CD4 T-cell reconstitution and CD4:CD8 inversion following lymphodepleting chemotherapy for tumor-infiltrating lymphocyte therapy in metastatic melanoma.

A Arkadiusz Z. Dudek (Mayo Clinic Rochester, Rochester, MN) M Mohamed A. Aboelatta (Mayo Clinic Rochester, Rochester, MN) J Jabra Zarka (Department of Oncology, Division of Medical Oncology, Mayo Clinic Rochester, Rochester, MN) K Kimberly Ward (Duke Clinical Research Institute, Mount Airy, North Carolina, United States) J Jeffrey Johnson R Ruqin Chen (Division of Hematology and Oncology, Mayo Clinic Florida, Jacksonville, FL) J James W. Jakub (Mayo Clinic Florida, Jacksonville, FL) M Mahesh Seetharam (Division of Oncology, Mayo Clinic Arizona, Phoenix, AZ) N Namrata Shetty (Mass General Cancer Center, Boston, MA) J Jamie Chau (Moffitt Cancer Center, Tmapa, FL) D Denise Kalos (H. Lee Moffitt Cancer Center and Research Institute, Tampa, FL) D Donald P. Lawrence (Department of Medicine, Massachusetts General Hospital, Boston) S Sonia Cohen G Genevieve Marie Boland (Massachusetts General Hospital, Boston, MA) M Matthew J. Frigault (3Massachusetts General Hospital, Boston, MA) B Barbara T. Ma (NewYork-Presbyterian Hospital/Weill Cornell Medicine, New York, NY) N Nikhil I. Khushalani A Amod Sarnaik (H. Lee Moffitt Cancer Center and Research Institute, Tampa, FL) A Alexandra Haugh (Massachusetts General Hospital Cancer Center, Boston, MA) L Lilit Karapetyan (1Moffitt Cancer Center, Tampa, United States)

Abstract

9551 Background: Lymphodepleting (LD) chemotherapy is required prior to tumor-infiltrating lymphocyte (TIL) therapy, yet the depth, kinetics, and completeness of peripheral T-cell recovery in practice remain poorly defined. Using a pooled, multi-institution cohort, we characterized longitudinal CD4 and CD8 T-cell reconstitution and the prevalence of CD4 lymphopenia following TIL therapy. Methods: We conducted a retrospective multicenter study across Mayo Clinic, Moffitt Cancer Center, and Massachusetts General Hospital of patients with metastatic melanoma treated with TIL (N = 41, median follow-up 7.6 months). Absolute CD4 and CD8 T-cell counts and CD4:CD8 ratios were assessed at baseline (pre-LD), week 4, month 3, and month 6 post-TIL. Clinically significant CD4 lymphopenia was defined as CD4 < 200 cells/µL. All patients received Pneumocystis jirovecii and antiviral prophylaxis, with antibacterial and antifungal prophylaxis administered per institutional protocols. Post-TIL infections were recorded. Paired changes from baseline were evaluated using Wilcoxon signed-rank testing. Results: Median age was 65 years (range 35-79), and 68% were male. At baseline, 16 patients (39%) had CD4 counts below the institutional lower limit of normal prior to LD. Eighteen patients (44%) received bridging therapy prior to TIL and had lower baseline CD4 and CD8 counts compared with those who did not ( p < 0.05 for both); however, post-TIL CD4 and CD8 recovery trajectories did not differ between groups. CD4 counts declined sharply following LD and demonstrated incomplete and heterogeneous recovery. Median CD4 decreased from 490 cells/µL at baseline to 250 at week 4, 290 at month 3, and 220 at month 6, remaining significantly below baseline at all post-TIL timepoints ( p < 0.05). Clinically significant CD4 lymphopenia was observed in 45% (10/22) of evaluable patients at month 3 and in 50% (44%, 7/16) at month 6. In contrast, CD8 counts increased early after TIL (median 240 to 590 cells/µL at week 4; p = 0.004) and remained higher than baseline at month 6. The CD4:CD8 ratio inverted from a median of 2.02 at baseline to 0.46 at week 4 and remained below 1.0 through month 6, reflecting sustained CD4 suppression despite CD8 recovery. Post-TIL infections occurred despite widespread prophylaxis, including bacterial (13%), viral (10%), and fungal (4.9%) infections. Conclusions: In a multi-institution cohort, LD chemotherapy preceding TIL is associated with profound and prolonged CD4 T-cell suppression, persistent CD4:CD8 inversion, and a high prevalence of CD4 < 200 cells/µL through 6 months. These findings identify delayed immune reconstitution as a common and clinically relevant consequence of TIL therapy and support prospective optimization of antimicrobial prophylaxis duration, vaccination timing, and immune monitoring strategies.

Article Details

Volume / Issue Vol. 44, Issue 16_suppl
Published June 01, 2026
Pages 9551-9551
ISSN 0732-183X
Publisher Lippincott Williams & Wilkins

Journal Info

Journal of Clinical Oncology

Lippincott Williams & Wilkins

ISSN: 0732-183X Health Sciences

Authors (20)

A

Arkadiusz Z. Dudek

Mayo Clinic Rochester, Rochester, MN

M

Mohamed A. Aboelatta

Mayo Clinic Rochester, Rochester, MN

J

Jabra Zarka

Department of Oncology, Division of Medical Oncology, Mayo Clinic Rochester, Rochester, MN

K

Kimberly Ward

Duke Clinical Research Institute, Mount Airy, North Carolina, United States

J

Jeffrey Johnson

R

Ruqin Chen

Division of Hematology and Oncology, Mayo Clinic Florida, Jacksonville, FL

J

James W. Jakub

Mayo Clinic Florida, Jacksonville, FL

M

Mahesh Seetharam

Division of Oncology, Mayo Clinic Arizona, Phoenix, AZ

N

Namrata Shetty

Mass General Cancer Center, Boston, MA

J

Jamie Chau

Moffitt Cancer Center, Tmapa, FL

D

Denise Kalos

H. Lee Moffitt Cancer Center and Research Institute, Tampa, FL

D

Donald P. Lawrence

Department of Medicine, Massachusetts General Hospital, Boston

S

Sonia Cohen

G

Genevieve Marie Boland

Massachusetts General Hospital, Boston, MA

M

Matthew J. Frigault

3Massachusetts General Hospital, Boston, MA

B

Barbara T. Ma

NewYork-Presbyterian Hospital/Weill Cornell Medicine, New York, NY

N

Nikhil I. Khushalani

A

Amod Sarnaik

H. Lee Moffitt Cancer Center and Research Institute, Tampa, FL

A

Alexandra Haugh

Massachusetts General Hospital Cancer Center, Boston, MA

L

Lilit Karapetyan

1Moffitt Cancer Center, Tampa, United States