In Vitro Antiplatelet Activity of Mulberroside C through the Up-Regulation of Cyclic Nucleotide Signaling Pathways and Down-Regulation of Phosphoproteins

  • Genes (Basel). 2021 Jun 30;12(7):1024. doi: 10.3390/genes12071024.
Hyuk-Woo Kwon  1 Dong-Ha Lee  2  3 Man Hee Rhee  4 Jung-Hae Shin  5
Affiliations
  • 1. Department of Biomedical Laboratory Science, Far East University, Eumseong 27601, Korea.
  • 2. Department of Biomedical Laboratory Science, Namseoul University, Cheonan 31020, Korea.
  • 3. Molecular Diagnostics Research Institute, Namseoul University, Cheonan 31020, Korea.
  • 4. Laboratory of Physiology and Cell Signaling, College of Veterinary Medicine, Kyungpook National University, Daegu 41566, Korea.
  • 5. Department of Biomedical Laboratory Science, Catholic Kwandong University, Gangneung 25601, Korea.
Abstract

Physiological agonists trigger signaling cascades, called "inside-out signaling", and activated platelets facilitate adhesion, shape change, granule release, and structural change of glycoprotein IIb/IIIa (αIIb/β3). Activated αIIb/β3 interacts with fibrinogen and begins second signaling cascades called "outside-in signaling". These two signaling pathways can lead to hemostasis or thrombosis. Thrombosis can occur in arterial and venous blood vessels and is a major medical problem. Platelet-mediated thrombosis is a major cause of Cardiovascular Disease (CVD). Therefore, controlling platelet activity is important for platelet-mediated thrombosis and cardiovascular diseases. In this study, focus on Morus Alba Linn, a popular medicinal plant, to inhibit the function of platelets and found the containing component mulberroside C. We examine the effect of mulberroside C on the regulation of phosphoproteins, platelet-activating factors, and binding molecules. Agonist-induced human platelet aggregation is dose-dependently inhibited by mulberroside C without cytotoxicity, and it decreased CA2+ mobilization and P-selectin expression through the upregulation of inositol 1, 4, 5-triphosphate receptor I (Ser1756), and downregulation of extracellular signal-regulated kinase (ERK). In addition, mulberroside C inhibited thromboxane A2 production, fibrinogen binding, and clot retraction. Our results show antiplatelet effects and antithrombus formation of mulberroside C in human platelets. Thus, we confirm that mulberroside C could be a potential phytochemical for the prevention of thrombosis-mediated CVDs.

Keywords
clot retraction; glycoprotein IIb/IIIa; granule secretion; intracellular calcium; mulberroside C.
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