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TGF-β inhibition via CRISPR promotes the long-term efficacy of CAR T cells against solid tumors
Na Tang, Chen Cheng, Xingying Zhang, Miaomiao Qiao, Na Li, Wei Mu, Xiao-Fei Wei, Weidong Han, Haoyi Wang
Na Tang, Chen Cheng, Xingying Zhang, Miaomiao Qiao, Na Li, Wei Mu, Xiao-Fei Wei, Weidong Han, Haoyi Wang
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Research Article Oncology Therapeutics

TGF-β inhibition via CRISPR promotes the long-term efficacy of CAR T cells against solid tumors

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Abstract

In recent years, chimeric antigen receptor–modified T cell (CAR T cell) therapy has proven to be a promising approach against cancer. Nonetheless, this approach still faces multiple challenges in eliminating solid tumors, one of which being the immunosuppressive tumor microenvironment (TME). Here, we demonstrated that knocking out the endogenous TGF-β receptor II (TGFBR2) in CAR T cells with CRISPR/Cas9 technology could reduce the induced Treg conversion and prevent the exhaustion of CAR T ce lls. Meanwhile, TGFBR2-edited CAR T cells had better in vivo tumor elimination efficacy, both in cell line–derived xenograft and patient-derived xenograft solid tumor models, whether administered locally or systemically. In addition, the TGFBR2-edited CAR T cells could eliminate contralaterally reinoculated xenografts in mice effectively, with an increased proportion of memory subsets within circulating CAR T cells of central memory and effector memory subsets. In conclusion, we greatly improved the in vitro and in vivo function of CAR T cells in TGF-β–rich tumor environments by knocking out endogenous TGFBR2 and propose a potentially new method to improve the efficacy of CAR T cell therapy for treating solid tumors.

Authors

Na Tang, Chen Cheng, Xingying Zhang, Miaomiao Qiao, Na Li, Wei Mu, Xiao-Fei Wei, Weidong Han, Haoyi Wang

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Figure 4

TGFBR2 KO rescues CAR T cell exhaustion induced by TGF-β1.

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TGFBR2 KO rescues CAR T cell exhaustion induced by TGF-β1.
(A) Growth c...
(A) Growth curve and (B) representative images of M28z and M28z-TKO CAR T cells after multiple rounds of CRL5826 stimulation in the presence of 5 ng/mL TGF-β1. Scale bar: 40 μm. (C) Specific tumor lysis by M28z and M28z-TKO cells after 3 rounds of CRL5826 stimulation in the presence of 5 ng/mL TGF-β1. (D) Immune checkpoint gene expression of M28z and M28z-TKO cells after 3 rounds CRL5826 stimulation in the presence of 5 ng/mL TGF-β1. (E) Proportion of PD1+ cells in M28z, M28z-TKO, M28z-PKO, and M28z-DKO cells after 3 rounds of incubation with CRL5826-PDL1 in the presence of 5 ng/mL TGF-β1. (F) Proliferation and (G) tumor lysis capability of M28z, M28z-TKO, M28z-PKO, and M28z-DKO cells during 3 rounds of incubation with CRL5826-PDL1 cells in the presence of TGF-β1. M28z-TKO, TGFBR2-KO M28z; M28z-PKO, PD1-KO M28z; M28z-DKO, TGFBR2 and PD1 double-KO M28z. Mean ± SD of 3 technical repetitions in 1 assay. Ordinary 1-way ANOVA and Tukey’s multiple comparisons test were used in C. The assays in A–C were repeated more than 3 times and those in D–G were repeated 2 times.

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