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P Y Xu

Publications and source records attributed to P Y Xu.

5 recordsLinked to original sources

Copper transportion of WD protein in hepatocytes from Wilson disease patients in vitro.

AIM: To study the effect of copper transporting P-type ATPase in copper metabolism of hepatocyte and pathogenesis of Wilson disease (WD). METHODS: WD copper transporting properties in some organelles of the cultured hepatocytes were studied from WD patients and normal controls.These cultured hepatocytes were incubated in the media of copper 15 mg x L(-1) only, copper 15 mg x L(-1) with vincristine (agonist of P-type ATPase) 0.5mg x L(-1), or copper 15 mg x L(-1) with vanadate (antagonist of P-type ATPase) 18.39 mg x L(-1) separately. Microsome (endoplasmic reticulum and Golgi apparatus), lysosome, mitochondria, and cytosol were isolated by differential centrifugation. Copper contents in these organelles were measured with atomic absorption spectrophotometer, and the influence in copper transportion of these organelles by vanadate and vincristine were comparatively analyzed between WD patients and controls. WD copper transporting P-type ATPase was detected by SDS-PAGE in conjunction with Western blot in liver samples of WD patients and controls. RESULTS: The specific WD proteins (M(r)155,000 lanes) were expressed in human hepatocytes, including the control and WD patients. After incubation with medium containing copper for 2 h or 24 h, the microsome copper concentration in WD patients was obviously lower than that of controls, and the addition of vanadate or vincristine would change the copper transporting of microsomes obviously. When incubated with vincristine, levels of copper in microsome were significantly increased, while incubated with vanadate, the copper concentrations in microsome were obviously decreased. The results indicated that there were WD proteins, the copper transportion P-type ATPase in the microsome of hepatocytes. WD patients possessed abnormal copper transporting function of WD protein in the microsome, and the agonist might correct the defect of copper transportion by promoting the activity of copper transportion P-type ATPase. CONCLUSION: Copper transportion P-type ATPase plays an important role in hepatocytic copper metabolism. Dysfunction of hepatocytic WD protein copper transportion might be one of the most important factors for WD.

Adenosine Triphosphatases↗

[Identification of medicinal plant Xanthium L. produced in China].

OBJECTIVE: To gain a clear idea on the resources and pharmacognostic identification of medicinal plant Xanthium in China. METHOD: Identification of botanical origin, analysis of fruit shapes and properties, microscopic characteristics, TLC and UV. RESULT: Identification criteria have been worked out for Xanthium and its confused species. CONCLUSION: The resources of medicinal plant Xanthium may be appropriately expanded.

Drug Contamination↗

[Changes in histopathology and enzyme histochemistry of thymus in cadmium exposure mice].

The changes in histopathology and enzyme histochemistry of thymus induced by a single intraperitoneal injection of sublethal doses of cadmium chloride into Kunming male mice were examined. The swollen endothelium of capillaries was observed, with an obviously decreased activity of ICDH, LDH and ATPase, which seemed to be due to direct inhibition by cadmium at the 4th hour. The necroses of the cortex thymocytes were found at the 8th hour after injection and reached an extreme at the 16-24th hour, while few necroses of the lymphocytes in the medulla. Beginning 4th to 8th hour after exposure, the activity of enzymes was located in mitochondria of the cortex thymocytes, i.e., SDH, ICDH, CCO and ATPase, was decreased gradually. It suggested that thymic cortex had a marked impairment of blood supply and anoxia. Within 2 days after a single injection the cortex of the gland was mainly populated by epithelial reticular cells except a few lymphocytes. It was noted that there were some bigger cells which were characterized by their large size, basophilic cytoplasma, rough chromatin and high mitotic ability and activity of MDH, LDH, G-6-PD increased in these cells. From above observation the author concluded that the cause of cadmium-induced acute thymic atrophy was lymphocyte necroses within thymic cortex. The mechanism of the cortex thymocytes necrosis was possibly secondary to an anoxia of cortex resulting from capillary damage in the cortex. The ability of thymic regeneration is strong after being damaged. The regenerate cells possessed characteristics of morphology and enzyme histochemistry of immature cells, which probably came from the bone marrow.

Adenosine Triphosphatases↗