The Past, Present, and Future of Non-Viral CAR T Cells

被引:76
|
作者
Moretti, Alex [1 ]
Ponzo, Marianna [1 ]
Nicolette, Charles A. [2 ]
Tcherepanova, Irina Y. [2 ]
Biondi, Andrea [1 ,3 ,4 ]
Magnani, Chiara F. [1 ,5 ]
机构
[1] Univ Milano Bicocca, Fdn Monza & Brianza Bambino Mamma, Tettamanti Res Ctr, Dept Pediat, Monza, Italy
[2] CoImmune Inc, Durham, NC 27704 USA
[3] Univ Milano Bicocca, Dept Pediat, Milan, Italy
[4] Univ Milano Bicocca, Fdn MBBM, Clin Pediat, Monza, Italy
[5] Univ Zurich, Univ Hosp Zurich, Dept Med Oncol & Hematol, Zurich, Switzerland
来源
FRONTIERS IN IMMUNOLOGY | 2022年 / 13卷
关键词
non-viral vectors; chimeric antigen receptor (CAR T); gene therapy; immunotherapy; adoptive cell transfer; cancer therapy; transposons; mRNA; SLEEPING-BEAUTY TRANSPOSON; CHIMERIC ANTIGEN RECEPTOR; INDUCED KILLER-CELLS; STABLE GENE-TRANSFER; TERM-FOLLOW-UP; MESSENGER-RNA; PIGGYBAC TRANSPOSON; B-CELL; UNTRANSLATED REGION; ANTITUMOR-ACTIVITY;
D O I
10.3389/fimmu.2022.867013
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
Adoptive transfer of chimeric antigen receptor (CAR) T lymphocytes is a powerful technology that has revolutionized the way we conceive immunotherapy. The impressive clinical results of complete and prolonged response in refractory and relapsed diseases have shifted the landscape of treatment for hematological malignancies, particularly those of lymphoid origin, and opens up new possibilities for the treatment of solid neoplasms. However, the widening use of cell therapy is hampered by the accessibility to viral vectors that are commonly used for T cell transfection. In the era of messenger RNA (mRNA) vaccines and CRISPR/Cas (clustered regularly interspaced short palindromic repeat-CRISPR-associated) precise genome editing, novel and virus-free methods for T cell engineering are emerging as a more versatile, flexible, and sustainable alternative for next-generation CAR T cell manufacturing. Here, we discuss how the use of non-viral vectors can address some of the limitations of the viral methods of gene transfer and allow us to deliver genetic information in a stable, effective and straightforward manner. In particular, we address the main transposon systems such as Sleeping Beauty (SB) and piggyBac (PB), the utilization of mRNA, and innovative approaches of nanotechnology like Lipid-based and Polymer-based DNA nanocarriers and nanovectors. We also describe the most relevant preclinical data that have recently led to the use of non-viral gene therapy in emerging clinical trials, and the related safety and efficacy aspects. We will also provide practical considerations for future trials to enable successful and safe cell therapy with non-viral methods for CAR T cell generation.
引用
收藏
页数:25
相关论文
共 50 条
  • [31] CAR T-Cells in Multiple Myeloma: State of the Art and Future Directions
    Gerardo Rodriguez-Lobato, Luis
    Ganzetti, Maya
    Fernandez de Larrea, Carlos
    Hudecek, Michael
    Einsele, Hermann
    Danhof, Sophia
    FRONTIERS IN ONCOLOGY, 2020, 10
  • [32] Expression of chimeric antigen receptors in natural killer cells with a regulatory-compliant non-viral method
    Li, L.
    Liu, L. N.
    Feller, S.
    Allen, C.
    Shivakumar, R.
    Fratantoni, J.
    Wolfraim, L. A.
    Fujisaki, H.
    Campana, D.
    Chopas, N.
    Dzekunov, S.
    Peshwa, M.
    CANCER GENE THERAPY, 2010, 17 (03) : 147 - 154
  • [33] Stem cells and gliomas: past, present, and future
    Germano, Isabelle M.
    Binello, Emanuela
    JOURNAL OF NEURO-ONCOLOGY, 2014, 119 (03) : 547 - 555
  • [34] Monosize polycationic nanoparticles as non-viral vectors for gene transfer to HeLa cells
    Guven, Guldem Utkan
    Lacin, Nelisa Tuerkoglu
    Piskin, Erhan
    JOURNAL OF TISSUE ENGINEERING AND REGENERATIVE MEDICINE, 2008, 2 (2-3) : 155 - 163
  • [35] Generation and GMP scale-up of human CAR-T cells using non-viral Sleeping Beauty transposons for B cell malignances
    Diez, Begona
    Calvino, Cristina
    Fernandez-Garcia, Maria
    Rodriguez-Marquez, Paula
    Rodriguez-Diaz, Saray
    Martinez-Turillas, Rebeca
    Ceballos, Candela
    Illarramendi, Jorge
    Serrano-Lopez, Juana
    Miskey, Csaba
    Navarro-Bailon, Almudena
    Lopez-Corral, Lucia
    Llamas, Pilar
    Redondo, Margarita
    Sanchez-Guijo, Fermin
    Rifon, Jose
    Alfonso-Pierola, Ana
    Ivics, Zoltan
    Inoges, Susana
    de Cerio, Ascension Lopez-Diaz
    Yanez, Rosa
    Bueren, Juan A.
    Rodriguez-Madoz, Juan R.
    Prosper, Felipe
    MOLECULAR THERAPY METHODS & CLINICAL DEVELOPMENT, 2025, 33 (01)
  • [36] Non-viral expression of chimeric antigen receptors with multiplex gene editing in primary T cells
    Cappabianca, Dan
    Li, Jingling
    Zheng, Yueting
    Tran, Cac
    Kasparek, Kassandra
    Mendez, Pedro
    Thu, Ricky
    Maures, Travis
    Capitini, Christian M.
    Deans, Robert
    Saha, Krishanu
    FRONTIERS IN BIOENGINEERING AND BIOTECHNOLOGY, 2024, 12
  • [37] Non-viral strategies for ocular gene delivery
    Oliveira, Ana V.
    da Costa, Ana M. Rosa
    Silva, Gabriela A.
    MATERIALS SCIENCE & ENGINEERING C-MATERIALS FOR BIOLOGICAL APPLICATIONS, 2017, 77 : 1275 - 1289
  • [38] Non-Viral Delivery of Gene Therapy to the Tendon
    Jin, Jing
    Yang, Qian Qian
    Zhou, You Lang
    POLYMERS, 2022, 14 (16)
  • [39] Endocytosis in gene therapy with non-viral vectors
    de Garibay, Aritz Perez Ruiz
    WIENER MEDIZINISCHE WOCHENSCHRIFT, 2016, 166 (7-8) : 227 - 235
  • [40] Nanoparticles as Non-Viral Gene Delivery Vectors
    Katragadda, Chinmayee Sarita
    Choudhury, Prasanta Kumar
    Murthy, P. N.
    INDIAN JOURNAL OF PHARMACEUTICAL EDUCATION AND RESEARCH, 2010, 44 (02) : 109 - 120