Effects of Walnut Bark Extract on the Human Platelet Aggregation, Adhesion, and Plasmatic Coagulation In Vitro

Author:

Amirou Asmae1ORCID,Razzok El Mahdi2ORCID,Legssyer Abdelkhaleq1ORCID,Ziyyat Abderrahim1ORCID,Aziz Mohammed1ORCID,Bnouham Mohamed1ORCID,Zaid Younes34ORCID,Berrabah Mohamed5ORCID,Mekhfi Hassane1ORCID

Affiliation:

1. Laboratory of Bio-Resources, Biotechnology, Ethnopharmacology and Health, Mohammed the First University Faculty of Sciences, Oujda, Morocco

2. Laboratory of Epidemiology, Clinical Research, and Public Health, Mohammed the First University, Faculty of Medicine and Pharmacy, Oujda, Morocco

3. Research Center of Abulcasis University of Health Sciences, Rabat, Morocco

4. Department of Biology, Faculty of Sciences, Mohammed V University, Rabat, Morocco

5. Laboratory of Mineral Solid and Analytical Chemistry, Mohammed the First University Faculty of Sciences, Oujda, Morocco

Abstract

Thrombosis is the formation of a clot within a blood vessel. Antithrombotic drugs are used for treating thrombosis, which can be the cause of hemorrhage. Currently, there is a need to discover novel antithrombotic drugs. Walnut is widely used to treat a wide range of health complaints. In this study, walnut bark extract was tested in hemostasis parameters: platelets adhesion, aggregation, and plasmatic coagulation in human blood. The crude aqueous extract of walnut bark was prepared by infusion and tested in vitro on hemostasis. Through blood collection from healthy volunteer donors, we studied different parameters of the primary hemostasis: platelet adhesion on the collagen-coated surface under flow, ADP, collagen, thrombin, and arachidonic acid-induced platelet aggregation, and of the secondary hemostasis by measuring prothrombin time (PT) and activated partial thromboplastin (APTT) parameters. All experiments are realized in the absence and presence of the extract and repeated at least twice. The obtained data showed that the extract (1 and 2 mg/mL) significantly ( p < 0.001 ) reduced the activated platelet adhesion on the collagen-coated surface. In the same way, the effect of the extract on platelet aggregation seems to depend on its concentration and on the nature of the agonist. The strongest inhibition of aggregation was observed in the case of collagen at 1 mg/mL, while there was no observed effect on arachidonic acid-induced aggregation. Moreover, the extract (1 mg/mL) affects the extrinsic, intrinsic, and common pathways of the human blood coagulation cascade by extending significantly ( p < 0.001 ), both PT and APTT times. This study provides evidence that walnut bark extract, by its antiadhesive, antiaggregant, and anticoagulant activities, could be considered as a serious source of biological compounds for the prevention and treatment of thrombosis.

Funder

Ministry of Higher Education, Scientic Research and Innovation

Publisher

Hindawi Limited

Subject

Pharmacology (medical),Organic Chemistry,General Pharmacology, Toxicology and Pharmaceutics,Biochemistry

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