Outwardly oriented H+ gradients greatly enhanced thiamine transport rate in brush border membrane vesicles from duodenal and jejunal mucosa of adult Wistar rats. At a gradient pHin5:pHout7.5, thiamine uptake showed an overshoot, which at 15 sec was three times as large as the uptake observed in the absence of the gradient. Under the same conditions, the binding component of uptake accounted for only 10-13% of intravesicular transport. At the same gradient, the Km and Jmax values of the saturable component of the thiamine uptake curve after a 6 sec incubation time were 6.2 +/- 1.4 microM and 14.9 +/- 3 pmol.mg-1 protein.6 sec-1 respectively. These values were about 3 and 5 times higher, respectively, than those recorded in the absence of H+ ...
To calculate the kinetic parameters of thiamine monophosphate transport across the rat blood-brain b...
Nerve cells are particularly sensitive to thiamine deficiency. We studied thiamine transport in mous...
We examined the effects of thiamine derivatives on ion uptake in rat brain membrane vesicles. Thiami...
BACKGROUND: Unlike intestinal absorption, renal transport of thiamin has received little attenti...
1. Rat small intestinal basolateral membrane vesicles (BLMVs) were prepared and found to be 31% non-...
Transport of thiamin in rat renal brush border membrane vesicles.BackgroundUnlike intestinal absorpt...
Transport of thiamin in rat renal brush border membrane vesicles.BackgroundUnlike intestinal absorpt...
The molecular characteristics of thiamin (T) transport were studied in the small intestinal and rena...
AbstractThe molecular characteristics of thiamin (T) transport were studied in the small intestinal ...
The molecular characteristics of thiamin (T) transport were studied in the small intestinal and rena...
Mucosal biopsy specimens obtained by routine endoscopy from 108 human subjects, including one patien...
AbstractPathways for transport of thiamine by the human placental epithelium were investigated using...
The aim of this study was to characterize the intestinal absorption of thiamine, by investigating th...
Microvillous membrane vesicles prepare from the cortex of rats, were suspended in different media, c...
Microvillous membrane vesicles prepare from the cortex of rats, were suspended in different media, c...
To calculate the kinetic parameters of thiamine monophosphate transport across the rat blood-brain b...
Nerve cells are particularly sensitive to thiamine deficiency. We studied thiamine transport in mous...
We examined the effects of thiamine derivatives on ion uptake in rat brain membrane vesicles. Thiami...
BACKGROUND: Unlike intestinal absorption, renal transport of thiamin has received little attenti...
1. Rat small intestinal basolateral membrane vesicles (BLMVs) were prepared and found to be 31% non-...
Transport of thiamin in rat renal brush border membrane vesicles.BackgroundUnlike intestinal absorpt...
Transport of thiamin in rat renal brush border membrane vesicles.BackgroundUnlike intestinal absorpt...
The molecular characteristics of thiamin (T) transport were studied in the small intestinal and rena...
AbstractThe molecular characteristics of thiamin (T) transport were studied in the small intestinal ...
The molecular characteristics of thiamin (T) transport were studied in the small intestinal and rena...
Mucosal biopsy specimens obtained by routine endoscopy from 108 human subjects, including one patien...
AbstractPathways for transport of thiamine by the human placental epithelium were investigated using...
The aim of this study was to characterize the intestinal absorption of thiamine, by investigating th...
Microvillous membrane vesicles prepare from the cortex of rats, were suspended in different media, c...
Microvillous membrane vesicles prepare from the cortex of rats, were suspended in different media, c...
To calculate the kinetic parameters of thiamine monophosphate transport across the rat blood-brain b...
Nerve cells are particularly sensitive to thiamine deficiency. We studied thiamine transport in mous...
We examined the effects of thiamine derivatives on ion uptake in rat brain membrane vesicles. Thiami...