1.Application of Anatomical Liver Resection in Treatment of Bilateral Hepatolithiasis
Yishuang PAN ; Yongyi OU ; Xiangguo LI ; Quanbo ZHOU ; Jisheng CHEN
Journal of Kunming Medical University 2013;(12):90-95
Objective To explore the value of anatomical liver resection in the treatment of bilateral intrahepatic biliary lithiasis. Methods We collected the clinical data of 32 patients with bilateral intrahepatic biliary lithiasis who received anatomical liver resection and 25 patients who recevied non-anatomical liver resection from May 2010 to May 2012 in our hospital and Sun Yat-sen Memorial Hospital. We comapred the therapeutic efficacy of these two operative modalities in the diagnosis and treatment of bilateral intrahepatic biliary lithiasis. Results The intraoperative blood loss was 436 ±48.162 mL in patients who received anatomical liver resection, and was significantly less than that in the control group (763 ± 37.645ml) ( < 0.05 ) . Postoperative liver function status:for patients who received anatomical liver resection,on the third day after operation,the total bilirubin and AST were significantly lower than those in the control group ( <0.05), and the postoperative hospitalization time was also shorter than that of the control group ( <0.05 ) . The two groups in the operation time, postoperative complications and residual calculus had no significant difference ( >0.05 ), but there 1 patients died of liver failure in the control group. Conclusions Anatomical liver resection is a favorable method to completely remove the lesions under the premise of retaining the residual liver function as much as possible. The rate of remnant biliary lithiasis and recurrence is lower and the recovery is quicker in these patients after anatomical liver resection. Thus, anatomical liver resection is worthy of promotion.
2.Molecular Biology, Affiliated Hospital of LuzhouMedical College from May 2007 to April 2008.
Xinjun LI ; Yingying LIU ; Xiangguo XIA ; Hong XU ; Yi ZENG ; Zengjun ZHOU
Chinese Journal of Tissue Engineering Research 2009;13(19):3776-3780
BACKGROUND: Studies have demonstrated that exogenous neural stem calls (NSCs) could repair nerve and promote recovery of neurofunction following cerebral hemorrhage. However, the influence of internal environment after cerebral hemorrhage on the survival and differentiation of NSCs is a complex and variable process.OBJECTIVE: To observe the survival and differentiation of human embryonic NSCs implanted in rats with cerebra hemorrhage.DESIGN, TIME AND SETTING: Open, immunohistochemistry, experiment was performed at the Laboratory of Molecular Biology, Affiliated Hospital of Luzhou Medical College from May 2007 to April 2008.MATERIALS: A total of 40 female SD rats were provided by the Experimental Animal Institute, Chinese Academy of Medical Sciences. Brain of 8-week aborted fetus was obtained from Department of Gynaecology and Obstetrics, the People's Hospital of Deyang City.METHODS: Cerebral cortex cells of 8-week aborted human fetus were harvested and cultured in vitro to obtain human embryonic NSCs. Cerebral hemorrhage rat models were established via injection of autologous arterial blood in caudate nucleus. Two days after modeling, 5 μL BrdU-labeled human embryonic NSCs suspension was transplanted at four points surrounding hematoma cavity in the rats. After 1 and 2 weeks, rats were sacrificed. Adjacent sections were doubly stained by BrdUImicrotubule-associated protein 2 (MAP-2) and BrdU/glial fibrillary acidic protein (GFAP).MAIN OUTCOME MEASURES: The survival, immigration and differentiation of human embryonic NSOs implanted in rats were observed by immunohistochemistry and immunofluorescance staining.RESULTS: BrdU-positive cells were oval and brown. At 1 and 2 weeks after implantation, BrdU-positive calls survived and migrated, and they migrated more widely at 2 weeks after implantation. At 1 week after implantation, BrdU/MAP-2-positive cells and BrdU/GFAP-positive calls were observed in cerebral tissue sections, and the number of BrdU/MAP-2-positive cells was more than BrdU/GFAP-positive calls; At 2 weeks after implantation, BrdU-positive cells found in choroid plexus and blood capillary were significantly reduced, and BrdU/GFAP-positive calls were more than BrdU/MAP-2- positive cells.CONCLUSION: Implanted human embryonic NSCs can survive and migrate in the hemorrhage region, gradually differentiate into neurons or astrocytes.

Result Analysis
Print
Save
E-mail