Clinical features and outcomes of adult T-cell leukemia/lymphoma across world regions: An international retrospective cohort study

B Bryan Valcarcel H Haruhiko Sano (2Saga University, Saga, Japan) A Atae Utsunomiya (3Imamura General Hospital, Kagoshima, Japan) M Maki Otsuka M Masaharu Miyahara (5Karatsu Red Cross Hospital, Karatsu, Japan) Y Yasushi Takamatsu (6Fukuoka University, Fukuoka, Japan) K Kenji Ishitsuka S Shinya Kimura J Junji Suzumiya (12Koga Community Hospital, Hematology, Yaizu, Japan) K Kazuo Tamura (6Fukuoka University, Fukuoka, Japan) D Daniel Enriquez (7Universidad Privada San Juan Bautista, Hematology Oncology, Lima, Peru) J Jule Vasquez (11Instituto Nacional de Enfermedades Neoplasicas, Lima, Peru) B Brady Beltran (6Hospital Edgardo Rebagliati, Lima, Peru) D Denisse Castro (6Hospital Edgardo Rebagliati, Lima, Peru) T Thanya Runciman (13Hospital Nacional Guillermo Almenara Irigoyen, Departamento de Oncología y Radioterapia, Lima, Peru) H Henry Quintero (12Universidad Tecnológica de Pereira, Pereira, Colombia) E Elizabeth Arrieta (15Fundación Valle del Lili, Cali, Colombia) O Oriana Arias (15Fundación Valle del Lili, Cali, Colombia) E Eduardo Gotuzzo G Gabriela Garrido (16Universidad Peruana Cayetano Heredia, Instituto de Medicina Tropical Alexander von Humboldt, Lima, Peru) M Macarena Roa (13Hospital del Salvador, Santiago, Chile) N Nancy Fiad (4Hospital Italiano de La Plata, La Plata, Argentina) A Abat Khan (1memorial healthcare system, pembroke pines, United States) J Jose Sandoval-Sus (16Moffitt Malignant Hematology at Memorial Healthcare System, Pembroke Pines, FL) R R. Alejandro Sica (2Montefiore Medical Center, Albert Einstein College of Medicine, Bronx, United States) H Hilda Ye (22Albert Einstein College of Medicine, Department of Cell Biology, New York, United States) M Murali Janakiram (10City of Hope, Duarte, United States) A Ankit Tanwar (2Albert Einstein College of Medicine, Bronx, United States) E Emma Cordover (2Montefiore Medical Center, Albert Einstein College of Medicine, Bronx, United States) L Lamisha Shah (21Montefiore Medical Center, Department of Oncology, New York, United States) F Fatima Tuz Zahra (1H. Lee Moffitt Cancer Center, Tampa, United States) Y Yumeng Zhang (Massachusetts Institute of Technology , , , ,) B Britney Bell (1Boston University Chobanian & Avedisian School of Medicine, Boston, United States) L Lucy Cook (27Imperial College Healthcare NHS Trust, Hammersmith Hospital, Department of Haematology, London, United Kingdom) E Eliana Miranda (28University of Campinas, Sao Paulo, Brazil) H Hiroo Katsuya (2Saga University, Saga, Japan) J Juan Carlos Ramos (1University of Miami, Medicine, Miami, United States) C Carlos Chiattone (4Department of Medicine, Santa Casa Medicine School, Sao Paulo, Brazil) L Luis Malpica

Abstract

Abstract Background: Adult T-cell leukemia/lymphoma (ATL) has a dismal prognosis and disproportionately affects regions endemic in Human T-lymphotropic virus-1 (HTLV-1) infection. While treatment approaches vary globally due to differences in drug approvals and resource availability, the impact of these variations on outcomes remains poorly understood, and no direct multinational comparisons have been performed. We compared clinical features and overall survival (OS) across Japan, South America, the United States (US), and the United Kingdom (UK). Methods: We conducted a cohort study using hospital-based data from the Brazilian T-cell project (2015-2022 period), Grupo de Estudio Latinoamericano de Linfoproliferativos registry (GELL, 2000-2023 period), Japanese cohort (2000-2008 period), US centers (2000-2023 period), and UK center (2003-2023 period). We included adult patients (≥18 years) with ATL and pathologically diagnosed with a T-cell lymphoma and/or leukemia as well as those with a positive serum test for HTLV-1. All patients were enrolled consecutively, except in the UK, where only those who consented to data transfer were included. The study endpoints were the distribution of ATL subtypes and OS (defined from diagnosis to death from any cause) across world regions. A multivariable Poisson model was used to compare the distribution of ATL subtypes across regions (Japan as the reference), adjusting for age. The lowest median follow-up (reverse Kaplan-Meier method) from these regions was used to estimate OS. We used the Kaplan-Meier method and the Log-rank test. Results: A total of 1173 patients had available data for clinical description analysis (366 from Japan, 365 from South America, 354 from the US, and 88 from the UK). The median age at diagnosis was the highest in Japan (66 years vs. 52-57 years across all regions; P<0.001). Acute ATL was significantly more frequent in Japan (n=215; 59%, 95% confidence interval [CI]=54-64%) compared to the US (n=123; 45%, 95% CI=39-51%; P=0.016), South America (n=132; 36%, 95% CI=31-42%; P<0.0001), and the UK (n=20; 24%, 95% CI=14-35%; P<0.0001). In contrast, lymphomatous ATL was more frequently diagnosed in the UK (n=45; 53%, 95% CI=44-65%; P<0.0001), South America (n=186; 51%, 95% CI=46-57%; P<0.0001), and the US (n=125; 45%, 95% CI=39-52%; P<0.0001) compared to Japan (n=72; 20%, 95% CI=15-25%). The distribution of chronic (8-16%) and smoldering (2-8%) ATL was similar across regions, and sample sizes for these subtypes were <50 in most regions. Among 955 patients with available treatment and survival data, we observed distinct patterns. In acute ATL (n=418), chemotherapy alone was frequently used in Japan (97%), whereas chemotherapy was often combined with antiviral therapy plus interferon alpha (AI) in other regions (47-78%) (P<0.0001). For lymphomatous ATL (n=383), chemotherapy alone was favored in Japan (98%), the US (84%), and South America (61%), while chemotherapy with AI was more frequent in the UK (58%) (P<0.0001). Upfront hematopoietic cell transplantation use was the lowest in South America (1% vs. 11-15%; P=0.002) in acute ATL, while it was more frequently used for lymphomatous ATL in the UK (38% vs. 4-8%; P<0.001). For chronic ATL (n=107), AI alone was rarely used in Japan (4% vs. 21-64%; P<0.0001); and for smoldering ATL (n=47), a watchful waiting approach was used across all regions (25-61%; P=0.051). The median follow-up was 37 months (95% CI=30-46 months). The 3-year OS rates across regions were statistically similar and ranged 11-25% (P=0.050) for acute ATL, 15-34% (P=0.074) for lymphomatous ATL, and 60-83% (P=0.787) for smoldering ATL. Only the US (79%) and the UK (86%) had significantly higher 3-year OS rates compared to Japan (41%) and South America (49%) for chronic ATL (P=0.004). In sensitivity analysis, age-adjusted survival curves were consistent with the main findings. Conclusion: Despite regional variations in treatment approaches, OS remains poor for aggressive subtypes, underscoring the need to understand ATL biology and develop novel therapies through global collaboration. The distinct distribution of ATL subtypes, though requiring validation in population-based studies, could guide the design of international clinical studies by optimizing patient accrual for this rare disease.

Article Details

Journal Blood
Volume / Issue Vol. 146, Issue Supplement 1
Published November 03, 2025
Pages 3636-3636
ISSN 0006-4971
Publisher Elsevier BV

Journal Info

Blood

Elsevier BV

ISSN: 0006-4971 Health Sciences

Authors (39)

B

Bryan Valcarcel

H

Haruhiko Sano

2Saga University, Saga, Japan

A

Atae Utsunomiya

3Imamura General Hospital, Kagoshima, Japan

M

Maki Otsuka

M

Masaharu Miyahara

5Karatsu Red Cross Hospital, Karatsu, Japan

Y

Yasushi Takamatsu

6Fukuoka University, Fukuoka, Japan

K

Kenji Ishitsuka

S

Shinya Kimura

J

Junji Suzumiya

12Koga Community Hospital, Hematology, Yaizu, Japan

K

Kazuo Tamura

6Fukuoka University, Fukuoka, Japan

D

Daniel Enriquez

7Universidad Privada San Juan Bautista, Hematology Oncology, Lima, Peru

J

Jule Vasquez

11Instituto Nacional de Enfermedades Neoplasicas, Lima, Peru

B

Brady Beltran

6Hospital Edgardo Rebagliati, Lima, Peru

D

Denisse Castro

6Hospital Edgardo Rebagliati, Lima, Peru

T

Thanya Runciman

13Hospital Nacional Guillermo Almenara Irigoyen, Departamento de Oncología y Radioterapia, Lima, Peru

H

Henry Quintero

12Universidad Tecnológica de Pereira, Pereira, Colombia

E

Elizabeth Arrieta

15Fundación Valle del Lili, Cali, Colombia

O

Oriana Arias

15Fundación Valle del Lili, Cali, Colombia

E

Eduardo Gotuzzo

G

Gabriela Garrido

16Universidad Peruana Cayetano Heredia, Instituto de Medicina Tropical Alexander von Humboldt, Lima, Peru

M

Macarena Roa

13Hospital del Salvador, Santiago, Chile

N

Nancy Fiad

4Hospital Italiano de La Plata, La Plata, Argentina

A

Abat Khan

1memorial healthcare system, pembroke pines, United States

J

Jose Sandoval-Sus

16Moffitt Malignant Hematology at Memorial Healthcare System, Pembroke Pines, FL

R

R. Alejandro Sica

2Montefiore Medical Center, Albert Einstein College of Medicine, Bronx, United States

H

Hilda Ye

22Albert Einstein College of Medicine, Department of Cell Biology, New York, United States

M

Murali Janakiram

10City of Hope, Duarte, United States

A

Ankit Tanwar

2Albert Einstein College of Medicine, Bronx, United States

E

Emma Cordover

2Montefiore Medical Center, Albert Einstein College of Medicine, Bronx, United States

L

Lamisha Shah

21Montefiore Medical Center, Department of Oncology, New York, United States

F

Fatima Tuz Zahra

1H. Lee Moffitt Cancer Center, Tampa, United States

Y

Yumeng Zhang

Massachusetts Institute of Technology , , , ,

B

Britney Bell

1Boston University Chobanian & Avedisian School of Medicine, Boston, United States

L

Lucy Cook

27Imperial College Healthcare NHS Trust, Hammersmith Hospital, Department of Haematology, London, United Kingdom

E

Eliana Miranda

28University of Campinas, Sao Paulo, Brazil

H

Hiroo Katsuya

2Saga University, Saga, Japan

J

Juan Carlos Ramos

1University of Miami, Medicine, Miami, United States

C

Carlos Chiattone

4Department of Medicine, Santa Casa Medicine School, Sao Paulo, Brazil

L

Luis Malpica