Logo Lanfrica
  • Home
  • Atlas
  • Insights
  • Docs
  • Sign in

© 2026 Lanfrica. All rights reserved. All copyrights of the resources shown on the Lanfrica website belong to the original copyright holders, unless explicitly stated otherwise.

Access to Hemoglobin A1c in Rural Africa: A Difficult Reality with Severe Consequences

Domain:

healthcare
Creator:
PauSon
Publisher:
WILEY
Host:
Sub-Saharan Africa (SSA) continues to have the highest diabetes-related mortality rate in the world. While there exists a multitude of health system barriers driving poor diabetes control, rural facilities particularly in SSA lack access to proper monitoring of glucose and other key biologic tests. At best, most of these diabetes patients receive random blood sugar readings only on the day of their clinic visit. This approach has very limited clinical value in determining dosage adjustments for narrow therapeutic index medications such as insulin. Furthermore, access to other blood tests and physical exam tools for detecting early signs of diabetes complications is limited. We propose that routine access to hemoglobin A1c (HbA1c) testing would not only allow for close monitoring of diabetes control but also provide critical data informing the population level risk for diabetes complications. However, implementing HbA1c testing does have its own barriers at rural facilities, including high costs, refrigeration requirements, and perceived discordance between HbA1c values and mean blood glucose levels for SSA patients. Fortunately, several pilots in rural SSA have illustrated feasibility of HbA1c testing. Further political will, price reduction, and context-specific research are needed. Increasing access to HbA1c testing is a critical step to combat the high diabetes-related mortality rates in rural SSA.

Visit

doi.org

Licenses

http://creativecommons.org/licenses/by/4.0/

Similar

Association of hemoglobin A1C with circulating metabolites in Dutch with European, African Surinamese and Ghanaian background194-LB: Aggregate Effect of Hemoglobin A1c–Related Genetic Variants on A1c–Glycemia Discordance by AncestryHemoglobin C associated with protection from severe malaria in the Dogon of Mali, a West African population with a low prevalence of hemoglobin SEvaluation of agreement between hemoglobin A1c, fasting glucose, and fructosamine in Senegalese individuals with and without sickle-cell traitPhenome-wide association study and functional annotation of hemoglobin A1c-associated variants in African populationsBeyond severe acute maternal morbidity: a mixed‐methods study on the long‐term consequences of (severe pre‐)eclampsia in rural Tanzania

Association of hemoglobin A1C with circulating metabolites in Dutch with European, African Surinamese and Ghanaian background

Abstract Background The prevalence of type 2 diabetes mellitus

194-LB: Aggregate Effect of Hemoglobin A1c–Related Genetic Variants on A1c–Glycemia Discordance by Ancestry

Introduction: The aggregate effect of genetic variants reported to lower A1c independently of glycem

Hemoglobin C associated with protection from severe malaria in the Dogon of Mali, a West African population with a low prevalence of hemoglobin S

The malaria hypothesis proposes a survival advantage for individuals with hemoglobin variants in are

Evaluation of agreement between hemoglobin A1c, fasting glucose, and fructosamine in Senegalese individuals with and without sickle-cell trait

Phenome-wide association study and functional annotation of hemoglobin A1c-associated variants in African populations

Background Glycated hemoglobin (HbA1c) measures the average blood sugar level over the past three mo

Beyond severe acute maternal morbidity: a mixed‐methods study on the long‐term consequences of (severe pre‐)eclampsia in rural Tanzania

Abstract Objectives To explore the long‐term (perceived) consequences of (severe pre‐)eclampsia i