Literature DB >> 27390347

Preclinical Assessment of CD171-Directed CAR T-cell Adoptive Therapy for Childhood Neuroblastoma: CE7 Epitope Target Safety and Product Manufacturing Feasibility.

Annette Künkele1, Agne Taraseviciute1,2,3, Laura S Finn4, Adam J Johnson1, Carolina Berger2,5, Olivia Finney1, Cindy A Chang1, Lisa S Rolczynski1, Christopher Brown1, Stephanie Mgebroff1, Michael Berger2, Julie R Park3, Michael C Jensen6,3,7.   

Abstract

PURPOSE: The identification and vetting of cell surface tumor-restricted epitopes for chimeric antigen receptor (CAR)-redirected T-cell immunotherapy is the subject of intensive investigation. We have focused on CD171 (L1-CAM), an abundant cell surface molecule on neuroblastomas and, specifically, on the glycosylation-dependent tumor-specific epitope recognized by the CE7 monoclonal antibody. EXPERIMENTAL
DESIGN: CD171 expression was assessed by IHC using CE7 mAb in tumor microarrays of primary, metastatic, and recurrent neuroblastoma, as well as human and rhesus macaque tissue arrays. The safety of targeting the CE7 epitope of CD171 with CE7-CAR T cells was evaluated in a preclinical rhesus macaque trial on the basis of CD171 homology and CE7 cross reactivity. The feasibility of generating bioactive CAR T cells from heavily pretreated pediatric patients with recurrent/refractory disease was assessed.
RESULTS: CD171 is uniformly and abundantly expressed by neuroblastoma tumor specimens obtained at diagnoses and relapse independent of patient clinical risk group. CD171 expression in normal tissues is similar in humans and rhesus macaques. Infusion of up to 1 × 108/kg CE7-CAR+ CTLs in rhesus macaques revealed no signs of specific on-target off-tumor toxicity. Manufacturing of lentivirally transduced CD4+ and CD8+ CE7-CAR T-cell products under GMP was successful in 4 out of 5 consecutively enrolled neuroblastoma patients in a phase I study. All four CE7-CAR T-cell products demonstrated in vitro and in vivo antitumor activity.
CONCLUSIONS: Our preclinical assessment of the CE7 epitope on CD171 supports its utility and safety as a CAR T-cell target for neuroblastoma immunotherapy. Clin Cancer Res; 23(2); 466-77. ©2016 AACR. ©2016 American Association for Cancer Research.

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Year:  2016        PMID: 27390347     DOI: 10.1158/1078-0432.CCR-16-0354

Source DB:  PubMed          Journal:  Clin Cancer Res        ISSN: 1078-0432            Impact factor:   12.531


  35 in total

1.  Preferential Small Intestine Homing and Persistence of CD8 T Cells in Rhesus Macaques Achieved by Molecularly Engineered Expression of CCR9 and Reduced Ex Vivo Manipulation.

Authors:  Matthew T Trivett; James D Burke; Claire Deleage; Lori V Coren; Brenna J Hill; Sumiti Jain; Eugene V Barsov; Matthew W Breed; Joshua A Kramer; Gregory Q Del Prete; Jeffrey D Lifson; Adrienne E Swanstrom; David E Ott
Journal:  J Virol       Date:  2019-10-15       Impact factor: 5.103

Review 2.  Immunotherapy of Neuroblastoma: Facts and Hopes.

Authors:  John Anderson; Robbie G Majzner; Paul M Sondel
Journal:  Clin Cancer Res       Date:  2022-08-02       Impact factor: 13.801

3.  Tuning the Antigen Density Requirement for CAR T-cell Activity.

Authors:  Robbie G Majzner; Skyler P Rietberg; Elena Sotillo; Rui Dong; Vipul T Vachharajani; Louai Labanieh; June H Myklebust; Meena Kadapakkam; Evan W Weber; Aidan M Tousley; Rebecca M Richards; Sabine Heitzeneder; Sang M Nguyen; Volker Wiebking; Johanna Theruvath; Rachel C Lynn; Peng Xu; Alexander R Dunn; Ronald D Vale; Crystal L Mackall
Journal:  Cancer Discov       Date:  2020-03-19       Impact factor: 39.397

4.  Metabolic engineering against the arginine microenvironment enhances CAR-T cell proliferation and therapeutic activity.

Authors:  Livingstone Fultang; Sarah Booth; Orli Yogev; Barbara Martins da Costa; Vanessa Tubb; Silvia Panetti; Victoria Stavrou; Ugo Scarpa; Andris Jankevics; Gavin Lloyd; Andrew Southam; Steven P Lee; Warwick B Dunn; Louis Chesler; Francis Mussai; Carmela De Santo
Journal:  Blood       Date:  2020-09-03       Impact factor: 22.113

Review 5.  Advances in immunotherapeutic targets for childhood cancers: A focus on glypican-2 and B7-H3.

Authors:  Nan Li; Madeline R Spetz; Dan Li; Mitchell Ho
Journal:  Pharmacol Ther       Date:  2021-05-14       Impact factor: 13.400

6.  Fluorine-19 nuclear magnetic resonance of chimeric antigen receptor T cell biodistribution in murine cancer model.

Authors:  Fanny Chapelin; Shang Gao; Hideho Okada; Thomas G Weber; Karen Messer; Eric T Ahrens
Journal:  Sci Rep       Date:  2017-12-18       Impact factor: 4.379

Review 7.  The Multi-Purpose Tool of Tumor Immunotherapy: Gene-Engineered T Cells.

Authors:  Zeming Mo; Peixin Du; Guoping Wang; Yongsheng Wang
Journal:  J Cancer       Date:  2017-06-23       Impact factor: 4.207

Review 8.  Chimeric antigen receptor T cells: a novel therapy for solid tumors.

Authors:  Shengnan Yu; Anping Li; Qian Liu; Tengfei Li; Xun Yuan; Xinwei Han; Kongming Wu
Journal:  J Hematol Oncol       Date:  2017-03-29       Impact factor: 17.388

9.  A Reproducible Bioprinted 3D Tumor Model Serves as a Preselection Tool for CAR T Cell Therapy Optimization.

Authors:  Laura Grunewald; Tobias Lam; Lena Andersch; Anika Klaus; Silke Schwiebert; Annika Winkler; Anton Gauert; Anja I Heeren-Hagemann; Kathy Astrahantseff; Filippos Klironomos; Alexander Thomas; Hedwig E Deubzer; Anton G Henssen; Angelika Eggert; Johannes H Schulte; Kathleen Anders; Lutz Kloke; Annette Künkele
Journal:  Front Immunol       Date:  2021-06-29       Impact factor: 7.561

10.  Identification of GPC2 as an Oncoprotein and Candidate Immunotherapeutic Target in High-Risk Neuroblastoma.

Authors:  Kristopher R Bosse; Pichai Raman; Zhongyu Zhu; Maria Lane; Daniel Martinez; Sabine Heitzeneder; Komal S Rathi; Nathan M Kendsersky; Michael Randall; Laura Donovan; Sorana Morrissy; Robyn T Sussman; Doncho V Zhelev; Yang Feng; Yanping Wang; Jennifer Hwang; Gonzalo Lopez; Jo Lynne Harenza; Jun S Wei; Bruce Pawel; Tricia Bhatti; Mariarita Santi; Arupa Ganguly; Javed Khan; Marco A Marra; Michael D Taylor; Dimiter S Dimitrov; Crystal L Mackall; John M Maris
Journal:  Cancer Cell       Date:  2017-09-11       Impact factor: 38.585

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