PD-1 Blockade in Tumors with Mismatch-Repair Deficiency

Dung T Le1, Jennifer N Uram, Hao Wang

  • 1From the Swim Across America Laboratory (D.T.L., J.N.U., B.R.B., L.A.D.), Sidney Kimmel Comprehensive Cancer Center (D.T.L., J.N.U., H.W., H.K., A.D.E., A.D.S., B.S.L., N.S.A., D.L., B.B., R.C.D., D.M.P., N.P., K.W.K., S.Z., B.V., L.A.D.), Ludwig Center and Howard Hughes Medical Institute (B.R.B., A.D.S., N.P., K.W.K., S.Z., B.V., L.A.D.), and the Departments of Radiology (A.Z.) and Pathology (F.B., T.H., R.H.H., L.D.W., N.C., T.C.C., J.M.T., R.A.A., J.R.E.), Johns Hopkins University School of Medicine, Baltimore; Department of Medicine, Stanford University School of Medicine, Stanford, CA (G.A.F.); Providence Cancer Center at Providence Health and Services, Portland, OR (T.S.C.); Department of Medicine, University of Pittsburgh Cancer Institute, University of Pittsburgh School of Medicine, Pittsburgh (J.J.L.); Bon Secours Cancer Institute, Richmond, VA (S.M.D.); Division of Medical Oncology, Ohio State University Comprehensive Cancer Center-James Cancer Center and Solove Research Institute, and Human Cancer Genetics Program, Ohio State University Comprehensive Cancer Center, Columbus (R.M.G., A.C.); and Merck, Kenilworth, NJ, and North Wales, PA (M.K.).

Abstract

Insights

Mismatch repair deficiency in tumors indicates a strong response to immune checkpoint blockade therapy. This finding highlights the potential of mismatch repair status as a predictive biomarker for cancer treatment.

Area of Science:

  • Oncology
  • Immunology
  • Genetics

Background:

  • Somatic mutations can create neoantigens, potentially triggering an immune response.
  • Tumors with high somatic mutation burdens, often due to mismatch repair deficiency, may be more responsive to immune checkpoint inhibitors.

Purpose of the Study:

  • To evaluate the efficacy of pembrolizumab (an anti-PD-1 inhibitor) in patients with metastatic carcinoma.
  • To determine if mismatch repair deficiency status predicts response to pembrolizumab therapy.

Main Methods:

  • A phase 2 clinical trial involving 41 patients with progressive metastatic carcinoma.
  • Patients received pembrolizumab (10 mg/kg every 14 days) stratified by mismatch repair status (deficient or proficient) and cancer type (colorectal or non-colorectal).
  • Coprimary endpoints included immune-related objective response rate and 20-week immune-related progression-free survival.

Main Results:

  • Mismatch repair-deficient colorectal cancers showed a 40% objective response rate and 78% 20-week progression-free survival.
  • Mismatch repair-proficient colorectal cancers had a 0% objective response rate and 11% 20-week progression-free survival.
  • Mismatch repair-deficient non-colorectal cancers demonstrated similar high response rates (71% ORR, 67% PFS). High somatic mutation loads correlated with improved progression-free survival.

Conclusions:

  • Mismatch repair status is a significant predictor of clinical benefit from pembrolizumab immune checkpoint blockade.
  • Pembrolizumab demonstrates substantial activity in mismatch repair-deficient metastatic cancers.
  • The study supports the use of mismatch repair deficiency as a biomarker for selecting patients for immune checkpoint inhibitor therapy.

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