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Published on: June 13, 2014
VLA4-Targeted Nanoparticles Hijack Cell Adhesion-Mediated Drug Resistance to Target Refractory Myeloma Cells and
Francesca Fontana1,2, Michael J Scott3, John S Allen3
1Division of Cardiology, Washington University School of Medicine, St. Louis, Missouri. greg.lanza@mac.com francesca.fontana@wustl.edu.
Purpose:
In multiple myeloma, drug-resistant cells underlie relapse or progression following chemotherapy. Cell adhesion-mediated drug resistance (CAM-DR) is an established mechanism used by myeloma cells (MMC) to survive chemotherapy and its markers are upregulated in residual disease. The integrin very late antigen 4 (VLA4; α4β1) is a key mediator of CAM-DR and its expression affects drug sensitivity of MMCs. Rather than trying to inhibit its function, here, we hypothesized that upregulation of VLA4 by resistant MMCs could be exploited for targeted delivery of drugs, which would improve safety and efficacy of treatments.
Experimental Design:
We synthetized 20 nm VLA4-targeted micellar nanoparticles (V-NP) carrying DiI for tracing or a novel camptothecin prodrug (V-CP). Human or murine MMCs, alone or with stroma, and immunocompetent mice with orthotopic multiple myeloma were used to track delivery of NPs and response to treatments.
Results:
V-NPs selectively delivered their payload to MMCs in vitro and in vivo, and chemotherapy increased their uptake by surviving MMCs. V-CP, alone or in combination with melphalan, was well tolerated and prolonged survival in myeloma-bearing mice. V-CP also reduced the dose requirement for melphalan, reducing tumor burden in association with suboptimal dosing without increasing overall toxicity.
Conclusions:
V-CP may be a safe and effective strategy to prevent or treat relapsing or refractory myeloma. V-NP targeting of resistant cells may suggest a new approach to environment-induced resistance in cancer.
Insights
Targeting drug-resistant multiple myeloma cells with VLA4-targeted nanoparticles (V-NPs) carrying a novel camptothecin prodrug (V-CP) offers a promising strategy. This approach enhances drug delivery to resistant cells, improving treatment safety and efficacy in preclinical models.
Area of Science:
- Oncology
- Nanomedicine
- Drug Delivery
Background:
- Drug resistance in multiple myeloma (MM) leads to disease relapse and progression.
- Cell adhesion-mediated drug resistance (CAM-DR) is a key mechanism for MM survival during chemotherapy.
- The integrin very late antigen 4 (VLA4) mediates CAM-DR and influences MM drug sensitivity.
Purpose of the Study:
- To investigate the potential of exploiting VLA4 upregulation in resistant MM cells for targeted drug delivery.
- To develop VLA4-targeted nanoparticles (V-NPs) for improved safety and efficacy of MM treatment.
Main Methods:
- Synthesis of 20 nm VLA4-targeted micellar nanoparticles (V-NPs) loaded with a camptothecin prodrug (V-CP) or DiI tracer.
- In vitro and in vivo evaluation using human/murine MM cells (with/without stroma) and orthotopic MM mouse models.
Main Results:
- V-NPs selectively delivered payloads to MM cells in vitro and in vivo.
- Chemotherapy increased V-NP uptake by surviving MM cells.
- V-CP demonstrated good tolerability, prolonged survival in mice, and reduced melphalan dose requirements without increasing toxicity.
Conclusions:
- V-CP represents a safe and effective strategy for preventing or treating relapsing/refractory multiple myeloma.
- V-NP targeting of resistant cells offers a novel approach to overcome environment-induced cancer resistance.
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