeted therapy and immunotherapy for LUADs in recent years, the drug resistance of tumor cells has not been effectively overcome, which limits the benefits of patients. With the accomplishment of the Human Genome Project, sequencing-based genomic and transcriptomics have come into the field of clinical and scientific researches. Single-cell sequencing, as a new type of sequencing method that has captured increasing attention recently, can perform specific analysis of cell populations at single-cell level, which can reveal the unique changes of each cell type. Single-cell sequencing can also provide accurate assessment on heterogeneous stromal cells and cancer cells, which is helpful to reveal the complexity of molecular compositions and differences between non- and malignant tissues. To sum up, it is an urgent need for clinicians and basic scientists to deeply understand the pathogenesis and development of LUAD, the heterogeneity of tumor microenvironment (TME) and the mechanism of drug resistance formation through single-cell sequencing, so as to discover new therapeutic targets. In this paper, we reviewed and summarized the application and progress in single-cell sequencing of LUADs.
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3.
Chinese Journal of Lung Cancer ; (12): 885-889, 2018.
Article in Chinese | WPRIM | ID: wpr-772348

ABSTRACT

BACKGROUND@#It has been confirmed that high-frequency chest wall oscillatory (HFCWO) is a new type of auxiliary sputum discharge device. However, up to now, the specific therapeutic effect of HFCWO is still uncertain. This study aimed to compare the changes of the sputum volume before and after the treatment of HFCWO, and to investigate the effect of HFCWO on lung function and arterial blood gas analysis after single port video-assisted thoracoscopic surgery lobectomy (S-VATS).@*METHODS@#A total of 90 patients with S-VATS lobectomy were collected in the Second Affiliated Hospital of Soochow University from January 2017 to December 2017, which were randomly divided into the experimental group with HFCWO (n=45) and the control group (n=45) with routine clapping, respectively. The sputum volume of the two groups was measured 5 days before operation. Lung function and arterial blood gas analysis was measured before and 7th days after surgery.@*RESULTS@#The sputum volume was higher in the experimental group than that of the control group after surgery, there was statistically significant difference for the first three days (P0.05); Compared with those before surgery, FEV₁, FVC and PaO₂ decreased in both groups after surgery (P0.05).@*CONCLUSIONS@#HFCWO can significantly increase the amount of sputum excretion, improve lung function and alleviate hypoxia status after S-VATS lobectomy. This study provides a promising approach for HFCWO toward hypoxia status after S-VATS lobectomy.
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Subject(s)
Adult , Aged , Female , Humans , Male , Middle Aged , Young Adult , Case-Control Studies , Forced Expiratory Volume , High-Frequency Ventilation , Lung , General Surgery , Lung Neoplasms , General Surgery , Pneumonectomy , Respiratory Function Tests , Thoracic Surgery, Video-Assisted , Thoracic Wall , General Surgery
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