Skip to content
Research Article Open access CC BY 4.0

Mineral Content and Antisickling Activity of Annona senegalensis, Alchornea cordifolia and Vigna unguiculata Used in the Management of Sickle Cell Disease in the Kwilu Province (Congo, DR)

Jules M. Kitadi, Clément L. Inkoto, Emmanuel M. Lengbiye, Damien S. T. Tshibangu, Dorothée D. Tshilanda, Koto-Te-Nyiwa Ngbolua, K. M. Taba, Blaise M. Mbala, Brigitte Schmitz, Pius T. Mpiana

International Blood Research & Reviews · pp. 18–27 · Published 1 Sep 2020

10.9734/ibrr/2020/v11i330131

Abstract

Aims: To determine the mineral composition of some plants (Annona senegalensis Pers., Alchornea cordifolia (Schumach. & Thonn.) Müll. Arg. and Vigna unguiculate (L.) Walp.) used in the management of sickle cell disease by traditional practitioners in Kwilu province and to evaluate their antisickling activity in vitro.  Study Design: Plant collection in the Kwilu province, sample preparation,  antisickling tests and fluorescence spectrometric analysis. Place and Duration of Study: This work was performed at the Faculty of Science, University of Kinshasa, Congo DR, from October 2016 to January 2018. Methodology: These three plants were harvested in the province of Kwilu in Democratic Republic of the Congo. The mineral composition analysis was carried out using the fluorescence spectrometric method while the in vitro antisickling activity was evaluate using Emmel and hemolysis tests. Results: Twenty three mineral elements were identified in each of these three plants: Potassium (K), Phosphorus (P), Calcium (Ca), Sodium (Na), Magnesium (Mg), Sulphur (S), Chlorine (Cl) and trace elements as: Aluminum (Al), Silicon (Si), Vanadium (V), Chromium (Cr), Manganese (Mn), Iron (Fe), Nickel (Ni), Copper (Cu), Zinc (Zn), Selenium (Se), Brome (Br), Molybdenum (Mo), Tin (Sn), Iodine (I), Barium (Ba) and Lead (Pb). Annona senegalensis Pers., Alchornea cordifolia (Schumach. & Thonn.) Müll.Arg. and Vigna unguiculate (L.) Walp. aqueous extracts showed the capacity to prevent the sickling and the hemolysis of red blood cells. Conclusion: The obtained results confirm the antisickling activity thus justifying the use of these plants in Traditional Medicine for the management of sickle cell disease. The presence of some mineral elements like Fe, Zn, Mg and Se are useful for sickle cell disease patients.

Annona senegalensis Alchornea cordifolia Vigna unguiculata sickle cell disease mineral elements fluorescence antisickling

Cited by 6

Studies on the chemical composition of plants used in traditional medicine in Congo

Pawel Konieczynski, Aleksej Zarkov, Agnieszka Viapiana · Open Chemistry · 2022

Traditional Drugs Originating from Selected Medicinal Plants: An Intervention for Anaemia

Rishabh Chalotra, Meenakshi Dhanawat, Chamasse Homary Maivagna · Current Traditional Medicine · 2023

A mini-review on ethnomedical uses, chemical constituents, pharmacological activities and toxicological study of Alchornea cordifolia (Schum & Thonn) Muell. Arg

Koto-Te-Nyiwa Ngbolua, Mbembo Wa Mbembo Blaise, Ndjoko Kambuya Damien · Pharmacy & Pharmacology International Journal · 2022

EVALUATION OF THE ANTI-ARTHRITIC ACTIVITY OF THE AQUEOUS EXTRACT OF THE LEAVES OF ANNONA SENEGALENSIS PERS. (ANNONACEAE)

IGNACE KOUSSOUBÉ, FILKPIÈRÈ LÉONARD DA, BASILE TINDANO · Asian Journal of Pharmaceutical and Clinical Research · 2025

Showing 5 of 6 known citations — external sources report more than can currently be individually listed.

Article metrics

Real usage data collected on this platform.

0

Page views

0

PDF downloads

0

Outbound clicks

6

Citations

Views by country

Approximate, from request IP at view time — not citizenship or institution. Countries with fewer than 5 views are grouped as "Other".

No views recorded yet.

Traffic sources

Referring site, by host.

No traffic recorded yet.

Views and downloads exclude known bots/crawlers. Citations combines this platform's own DOI-resolved index with each external source's own reported total — see Cited by above for individually listed citing works. Last refreshed 0 seconds ago.