1.Analysis of Lyso-Globotriaosylsphingosine in Dried Blood Spots.
Britt JOHNSON ; Hermann MASCHER ; Daniel MASCHER ; Elisa LEGNINI ; Christina Y HUNG ; Angela DAJNOKI ; Yin Hsiu CHIEN ; Laszlo MARODI ; Wuh Liang HWU ; Olaf A BODAMER
Annals of Laboratory Medicine 2013;33(4):274-278
Recently, lyso-globotriaosylsphingosine (lyso-Gb3) was found to be elevated in plasma of treatment naive male patients and some female patients with Fabry Disease (FD). This study tested whether lyso-Gb3 could be analyzed in dried blood spots (DBS) from filter cards and whether concentrations are elevated in newborn infants with FD. Lyso-Gb3 concentrations were analyzed in DBS following extraction using a novel HPLC-mass spectrometry (MS)/MS method. Lyso-Gb3 levels in DBS were above the lower limit of quantitation (0.28 ng/mL) in 5/17 newborn FD infants (16 males; range: 1.02-8.81 ng/mL), but in none of the newborn controls, in all 13 patients (4 males) with classic FD (range: 2.06-54.1 ng/mL), in 125/159 Taiwanese individuals with symptomatic or asymptomatic FD who carry the late onset alpha-galactosidase A (GLA) mutation c.936+919G>A (IVS4+919G>A) (3.75+/-0.69 ng/mL; range: 0.418-3.97 ng/mL) and in 20/29 healthy controls (0.77+/-0.24 ng/mL; range: 0.507-1.4 ng/mL). The HPLC-MS/MS method for analysis of lyso-Gb3 is robust and yields reproducible results in DBS in patients with FD. However, concentrations of lyso-Gb3 were below the limit of quantitation in most newborn infants with FD rendering this approach not suitable for newborn screening. In addition, most females with the late onset mutation have undetectable lyso-Gb3 concentrations.
Adolescent
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Adult
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Blood Chemical Analysis/*methods
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Child
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Chromatography, High Pressure Liquid
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*Dried Blood Spot Testing
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Fabry Disease/blood/diagnosis
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Female
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Glycolipids/*blood
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Humans
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Infant, Newborn
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Male
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Sphingolipids/*blood
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Tandem Mass Spectrometry
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Young Adult
2.The action mechanisms of Morus alba leaves extract for the treatment of diabetes based on plasma metabolomics.
Tao JI ; Li-li ZHANG ; Xiao-chen HUANG ; Shu-lan SU ; Zhen OUYANG ; Zhen-hua ZHU ; Sheng GUO ; Er-xin SHANG ; Da-wei QIAN ; Jin-ao DUAN
Acta Pharmaceutica Sinica 2015;50(7):830-835
In order to evaluate the effect and mechanism of the mulberry leaf alkaloid, flavones, and polysaccharide intervention on diabetes, the overall metabolite profiling characteristics for the plasma of diabetic mouse was performed by using an ultra-performance liquid chromatography/electrospray-tandem mass spectrometry (UPLC-ESI-MS). The 8 potential biomarkers were found in diabetic mice plasma based on the data of MS/MS characteristics obtained from the UPLC-OrbitrapMS analysis, which mainly involved in sphingolipids, amino acid metabolic pathway. The principal component analysis showed that the normal group and model group were obviously distinguished and implied that metabolic disturbance was happened in diabetic mice plasma. The extracts of mulberry leaf flavonoids, polysaccharide, alkaloid had exhibited the effects of callback function for diabetic mice through regulating the amino acid metabolism and sphingolipid metabolism.
Alkaloids
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chemistry
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Amino Acids
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metabolism
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Animals
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Biomarkers
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blood
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Chromatography, High Pressure Liquid
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Diabetes Mellitus, Experimental
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drug therapy
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Flavones
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chemistry
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Flavonoids
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chemistry
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Metabolic Networks and Pathways
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Metabolomics
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Mice
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Morus
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chemistry
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Plant Leaves
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chemistry
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Sphingolipids
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metabolism
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Tandem Mass Spectrometry
3.Metabolomic study of the action mechanism of nourishing blood effect of fo-shou-san on blood deficiency mice.
Wei-Xia LI ; Mei-Yan HUANG ; Yu-Ping TANG ; Jian-Ming GUO ; Er-Xin SHANG ; Lin-Yan WANG ; Da-Wei QIAN ; Jin-Ao DUAN
Acta Pharmaceutica Sinica 2013;48(8):1301-1306
The metabolic effect of Fo-Shou-San on blood deficiency mice was studied by using metabolomic method. UPLC-QTOF/MS was used to analyze the plasma metabolome in blood deficiency mice. MS data were processed by MarkerLynx software. With multivariate statistical analysis of plasma metabolite profiles, a clear separation among control, blood deficiency model, and Fo-Shou-San groups was achieved. Potential biomarkers were selected according to the parameters of variable importance in the projection (VIP) and identified according to MS information and database retrieval. The metabolic network of blood deficiency was predicted via MetPA database. Twenty-two potential biomarkers were identified and used to explain the thiamine metabolism, arachidonic acid metabolism, sphingolipid metabolism, glyoxylate and dicarboxylate metabolism, histidine metabolism, nicotinate and nicotinamide metabolism, cysteine and methionine metabolism, tryptophan metabolism, starch and sucrose metabolism, tyrosine metabolism and citrate cycle (TCA cycle). Those metabolic pathways were disturbed in blood deficiency mice, but which could be regulated nearly to normal state after Fo-Shou-San administration. In this study, the metabolomics of blood deficiency mice and the action mechanism of nourishing blood effect of Fo-Shou-San were evaluated. The physiological and metabolic state of the organism could be represented comprehensively by using metabolomics. And metabolomics can be used to evaluate the pharmacodynamics and related mechanisms of Chinese medicine and formulae.
Animals
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Arachidonic Acid
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metabolism
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Biomarkers
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blood
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Blood Coagulation Disorders
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blood
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metabolism
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Chromatography, High Pressure Liquid
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Drugs, Chinese Herbal
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pharmacology
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Female
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Metabolic Networks and Pathways
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drug effects
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Metabolome
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Metabolomics
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Mice
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Mice, Inbred ICR
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Plasma
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metabolism
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Random Allocation
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Spectrometry, Mass, Electrospray Ionization
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Sphingolipids
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metabolism
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Thiamine
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metabolism