1.Protection of ultrastructure in chilling-stressed banana leaves by salicylic acid.
Guo-zhang KANG ; Zheng-xun WANG ; Kuai-fei XIA ; Gu-chou SUN
Journal of Zhejiang University. Science. B 2007;8(4):277-282
OBJECTIVEChilling tolerance of salicylic acid (SA) in banana seedlings (Musa acuminata cv., Williams 8818) was investigated by changes in ultrastructure in this study.
METHODSLight and electron microscope observation.
RESULTSPretreatment with 0.5 mmol/L SA under normal growth conditions (30/22 degrees C) by foliar spray and root irrigation resulted in many changes in ultrastructure of banana cells, such as cells separation from palisade parenchymas, the appearance of crevices in cell walls, the swelling of grana and stromal thylakoids, and a reduction in the number of starch granules. These results implied that SA treatment at 30/22 degrees C could be a type of stress. During 3 d of exposure to 7 degrees C chilling stress under low light, however, cell ultrastructure of SA-pretreated banana seedlings showed less deterioration than those of control seedlings (distilled water-pretreated).
CONCLUSIONSA could provide some protection for cell structure of chilling-stressed banana seedling.
Adaptation, Physiological ; Cold Temperature ; Microscopy, Electron ; Musa ; physiology ; ultrastructure ; Plant Leaves ; ultrastructure ; Plant Transpiration ; Salicylic Acid
2.Research progress on the immune effects of photodynamic therapy
Wen-Xin CHOU ; Tian-Zhen SUN ; Ying GU ; Hong-You ZHAO
Medical Journal of Chinese People's Liberation Army 2024;49(6):718-725
As a novel tumor treatment,photodynamic therapy(PDT)has been widely used in clinical treatment of a variety of tumors due to its advantages,such as fewer adverse reactions,precise targeting and repeatability of treatment.Unlike conventional treatments,such as surgery,chemotherapy and radiotherapy,PDT not only eliminates the primary tumor but also effectively inhibits metastatic tumors by activating the body's immune response.However,the PDT-activated immune response is influenced by multiple factors,including the localization and dose of photosensitizer in the cells,light parameters,oxygen concentration in the tumor,and the integrity of immune function.This review summarizes the mechanisms behind the PDT-activated anti-tumor immune response,systematically examines the key influencing factors on the immune effect of PDT,and discusses the future development direction of PDT in cancer treatment.