Real-world clinical outcomes with novel agent combination therapies for the frontline treatment of pediatric and adult advanced-stage Hodgkin lymphoma

K Karan Chohan (2Department of Lymphoma and Myeloma, The University of Texas MD Anderson Cancer Center, Houston, United States) L Lei Feng H Hunter Cochran (2Siteman Cancer Center, Washington University School of Medicine, St Louis, United States) M Maya Rosenberg (3Perlmutter Cancer Center, New York University Langone Health, New York City, United States) L Leidy Isenalumhe (1H. Lee Moffitt Cancer and Research Institute, Tampa, United States) E Elif Yilmaz (1University of Texas Southwestern Medical Center, Internal Medicine, Dallas, United States) S Seo-Hyun Kim Y Yun Kyoung Tiger (6Rutgers Cancer Institute of New Jersey, New Brunswick, United States) P Pallawi Torka (1memorial Sloan Kettering, NYC, United States) H Hayley Flanagan (9University of Rochester Medical Center, Rochester, United States) S Sharon Castellino (6Children's Healthcare of Atlanta, Atlanta, United States) J Jonathan Bender (11Cincinnati Children's Hospital Medical Center, Cincinnati, United States) R Radhamani Kannaiyan (12University of Texas Health Science Center at San Antonio, San Antonio, United States) J Justin Kahla (University of Chicago, Chicago, Illinois, United States) B B. Paige DePriest (14Duke University, Durham, United States) H Hiba Narvel (7Medical College of Wisconsin, Milwaukee, United States) S Samanta Catueno (1Division of Pediatrics, The University of Texas MD Anderson Cancer Center, Houston, TX) K Katherine Tobon (2Moffitt Cancer Center, Tampa, United States) J Julia Fadul (1H. Lee Moffitt Cancer Center, Hematology and Oncology, Tampa, United States) P Patricia Faulkenberry (5Harold C. Simmons Comprehensive Cancer Center, University of Texas Southwestern Medical Center, Dallas, United States) A Amy Ayers (Department of Hematology and Medical Oncology, Winship Cancer Institute, Emory University School of Medicine) S Sunita Nathan (1Rush MD Anderson Cancer Center, Rush University Medical Center, Chicago, United States) S Salmaan Mubeen (4Rutgers Cancer Institute of New jersey, Division of Blood Disorders, Section of Hematologic Malignancies, New Brunswick, United States) E Efrat Luttwak (1memorial Sloan Kettering, NYC, United States) J Jamie Flerlage R Robin Norris (9Cincinnati Children's Hospital Medical Center, Cincinnati, United States) S Supreet Kaur (University of California, Berkeley and National Bureau of Economic Research ,) O Olivia Tran (1MD Anderson Cancer Center, Houston, United States) C Chalothorn Wannaphut (1MD Anderson Cancer Center, Houston, United States) A Ashleigh Hawk (1Emory University, Pediatrics, Division of Hematology, Oncology, and Bone Marrow Transplant, Atlanta, United States) M Miriam Garcia (1University of Texas MD Anderson Cancer Center, Pediatrics, Houston, United States) B Branko Cuglievan P Peter Riedell (3University of Chicago, Chicago, United States) K Kris Mahadeo (20Division of Transplant and Cellular Therapy, Duke University School of Medicine, Durham, United States) M Mehdi Hamadani (12Blood and Marrow Transplant and Cellular Therapy Program, Medical College of Wisconsin, Milwaukee, WI) C Catherine Diefenbach (4Perlmutter Cancer Center at NYU Langone Health, New York, United States) N Nancy Bartlett (14Department of Hematology and Oncology, Washington University School of Medicine Siteman Cancer Center Hematology Labs, St. Louis, MO) S Sairah Ahmed (2Department of Lymphoma/Myeloma, MD Anderson Cancer Center, Houston, TX)

Abstract

Abstract Introduction: Brentuximab vedotin (BV) and nivolumab (N) have resulted in significant progress in the treatment of advanced-stage Hodgkin lymphoma (AS-HL). The SWOG 1826 trial demonstrated a progression-free survival (PFS) and safety benefit with frontline N-AVD (doxorubicin, vinblastine, and dacarbazine) compared to BV-AVD; however, real-world data are limited. This study evaluates the efficacy, toxicity and feasibility of these regimens outside of the clinical trial setting. Methods: This multicenter retrospective study evaluates pediatric (age 12-17) and adult patients (pts)(age ≥18 years(yrs)) treated with BV-AVD or N-AVD in the real-world setting for AS-HL. Fifteen institutions contributed data, and Lugano criteria were utilized to assess response. Adverse events (AEs) graded according to CTCAE 5.0 criteria. Survival outcomes evaluated relative to treatment start date. Results: Between 9/2011 - 2/2025, 556 pts received BV-AVD (433 pts - 78%) or N-AVD (123 pts – 22%). Median age 32 yrs (range, 12-90), 41.7% (n=232) of pts were female, 5.4% (n=26) ECOG ≥2, 6.8% (n=38) were pediatric, and 16.5% (n=92) were older adults (age >60 yrs). Baseline characteristics, including age, sex, ECOG, stage, comorbidities, laboratories and disease characteristics (B symptoms, bulky disease, extranodal disease, stage) were comparable between N-AVD and BV-AVD (all p>0.05). Evaluating treatment delivery, 8% (n=34) of BV-AVD pts and 6% (n=7) of N-AVD pts were unable to complete the intended 6 cycles of therapy (p=0.56). Growth factor support was administered in 92.1% (n=386) receiving BV-AVD compared to 49.6% (n=60; primary prophylaxis: 32 pts, asymptomatic neutropenia: 17, neutropenic fever/infection: 5, other/unknown: 6) receiving N-AVD (p<0.0001). N-AVD was associated with higher rates of neutropenia (any grade (gr): 77.9% vs 48.9%, p<0.0001; gr ≥3: 57.4% vs 37.8%, p=0.0002) and any gr infections (34.2% vs 19.8%, p=0.001) compared to BV-AVD; however, gr≥3 infections (11.7% vs 8.6%, p=0.29) or febrile neutropenia (14.9% vs 13.8%, p=0.77) did not differ between N-AVD to BV-AVD. Dose delays were not significantly different (BV-AVD: 27.6% vs N-AVD: 26.4%, p=0.91), but dose reductions/omissions were more common in BV-AVD group (37.8% vs 13.3%, p<0.0001) compared to N-AVD. In pts treated with N-AVD, immune-related AEs of any gr occurred in 24.2% (n=29), with gr≥3 events in 8.3% (n=10). With BV-AVD, a higher incidence of cardiovascular toxicities (thrombosis, cardiac structural or arrythmia events - any gr: 13.6% vs 2.9%, p=0.01; gr≥3: 9.1% vs 0%, p=0.005) and neuropathy (any gr: 58.9% vs 21.5%, p<0.0001; gr≥3 11.6% vs 0%, p<0.0001) were found compared to N-AVD. Response rates were similar between BV-AVD and N-AVD: overall response rate 92% vs 97% (p=0.20), complete response rate 86% vs 90% (p=0.35). Progressive disease at end-of-therapy: 7.0% (BV-AVD) vs 2.6% (N-AVD). One-yr PFS in pts treated with N-AVD and BV-AVD was 91% (95% CI, 84-98%) and 88% (95% CI, 85-91%), respectively. No death events were observed in N-AVD group (1-yr OS: 100%), 24 deaths in BV-AVD group [1-yr OS: 98% (95% CI, 96-99)] secondary to: infection/sepsis - 10 pts, secondary malignancy - 3, HL - 2, cardiogenic shock - 1, unknown - 8. At current data cutoff, follow-up for N-AVD pts was short (median: 9.8 months vs 30.0 months) compared to BV-AVD, limiting direct survival comparisons. To balance follow-up, additional analyses were conducted on pts treated between 2022-2025 (n=339). No differences in PFS/OS were observed in pediatric pts or older adults (p>0.05); however, improved PFS was seen with N-AVD (1-yr PFS: 96 vs 87% p=0.04) compared to BV-AVD in adult patients (n=253; 18-60 yrs). Conclusions: This large real-world multicenter study demonstrates that response rates and 1-yr survival outcomes with N-AVD and BV-AVD are similar to the published SWOG 1826 trial (N-AVD vs BV-AVD: 1-yr PFS: 94% vs 86%, Herrera et al. 2024). Increased cardiovascular AEs, dose reductions/omissions and neuropathy with BV-AVD indicate better tolerability with N-AVD; however, the higher rate of febrile neutropenia and infections in comparison to SWOG 1826 in N-AVD pts suggests that growth factor prophylaxis may be beneficial in select high-risk subgroups. Longer-term follow-up data will be available at time of presentation, but even with short follow-up, pts (age 18-60) demonstrated a significant PFS benefit with N-AVD, supporting the change to N-AVD as the standard for AS-HL.

Article Details

Journal Blood
Volume / Issue Vol. 146, Issue Supplement 1
Published November 03, 2025
Pages 1852-1852
ISSN 0006-4971
Publisher Elsevier BV

Journal Info

Blood

Elsevier BV

ISSN: 0006-4971 Health Sciences

Authors (38)

K

Karan Chohan

2Department of Lymphoma and Myeloma, The University of Texas MD Anderson Cancer Center, Houston, United States

L

Lei Feng

H

Hunter Cochran

2Siteman Cancer Center, Washington University School of Medicine, St Louis, United States

M

Maya Rosenberg

3Perlmutter Cancer Center, New York University Langone Health, New York City, United States

L

Leidy Isenalumhe

1H. Lee Moffitt Cancer and Research Institute, Tampa, United States

E

Elif Yilmaz

1University of Texas Southwestern Medical Center, Internal Medicine, Dallas, United States

S

Seo-Hyun Kim

Y

Yun Kyoung Tiger

6Rutgers Cancer Institute of New Jersey, New Brunswick, United States

P

Pallawi Torka

1memorial Sloan Kettering, NYC, United States

H

Hayley Flanagan

9University of Rochester Medical Center, Rochester, United States

S

Sharon Castellino

6Children's Healthcare of Atlanta, Atlanta, United States

J

Jonathan Bender

11Cincinnati Children's Hospital Medical Center, Cincinnati, United States

R

Radhamani Kannaiyan

12University of Texas Health Science Center at San Antonio, San Antonio, United States

J

Justin Kahla

University of Chicago, Chicago, Illinois, United States

B

B. Paige DePriest

14Duke University, Durham, United States

H

Hiba Narvel

7Medical College of Wisconsin, Milwaukee, United States

S

Samanta Catueno

1Division of Pediatrics, The University of Texas MD Anderson Cancer Center, Houston, TX

K

Katherine Tobon

2Moffitt Cancer Center, Tampa, United States

J

Julia Fadul

1H. Lee Moffitt Cancer Center, Hematology and Oncology, Tampa, United States

P

Patricia Faulkenberry

5Harold C. Simmons Comprehensive Cancer Center, University of Texas Southwestern Medical Center, Dallas, United States

A

Amy Ayers

Department of Hematology and Medical Oncology, Winship Cancer Institute, Emory University School of Medicine

S

Sunita Nathan

1Rush MD Anderson Cancer Center, Rush University Medical Center, Chicago, United States

S

Salmaan Mubeen

4Rutgers Cancer Institute of New jersey, Division of Blood Disorders, Section of Hematologic Malignancies, New Brunswick, United States

E

Efrat Luttwak

1memorial Sloan Kettering, NYC, United States

J

Jamie Flerlage

R

Robin Norris

9Cincinnati Children's Hospital Medical Center, Cincinnati, United States

S

Supreet Kaur

University of California, Berkeley and National Bureau of Economic Research ,

O

Olivia Tran

1MD Anderson Cancer Center, Houston, United States

C

Chalothorn Wannaphut

1MD Anderson Cancer Center, Houston, United States

A

Ashleigh Hawk

1Emory University, Pediatrics, Division of Hematology, Oncology, and Bone Marrow Transplant, Atlanta, United States

M

Miriam Garcia

1University of Texas MD Anderson Cancer Center, Pediatrics, Houston, United States

B

Branko Cuglievan

P

Peter Riedell

3University of Chicago, Chicago, United States

K

Kris Mahadeo

20Division of Transplant and Cellular Therapy, Duke University School of Medicine, Durham, United States

M

Mehdi Hamadani

12Blood and Marrow Transplant and Cellular Therapy Program, Medical College of Wisconsin, Milwaukee, WI

C

Catherine Diefenbach

4Perlmutter Cancer Center at NYU Langone Health, New York, United States

N

Nancy Bartlett

14Department of Hematology and Oncology, Washington University School of Medicine Siteman Cancer Center Hematology Labs, St. Louis, MO

S

Sairah Ahmed

2Department of Lymphoma/Myeloma, MD Anderson Cancer Center, Houston, TX