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1.
Chinese Journal of Oncology ; (12): 530-538, 2023.
Artigo em Chinês | WPRIM | ID: wpr-984754

RESUMO

Surgical operation is one of the significant parts of the comprehensive therapeutic methods of lung cancer. In the history of the development of lung cancer operation, scholars and predecessors at home and abroad have gradually established the current status of lung cancer operation and the framework of comprehensive treatment after continuous understanding of local anatomy of lung, continuous innovation of surgical equipment and continuous reform of surgical methods. In the continuous development and improvement of lung cancer surgical diagnosis and treatment procedures, a set of standardized diagnosis and treatment process of lung cancer screening, early diagnosis and treatment, standardized surgery process, rapid perioperative recovery, postoperative adjuvant treatment and follow-up has been formed. The achievements of lung cancer operation are achieved by scholars standing on the shoulders of giants. In the process of pioneering and innovating, we should go back and review the road that our predecessors have taken, and draw energy from it to continue to create new brilliance in lung cancer operation. In this paper, the evolution history of lung cancer surgery is summarized in order to improve the clinician's understanding of the history of lung cancer surgery.


Assuntos
Humanos , Neoplasias Pulmonares/cirurgia , Detecção Precoce de Câncer , Pulmão
2.
Chinese Pharmacological Bulletin ; (12): 1088-1093, 2022.
Artigo em Chinês | WPRIM | ID: wpr-1014067

RESUMO

Aim To study the effeet of Wenyang Hua- Nrpl signaling pathway in systemic sclerosis ( SSc ) zhuo Tongluo formula ( WYHZTLF) on the Sema3A/ mouse model, and to explore its mechanism in the treatment of SSe.Methods The systemic sclerosis mouse model was constructed and divided into control group, model group, WYHZTLF low (21 g • kg 1 ) , medium (42 g • kg 1 ) , high (84 g • kg 1 ) dose group and the Sema3A inhibitor epigallocatechol gallate (EGCG) group.All groups were given intragastric administration for four weeks, and the control and model groups were treated with saline.Histopathology and dermal thickness were detected by HE, VEGFA pro-tein expression levels were detected by immunohisto- chemistry; the protein expression levels of Sema3A, Nrpl and VEGFA were determined by Western blot; Sema3A expression levels in mouse serum were detec-terl by ELISA.Results Comparer] with model group, WYHZTLF significantly alleviated the skin lesions in systemic sclerosis mouse model, significantly inhibited the dermal thickness, inhibited the protein expression levels of VEGFA, Sema3A and Nrpl , and reduced the expression levels of serum Sema3A.Conclusion WYHZTLF can improve the vascular injury of SSc, and its mechanism may be related to the inhibition of VEGFA and Sema3A/Nrpl signaling pathway.

3.
Chinese Journal of Rehabilitation Theory and Practice ; (12): 1349-1352, 2020.
Artigo em Chinês | WPRIM | ID: wpr-905378

RESUMO

Objective:To investigate the clinical effects of Kinesio Taping (KT) combined with deep muscle stimulation (DMS) on non-specific neck pain (NNP). Methods:From January to December, 2018, 56 patients with NNP were randomly divided into control group (n = 28) and study group (n = 28). The control group accepted interference electrotherapy and magnetic vibration heat, and the study group accepted KT and DMS in addition, for two weeks. They were assessed with Visual Analogue Scale (VAS) of pain and Neck Disability Index (NDI) before treatment, and after one and two weeks of treatment. Results:The score of VAS and NDI decreased after treatment (F > 4.137, P < 0.05), and were less in the study group than in the control group (t > 4.008, P < 0.001). Conclusion:KT combined with DMS could promote the relief of NNP.

4.
China Journal of Chinese Materia Medica ; (24): 3183-3190, 2020.
Artigo em Chinês | WPRIM | ID: wpr-827999

RESUMO

This work is to establish the fingerprint of Astragalus membranaceus var. mongholicus by HPLC-ELSD method, and to analyze the simulated wildness degree of A. membranaceus var. mongholicus in the genuine region of Inner Mongolia, Ningxia and Gansu. Compared with wild A. membranaceus var. mongholicus, the quality differences of A. membranaceus var. mongholicus in the genuine region were analyzed by identification of chromatographic peaks and similarity evaluation, cluster analysis(CA), principal components analysis(PCA) and orthogonal partial least squares discriminant analysis(OPLS-DA). HPLC fingerprints of A. membranaceus var. mongholicus in different genuine regions are established. The qualitative analysis of mass spectrometry identified 18 components. The similarity evaluation shows that the similarity of 32 batches of A. membranaceus var. mongholicus samples was 0.688-0.993. Among them, the similarity of samples in Shanxi, Inner Mongolia, Ningxia is 0.688-0.993, 0.835-0.989, 0.934-0.988, respectively and the similarity of samples in Gansu is 0.729-0.876 except No. 25 sample. The results of CA show that the samples of A. membranaceus var. mongholicus can be grouped into four categories according to the production area except the No. 11 and No. 25 samples. The results of PCA indicate that 32 batches of A. membranaceus var. mongholicus samples can be clustered according to quality and origin, and the quality of A. membranaceus var. mongholicus in Inner Mongolia is the closest to the wild breed. The results of OPLS-DA indicate that there are six components that can distinguish the wild and domestic A. membranaceus var. mongholicus, which are malonylastragaloside Ⅰ, astragaloside Ⅰ, calycosin-7-O-β-D-glycoside-6″-O-malonate, calycosin-7-O-β-D-glycoside, formononetin-7-O-β-D-glycoside-6″-O-malonate, and astrapterocarpan-3-O-β-D-glycoside-6″-O-malonate. The established method can be used to analyze differences between A. membranaceus var. mongholicus origin and planting environment, and can provide references for the protection and replacement of wild A. membranaceus var. mongholicus resources, and the cultivation, processing and production of A. membranaceus var. mongholicus.


Assuntos
Astragalus propinquus , China
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