Sodium tungstate decreases sucrase and Na+/D-glucose cotransporter in the jejunum of diabetic rats

scientific article published on 10 July 2008

Sodium tungstate decreases sucrase and Na+/D-glucose cotransporter in the jejunum of diabetic rats is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1152/AJPGI.00566.2007
P698PubMed publication ID18617558
P5875ResearchGate publication ID5234215

P50authorJoana M PlanasQ43045543
P2093author name stringJoan J Guinovart
Montserrat Miró-Queralt
P2860cites workT1R3 and gustducin in gut sense sugars to regulate expression of Na+-glucose cotransporter 1Q24682744
A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye bindingQ25938984
Tungstate is an effective antidiabetic agent in streptozotocin-induced diabetic rats: a long-term studyQ28564460
Effects of tungstate, a new potential oral antidiabetic agent, in Zucker diabetic fatty rats.Q31809629
Diabetic neuropathy and nerve regenerationQ35131671
Sodium tungstate decreases the phosphorylation of tau through GSK3 inactivationQ40332916
Tungstate treatment improves Leydig cell function in streptozotocin-diabetic ratsQ40350525
The effects of streptozotocin diabetes on sodium-glucose transporter (SGLT1) expression and function in rat jejunal and ileal villus-attached enterocytesQ42482580
Characterization of D-fructose transport by rat kidney brush-border membrane vesicles: changes in hypertensive rats.Q43839528
Expression of monosaccharide transporters in intestine of diabetic humansQ43862641
Regulation of SGLT1 expression in response to Na(+) intake.Q43879243
Modulation of glucose transporters in rat diaphragm by sodium tungstateQ44428899
The antidiabetic agent sodium tungstate activates glycogen synthesis through an insulin receptor-independent pathway.Q44553715
Stable and functional regeneration of pancreatic beta-cell population in nSTZ-rats treated with tungstateQ44767287
The glucose-lowering agent sodium tungstate increases the levels and translocation of GLUT4 in L6 myotubes through a mechanism associated with ERK1/2 and MEF2D.Q46592790
Tungstate decreases weight gain and adiposity in obese rats through increased thermogenesis and lipid oxidationQ47375837
The simultaneous preparation of basolateral and brush-border membrane vesicles from guinea-pig intestinal epithelium, and the determination of the orientation of the basolateral vesicles.Q53935711
P433issue3
P304page(s)G479-84
P577publication date2008-07-10
P1433published inAmerican Journal of Physiology - Gastrointestinal and Liver PhysiologyQ15765756
P1476titleSodium tungstate decreases sucrase and Na+/D-glucose cotransporter in the jejunum of diabetic rats
P478volume295

Reverse relations

cites work (P2860)
Q39427195Diabetes-induced mechanophysiological changes in the small intestine and colon
Q41808337Effect of sodium tungstate on visual evoked potentials in diabetic rats
Q35618949Preclinical and Clinical Studies for Sodium Tungstate: Application in Humans.
Q51376176Rosmarinic acid, major phenolic constituent of Greek sage herbal tea, modulates rat intestinal SGLT1 levels with effects on blood glucose.
Q27325843Tungstate reduces the expression of gluconeogenic enzymes in STZ rats

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