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Mechanisms of Andrographolide‐Induced Platelet Apoptosis in Human Platelets: Regulatory Roles of the Extrinsic Apoptotic Pathway
Authors:Li‐Ming Lien  Cheng‐Chen Su  Wen‐Hsien Hsu  Wan‐Jung Lu  Chi‐Li Chung  Ting‐Lin Yen  Hou‐Chang Chiu  Joen‐Rong Sheu  Kuan‐Hung Lin
Affiliation:1. Central Laboratory, Shin‐Kong Wu Ho‐Su Memorial Hospital, , Taipei, Taiwan;2. Department of Neurology, Shin‐Kong Wu Ho‐Su Memorial Hospital, , Taipei, Taiwan;3. Department of Urology, Yuan's General Hospital, , Kaohsiung, Taiwan;4. Department of Surgery, Wan‐Fang Hospital, Taipei Medical University, , Taipei, Taiwan;5. Graduate Institute of Medical Sciences, College of Medicine, Taipei Medical University, , Taipei, Taiwan;6. Department of Pharmacology, College of Medicine, Taipei Medical University, , Taipei, Taiwan;7. Division of Pulmonary Medicine, Department of Internal Medicine, Taipei Medical University Hospital, , Taipei, Taiwan;8. School of Respiratory Therapy, College of Medicine, Taipei Medical University, , Taipei, Taiwan
Abstract:Andrographolide, a novel nuclear factor‐κB (NF‐κB) inhibitor, is isolated from the leaves of Andrographis paniculata. Platelet activation is relevant to a variety of coronary heart diseases. Our recent studies revealed that andrographolide possesses potent antiplatelet activity by inhibition of the p38 MAPK/HO‐NF‐κB‐ERK2 cascade. Although platelets are anucleated cells, apoptotic machinery apparatus recently has been found to regulate platelet activation and limit platelet lifespan. Therefore, we further investigated the regulatory effects of andrographolide on platelet apoptotic events. In this study, apoptotic signaling events for caspase‐3, ‐8, and Bid were time (10–60 min)‐ and dose (25–100 μΜ)‐dependently activated by andrographolide in human platelets. Andrographolide could also disrupt mitrochondrial membrane potential. In addition, caspase‐8 inhibitor (z‐IETD‐fmk, 50 μΜ) was found to reverse andrographolide‐induced caspase‐8 activation, whereas the antagonistic anti‐Fas receptor (ZB4, 500 ng/mL) and anti‐tumor necrosis factor‐R1 (H398, 10 µg/mL) monoclonal antibodies did not. In conclusion, this study for the first time demonstrated that andrographolide might limit platelet lifespan by initiating the caspase‐8‐dependent extrinsic apoptotic pathway, in spite of no direct evidence that death receptors are involved in this process proved. Overall, the various medicinal properties of andrographolide suggest its potential value in treating patients with thromboembolic disorders. Copyright © 2012 John Wiley & Sons, Ltd.
Keywords:andrographolide  caspase‐3  caspase‐8  Bid  mitochondrial membrane potential  platelets
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