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Integrated haemotherapeutic systems improve transfusion safety and sustainability for sickle cell disease patients in AfricaNew strategies aim to improve blood safety for sickle cell disease

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Key Takeaway
Consider integrated haemotherapeutic systems, including antigen profiling and haemovigilance, to improve SCD transfusion safety.

This narrative review synthesizes the current landscape of haemotherapy for patients with sickle cell disease in Africa. The authors identify significant barriers to optimal care, including blood shortages, transfusion-transmitted infections, red-cell alloimmunisation, and inadequate haemovigilance. These factors contribute to fragmented transfusion histories and complex immunohaematological phenotypes in the region.

To address these challenges, the review proposes a transition to integrated haemotherapeutic systems. Key components include sustained voluntary donor recruitment, improved inventory management, and extended red-cell antigen profiling. The authors specifically recommend that Rh and Kell matching form the foundation of care, with the inclusion of Duffy, Kidd, MNS, and other clinically significant antigens based on patient risk and local capacity. Additional proposed measures include risk-based antigen matching, selective molecular genotyping, and the establishment of antibody registries and rare-donor networks.

The authors note that this review is based on a synthesis of literature and guidelines rather than primary clinical trial data. Consequently, the findings do not provide direct clinical trial evidence for the effectiveness of the proposed interventions. The review suggests these systems are necessary to move from episodic blood provision to resilient, lifelong haemotherapeutic care.

How this fits prior evidence

This narrative review addresses the high prevalence of sickle cell disease in sub-Saharan Africa, which requires scaling of comprehensive care platforms. It extends the clinical context by proposing specific technical solutions, such as antigen profiling and haemovigilance, to improve the safety and sustainability of transfusion for these patients. While previous coverage noted the need for comprehensive care platforms, this review specifically details the components of an integrated haemotherapeutic system.

Living with sickle cell disease in Africa often means facing a difficult road when it comes to blood transfusions. Patients frequently deal with blood shortages, the risk of infections, and complex immune reactions that make getting safe, compatible blood a constant challenge.

Experts are now proposing a shift toward integrated systems to make care more reliable. This approach includes better ways to find voluntary donors, keeping better records of a patient's history, and using advanced testing to match blood more accurately. By focusing on specific markers like Rh and Kell, doctors hope to make transfusions safer and more available for those who need them most.

It is important to note that these findings come from a review of existing literature and guidelines rather than a new clinical trial. While these proposed systems offer a roadmap for better care, they are not yet tested in a live trial setting. Talk to a healthcare provider to understand how these changes might affect specific treatment plans.

What this means for you:
Newer, integrated blood management systems could make transfusions safer and more available for sickle cell patients.

Common questions

What makes blood transfusions difficult for sickle cell patients?

Patients often face several hurdles, including blood shortages, the risk of infections, and complex immune reactions. Other issues include iron overload and a lack of consistent records regarding a patient's transfusion history. These factors make it hard to ensure that every transfusion is safe and effective for the person receiving it.

How can blood matching be improved for these patients?

Experts suggest a foundation of Rh and Kell matching. They also recommend including other important markers like Duffy, Kidd, and MNS based on the patient's specific risks and what local clinics can provide. These steps aim to reduce the risk of the body reacting poorly to the blood.

What are the proposed solutions for better blood access?

Proposed solutions include creating a steady supply of voluntary donors, better inventory management, and using molecular genotyping. Creating rare-donor networks and keeping lifelong records of a patient's blood history can also help ensure that patients get the right blood more consistently.

Study Details

Study typeSystematic review
EvidenceLevel 1
PublishedSep 2026
View Original Abstract ↓
Sickle cell disease (SCD) is a major haematological and health-system challenge in Africa, where a substantial global burden occurs alongside persistent limitations in access to safe and comprehensive transfusion services. Blood transfusion remains essential for selected acute complications, perioperative support, stroke prevention, and chronic transfusion programmes. However, effective SCD haemotherapy is constrained not only by blood shortages but also by transfusion-transmitted infections, red-cell alloimmunisation, limited antigen matching, complex immunohaematological phenotypes, iron overload, fragmented transfusion histories, and inadequate haemovigilance. This narrative review examines these interconnected challenges across the haemotherapeutic continuum and proposes practical pathways for safer, more available, and sustainable transfusion care. Evidence from published literature, transfusion guidance, SCD recommendations, and African blood-service studies was synthesised across donor recruitment, blood collection, infectious-disease screening, component preparation, compatibility testing, antigen profiling, transfusion administration, haemovigilance, and long-term monitoring. The review identifies a critical distinction between blood availability and compatible blood availability and proposes integrated solutions including sustained voluntary donor recruitment, improved inventory management, extended red-cell antigen profiling, risk-based antigen matching, selective molecular genotyping, lifelong transfusion records, antibody registries, rare-donor networks, regional reference laboratories, and strengthened haemovigilance. Rh and Kell matching should form an important foundation for frequently transfused patients, while Duffy, Kidd, MNS, and other clinically significant antigens should be incorporated according to patient risk and local capacity. Iron surveillance, appropriate chelation, patient blood management, and disease-modifying therapies can reduce cumulative transfusion-related morbidity. Africa therefore requires a transition from episodic blood provision to resilient, integrated, lifelong haemotherapeutic systems capable of improving transfusion safety, continuity, equity, and long-term outcomes for people living with SCD.
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