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Improving Tumor Retention of Effector Cells in Adoptive Cell Transfer Therapies by Magnetic Targeting.

作者信息

Sanz-Ortega Laura, Rojas José Manuel, Barber Domingo F

机构信息

Center for Hematology and Regenerative Medicine (HERM), Department of Medicine, Karolinska Institute, 14183 Stockholm, Sweden.

Animal Health Research Centre (CISA)-INIA, Instituto Nacional de Investigación y Tecnología Agraria y Alimentaria, 28130 Madrid, Spain.

出版信息

Pharmaceutics. 2020 Aug 27;12(9):812. doi: 10.3390/pharmaceutics12090812.


DOI:10.3390/pharmaceutics12090812
PMID:32867162
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7557387/
Abstract

Adoptive cell transfer therapy is a promising anti-tumor immunotherapy in which effector immune cells are transferred to patients to treat tumors. However, one of its main limitations is the inefficient trafficking of inoculated effector cells to the tumor site and the small percentage of effector cells that remain activated when reaching the tumor. Multiple strategies have been attempted to improve the entry of effector cells into the tumor environment, often based on tumor types. It would be, however, interesting to develop a more general approach, to improve and facilitate the migration of specific activated effector lymphoid cells to any tumor type. We and others have recently demonstrated the potential for adoptive cell transfer therapy of the combined use of magnetic nanoparticle-loaded lymphoid effector cells together with the application of an external magnetic field to promote the accumulation and retention of lymphoid cells in specific body locations. The aim of this review is to summarize and highlight the recent findings in the field of magnetic accumulation and retention of effector cells in tumors after adoptive transfer, and to discuss the possibility of using this approach for tumor targeting with chimeric antigen receptor (CAR) T-cells.

摘要

相似文献

[1]
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本文引用的文献

[1]
Dynamically Programmable Magnetic Fields for Controlled Movement of Cells Loaded with Iron Oxide Nanoparticles.

ACS Appl Bio Mater. 2020-7-20

[2]
T Cell Co-stimulation and Functional Modulation by Innate Signals.

Trends Immunol. 2020-3

[3]
Loading of Primary Human T Lymphocytes with Citrate-Coated Superparamagnetic Iron Oxide Nanoparticles Does Not Impair Their Activation after Polyclonal Stimulation.

Cells. 2020-2-1

[4]
Functionalization Of T Lymphocytes With Citrate-Coated Superparamagnetic Iron Oxide Nanoparticles For Magnetically Controlled Immune Therapy.

Int J Nanomedicine. 2019-10-24

[5]
Magnetic Nanoparticles Attached to the NK Cell Surface for Tumor Targeting in Adoptive Transfer Therapies Does Not Affect Cellular Effector Functions.

Front Immunol. 2019-8-30

[6]
Magnetic targeting of adoptively transferred tumour-specific nanoparticle-loaded CD8 T cells does not improve their tumour infiltration in a mouse model of cancer but promotes the retention of these cells in tumour-draining lymph nodes.

J Nanobiotechnology. 2019-8-6

[7]
Synthesis, Characterization, and Applications of Magnetic Nanoparticles Featuring Polyzwitterionic Coatings.

Polymers (Basel). 2018-1-18

[8]
Iron oxide nanoparticles promote macrophage autophagy and inflammatory response through activation of toll-like Receptor-4 signaling.

Biomaterials. 2019-2-28

[9]
Magnetic Nanoclusters Armed with Responsive PD-1 Antibody Synergistically Improved Adoptive T-Cell Therapy for Solid Tumors.

ACS Nano. 2019-2-18

[10]
T cells loaded with magnetic nanoparticles are retained in peripheral lymph nodes by the application of a magnetic field.

J Nanobiotechnology. 2019-1-22

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