1.Influence of Sedation and Analgesia on Stress Reaction of Post-Operation Infants with Congenital Heart Disease
jian-hui, ZHANG ; zhao-hui, CAI ; jie, HONG ; tu-xun, SI ; xiao-yuan, ZHAO
Journal of Applied Clinical Pediatrics 2006;0(23):-
ObjectiveTo investigate influence of sedation and analgesia on stress reaction of post-cardiac surgery in infants with congenital heart disease.MethodsForty children with congenital heart disease were randomly divided into 2 groups after cardiac surgery.The analgesia group was given 0.5-2.0 ?g/(kg?h) fentanyl intravenous infusion in 20 children undergoing cardiovascular surgery.The control group was given 5-8 mg/(kg?dose) lbuprofen orally.Midaiolam 0.01-0.20 mg/(kg?h) was used in 2 groups for sedation by intravenous infusion or 0.05-0.10 mg/(kg?dose)by intravenous push intermittently.The effects and adverse effects of sedation and analgesia were observed on 2,8,24,48 h after surgery in each group.The levels of cortisol,growth hormone,insulin and blood glucose were measured,respectively.ResultsThere were significant differences in Ramsay,Comfort value on 2,8,24 h(Pa
2.Impacts of high-volume hemofiltration on hemodynamics and vascular endothelial permeability in children with septic shock.
Xun SI-TU ; Jian-Hui ZHANG ; Jian-Ping TAO ; Yan-Lan WU ; Jian-Bin ZHENG ; Ming LI
Chinese Journal of Contemporary Pediatrics 2015;17(9):956-960
OBJECTIVETo investigate the effects of high-volume hemofiltration (HVHF) on hemodynamics, vasoactive factors, and vascular endothelial permeability in children with septic shock by a comparative analysis.
METHODSThirty-six children who were diagnosed with septic shock between January 2013 and September 2014 were randomly divided into control and observation groups (n=18 each). Children in the control group were treated with the standard-volume hemofiltration (SVHF), while children in the observation group were treated with HVHF. The hemodynamic indices and levels of vasoactive factors including 6-keto-prostaglandin F1α (6-keto-PGF1α), thromboxane B2 (TXB2), soluble E-selectin (sE-selectin), and endothelium-derived relaxing factor (EDRF) were determined before and after treatment. In addition, the effects of ultrafiltrate on endothelial cell permeability were assessed.
RESULTSCompared with the control group, the observation group had significantly higher mean arterial pressure, significantly higher blood oxygen saturation, and a significantly lower heart rate after treatment (P<0.05). The levels of TXB2 and sE-selectin were significantly lower in the observation group than in the control group (P<0.05), while the levels of 6-keto-PGF1α and EDRF were significantly higher in the observation group than in the control group (P<0.05). Compared with the control group, the ultrafiltrate significantly attenuated the transepithelial electrical resistance in the observation group (P<0.05).
CONCLUSIONSCompared with SVHF, HVHF is a more effective approach for improving the hemodynamics and levels of vasoactive factors and reducing the vascular endothelial permeability in children with septic shock.
Capillary Permeability ; Child ; Child, Preschool ; Epoprostenol ; physiology ; Female ; Hemodynamics ; Hemofiltration ; Humans ; Infant ; Male ; Shock, Septic ; physiopathology ; Thromboxane A2 ; physiology
3.In vitro interaction of deferiprone with cellular membrane transporters of hOCTs and hOAT1.
Si-si KONG ; Mei-juan TU ; Xi YANG ; Lei HU ; Xun-shi ZHAO ; Hui ZHOU ; Su ZHENG ; Hui-di JIANG
Journal of Zhejiang University. Medical sciences 2014;43(2):129-134
OBJECTIVETo develop a LC-MS/MS method for determination of deferiprone in cell lysate and to study the potential interaction between deferiprone and hOCTs or hOAT1 transporters in vitro.
METHODSThe determination was performed on an Agilent Eclipse Plus C18 column(3.5 μm, 2.1 mm×50 mm).The gradient mobile phase was composed of solvent A:0.1% formic acid in water, and B:0.1% formic acid in acetonitrile. The mass spectrometer with an electrospray interface was operated in positive ion mode with multiple reaction monitoring (MRM) scan mode monitored the ion pair of deferiprone at m/z 140→96, or phenacetin at m/z 180→110. The effects of deferiprone on the accumulation of typical substrates of hOCTs and hOAT1 were evaluated by MDCK-hOCTs and MDCK-hOAT1 cells respectively. The accumulation of deferiprone was also investigated in MDCK-hOCTs cells and mock cells with or without typical inhibitors.
RESULTSThe standard curve was linear over the range of 5-300 nmol/L. The assay recovery of deferiprone was above 94%, and the intra-day precision (RSD) was less than 2.0%. The accumulation of MPP(+) in MDCK-hOCTs cells with 300 μmol/L deferiprone were 73.5%, 87.1% and 70.4%, respectively. The uptake of deferiprone in MDCK-hOCTs and mock cells did not show significant difference. Deferiprone of 100 μmol/L did not significantly affect the accumulation of 6-CF in MDCK-hOAT1 cell.
CONCLUSIONThe method is sensitivity and suitable for the determination of deferiprone in cell lysate. Deferiprone can significantly inhibit hOCT1 and hOCT3, but has no effects on hOCT2 and hOAT1. hOCTs may not play a major role in the transport of deferiprone.
Animals ; Chromatography, Liquid ; Dogs ; Humans ; Madin Darby Canine Kidney Cells ; Organic Anion Transporters ; drug effects ; Pyridones ; pharmacology ; Tandem Mass Spectrometry