Eradicating Haemoglobin Variants Disorder
A Reality in Nigeria
DOI:
https://doi.org/10.51459/jostir.2025.1.Special-Issue.0234Keywords:
Haemoglobinopathies, algorithm, education, eradicationAbstract
Haemoglobinopathies are among the most monogenetic disorders worldwide, inherited as autosomal recessive disorders from healthy-carrier parents. The most common are the sickle cell disorders and the thalassaemias, occurring in people of African, Asian, South European, and Middle Eastern descent. Our study aimed to understand the prevalence of the normal haemoglobin A among Nigerians and the ratio of HbAA to other Hb variants in the country to strategize an eradication algorithm for the haemoglobin disorders. Two independent studies of Hb genotyping were carried out from a neonatal population (387) and from an adult population (298). Haemoglobin electrophoresis at alkaline pH with cellulose acetate was the method of choice. Data analysis was done using simple percentages and the chi-square test.The participants' (685) results were as follows: 544(79.4%) were HbAA, 127 (18.5%) had HbAS, 9 (1.3%) had HbAC, 3 (0.4%) had HbSS, and 2 (0.4%) had HbSC. The ratio of Hb AA to Hb AS (4:1), HbAA to HbSS (181:1), HbAA to HbAC (60:1), and HbAA to HbSC (272:1), respectively. The knowledge and awareness of the participants were tested using a structured questionnaire, and on both sides, there was a statistically significant decrease in knowledge of the adult subjects and that of the parents and guidance of the neonates (p>0.05). It was concluded that making use of the high frequency of HbAA across the nation, a strategic and steady awareness campaign, along with education at all levels of life and guided government policy, eradication is achievable.
References
Aderotoye-Oni, S., Diaku-Akinwumi, I. N., Adeniran, A., & Falase, B. (2018). Unprepared and misinformed parents of children with sickle cell disease: time to rethink awareness campaigns. Cureus, 10(12).
Ahmed, R., & Molla, M. A. (2017). Early marriage even earlier. The Daily Star, 23rd July.
Aliouche, H. (2022, January 20). The Importance of Genetic Counseling In Healthcare And Medicine. News-Medical. Retrieved on June 16, 2025 from https://www.news-medical.net/health/The-Importance-of-Genetic-Counseling-In-Healthcare-And-Medicine.aspx.)
Alhazmi, A., Hakami, K., Abusageah, F., Jaawna, E., & Khawaji, M. (2022). The Impact of Sickle Cell Disease on Academic Performance among Affected Students. 1–12.
Babalola, O. A., Chen, C. S., Brown, B. J., Cursio, J. F., Falusi, A. G., & Olopade, O. I. (2019). Knowledge and health beliefs assessment of sickle cell disease as a prelude to neonatal screening in Ibadan, Nigeria. Journal of Global Health Reports, 3.
Bain, B. J. (2011). Haemoglobinopathy diagnosis: algorithms, lessons and pitfalls. Blood reviews, 25(5), 205-213.
Brown, D., Hanbury, C. M., & Hoyer, J. D. (2020). Effects of Haemoglobin C and S Traits on Eight Glyco-hemoglobin Methods. 2, 383–385.
Buseri, F. I., & Okonkwo, C. N. (2014). Abnormal hemoglobin genotypes and ABO and rhesus blood groups associated with HIV infection among HIV-exposed infants in north Western Nigeria. Pathology and Laboratory Medicine International, 6, 15-20.
Chowdhury, S. F., & Anwar, S. (2020). Management of Haemoglobin Disorders During the COVID-19 Pandemic. 7(June), 1–6.
Crighton, G., Wood, E., Scarborough, R., Ho, P. J., & Bowden, D. (2016). Haemoglobin disorders in Australia: where are we now and where will we be in the future?. Internal medicine journal, 46(7), 770-779.
Dirisu, I. M., & Okuonghae, E. M. (2024). Distribution and frequency of blood groups and haemoglobin genotype pattern among blood donors in a tertiary hospital in southern Nigeria. African Journal of Tropical Medicine and Biome
Faremi, A. F., Olatubi, I. M., & Lawal, Y. R. (2018). Knowledge of Sickle Cell Disease and Pre-Marital Genotype Screening among Students of a Tertiary Educational Institution in South Western Nigeria. International Journal of Caring Sciences, 11(1), 285-295.
Greene, D. N., Vaugn, C. P., Crews, B. O., & Agarwal, A. M. (2019). Advances in Detection of Haemoglobinopathies. International Journal of Clinical Chemistry (439):50-57.
Harteveld, C. L., Arkesteijn, S. J. G., Bhagwandien-bisoen, M. V. S., Vijfhuizen, L., & Tamara, I. (2022). The Haemoglobinopathies,Molecular Disease Mechanisms and Diagnostics. International Journal of Laboratory Hematology. 28–36.
Hays, E. F., Ralph L, E., John, D, & Stanford, B. (2019). Sickle Cell-Haemoglobin C Disease. 412– 418.
Hazaa, K. Al, Ismail, R., Johnson, C., Al-tameemi, R. A. N., Romanowski, M. H., Bensaid, A., Ben, M., Rhouma, H., Elatawneh, A., & Araújo, G. C. De. (2021). The Effects Of Attendance And High School GPA on Student Performance In First-Year Undergraduate Courses. Cogent Education, 8(1), 1–19.
Henry, E. R., Cellmer, T., Dunkelberger, E. B., Metaferia, B., Hofrichter, J., Li, Q., ... & Eaton, W. A. (2020). Allosteric control of hemoglobin S fiber formation by oxygen and its relation to the pathophysiology of sickle cell disease. Proceedings of the National Academy of Sciences, 117(26), 15018-15027.
Hirschsbli, R. E., Lins, M. J., & Nagels, R. L. (2019). The Inhibition of Haemoglobin C Crystallization by Haemoglobin F. 263(12), 5936–5939.
Hossain, M. S., Hasan, M. M., Raheem, E., Islam, M. S., Al Mosabbir, A., Petrou, M., ... & Siddiqee, M. H. (2020). Lack of knowledge and misperceptions about thalassaemia among college students in Bangladesh: a cross-sectional baseline study. Orphanet Journal of Rare Diseases, 15(1), 54.
Iheanacho, C. U, Ufelle, S. A., Egbujo E. C., Achukwu, P. U. (2021): Haemoglobin Genotype Status awareness of Some Nursing Parents receiving Neonatal immunization in Jos, North-Central Nigeria. Journal of Medical Science and Clinical Research;9(1): 175-182
Jacob, E. A. (2016). Hematological differences in newborn and aging: a review study. Hematol Transfusion Int J, 3(3), 178-190. 00067.
JOSEPH AYO BABALOLA UNIVERSITY (JABU 2024).https://jabu.edu.ng>uploads>2024/06>Advert…
Kapoor, S., Little, J. A., & Pecker, L. H. (2018, December). Advances in the treatment of sickle cell disease. In Mayo Clinic Proceedings (Vol. 93, No. 12, pp. 1810-1824). Elsevier
Koutsi, A., & Vervesou, E. C. (2018). Diagnostic molecular techniques in haematology: recent advances. Annals of translational medicine, 6(12), 242.
Mantadakis, E., Chatzimichael, E., & Zikidou, P. (2020). Iron deficiency anemia in children residing in high and low-income countries: risk factors, prevention, diagnosis and therapy. Mediterranean journal of hematology and infectious diseases, 12(1), e2020041.
Muyembe Asenahabi, B., & Anselemo Ikoha, P. (2023). Scientific research sample size determination.
Nagababu, E., Fabry, M. E., Nagel, R. L., & Rifkind, J. M. (2019). Haeme degradation and oxidative stress in murine models for haemoglobinopathies: Thalassemia, sickle cell disease and haemoglobin C disease. 41, 60–66.
National Population Commission (2006). PHC Priority Tables. population.gov.ng. Retrieved 2017-10-10.
Ngwengi, N. Y., Fon, P. N., & Mbanya, D. (2020). Distribution of haemoglobin genotypes, knowledge, attitude and practices towards sickle cell disease among unmarried youths in the Buea Health District, Cameroon. Pan African Medical Journal, 37(1).
Nubila, T., Ukaejiofo, E. O., Nubila, N. I., & Azeez, R. (2013). Frequency distribution of hemoglobin variants among Yorubas in Ibadan, south western Nigeria: A pilot study. Nigerian Journal of Experimental and Clinical Biosciences, 1(1), 39.
Okwe, U. N., & Ofili, C. C. (2025). Literature review on the perception of sickle cell patients on their diagnosis and management practice at the sickle cell clinics of Delta State, Nigeria.
Pandya, P. P., Wapner, R., Oepkes, D., & Sebire, N. (2019). Fetal Medicine E-Book: Basic Science and Clinical Practice. Elsevier Health Sciences
Rai, P., & Malik, P. (2016). Gene therapy for hemoglobin disorders-a mini-review. Journal of rare diseases research & treatment, 1(2), 25.
Thom, C. S., Dickson, C. F., Gell, D. A., & Weiss, M. J. (2013). Hemoglobin variants: biochemical properties and clinical correlates. Cold Spring Harbor perspectives in medicine, 3(3), a011858.
Torres, L. D. S., Okumura, J. V., Silva, D. G. H. D., & Bonini-Domingos, C. R. (2015). Hemoglobin D-Punjab: origin, distribution and laboratory diagnosis. Revista Brasileira de Hematologia e Hemoterapia, 37, 120-126.
Troxler, H., Kleinert, P., Schmugge, M., & Speer, O. (2012). Advances in hemoglobinopathy detection and identification. Advances in clinical chemistry, 57, 2.
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2025 Journal of Science, Technology and Innovation Research

This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.