[HTML][HTML] Antidiabetic effect of salvianolic acid A on diabetic animal models via AMPK activation and mitochondrial regulation

G Qiang, X Yang, L Shi, H Zhang, B Chen… - Cellular Physiology and …, 2015 - karger.com
Background/Aims: Diabetes mellitus (DM) characterized by hyperglycemia contributes to
macrovascular and microvascular complications. Salvianolic acid A (SalA) is a polyphenolic …

[PDF][PDF] Antidiabetic Effect of Salvianolic Acid A on Diabetic Animal Models via AMPK Activation and Mitochondrial Regulation

G Qianga, X Yanga, LSH Zhanga, B Chena… - Cell Physiol …, 2015 - researchgate.net
Abstract Background/Aims: Diabetes mellitus (DM) characterized by hyperglycemia
contributes to macrovascular and microvascular complications. Salvianolic acid A (SalA) is a …

Antidiabetic Effect of Salvianolic Acid A on Diabetic Animal Models via AMPK Activation and Mitochondrial Regulation

G Qiang, X Yang, L Shi, H Zhang, B Chen… - Cellular Physiology and …, 2015 - karger.com
Abstract Background/Aims: Diabetes mellitus (DM) characterized by hyperglycemia
contributes to macrovascular and microvascular complications. Salvianolic acid A (SalA) is a …

Antidiabetic Effect of Salvianolic Acid A on Diabetic Animal Models via AMPK Activation and Mitochondrial Regulation

G Qiang, X Yang, L Shi, H Zhang, B Chen, Y Zhao… - 2015 - agris.fao.org
Background/Aims: Diabetes mellitus (DM) characterized by hyperglycemia contributes to
macrovascular and microvascular complications. Salvianolic acid A (SalA) is a polyphenolic …

[PDF][PDF] Antidiabetic Effect of Salvianolic Acid A on Diabetic Animal Models via AMPK Activation and Mitochondrial Regulation

G Qianga, X Yanga, LSH Zhanga, B Chena… - Cell Physiol …, 2015 - cyberleninka.org
Abstract Background/Aims: Diabetes mellitus (DM) characterized by hyperglycemia
contributes to macrovascular and microvascular complications. Salvianolic acid A (SalA) is a …

[PDF][PDF] Antidiabetic Effect of Salvianolic Acid A on Diabetic Animal Models via AMPK Activation and Mitochondrial Regulation

G Qianga, X Yanga, LSH Zhanga, B Chena… - Cell Physiol …, 2015 - scholar.archive.org
Abstract Background/Aims: Diabetes mellitus (DM) characterized by hyperglycemia
contributes to macrovascular and microvascular complications. Salvianolic acid A (SalA) is a …

Antidiabetic Effect of Salvianolic Acid A on Diabetic Animal Models via AMPK Activation and Mitochondrial Regulation.

G Qiang, X Yang, L Shi, H Zhang, B Chen… - Cellular Physiology …, 2015 - europepmc.org
Methods Alloxan-induced type 1 diabetic mice and high-fat diet (HFD) and low-dose
streptozotocin (STZ)-induced type 2 diabetic rats received SalA treatment. Blood glucose …

Antidiabetic Effect of Salvianolic Acid A on Diabetic Animal Models via AMPK Activation and Mitochondrial Regulation

G Qiang, X Yang, L Shi, H Zhang… - Cellular physiology …, 2015 - pubmed.ncbi.nlm.nih.gov
Background/aims Diabetes mellitus (DM) characterized by hyperglycemia contributes to
macrovascular and microvascular complications. Salvianolic acid A (SalA) is a polyphenolic …

Antidiabetic Effect of Salvianolic Acid A on Diabetic Animal Models via AMPK Activation and Mitochondrial Regulation.

G Qiang, X Yang, L Shi, H Zhang, B Chen… - Cellular Physiology …, 2015 - go.gale.com
Background/Aims: Diabetes mellitus (DM) characterized by hyperglycemia contributes to
macrovascular and microvascular complications. Salvianolic acid A (SalA) is a polyphenolic …

Antidiabetic Effect of Salvianolic Acid A on Diabetic Animal Models via AMPK Activation and Mitochondrial Regulation.

G Qiang, X Yang, L Shi, H Zhang… - Cellular Physiology …, 2015 - search.ebscohost.com
Abstract Background/Aims: Diabetes mellitus (DM) characterized by hyperglycemia
contributes to macrovascular and microvascular complications. Salvianolic acid A (SalA) is a …