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Scholar Results 1 - 10 of about 101 related to Krebs: The mammalian target of rapamycin pathway regulates nutrient-sensitive glucose uptake in man. (0.10 sec) 

The mammalian target of rapamycin pathway regulates nutrient-sensitive glucose …

- diabetesjournals.org
M Krebs, B Brunmair, A Brehm, M Artwohl, J … - Diabetes, 2007 - Am Diabetes Assoc
Type 2 diabetes is closely linked to obesity and insulin resistance (1–3). In addition to polygenic
predisposition, environmental factors including quality and quantity of food supply, dietary
behavior, and physical activity are of major importance for the development of type 2 ...
Cited by 26 - Related articles - BL Direct - All 5 versions

The mTOR-pathway regulates nutrient sensitive glucose uptake in man Received …


M Krebs, B Brunmair, A Brehm, M Artwohl, J … - Am Diabetes Assoc
The mTOR-pathway regulates nutrient sensitive glucose uptake in man ... Received for publication
21 July 2006 and accepted in revised form 20 February 2007. ... Michael Krebs1, Barbara
Brunmair1, Attila Brehm1, Michaela Artwohl1, Julia Szendroedi1, Peter Nowotny1, Erich ...
Related articles

Regulation of Peroxisome Proliferator–Activated Receptor-γ Activity by Mammalian …


JE Kim, J Chen - Diabetes, 2004 - Am Diabetes Assoc
Adipocyte differentiation is a developmental process that is critical for metabolic homeostasis
and nutrient signaling. The mammalian target of rapamycin (mTOR) mediates nutrient signaling
to regulate cell growth, proliferation, and diverse cellular differentiation. It has been ...
Cited by 42 - Related articles - BL Direct - All 4 versions

Overactivation of S6 kinase 1 as a cause of human insulin resistance during …


F Tremblay, M Krebs, L Dombrowski, A Brehm, E … - Diabetes, 2005 - Am Diabetes Assoc
To examine the molecular mechanisms by which plasma amino acid elevation impairs insulin
action, we studied seven healthy men twice in random order during infusion of an amino acid
mixture or saline (total plasma amino acid ∼6 vs. ∼2 mmol/l). ...
Cited by 58 - Related articles - BL Direct - All 5 versions

Age-Dependent Development of Metabolic Derangement and Effects of …

- aspetjournals.org
Z Szocs, B Brunmair, K Stadlbauer, P Nowotny, L … - Journal of Pharmacology …, 2008 - ASPET
Zucker diabetic fatty (ZDF) rats are a standard animal model for the study of type 2 diabetes and
for pharmacological characterization of insulin-sensitizing drugs. To analyze the age-dependent
development of their metabolic derangements and the associated changes in their ...
Cited by 3 - Related articles - All 3 versions

[CITATION] Posttransplantation Diabetes Mellitus in kidney transplant recipients receiving …


M Araki, SM Flechner, HR Ismail… - Transplantation, 2006
Cited by 2 - Related articles

[CITATION] Nutrient overload, insulin resistance and ribosomal protein S6 kinase 1, S6K1, Cell …


SH Um, DD'Alessio, G Thomas - Article| PDF (394 K)| View Record in Scopus| Cited By …
Cited by 2 - Related articles

Nutrient overload, insulin resistance, and ribosomal protein S6 kinase 1, S6K1

- cell.com
SH Um, D D'Alessio, G Thomas - Cell metabolism, 2006 - Elsevier
Nutrient overload leads to obesity, insulin resistance, and often type 2 diabetes. Whereas increased
fat intake is commonly cited as the major factor in diet-induced dysmetabolic states, increased
protein consumption also contributes, through elevated circulating amino acids. Recent ...
Cited by 89 - Related articles - All 9 versions

The role of mTOR in the adaptation and failure of β-cells in type 2 diabetes


G Leibowitz, E Cerasi, M Ketzinel- … - Diabetes, Obesity and …, 2008 - interscience.wiley.com
Mammalian target of rapamycin (mTOR) is an important nutrient sensor that plays a critical role
in cellular metabolism, growth, proliferation and apoptosis and in the cellular response to oxidative
stress. In addition, mTOR–raptor complex, also called mammalian target of rapamycin ...
Cited by 4 - Related articles - All 3 versions

Rapamycin does not improve insulin sensitivity despite elevated mammalian target …

- physiology.org
AM Miller, JR Brestoff, CB Phelps, EZ Berk … - American Journal of …, 2008 - Am Physiological Soc
Studies of cultured cells have indicated that the mammalian target of rapamycin complex 1
(mTORC1) mediates the development of insulin resistance. Because a role for mTORC1 in the
development of skeletal muscle insulin resistance has not been established, we studied ...
Cited by 4 - Related articles - All 3 versions


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