1.Research and design of mobile medical service platform based on cloud computing
China Medical Equipment 2017;14(8):122-125
Objective:To design a mobile health service platform based on cloud computing so as to reform the current medical problems including serious waste of medical resources, low level of information sharing and poor feel of medical treatment and so on.Methods: On the basic of analyzing cloud computing and relative theories, a solution of mobile medical cloud based on Google App Engine(GAE) was proposed.Results: A mobile medical health service platform including overall business process and deployment of development environment based on GAE has been designed and the traditional medical service mode has been converted.Conclusion: The exploration and attempt that constructe mobile medical health service platform by combining cloud computing with medical services can promote the conversion of medical mode and provide a effective solution for meeting the requirements of medical service quality and service efficiency for the masses.
2.Study on the iron accumulation-induced bone loss and hematopoietic autophagy dysfunction
Ye YUAN ; Yixuan FANG ; Gongwen LIU ; Yan GAO ; Guangsi SHEN ; Zhipeng LIU ; Keyu ZHU ; Miao ZHENG ; Qing BI ; Chen ZHAO ; Youjia XU
Chinese Journal of Endocrinology and Metabolism 2021;37(5):472-476
Objective:Iron accumulation is related to the occurrence of postmenopausal osteoporosis. Meanwhile, autophagy abnormality of bone marrow hematopoietic cells is observed in hip osteoporotic fracture. This study is performed to investigate correlation between iron accumulation induced bone loss and hematopoietic autophagy dysfunction to explore the new risk factor of osteoporosis.Methods:Male iron accumulation mice model was established by intraperitoneally injecting ferric ammonium citrate. Serum ferritin and osteogenic indicator P1NP were tested by ELISA. Bone mineral density was measured by micro-CT. Femur and tibia bone marrows were collected for hematopoietic stem and progenitor cells proportion and cell apoptosis analysis. Autolysosome formation was measured by image flow cytometry. We used conditional mouse model Atg7 flox/flox; Vav-Cre(Atg7 -/-) in which Atg7 had been genetically deleted in the hematopoietic system. Bone marrow hematopoietic stem and progenitor cells were collected for RNA sequence. micro-CT scan was conducted for Atg7 -/- femur. Results:Ferritin level of iron accumulation mice was significantly higher than control group( P<0.05). Iron accumulation inhibited P1NP and induced decreased bone mineral density( P<0.05). Iron accumulation bone marrow displayed enhanced hematopoietic stem and progenitor cells proportion( P<0.05), with more cell apoptosis( P<0.05). Hematopoietic autophagy was deteriorated in iron accumulation bone marrow. Transcriptomic profiling showed up-regulation of iron activity in Atg7 -/- mice, with increased iron homeostasis and iron membrane transporter genes, including Lcn2, Tfr2, Slc40a1(Fpn1), Steap3, and Cpox. micro-CT revealed severe bone loss and decreased bone mineral density in Atg7 -/- mice( P<0.05). Conclusion:Iron accumulation induced bone loss is related to inhibition of hematopoietic cells. Hematopoietic autophagy dysfunction is associated with bone loss.