Sign in to use this feature.

Years

Between: -

Subjects

remove_circle_outline
remove_circle_outline
remove_circle_outline
remove_circle_outline
remove_circle_outline

Journals

Article Types

Countries / Regions

Search Results (30)

Search Parameters:
Keywords = beta-globin gene mutations

Order results
Result details
Results per page
Select all
Export citation of selected articles as:
22 pages, 4150 KB  
Article
Beta-Globin (HBB) Mutations and Catalase Gene Polymorphisms in Beta-Thalassemia Major Patients in Al-Diwaniyah, Iraq
by Huda Ahmed Fairooz, Rania Abdelhedi, Sarab Hussain Khalil, Najla Kharrat and Mounira Hmani
Genes 2026, 17(8), 906; https://doi.org/10.3390/genes17080906 - 31 Jul 2026
Viewed by 389
Abstract
Background/Objectives: β-thalassemia major is a common inherited hemoglobin disorder caused by Hemoglobin Subunit Beta (HBB) mutations and often complicated by iron overload and oxidative stress. This study characterized the clinical, hematological, biochemical, and molecular profile of β-thalassemia major in Al-Diwaniyah, [...] Read more.
Background/Objectives: β-thalassemia major is a common inherited hemoglobin disorder caused by Hemoglobin Subunit Beta (HBB) mutations and often complicated by iron overload and oxidative stress. This study characterized the clinical, hematological, biochemical, and molecular profile of β-thalassemia major in Al-Diwaniyah, Iraq, focusing on HBB mutations and CAT promoter polymorphisms as oxidative modifiers. Methods: A retrospective case–control study included 100 transfusion-dependent patients and 50 healthy controls. Sociodemographic data, complete blood count, ferritin, lipid profile, catalase (CAT), and malondialdehyde (MDA) were assessed. HBB mutations, namely IVSI-1 (G>A), IVSI-6 (T>C), and CD39 (C>T), and CAT polymorphisms, namely rs1001179 (C>T) and rs7943316 (A>T), were genotyped. Results: Patients had high rates of family history (80%), consanguinity (80%), rural residence (74%), low education (60.6%), and poor socioeconomic status (71.4%). Compared with controls, they showed lower RBC, HGB, HCT, HDL, LDL, and CAT but higher ferritin, triglycerides, and MDA (all p < 0.001). Overall, 69% of patients carried at least one studied HBB mutations, while 31% remained uncharacterized. Mutant allele frequencies were 29% for IVSI-1 (A) and 25.5% each for IVSI-6 (C) and CD39 (T). The CAT polymorphism rs1001179 (C>T) was associated with disease risk (CT: 33% vs. 14%; OR = 3.25, p = 0.019), whereas rs7943316 (A>T) was not. IVS-I-1 (G>A)/CD39 (C>T) β0 mutations were associated with lower CAT activity (β = −0.205; p = 0.046). Conclusions: β-thalassemia in Al-Diwaniyah, Iraq, shows substantial clinical, genetic, and oxidative heterogeneity. Integrated HBB–CAT analysis may improve molecular diagnosis, risk stratification, and preventive strategies in high-consanguinity populations. Full article
(This article belongs to the Section Genetic Diagnosis)
Show Figures

Graphical abstract

10 pages, 2030 KB  
Case Report
Molecular Identification and Familial Segregation of the Hb Malay (HBB:c.59A>G) Variant in a Three-Generation Indonesian Family
by Chris Adhiyanto, Achmad Zaki, Gema Puspa Sari, Mella Ferania, Yona Mimanda, Laifa Annisa Hendarmin, Suryani, Rini Puspitaningrum, Ayu Latifah, Sakorn Pornprasert, Phakhwan Sampaoloi and Saruda Intachote
Thalass. Rep. 2026, 16(3), 15; https://doi.org/10.3390/thalassrep16030015 - 14 Jul 2026
Viewed by 320
Abstract
Background/Objectives: Beta-thalassemia (β-thal) is an inherited hemoglobin disorder caused by mutations in the HBB gene. Hb Malay (HBB:c.59A>G [NM_000518.5], p.Asn20Ser, CD19), a missense substitution (AAC→AGC; Asn→Ser) in exon 1 of the β-globin gene causing β+-thalassemia, has been mainly described in Southeast [...] Read more.
Background/Objectives: Beta-thalassemia (β-thal) is an inherited hemoglobin disorder caused by mutations in the HBB gene. Hb Malay (HBB:c.59A>G [NM_000518.5], p.Asn20Ser, CD19), a missense substitution (AAC→AGC; Asn→Ser) in exon 1 of the β-globin gene causing β+-thalassemia, has been mainly described in Southeast Asian populations but remains underreported in published Indonesian molecular epidemiology literature. This study aimed to identify the Hb Malay variant and investigate its familial segregation in a large Indonesian extended family. Methods: Cascade molecular screening was initiated following detection of the mutation in a proband referred for genetic testing. Sixteen individuals (one proband and 15 family members) consented to participate. Genomic DNA was extracted from peripheral blood and a 1.9-kb β-globin gene fragment was amplified by PCR. Mutation screening was performed using the Thalassemia GenoArray Kit HBGA-THAL-b31 (Hybribio) and confirmed by Sanger sequencing. A three-generation pedigree was constructed from molecular results and family interviews. Results: The Hb Malay mutation (HBB:c.59A>G) was identified in 13 of 16 individuals: 12 heterozygous carriers (A/G) and one homozygous individual (G/G, subject III-1, aged 15 years). Three individuals showed the normal genotype (A/A). Pedigree analysis demonstrated autosomal recessive inheritance across three generations. No α-globin deletions covered by the GenoArray panel were detected. Conclusions: To our knowledge, this is one of the few documented reports of cascade molecular screening for the Hb Malay (HBB:c.59A>G) variant in a large extended Indonesian family, confirmed by dual molecular methods. These findings illustrate the potential value of cascade molecular screening for early carrier identification in settings where hemoglobin fractionation testing is unavailable, and highlight the need for population-based epidemiological studies to guide thalassemia prevention policy in Indonesia. Full article
Show Figures

Figure 1

11 pages, 5814 KB  
Article
Molecular Characterization of HBB Gene Variations in Beta-Thalassemia Patients from Khyber Pakhtunkhwa, Pakistan
by Shahzad Ahmad, Laiba Khan, Muhammad Mustafa, Yousaf Khan, Syed Farooq Shah, Fuzail Ahmad, Taimoor Khan, Muhammad Asif Zeb, Qaiser Zaman and Musharraf Jelani
Thalass. Rep. 2026, 16(3), 14; https://doi.org/10.3390/thalassrep16030014 - 10 Jul 2026
Viewed by 1428
Abstract
Background: Beta-thalassemia is a hereditary hematological illness in which beta-globin chain synthesis is missing or decreased, resulting in inefficient erythropoiesis, persistent hemolysis, and anemia. It is most frequently observed in populations with a high rate of consanguineous marriages; affordability becomes a limiting factor [...] Read more.
Background: Beta-thalassemia is a hereditary hematological illness in which beta-globin chain synthesis is missing or decreased, resulting in inefficient erythropoiesis, persistent hemolysis, and anemia. It is most frequently observed in populations with a high rate of consanguineous marriages; affordability becomes a limiting factor for families with low income. Methods: In this study, we optimized Sanger sequencing of the whole HBB gene covering all three coding exons, two introns, and 5′ and 3′ UTRs. Eleven families were enrolled from Fatimid Foundation Peshawar, Khyber Pakhtunkhwa, Pakistan, with a total of 16 transfusion-dependent patients. An index patient in each family was Sanger sequenced for the HBB gene (n = 11). The variants were classified as per ACMG 2015 guidelines. Results: Sequencing analysis revealed five homozygous pathogenic variations, including three frameshifts: c.27_28dupG (p.Ser10Valfs*14), c.17_18delCT (p.Pro6Argfs17), c.126_129delCTTT (p.Phe42Leufs*19), and two splice-sites (c.92+1G>A, and c.92+5G>C) in nine families. However, two families remained unresolved. The mutation, c.27_28dupG (p.Ser10Valfs*14), was observed in several pedigrees, indicating a probable founder effect or high allele frequency within the affected population. Conclusions: The majority of detected variations in this study were classified as disease-causing, which reside in the first two coding exons and intron-1 of the HBB gene, highlighting its functional importance in the Khyber Pakhtunkhwa population. We recommend performing Sanger sequencing of exon-1-intron-1-exon-2 of the HBB gene with the optimized primers of this study. Full article
Show Figures

Figure 1

14 pages, 6294 KB  
Review
Repurposing Tyrosine Kinase Inhibitors for Sickle Cell Disease: Focus on Band 3 Phosphorylation
by Raj Gupta, Neha Mishra, Manisha Madkaikar and Rohit Kumar Singh
Biomedicines 2026, 14(7), 1500; https://doi.org/10.3390/biomedicines14071500 - 2 Jul 2026
Viewed by 722
Abstract
Sickle cell disease (SCD) is an autosomal recessive hemoglobin disorder that is mainly characterized by the presence of hemoglobin S (HbS; point mutation [Glu6Val] in the beta-globin gene). Under deoxygenated conditions, HbS polymerizes and serves as the primary trigger of oxidative stress in [...] Read more.
Sickle cell disease (SCD) is an autosomal recessive hemoglobin disorder that is mainly characterized by the presence of hemoglobin S (HbS; point mutation [Glu6Val] in the beta-globin gene). Under deoxygenated conditions, HbS polymerizes and serves as the primary trigger of oxidative stress in red blood cells (RBCs), promoting polymerization of Band 3, a major membrane scaffold protein that links the lipid bilayer to the spectrin–ankyrin cytoskeletal network. Phosphorylation at key residues within the cytosolic domain of Band 3 induces conformational changes that weaken ankyrin binding and enhance lateral mobility and clustering of Band 3. These effects are mediated through a coordinated network of erythrocyte tyrosine kinases, primarily spleen tyrosine kinase (SYK) and sarcoma (Src) family kinases, which act sequentially to modify distinct tyrosine residues. Structural features of these kinases, including tandem SH2 domains in SYK and conserved SH2–SH3–kinase domain architecture of Src family members, enable precise recognition of phosphotyrosine motifs and propagation of phosphorylation cascades. Sequence alignment and structural superimposition of SH2 domains across studied kinases demonstrate a highly conserved fold that is critical for phosphotyrosine recognition, suggesting potential overlap in substrate engagement. Therapeutically, targeting these kinases has shown considerable promise, as tyrosine kinase inhibitors (TKIs) reduce Band 3 phosphorylation, restore RBC deformability, and decrease hemolysis and vaso-occlusive interactions in vitro. Thus, in this narrative review, we focus on the regulation of Band 3 by the above-mentioned tyrosine kinases, as well as the therapeutic potential of TKIs in SCD. Full article
(This article belongs to the Special Issue Recent Advances in Sickle Cell Disease)
Show Figures

Graphical abstract

20 pages, 412 KB  
Review
Gene Therapy for β-Haemoglobinopathies: From Molecular Correction to Curative Medicine
by Federica Fogliazza, Giulia Carbone, Martina Berzieri, Davide Ciriaco and Susanna Esposito
Biomedicines 2026, 14(7), 1451; https://doi.org/10.3390/biomedicines14071451 - 26 Jun 2026
Viewed by 437
Abstract
Background: β-haemoglobinopathies, including sickle cell disease and transfusion-dependent β-thalassaemia, are among the most common monogenic disorders worldwide and represent a major global health burden. Conventional treatments, such as blood transfusions, iron chelation, fetal haemoglobin induction, and allogeneic haematopoietic stem cell transplantation, have improved [...] Read more.
Background: β-haemoglobinopathies, including sickle cell disease and transfusion-dependent β-thalassaemia, are among the most common monogenic disorders worldwide and represent a major global health burden. Conventional treatments, such as blood transfusions, iron chelation, fetal haemoglobin induction, and allogeneic haematopoietic stem cell transplantation, have improved outcomes but remain limited by treatment-related toxicity, donor availability, and incomplete curative potential. Methods: A narrative literature review was conducted using PubMed up to 2025. Search terms included “sickle cell disease,” “sickle cell anemia,” “β-thalassemia,” “transfusion-dependent beta-thalassemia,” “gene therapy,” “gene addition,” “gene editing,” “CRISPR-Cas9,” “lentiviral vector,” “children,” “paediatric,” and “pediatric.” Relevant clinical trials, reviews, consensus statements, and guidelines were selected and qualitatively analysed. Results: Gene therapy for β-haemoglobinopathies is based mainly on two strategies: gene addition and gene editing. Gene addition uses lentiviral vectors to introduce functional or modified β-globin genes into autologous haematopoietic stem cells, whereas gene editing targets regulatory pathways, particularly BCL11A, to reactivate fetal haemoglobin synthesis or correct disease-causing mutations. Clinical studies have shown encouraging outcomes, including transfusion independence in many patients with β-thalassaemia and marked reduction or elimination of vaso-occlusive crises in sickle cell disease. Paediatric and adolescent data are increasingly promising, although still limited. Conclusions: Gene therapy is reshaping the treatment landscape of β-haemoglobinopathies by offering a personalised and potentially curative approach. However, long-term safety, conditioning toxicity, fertility preservation, accessibility, costs, and implementation in high-prevalence regions remain critical challenges. Further studies are needed to optimise patient selection and expand equitable access. Full article
Show Figures

Graphical abstract

18 pages, 2174 KB  
Systematic Review
Systematic Review of Non-Coding Genomic Variants in Globin and Non-Globin Clusters and Their Impact on Phenotypic Severity in Thalassemia and Sickle Cell Disease
by Abeer M. Al-Subaie and J. Francis Borgio
J. Clin. Med. 2026, 15(4), 1345; https://doi.org/10.3390/jcm15041345 - 9 Feb 2026
Viewed by 2632
Abstract
Background: Haemoglobinopathies such as beta-thalassemia (β-thal), alpha-thalassemia (α-thal) and sickle cell disease (SCD) are characterised by pathogenic gene variations (mutations) in the globin genes. Patients with haemoglobinopathies have the same disease-causing coding variations with very different disease phenotypes, from requiring blood transfusions to [...] Read more.
Background: Haemoglobinopathies such as beta-thalassemia (β-thal), alpha-thalassemia (α-thal) and sickle cell disease (SCD) are characterised by pathogenic gene variations (mutations) in the globin genes. Patients with haemoglobinopathies have the same disease-causing coding variations with very different disease phenotypes, from requiring blood transfusions to being non-symptomatic. The gap between the expected clinical outcomes based on primary coding mutations (the genotype) and the actual observed symptoms (the phenotype) often remains unexplained. We refer to the contribution of secondary genetic modifiers—specifically, non-coding variants of the genome that alter globin gene expression and pathophysiology—as the “missing heritability” of the clinical presentation [Primary Mutation + Missing Heritability (Non-Coding Variants) = Actual Clinical Phenotype]. Objectives: This systematic review aims to find evidence connecting genetic differences outside of the protein-coding region, as in promoters, enhancers or untranslated regions (UTRs), to the clinical severity (phenotype) of beta-thalassemia, alpha-thalassaemia and SCD. We summarise the molecular basis of phenotypic variation among haemoglobinopathy patients with identical variations to reveal their missing heritability and to enhance our understanding of prognostic strategies. Methods: This systematic review was performed in accordance with the PRISMA 2020 guidelines. We used search terms related to haemoglobinopathies, non-coding variation, SNP, promoters, enhancers and clinical severity to search major databases (PubMed and Google Scholar) as of October 2025. A total of 527 (out of 572) abstracts were fit for initial screening to identify the eligible reports. Due to heterogeneity in study designs and reported outcomes, findings were synthesised descriptively and grouped by variant mechanism (cis-acting and trans-acting). The final analysis included 89 articles that demonstrated a direct association between a non-coding genomic variant and a quantitative measure of clinical severity. Results: Two main groups of non-coding variants (NCVs) that modulate foetal haemoglobin (HbF) induction were identified. The first major group comprises cis-acting variants within globin gene clusters (HBG2 promoter XmnI polymorphism, HBB promoter mutations and α-globin enhancer variants), while the second major group comprises trans-acting quantitative trait loci (QTLs) (BCL11A and HBS1L-MYB loci). Non-globin NCVs in the UGT1A1 promoter were also found to influence the severity measures in β-thal and SCD. NCVs primarily alter the binding of transcription factors and the looping dynamics of chromatin, modulating the α/β chain balance ratio and γ-globin repression. The XmnI polymorphism is the most prominent cis-acting modifier associated with β-thal intermedia. The promoter polymorphisms in TNF-α and VCAM1 are associated with vascular complications in SCD. Conclusions: NCVs are fundamental when determining the clinical measures of haemoglobinopathies, in addition to coding variants. NCV screening should be integrated for clinical prognosis for the accurate prediction of haemoglobinopathy severity and associated high-risk complications. NCVs may represent promising targets for next-generation gene editing and therapeutic intervention strategies aimed at modifying the severity of β-thal, α-thal and SCD. Full article
(This article belongs to the Special Issue Blood Disorders: Diagnosis, Management, and Future Opportunities)
Show Figures

Graphical abstract

5 pages, 301 KB  
Case Report
The First Gene Therapy for Treating an Indonesian Child with Thalassemia Major: A New Hope for Indonesia
by Edi Setiawan Tehuteru, Teck Onn Lim, Anky Tri Rini Kusumaning Edhy, Ludi Dhyani Rahmartani, Stephen Diah Iskandar, Cresentia Irene, Rendi Prawira Gunawan, Reganedgary Jonlean and Grace Erdiana
Thalass. Rep. 2026, 16(1), 1; https://doi.org/10.3390/thalassrep16010001 - 19 Dec 2025
Cited by 1 | Viewed by 1871
Abstract
Background/Objectives: Thalassemia is highly prevalent in Indonesia, and its treatment imposes a significant financial burden. To date, thalassemia management in Indonesia remains largely limited to supportive therapies. This report aims to present the monitoring of the first Indonesian pediatric thalassemia patient to [...] Read more.
Background/Objectives: Thalassemia is highly prevalent in Indonesia, and its treatment imposes a significant financial burden. To date, thalassemia management in Indonesia remains largely limited to supportive therapies. This report aims to present the monitoring of the first Indonesian pediatric thalassemia patient to undergo gene therapy. Methods: Medical summaries were gathered across multiple time points. The gene therapy process consisted of several phases: screening, apheresis and cell manufacturing, conditioning, cell infusion, and post-treatment follow-up. The therapy utilized autologous CD34+ hematopoietic stem and progenitor cells (HSPCs), which were genetically modified using a lentiviral vector carrying the beta-globin gene. The primary outcome of this study was transfusion independence, determined through serial assessments of hematological parameters over a six-month period following gene therapy. Results: A 15-year-old female had been diagnosed with thalassemia major at the age of five. DNA analysis revealed compound heterozygous mutations Hb Malay (codon 19, AACAsn > AGCSer) and IVS1-nt5 (G > C). She had been receiving regular blood transfusions every 3–4 weeks, and hemosiderosis was detected in the liver and pancreas. Given the patient’s age—over 10 years—hematopoietic stem cell transplantation carries increased risks, making gene therapy the most suitable curative option. During the six-month follow-up period after gene therapy, the patient remained transfusion-independent and experienced no complications. Conclusions: In selecting an appropriate curative therapy for thalassemia patients, several factors must be considered. The successful implementation of the first gene therapy in an Indonesian pediatric thalassemia patient should serve as a catalyst for the continued development and expansion of curative treatment options for thalassemia patients across the country. Full article
Show Figures

Figure 1

9 pages, 216 KB  
Article
Epidemiology, Prevalence, and Predictors of Intracranial Hemorrhage with Sickle Cell Anemia
by Nikhil Vojjala, Raj N. Shah, Lakshmi Kattamuri, Nagaishwarya Moka, Geetha Krishnamoorthy and Vijendra Singh
Hemato 2025, 6(4), 37; https://doi.org/10.3390/hemato6040037 - 21 Oct 2025
Viewed by 1501
Abstract
Introduction: Sickle cell anemia (SCA) is a hereditary hemoglobinopathy caused by a mutation in the beta-globin gene, resulting in the production of hemoglobin S. Intracranial hemorrhage (ICH) is a severe complication for patients with SCA, but there is a paucity of literature [...] Read more.
Introduction: Sickle cell anemia (SCA) is a hereditary hemoglobinopathy caused by a mutation in the beta-globin gene, resulting in the production of hemoglobin S. Intracranial hemorrhage (ICH) is a severe complication for patients with SCA, but there is a paucity of literature on its epidemiology, risk factors, and clinical outcomes. To address this knowledge gap, we conducted a comprehensive analysis using the Nationwide Inpatient Sample (NIS) database to evaluate the epidemiology, prevalence, predictors, and clinical outcomes of ICH in adults with SCA. Methods: We conducted a retrospective cohort study using the NIS database from 2016 to 2020 to identify hospitalizations with SCA, using the ICD-10-CM (International Classification of Diseases, Tenth Revision, Clinical Modification) codes. Subsequently, we derived the prevalence and predictors of ICH in SCA adults. Results: Out of 468,070 admissions of adult hospitalizations (Aged ≥ 18 years) with SCA between 2016 and 2020 in the United States, 825 (0.17%) had ICH (nontraumatic intraparenchymal and/or subarachnoid bleeding). 410 (49.7%) were males, and 380 (46.0%) belonged to the age group of more than 45 years. The mean length of stay was 14.9 days, and 210 deaths occurred during the index hospitalization, resulting in a 25.4% inpatient mortality rate as compared to 0.6% in SCA-non-ICH patients (p < 0.001). Across all adult SCA hospitalizations during 2016–2020 (n = 468,070), ICH accounted for 210 of 2940 inpatient SCA deaths (7.1%). On multivariate logistic regression analysis, hypertension (OR:2.08, 95% CI: 1.2–3.3), prior history of ischemic stroke (OR: 17.06, 95% CI: 7.5–38.5), and a Charlson comorbidity index of more than one (OR: 2.9, 95% CI: 2.4–3.5) are significant predictors of ICH in adults with SCA. Conclusions: This study highlights the high prevalence of ICH in addition to the well-known thrombotic phenomenon among SCA patients. Stroke prevention and hypertension control are of paramount importance for the prevention of this catastrophic event in patients with SCA. Full article
12 pages, 484 KB  
Review
Navigating Hyperhemolysis in Sickle Cell Disease: Insights from Literature
by Sruthi Vellanki, Nishanth Thalambedu, Anup Kumar Trikannad Ashwini Kumar, Sravya Vellanki, Medhavi Honhar, Rachel Hendrix, Denese Harris, Mamatha Gaddam, Sunny R. K. Singh, Shivi Jain, Muthu Kumaran, Cesar Gentille and Ankur Varma
Diagnostics 2025, 15(14), 1835; https://doi.org/10.3390/diagnostics15141835 - 21 Jul 2025
Cited by 6 | Viewed by 5136
Abstract
Sickle cell disease (SCD) is a prevalent genetic disorder caused by a mutation in the beta-globin gene. Hyperhemolysis (HS) is a severe complication involving the rapid destruction of both transfused and endogenous red blood cells, commonly found in SCD. This literature review explores [...] Read more.
Sickle cell disease (SCD) is a prevalent genetic disorder caused by a mutation in the beta-globin gene. Hyperhemolysis (HS) is a severe complication involving the rapid destruction of both transfused and endogenous red blood cells, commonly found in SCD. This literature review explores the clinical presentation, diagnosis, pathogenesis, and management of HS in SCD. HS can manifest acutely or in a delayed manner, complicating diagnosis due to overlapping symptoms and varying reticulocyte responses. Immunohematological assessments often reveal delayed positivity in direct antiglobulin tests and antibody screens. HS typically presents severe anemia, jaundice, hemoglobinuria, and hemodynamic instability. Diagnostic markers include elevated bilirubin and lactate dehydrogenase levels alongside a reduced reticulocyte count. The management of HS is primarily empirical, with no clinical trials to support standardized treatment protocols. First-line treatments involve steroids and intravenous immunoglobulins (IVIG), which modulate immune responses and mitigate hemolysis. Refractory cases may require additional agents such as rituximab, eculizumab, tocilizumab, and, in some instances, plasma exchange or erythropoietin-stimulating agents. Novel therapeutic approaches, including bortezomib and Hemopure, have shown promise but require further investigation. Current management strategies are empirical, underscoring the need for robust clinical trials to establish effective treatment protocols that ultimately improve outcomes for SCD patients experiencing HS. Full article
(This article belongs to the Special Issue Diagnosis and Prognosis of Hematological Disease)
Show Figures

Figure 1

17 pages, 600 KB  
Review
Reproductive Health in Women with Major β-Thalassemia: Evaluating Ovarian Reserve and Endocrine Complications
by Vasileios Tsilionis, Efthalia Moustakli, Stefanos Dafopoulos, Athanasios Zikopoulos, Sotirios Sotiriou, Athanasios Zachariou and Konstantinos Dafopoulos
Metabolites 2024, 14(12), 717; https://doi.org/10.3390/metabo14120717 - 20 Dec 2024
Cited by 4 | Viewed by 3205
Abstract
Thalassemia is an autosomal recessive hereditary chronic hemolytic anemia characterized by a partial or complete deficiency in the synthesis of alpha- or beta-globin chains, which are essential components of adult hemoglobin. Mutations in the globin genes lead to the production of unstable globin [...] Read more.
Thalassemia is an autosomal recessive hereditary chronic hemolytic anemia characterized by a partial or complete deficiency in the synthesis of alpha- or beta-globin chains, which are essential components of adult hemoglobin. Mutations in the globin genes lead to the production of unstable globin chains that precipitate within cells, causing hemolysis. This shortens the lifespan of mature red blood cells (RBCs) and results in the premature destruction of RBC precursors in the bone marrow. Regular red blood cell transfusions are the standard treatment for thalassemia. However, these transfusions can lead to increased iron overload, which can impair vital systems such as the liver, heart, ovaries, and endocrine system. Focusing on female reproductive endocrinology, recurrent blood transfusions can cause iron accumulation in the pituitary and hypothalamus, leading to hypogonadotropic hypogonadism (HH), the most common endocrinopathy in these patients, affecting 40–91% of women. Recurrent transfusions and the resulting iron overload can also lead to oxidative stress and ovarian damage in patients with beta-thalassemia major (BTM). Despite advancements in iron chelation therapy, hypothalamic–pituitary damage associated with HH contributes to subfertility and sexual dysfunction, often with little to no recovery. In women exposed to gonadotoxic drugs, particularly those with BTM, anti-Mullerian hormone (AMH)—a marker of ovarian reserve—is frequently used to assess ovarian damage. This review aims to explore the pathophysiology of β-thalassemia and its major clinical manifestations, with a focus on endocrine complications and their impact on ovarian reserve. It also investigates how metabolomics can provide insights into the disease’s metabolic alterations and inform current and emerging therapeutic strategies to mitigate complications and optimize patient outcomes, potentially leading to more effective and personalized treatments. Full article
Show Figures

Figure 1

13 pages, 1346 KB  
Review
Beta-Thalassemia and Male Infertility: Unraveling the Oxidative Stress Connection—An Up-to-Date Review
by Christos Roidos, Christos-Alexandros Batakoias, Evangelos N. Symeonidis, Aris Kaltsas, Vasileios Tzikoulis, Georgios Tsampoukas, Chara Tsiampali, Natalia Palapela, Athanasios Zachariou, Nikolaos Sofikitis and Fotios Dimitriadis
Diagnostics 2024, 14(24), 2789; https://doi.org/10.3390/diagnostics14242789 - 12 Dec 2024
Cited by 5 | Viewed by 5119
Abstract
Background/Objectives: Beta-thalassemia (BTH), a genetic disorder resulting from beta-globin gene mutations, affects over 1.5 million people globally. The disorder’s multifactorial impact on male fertility, particularly through oxidative stress (OS), warrants focused study. This review examines the mechanisms of OS in TM, its implications [...] Read more.
Background/Objectives: Beta-thalassemia (BTH), a genetic disorder resulting from beta-globin gene mutations, affects over 1.5 million people globally. The disorder’s multifactorial impact on male fertility, particularly through oxidative stress (OS), warrants focused study. This review examines the mechanisms of OS in TM, its implications for male infertility, and the potential of antioxidant therapies to mitigate fertility challenges. Methods: A non-systematic review was conducted using the PubMed, Cochrane, and Medscape databases, focusing on studies on beta-thalassemia (BTH), erectile dysfunction (ED), hormonal alterations, and OS. Studies were screened based on relevance, language, and topic, with 71 articles meeting the inclusion criteria after removing duplicates. Results: The findings reveal that OS, exacerbated by iron overload from regular blood transfusions, is significantly associated with impaired sperm quality and fertility in patients with TM. Iron toxicity affects gonadotropin levels, reduces sperm quality, and contributes to hypogonadism. Additionally, antioxidant therapies show promise in reducing OS-induced sperm damage, though efficacy is limited by a lack of robust clinical trials. Conclusions: OS plays a considerable role in male infertility among patients with TM, primarily through iron-induced sperm damage and hormonal disruptions. While antioxidant therapies may offer a partial remedy, further research is necessary to understand OS’s mechanisms in TM and develop effective fertility treatments. This review highlights the need for personalized antioxidant approaches to improve reproductive outcomes in this population. Full article
(This article belongs to the Special Issue Advances in the Diagnosis and Management of Male Infertility)
Show Figures

Figure 1

4 pages, 349 KB  
Case Report
Genotype–Phenotype Correlation in a Couple in Which the Wife Is a Carrier of the Beta-Thalassemia Trait and the Husband Is a Carrier of a Mutation in the ALAS2 Gene: Both Gene Defects Are Associated with Non-Iron-Deficiency Microcytic Anemia
by Domenico Dell’Edera, Carmela Centoducati, Arianna Allegretti, Francesco La Rocca and Brunilde Persia
Thalass. Rep. 2024, 14(4), 118-121; https://doi.org/10.3390/thalassrep14040012 - 9 Dec 2024
Cited by 1 | Viewed by 2127
Abstract
Introduction: Generally, microcytic anaemia is caused by sideropenia or a genetic gap. The suspicion that microcytic anaemia is caused by a genetic gap must always be considered in the face of an inadequate response to martial therapy. The aim of this paper is [...] Read more.
Introduction: Generally, microcytic anaemia is caused by sideropenia or a genetic gap. The suspicion that microcytic anaemia is caused by a genetic gap must always be considered in the face of an inadequate response to martial therapy. The aim of this paper is to highlight how biochemical diagnosis alone is sometimes not sufficient to understand the cause of microcytic anaemia. For this reason, for a correct genotype–phenotype correlation, it is essential to identify the defective gene underlying the microcytic anaemia. Detailed Case Description: This case concerns a married couple who both have microcytic anaemia. They came to our attention because the lady, pregnant at 12 weeks, underwent screening for chromosomal abnormalities using combined tests in the first trimester of pregnancy. A biochemical screening performed ten years earlier showed that both spouses were healthy carriers of the beta-thalassemia trait. A careful analysis of the biochemical data and an in-depth molecular diagnosis of the alpha and beta globin genes showed that the woman was a healthy carrier of the beta-thalassemia trait while the husband was a healthy carrier of a mutation in the ALAS2 gene. Analysis of the biochemical data of her husband and family members revealed that she had X-linked microcytic sideroblastic anaemia caused by an alteration in the function of the ALAS2 (5′-Aminolevulinate Synthase 2) gene located on the short arm of the X chromosome (Xp11.21). Discussion and Conclusions: This result is very relevant as, during genetic counselling, we explained to the couple that invasive prenatal diagnosis was not necessary as there is no risk of procreating a transfusion-dependent individual. Full article
(This article belongs to the Section Quality of Life)
Show Figures

Figure 1

22 pages, 2045 KB  
Review
Genetic Modifiers of Hemoglobin Expression from a Clinical Perspective in Hemoglobinopathy Patients with Beta Thalassemia and Sickle Cell Disease
by Michael D. Diamantidis, Georgia Ikonomou, Ioanna Argyrakouli, Despoina Pantelidou and Sophia Delicou
Int. J. Mol. Sci. 2024, 25(22), 11886; https://doi.org/10.3390/ijms252211886 - 5 Nov 2024
Cited by 15 | Viewed by 9314
Abstract
Hemoglobinopathies, namely β-thalassemia and sickle cell disease (SCD), are hereditary diseases, characterized by molecular genetic aberrations in the beta chains of hemoglobin. These defects affect the normal production of hemoglobin with severe anemia due to less or no amount of beta globins in [...] Read more.
Hemoglobinopathies, namely β-thalassemia and sickle cell disease (SCD), are hereditary diseases, characterized by molecular genetic aberrations in the beta chains of hemoglobin. These defects affect the normal production of hemoglobin with severe anemia due to less or no amount of beta globins in patients with β-thalassemia (quantitative disorder), while SCD is a serious disease in which a mutated form of hemoglobin distorts the red blood cells into a crescent shape at low oxygen levels (qualitative disorder). Despite the revolutionary progress in recent years with the approval of gene therapy and gene editing for specific patients, there is an unmet need for highlighting the mechanisms influencing hemoglobin production and for the development of novel drugs and targeted therapies. The identification of the transcription factors and other genetic modifiers of hemoglobin expression is of utmost importance for discovering novel therapeutic approaches for patients with hemoglobinopathies. The aim of this review is to describe these complex molecular mechanisms and pathways affecting hemoglobin expression and to highlight the relevant investigational approaches or pharmaceutical interventions focusing on restoring the hemoglobin normal function by linking the molecular background of the disease with the clinical perspective. All the associated drugs increasing the hemoglobin expression in patients with hemoglobinopathies, along with gene therapy and gene editing, are also discussed. Full article
Show Figures

Figure 1

22 pages, 1049 KB  
Review
Thalassemia: Pathophysiology, Diagnosis, and Advances in Treatment
by Idris Zubairu Sadiq, Fatima Sadiq Abubakar, Hauwa Salisu Usman, Aliyu Dantani Abdullahi, Bashiru Ibrahim, Babangida Sanusi Kastayal, Maryam Ibrahim and Hassan Aliyu Hassan
Thalass. Rep. 2024, 14(4), 81-102; https://doi.org/10.3390/thalassrep14040010 - 15 Oct 2024
Cited by 50 | Viewed by 116384
Abstract
Thalassemia represents a diverse group of inherited hematological disorders characterized by defective globin chain synthesis, leading to chronic anemia and associated complications. The complicated pathophysiology of beta-thalassemia involves genetic mutations or rarely deletions of the beta-globin gene on chromosome 11 whereas alpha-thalassemia involves [...] Read more.
Thalassemia represents a diverse group of inherited hematological disorders characterized by defective globin chain synthesis, leading to chronic anemia and associated complications. The complicated pathophysiology of beta-thalassemia involves genetic mutations or rarely deletions of the beta-globin gene on chromosome 11 whereas alpha-thalassemia involves deletions in the HBA1 and HBA2 genes or occasionally alterations to the DNA sequence in or around these genes. These mutation and deletion effects disrupt the balance of α/β-globin chain production, resulting in ineffective erythropoiesis, hemolysis, and a cascade of clinical manifestations including anemia, bone deformities, and iron overload. Advances in diagnostic techniques have enhanced our ability to detect and characterize these mutations, facilitating early and accurate diagnoses. Current management strategies encompass regular blood transfusions, the use of hydroxyurea to improve hemoglobin levels, and iron chelation therapy to prevent iron-related organ damage. Moreover, other therapeutics such as thalidomide for those not responding to hydroxyurea, Sirolimus for patients with immunodeficiencies, and use of vitamin E as an antioxidant have proven to be effective. Innovative therapies such as gene therapy and bone marrow transplantation offer promising curative potential, opening a new era in the treatment of thalassemia. This review focuses on pathophysiological mechanisms underlying thalassemia, explores the diagnostic methodologies, and highlights recent advancements in therapeutic approaches. Full article
Show Figures

Figure 1

8 pages, 1487 KB  
Case Report
Concomitant Presence of Hb Agrinio and - -Med Deletion in a Greek Male Patient with Hemoglobinopathy H: More Severe Phenotype and Literature Review
by Michael D. Diamantidis, Stefania Pitsava, Omar Zayed, Ioanna Argyrakouli, Konstantinos Karapiperis, Christos Chatzoulis, Evangelos Alexiou, Achilles Manafas, Evangelos Tsangalas and Konstantinos Karakoussis
Hematol. Rep. 2023, 15(3), 483-490; https://doi.org/10.3390/hematolrep15030050 - 8 Aug 2023
Cited by 2 | Viewed by 2529
Abstract
Hemoglobin (Hb) Agrinio is a rare non-deletional a-globin mutation observed almost exclusively in Greek, Spanish or other Mediterranean families. The clinical manifestations of a carrier of a single Hb Agrinio mutation (single heterozygosity) depend on the concomitant presence or absence of other mutations [...] Read more.
Hemoglobin (Hb) Agrinio is a rare non-deletional a-globin mutation observed almost exclusively in Greek, Spanish or other Mediterranean families. The clinical manifestations of a carrier of a single Hb Agrinio mutation (single heterozygosity) depend on the concomitant presence or absence of other mutations or variants in the beta, alpha or other modifying genes. We present a Greek patient harboring a Hb Agrinio variant plus the - -Med alpha deletional allele, having an infrequent severe form of alpha thalassemia, in contrast to the typical alpha thalassemic patient and requiring regular red blood cell (RBC) transfusions and chelation treatment. We also provide a concise literature review regarding alpha thalassemic hemoglobin variants and their molecular and clinical combinations. A phase 2, double-blind, randomized, placebo-controlled, multicenter clinical trial to determine the efficacy and safety of luspatercept (BMS-986346/ACE-536) for the treatment of anemia in adults with alpha thalassemia with the participation of our center is currently recruiting patients (NCT05664737). Full article
Show Figures

Figure 1

Back to TopTop