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1.
Nat Commun ; 13(1): 1798, 2022 04 04.
Article in English | MEDLINE | ID: mdl-35379804

ABSTRACT

The evolutionary dynamics of tumor initiation remain undetermined, and the interplay between neoplastic cells and the immune system is hypothesized to be critical in transformation. Colorectal cancer (CRC) presents a unique opportunity to study the transition to malignancy as pre-cancers (adenomas) and early-stage cancers are frequently resected. Here, we examine tumor-immune eco-evolutionary dynamics from pre-cancer to carcinoma using a computational model, ecological analysis of digital pathology data, and neoantigen prediction in 62 patient samples. Modeling predicted recruitment of immunosuppressive cells would be the most common driver of transformation. As predicted, ecological analysis reveals that progressed adenomas co-localized with immunosuppressive cells and cytokines, while benign adenomas co-localized with a mixed immune response. Carcinomas converge to a common immune "cold" ecology, relaxing selection against immunogenicity and high neoantigen burdens, with little evidence for PD-L1 overexpression driving tumor initiation. These findings suggest re-engineering the immunosuppressive niche may prove an effective immunotherapy in CRC.


Subject(s)
Adenoma , Carcinoma , Colorectal Neoplasms , Biological Evolution , Colorectal Neoplasms/pathology , Humans , Immunotherapy
2.
Blood ; 131(7): 746-758, 2018 02 15.
Article in English | MEDLINE | ID: mdl-29284597

ABSTRACT

B-cell maturation antigen (BCMA) is a promising therapeutic target for multiple myeloma (MM), but expression is variable, and early reports of BCMA targeting chimeric antigen receptors (CARs) suggest antigen downregulation at relapse. Dual-antigen targeting increases targetable tumor antigens and reduces the risk of antigen-negative disease escape. "A proliferation-inducing ligand" (APRIL) is a natural high-affinity ligand for BCMA and transmembrane activator and calcium-modulator and cyclophilin ligand (TACI). We quantified surface tumor expression of BCMA and TACI on primary MM cells (n = 50). All cases tested expressed BCMA, and 39 (78%) of them also expressed TACI. We engineered a third-generation APRIL-based CAR (ACAR), which killed targets expressing either BCMA or TACI (P < .01 and P < .05, respectively, cf. control, effector-to-target [E:T] ratio 16:1). We confirmed cytolysis at antigen levels similar to those on primary MM, at low E:T ratios (56.2% ± 3.9% killing of MM.1s at 48 h, E:T ratio 1:32; P < .01) and of primary MM cells (72.9% ± 12.2% killing at 3 days, E:T ratio 1:1; P < .05, n = 5). Demonstrating tumor control in the absence of BCMA, we maintained cytolysis of primary tumor expressing both BCMA and TACI in the presence of a BCMA-targeting antibody. Furthermore, using an intramedullary myeloma model, ACAR T cells caused regression of an established tumor within 2 days. Finally, in an in vivo model of tumor escape, there was complete ACAR-mediated tumor clearance of BCMA+TACI- and BCMA-TACI+ cells, and a single-chain variable fragment CAR targeting BCMA alone resulted in outgrowth of a BCMA-negative tumor. These results support the clinical potential of this approach.


Subject(s)
Antineoplastic Agents, Immunological/therapeutic use , B-Cell Maturation Antigen/metabolism , Multiple Myeloma/drug therapy , Receptors, Chimeric Antigen/therapeutic use , Tumor Necrosis Factor Ligand Superfamily Member 13/metabolism , Animals , Antineoplastic Agents, Immunological/chemical synthesis , Antineoplastic Agents, Immunological/chemistry , Cell Line, Tumor , Cytotoxicity, Immunologic , Humans , Ligands , Mice , Molecular Targeted Therapy , Receptors, Chimeric Antigen/chemical synthesis , Receptors, Chimeric Antigen/chemistry , Transmembrane Activator and CAML Interactor Protein/chemistry , Tumor Necrosis Factor Ligand Superfamily Member 13/chemistry
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