Hemoglobinopathies and Related Disorders Peer reviewed

A Decade‑Long Genetic Epidemiological Profile of Thalassemia in the Childbearing‑Age Population of Huizhou, a Major Hakka Center in Guangdong, China

Hailin He, Zhi-Yang Guan, Zeyan Zhong, Zhong Guo-xing and 6 more

Hemoglobin | Aug 24, 2026

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A pragmatic two‑tiered prevention strategy is proposed: primary high‑throughput screening focused on five core genotypes, followed by mandatory reflex comprehensive genotyping for high‑risk subgroups and a dedicated diagnostic pathway for complex cases, tailored to enhance diagnostic accuracy and reduce severe thalassemia incidence in this region.

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This retrospective study established the first comprehensive genetic epidemiological profile of thalassemia in the childbearing‑age population (n = 343,580) of Huizhou, a major Hakka center in Guangdong, China, over a decade (2015–2024). The overall carrier rate was 12.23%, comprising 8.04% α‑thalassemia, 3.58% β‑thalassemia, and 0.60% concurrent α‑ and β‑thalassemia. The α‑thalassemia spectrum was dominated by the --SEA deletion (71.11%), while the β‑thalassemia profile featured a distinctive local signature with significantly elevated frequencies of β‑28 (A > G), βCD41‑42, and βIVS‑II‑654. HbH disease was identified in 698 individuals (0.20%), with genotypes --SEA/-α3.7 (428), --SEA/-α4.2 (146), --SEA/αWSα (98), and --SEA/αCSα (26). Rare variants included SEA‑HPFH (162, 0.047%) and Chinese Gγ+(Aγδβ) 0 δβ‑thalassemia (145, 0.042%); co‑inheritance with β‑thalassemia occurred in 2.47% of SEA‑HPFH carriers and 1.38% of δβ‑thalassemia carriers. Hematological characterization across common genotypes revealed a clear severity gradient: --SEA/αα carriers exhibited the most marked microcytic hypochromia, while αWSα/αα and βCD26/βN (HbE) carriers showed the mildest phenotypes, highlighting inter‑genotypic heterogeneity with direct implications for genetic counseling. Geographic analysis revealed widespread core genotypes alongside spatially clustered rare alleles. Based on these integrated molecular and hematological findings, we propose a pragmatic two‑tiered prevention strategy: primary high‑throughput screening focused on five core genotypes, followed by mandatory reflex comprehensive genotyping for high‑risk subgroups and a dedicated diagnostic pathway for complex cases, tailored to enhance diagnostic accuracy and reduce severe thalassemia incidence in this region.

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Hailin He

first | Maternal and Child Health Hospital of Xuzhou

Zhi-Yang Guan

middle | Maternal and Child Health Hospital of Xuzhou

Zeyan Zhong

middle | Maternal and Child Health Hospital of Xuzhou

Zhong Guo-xing

middle | Maternal and Child Health Hospital of Xuzhou

Kun-xiang Yang

middle | Maternal and Child Health Hospital of Xuzhou

Di-Na Chen

middle | Maternal and Child Health Hospital of Xuzhou

Zhiyong Wu

middle | Maternal and Child Health Hospital of Xuzhou

Zhi-Bang Xu

middle | Maternal and Child Health Hospital of Xuzhou

Jianhong Chen

middle | Maternal and Child Health Hospital of Xuzhou | ORCID 0000-0002-9501-5031

Yan-Hui Liu

last | Shenzhen Luohu People's Hospital

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BibTeX

@article{He2026Decade,
  title = {A Decade‑Long Genetic Epidemiological Profile of Thalassemia in the Childbearing‑Age Population of Huizhou, a Major Hakka Center in Guangdong, China},
  author = {Hailin He and Zhi-Yang Guan and Zeyan Zhong and Zhong Guo-xing and Kun-xiang Yang and Di-Na Chen and Zhiyong Wu and Zhi-Bang Xu and Jianhong Chen and Yan-Hui Liu},
  journal = {Hemoglobin},
  year = {2026},
  doi = {10.1080/03630269.2026.2718408},
  url = {https://doi.org/10.1080/03630269.2026.2718408}
}

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