1.The biology, function, and applications of exosomes in cancer.
Jinyi LIU ; Liwen REN ; Sha LI ; Wan LI ; Xiangjin ZHENG ; Yihui YANG ; Weiqi FU ; Jie YI ; Jinhua WANG ; Guanhua DU
Acta Pharmaceutica Sinica B 2021;11(9):2783-2797
Exosomes are cell-derived nanovesicles with diameters from 30 to 150 nm, released upon fusion of multivesicular bodies with the cell surface. They can transport nucleic acids, proteins, and lipids for intercellular communication and activate signaling pathways in target cells. In cancers, exosomes may participate in growth and metastasis of tumors by regulating the immune response, blocking the epithelial-mesenchymal transition, and promoting angiogenesis. They are also involved in the development of resistance to chemotherapeutic drugs. Exosomes in liquid biopsies can be used as non-invasive biomarkers for early detection and diagnosis of cancers. Because of their amphipathic structure, exosomes are natural drug delivery vehicles for cancer therapy.
2. Study on purification effect of formaldehyde in cleanroom by new return air device
Kaili XU ; Hong YANG ; Jingxin XIE ; Jianfeng WANG ; Weimin SHEN ; Chen LING ; Xiangjin FU ; Yuyang XIA ; Changyu HAN ; Lishi ZHONG ; Yuying FAN
Chinese Journal of Industrial Hygiene and Occupational Diseases 2019;37(5):347-351
Objective:
To effectively reduce the concentration of poisons in cleanroom, protect the health of workers, realize the optimization and automatic control of the new return air device. And the influence of initial concentration, air volume, temperature and relative humidity of formaldehyde on the purification effect of the new return air device was explored.
Methods:
The purification effect of the new return air device installed with the activated carbon and the photocatalyst purification net or ordinary activated carbon purification network was tested in a 60 m3 simulated cleanroom. The concentration of formaldehyde was determined by solution absorption-phenol reagent spectrophotometry. Based on the single factor experiment to determine the combination of two purification nets. The effects of air volume, initial formaldehyde concentration, temperature and relative humidity on the purification effect of the new return air device were investigated by orthogonal test. Then, the performance parameters of the return air device to purify formaldehyde were determined.
Results:
The formaldehyde purification efficiency of the two types of purification nets in the new return air device was higher than that of the ordinary activated carbon purification network (