1.Exogenous cardiotrophin-1:The possibility to protect PC12 cells and Schwann cells
Zetuan XIN ; Xiangze LIU ; Mingjin ZHANG ; Wei LI ; Bohua CHEN ; Xuexiao MA
Chinese Journal of Tissue Engineering Research 2013;(41):7265-7271
BACKGROUND:Restoration of neurological functions after the damaged peripheral nerve is reconstructed is a hot topic in existing research. Within a short term fol owing peripheral nerve injury, nerve and muscle begin to develop irreversible degeneration. Restoration of the damaged nerve requires delayed degeneration and basic microenvironment. OBJECTIVE:To investigate the protective effect of cardiotrophin-1 on PC12 cells and Schwann cells. METHODS:Schwann cells and PC12 cells were obtained and cultured in complete medium, serum-free medium and 50 ℃ medium, respectively. cells in cardiotrophin-1 group were treated with exogenous cardiotrophin-1 solvent, while those in the control group were treated with equivalent Dulbecco’s modified Eagle’s medium, for 24 hours. The survival rate for PC12 cells and Schwann cells was determined using cellCounting Kit-8 colorimetric method. The lactate dehydrogenase activity in supernatant was detected by lactate dehydrogenase kit, and the malondialdehyde content and superoxide dismutase activity were measured by thiobarbituricaicd and xanthine oxidese method respectively. RESULTS AND CONCLUSION:The survival rate of PC12 cells and Schwann cells in cardiotrophin-1 group was obviously increased, lactate dehydrogenase releasing and malondialdehyde content were obviously decreased, superoxide dismutase activity was dramatical y improved compared with control group. Exogenous cardiotrophin-1 reduces the injury caused by ischemia and heat stress stimulation for PC12 cells and Schwann cells. The mechanism of protection may be related to the expression of anti-apoptosis protein activated by the combination of cardiotrophin-1 and its receptors.
2.The key technology and Overall Architecture of Chinese Medicine Tongue Image Diagnostic System for Mobile Terminal
Shiqi ZHANG ; Junhan YANG ; Yuheng SUN ; Ni YIN ; Teng LI ; Haibo WU ; Shiyue GAO ; JiShi WANG ; Zhihui CHEN ; Xiangze LI ; Zhe ZHANG
World Science and Technology-Modernization of Traditional Chinese Medicine 2024;26(6):1618-1637
Tongue diagnosis is an important method of TCM diagnosis and treatment.Tongue is the key link of auxiliary diagnosis of tongue feature extraction and processing,and also is the bottleneck of intelligent tongue diagnosis in traditional Chinese medicine.Using image processing,artificial intelligence technology to the tongue as a quantitative and identify characteristics of traditional Chinese medicine,looking for both conforms to the original thinking of TCM,and TCM tongue diagnosis method of accurately,has become a common concern of traditional Chinese medicine and computer field.From the mobile terminal tongue as auxiliary diagnostic system of traditional Chinese medicine tongue acquisition basic attribute,tongue diagnosis and image information building,tongue like features are required for accurate extraction and so on related key technology is analyzed,and build overall architecture,so as to provide technical reference for the tongue like intelligent diagnosis,promote the development of technology of tongue diagnosis in traditional Chinese medicine modernization.
3.Advances of research on oxygen-enhancing nano-delivery system for photodynamic therapy
Chenkai SUN ; Xin CHEN ; Hao CHENG ; Xiangze ZHANG ; Xiaoyu YANG ; Jianping ZHOU ; Yang DING
Journal of China Pharmaceutical University 2021;52(4):387-397
Photodynamic therapy, a new type of non-invasive treatment, is based on the principle that the photosensitizer excited by laser can transfer energy to oxygen, which generates cytotoxic singlet oxygen and thus induce tumor cell apoptosis or necrosis. As an oxygen-dependent therapy, the antitumor effect of photodynamic therapy is obviously limited by hypoxia environment of solid tumor tissue. Therefore, reversing and improving the hypoxia of tumor tissue can significantly enhance the efficacy of photodynamic therapy. This review focuses on the progress of tumor oxygenation strategy mediated by nano-delivery system, including direct oxygen delivery strategies, catalytic oxygen production strategies, responsive material in situ oxygen supply strategies and microorganism oxygen supply strategies, aiming to improve the antitumor effect of photodynamic therapy. It provides new ideas and new approaches for further study of oxygen-enchancing nano-delivery system for photodynamic therapy.