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RAGE: a novel cellular receptor for advanced glycation end products. [electronic resource] by
- Schmidt, A M
- Hori, O
- Cao, R
- Yan, S D
- Brett, J
- Wautier, J L
- Ogawa, S
- Kuwabara, K
- Matsumoto, M
- Stern, D
Producer: 19960815
In:
Diabetes vol. 45 Suppl 3
Availability: No items available.
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126.
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Blockade of RAGE suppresses periodontitis-associated bone loss in diabetic mice. [electronic resource] by
- Lalla, E
- Lamster, I B
- Feit, M
- Huang, L
- Spessot, A
- Qu, W
- Kislinger, T
- Lu, Y
- Stern, D M
- Schmidt, A M
Producer: 20000519
In:
The Journal of clinical investigation vol. 105
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127.
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128.
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The RAGE signaling pathway is involved in intestinal inflammation and represents a promising therapeutic target for Inflammatory Bowel Diseases. [electronic resource] by
- Body-Malapel, M
- Djouina, M
- Waxin, C
- Langlois, A
- Gower-Rousseau, C
- Zerbib, P
- Schmidt, A-M
- Desreumaux, P
- Boulanger, E
- Vignal, C
Producer: 20190624
In:
Mucosal immunology vol. 12
Availability: No items available.
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129.
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Survey of the distribution of a newly characterized receptor for advanced glycation end products in tissues. [electronic resource] by
- Brett, J
- Schmidt, A M
- Yan, S D
- Zou, Y S
- Weidman, E
- Pinsky, D
- Nowygrod, R
- Neeper, M
- Przysiecki, C
- Shaw, A
Producer: 19940111
In:
The American journal of pathology vol. 143
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130.
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Receptor for advanced glycation end products (AGEs) has a central role in vessel wall interactions and gene activation in response to circulating AGE proteins. [electronic resource] by
- Schmidt, A M
- Hasu, M
- Popov, D
- Zhang, J H
- Chen, J
- Yan, S D
- Brett, J
- Cao, R
- Kuwabara, K
- Costache, G
Producer: 19941014
In:
Proceedings of the National Academy of Sciences of the United States of America vol. 91
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131.
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132.
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Recombinant advanced glycation end product receptor pharmacokinetics in normal and diabetic rats. [electronic resource] by
- Renard, C
- Chappey, O
- Wautier, M P
- Nagashima, M
- Lundh, E
- Morser, J
- Zhao, L
- Schmidt, A M
- Scherrmann, J M
- Wautier, J L
Producer: 19970808
In:
Molecular pharmacology vol. 52
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133.
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Advanced glycation endproducts interacting with their endothelial receptor induce expression of vascular cell adhesion molecule-1 (VCAM-1) in cultured human endothelial cells and in mice. A potential mechanism for the accelerated vasculopathy of diabetes. [electronic resource] by
- Schmidt, A M
- Hori, O
- Chen, J X
- Li, J F
- Crandall, J
- Zhang, J
- Cao, R
- Yan, S D
- Brett, J
- Stern, D
Producer: 19951004
In:
The Journal of clinical investigation vol. 96
Availability: No items available.
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134.
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Receptor-dependent cell stress and amyloid accumulation in systemic amyloidosis. [electronic resource] by
- Yan, S D
- Zhu, H
- Zhu, A
- Golabek, A
- Du, H
- Roher, A
- Yu, J
- Soto, C
- Schmidt, A M
- Stern, D
- Kindy, M
Producer: 20000724
In:
Nature medicine vol. 6
Availability: No items available.
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135.
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Glycated tau protein in Alzheimer disease: a mechanism for induction of oxidant stress. [electronic resource] by
- Yan, S D
- Chen, X
- Schmidt, A M
- Brett, J
- Godman, G
- Zou, Y S
- Scott, C W
- Caputo, C
- Frappier, T
- Smith, M A
Producer: 19940902
In:
Proceedings of the National Academy of Sciences of the United States of America vol. 91
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136.
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N(epsilon)-(carboxymethyl)lysine adducts of proteins are ligands for receptor for advanced glycation end products that activate cell signaling pathways and modulate gene expression. [electronic resource] by
- Kislinger, T
- Fu, C
- Huber, B
- Qu, W
- Taguchi, A
- Du Yan, S
- Hofmann, M
- Yan, S F
- Pischetsrieder, M
- Stern, D
- Schmidt, A M
Producer: 19991216
In:
The Journal of biological chemistry vol. 274
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137.
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Calreticulin, an antithrombotic agent which binds to vitamin K-dependent coagulation factors, stimulates endothelial nitric oxide production, and limits thrombosis in canine coronary arteries. [electronic resource] by
- Kuwabara, K
- Pinsky, D J
- Schmidt, A M
- Benedict, C
- Brett, J
- Ogawa, S
- Broekman, M J
- Marcus, A J
- Sciacca, R R
- Michalak, M
Producer: 19950515
In:
The Journal of biological chemistry vol. 270
Availability: No items available.
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138.
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Advanced glycation end products (AGEs) on the surface of diabetic erythrocytes bind to the vessel wall via a specific receptor inducing oxidant stress in the vasculature: a link between surface-associated AGEs and diabetic complications. [electronic resource] by
- Wautier, J L
- Wautier, M P
- Schmidt, A M
- Anderson, G M
- Hori, O
- Zoukourian, C
- Capron, L
- Chappey, O
- Yan, S D
- Brett, J
Producer: 19940902
In:
Proceedings of the National Academy of Sciences of the United States of America vol. 91
Availability: No items available.
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