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Updated: Jan 7, 2026

Repression of Multiple Myeloma Cell Growth In Vivo by Single-wall Carbon Nanotube SWCNT-delivered MALAT1 Antisense Oligos
Published on: December 13, 2018
Comparing a Novel Anti-BCMA NanoCAR with a Conventional ScFv-Based CAR for the Treatment of Multiple Myeloma
Mégane Jassin1, Chloé Onkelinx1, Valentina Bocuzzi1
1Laboratory of Hematology, GIGA Institute, University of Liège, 4000 Liège, Belgium.
Abstract:
Multiple myeloma (MM) is an incurable hematologic malignancy arising from clonal plasma cells, with poor long-term outcomes due to inevitable relapse after conventional therapies. Chimeric antigen receptor (CAR) T-cell immunotherapy targeting B-cell maturation antigen (BCMA) has shown remarkable efficacy in relapsed patients. Conventional CARs employ single-chain variable fragments (scFvs), whereas single-domain antibodies (sdAb or VHHs) offer advantages such as small size, high stability, and potentially reduced immunogenicity. We designed and evaluated a novel anti-BCMA nanoCAR-T based on the VHH Nb17, compared with the conventional scFv-based CAR-T CT103a. Nb17 demonstrated strong BCMA binding and was incorporated into a CAR construct. Both nanoCAR-T and CT103a were generated via lentiviral transduction of primary T cells. Their cytotoxicity, cytokine secretion, degranulation, memory phenotype, and gene expression were assessed in vitro, along with antitumor activity in vivo. Nb17-nanoCAR-T demonstrated specific cytotoxicity, cytokine release (IL-2, TFNa, IFNg), and CD107a degranulation comparable to CT103a. Transcriptomic analysis revealed overlapping pathways between both CARs. Upon rechallenge, both CARs showed enhanced proliferation compared with untransduced T cells. In vivo, Nb17-nanoCAR-T and CT103a eradicated tumors in NSG mice. These findings demonstrate Nb17-nanoCAR-T exhibits potent anti-myeloma efficacy comparable to scFv-based CAR-T, supporting its potential as a promising therapeutic alternative.
Insights
A new nanoCAR-T therapy using single-domain antibodies (VHHs) targeting BCMA shows potent anti-myeloma activity. This novel approach demonstrated efficacy comparable to conventional CAR-T therapies in preclinical models.
Area of Science:
- Immunotherapy
- Hematologic Malignancies
- Antibody Engineering
Background:
- Multiple myeloma (MM) is an incurable blood cancer with high relapse rates.
- Chimeric antigen receptor (CAR) T-cell therapy targeting B-cell maturation antigen (BCMA) shows promise for relapsed MM.
- Single-domain antibodies (VHHs) offer potential advantages over conventional single-chain variable fragments (scFvs) in CAR design.
Purpose of the Study:
- To design and evaluate a novel anti-BCMA nanoCAR-T therapy utilizing the VHH Nb17.
- To compare the efficacy of Nb17-nanoCAR-T with a conventional scFv-based CAR-T (CT103a).
Main Methods:
- Generated Nb17-nanoCAR-T and CT103a via lentiviral transduction of primary T cells.
- Assessed in vitro cytotoxicity, cytokine secretion, degranulation, and gene expression.
- Evaluated in vivo antitumor activity in NSG mouse models.
Main Results:
- Nb17-nanoCAR-T exhibited specific cytotoxicity and cytokine release comparable to CT103a.
- Transcriptomic analysis revealed overlapping pathways between both CAR constructs.
- Both CAR-T therapies eradicated tumors in vivo and showed enhanced proliferation upon rechallenge.
Conclusions:
- Nb17-nanoCAR-T demonstrates potent anti-myeloma efficacy comparable to established scFv-based CAR-T.
- This VHH-based nanoCAR-T represents a promising alternative therapeutic strategy for multiple myeloma.
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