Chairman - Haemato Oncology & BMT, BLK-Max Super Speciality Hospital, New Delhi
Part 7 of 15 in Bone Marrow (Stem Cell) Transplant for Sickle Cell Disease
What Is GVHD and How Is It Managed After Bone Marrow Transplant?
June 14, 2026
Approximately 70% of bone marrow transplant patients will have no significant GVHD. Around 30% will experience some degree of it. GVHD, or graft-versus-host disease, is the most significant complication of sickle cell BMT, and every BMT team including Dr. Dharma Choudhary's unit at BLK-Max prepares for it from the start.
What is GVHD after sickle cell bone marrow transplant?
In a bone marrow transplant, donor immune cells enter the recipient's body. In some cases they recognise the recipient's tissues as foreign and attack them. This is GVHD. It is a known, manageable complication that every sickle cell BMT team at centres like BLK-Max prepares for in advance.
Acute and chronic GVHD after sickle cell BMT
Acute GVHD is treated with steroids and newer medicines such as ruxolitinib. Chronic GVHD develops months later, producing dry eyes, dry skin, dry mouth, and lung problems. Sickle cell patients undergoing BMT in India often arrive with pre-existing lung damage, making lung-related chronic GVHD a particular concern.
How GVHD is prevented in sickle cell BMT in India
Every sickle cell BMT patient receives immunosuppressive medicines for six months to one year. ATG given during conditioning significantly reduces GVHD risk. Post-transplant cyclophosphamide serves the same role in haploidentical transplants. Unlike kidney or liver transplant, sickle cell BMT patients do not require lifelong immunosuppression.
A warning about cost-cutting in sickle cell BMT protocols
Some lower-cost transplant centres remove ATG from the protocol. ATG is roughly one-tenth of total BMT cost. Removing it significantly increases GVHD risk. When evaluating bone marrow transplant centres in India for sickle cell disease, always ask what is included in the conditioning protocol, not just the headline price.
← Haploidentical Transplant for Sickle Cell Disease: Why the Outcomes Have Changed | Series index | Is There an Age Limit for Bone Marrow Transplant in Sickle Cell Disease? →
This article is based on a Jivo Masterclass session conducted by Dr. Dharma Choudhary, Chairman, Haemato Oncology and BMT, BLK-Max Super Speciality Hospital, New Delhi. The article has been summarised with the assistance of an AI tool from the original masterclass recording. Watch the full Masterclass recording
This guide is based on a live Jivo Masterclass — Dr. Dharma Choudhary taught doctors across Africa on December 7, 2025.
FROM THE LIVE Q&A
Dr. Ivan (Uganda)
Can you help us with the pathology of the stem cell, and what are the effects of the transplant? For example, one patient asked you in a consultation how their life would be after transplant, and you said it would be similar to the donor's.
Dr. Dharma Choudhary
The stem cell itself has no pathology — it is the mother cell present in every human being that produces blood, the haematopoietic stem cell. Sickle cell disease is a defect in a single gene, a single base-pair defect in the beta-haemoglobin chain, so it is the haematopoietic stem cell that is defective, and we need to replace it with a healthy one. As for effects: about 70% of patients have no major complications and 30% will have graft-versus-host disease. In the acute phase there can be neutropenia leading to sepsis, mucositis (mouth ulceration causing pain, vomiting, diarrhoea), and haemorrhagic cystitis (blood in urine from the conditioning chemotherapy or radiation), which usually recovers with hydration and prevention. Veno-occlusive disease of the liver can also occur. The two most important complications are acute and chronic graft-versus-host disease — chronic GVHD causes dry eyes, dry skin, dry mouth and lung problems, and impairs quality of life. Infertility is another complication, meaning inability to reproduce, not sexual dysfunction — sexual and social life are not affected after transplant, only ovarian or testicular failure affecting spermatogenesis and ovulation.
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Frequently Asked Questions
Apart from transplantation, in symptomatic sickle cell patients, is there no antigen therapy for asymptomatic patients to prevent homozygous transmission?▼
No. Sickle cell disease is a gene defect — there are sickle cell carriers and sickle cell disease patients. Disease means both parents were carriers; a carrier has only one gene affected and can pass it to their children if their partner is also a carrier. Other than gene therapy, there is no treatment for asymptomatic carriers — no cure or treatment is needed, because they reach adulthood and live a normal life. Since there is no phenotypic expression of the genotypic disorder, no treatment is warranted, because every treatment carries a risk of morbidity and mortality.
What is the age at which patients can undergo bone marrow transplant? Is there an upper age cutoff after which the benefits no longer outweigh the risks?▼
We advise the youngest age should be more than two years — doing a transplant very early, at 6 months to 1 year after only one crisis episode, children cannot tolerate the required immunosuppression properly, though on an emergency basis it is sometimes done for leukaemia. For sickle cell disease and thalassemia, transplant should be offered after 2 years of age. There is no upper age cutoff — every patient has the right to live, whatever the outcome percentage; the decision to go for transplant depends on the patient and family, weighed against quality of life.
What is the racial survival rate after transplant according to current statistics, and is race a factor in the success of transplant?▼
Race does not affect the outcome. African sickle cell patients present with more severe sickling compared to Indian sickle cell patients, but the transplant outcome is the same — leukaemia treated in Africa versus leukaemia treated in India has the same outcome. Transplant outcome is mainly affected by patient factors (disease stage and comorbidity), donor factors (full match, half match, or mismatch), and treatment factors (right conditioning, right immunosuppression, right supportive care). Get those right and outcomes across the globe are similar, whether the transplant is done in America, Tokyo, or India.
Are there any clinical nutritional considerations before and after transplant?▼
We encourage good nutrition — patients can eat whatever they like, there is no prohibition, other than avoiding street food. Any hygienic food eaten at home, with good nutrition and a good amount of protein, is good for transplant outcome — the same as for any ordinary healthy human being.
In some countries even HLA typing tests are not available. If a patient is travelling from elsewhere, how does a physician collect samples, what precautions should be taken, and how should the sample be transported so it can reach a transplant centre like yours for testing?▼
I will circulate full information from my lab on the prerequisites for an HLA sample — what temperature it should be kept at, how many hours it can take to transport, and how many ml of blood sample or a buccal swab is required, so the sample can safely reach India for testing. Laboratory networks such as Metropolis and Lancet already exist in Kenya, Ghana and Uganda, though coverage is patchier in countries such as Nigeria and the DRC.
What actually causes graft-versus-host disease after a bone marrow transplant?▼
Donor immune cells entering the recipient's body sometimes recognise the recipient's own tissues as foreign and attack them. It is a known, manageable complication that transplant teams prepare for from the start.
How is acute GVHD treated?▼
With steroids and newer medicines such as ruxolitinib, which can be used for both prevention and treatment of acute and chronic GVHD.
How does chronic GVHD present, and why is it a particular concern for sickle cell patients?▼
It develops months after transplant, producing dry eyes, dry skin, dry mouth, and lung problems. Sickle cell patients often arrive for transplant with pre-existing lung damage, which makes lung-related chronic GVHD a particular concern for this group.
How is GVHD prevented in a haploidentical transplant?▼
Post-transplant cyclophosphamide serves the same protective role that ATG plays in matched donor transplants, and every patient receives immunosuppressive medicine for six months to one year regardless of donor type.
In This Series: Bone Marrow (Stem Cell) Transplant for Sickle Cell Disease
- 1.Bone Marrow Transplant for Sickle Cell Disease
- 2.After Bone Marrow Transplant: What to Expect When You Return Home
- 3.Is There an Age Limit for Bone Marrow Transplant in Sickle Cell Disease?
- 4.Cost of Bone Marrow Transplant in India vs US and Europe: What African Patients Should Know
- 5.Fertility After Bone Marrow Transplant: What Sickle Cell Patients Need to Know
- 6.Gene Therapy vs Bone Marrow Transplant for Sickle Cell Disease: What the Evidence Shows
- 7.What Is GVHD and How Is It Managed After Bone Marrow Transplant?
- 8.Haploidentical Transplant for Sickle Cell Disease: Why the Outcomes Have Changed
- 9.HLA Typing for Sickle Cell Transplant: What It Is and How to Get It Done in Africa
- 10.Organ Damage in Sickle Cell Disease: What Happens Over Time
- 11.Sickle Cell Disease: The Only Cure Available Today
- 12.Hydroxyurea and Other Medicines for Sickle Cell Disease: What They Can and Cannot Do
- 13.Sibling Donor vs Haploidentical Donor for Sickle Cell Transplant: What Are Your Options?
- 14.What Is Sickle Cell Disease? Genetics, Mechanism, and Who It Affects
- 15.Who Should Get a Bone Marrow Transplant for Sickle Cell Disease?