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Работы, на которые ссылается эта работа

Работ: 213

Работа: Emerging strategies to reduce the side effects of CAR-T cell therapy: focusing on gene editing and nanotechnology

  1. Polymeric Nanoparticles for Drug Delivery

    Maximilian A. Beach, Umeka Nayanathara, Yanting Gao +4

    Обзорная статья2024Цитирований: 7
    ABI
  2. Idecabtagene Vicleucel in Relapsed and Refractory Multiple Myeloma

    Nikhil C. Munshi, Larry D. Anderson, Nina Shah +25

    Статья2021Цитирований: 5
    ABI
  3. CAR exosomes derived from effector CAR-T cells have potent antitumour effects and low toxicity

    Wenyan Fu, Changhai Lei, Shuowu Liu +12

    Статья2019Цитирований: 4
    ABI
  4. Targeting a CAR to the TRAC locus with CRISPR/Cas9 enhances tumour rejection

    Justin Eyquem, Jorge Mansilla‐Soto, Theodoros Giavridis +6

    Статья2017Цитирований: 4
    ABI
  5. The paths and challenges of “off-the-shelf” CAR-T cell therapy: An overview of clinical trials

    Vahid Moradi, Azadeh Omidkhoda, Naser Ahmadbeigi

    Обзорная статья2023Цитирований: 4
    ABI
  6. Progress and pitfalls of gene editing technology in CAR-T cell therapy: a state-of-the-art review

    Vahid Moradi, Elnaz Khodabandehloo, Mehdi Alidadi +2

    Обзорная статья2024Цитирований: 4
    ABI
  7. Phase I study of CAR-T cells with PD-1 and TCR disruption in mesothelin-positive solid tumors

    Zhenguang Wang, Na Li, Kaichao Feng +14

    Статья2021Цитирований: 3
    ABI
  8. Tisagenlecleucel in Adult Relapsed or Refractory Diffuse Large B-Cell Lymphoma

    Stephen J. Schuster, Michael Bishop, Constantine S. Tam +21

    Статья2018Цитирований: 3
    ABI
  9. TGF-β inhibition via CRISPR promotes the long-term efficacy of CAR T cells against solid tumors

    Na Tang, Chen Cheng, Xingying Zhang +6

    Статья2020Цитирований: 3
    ABI
  10. Tisagenlecleucel in Children and Young Adults with B-Cell Lymphoblastic Leukemia

    Shannon L. Maude, Theodore W. Laetsch, Jochen Buechner +32

    Статья2018Цитирований: 3
    ABI
  11. Current hurdles to the translation of nanomedicines from bench to the clinic

    Snežana Đorđević, María Medel Gonzalez, Inmaculada Conejos‐Sánchez +6

    Обзорная статья2021Цитирований: 3
    ABI
  12. Recent Advances in Lipid Nanoparticles and Their Safety Concerns for mRNA Delivery

    Jialiang Wang, Yaopeng Ding, K. Chul Chong +7

    Обзорная статья2024Цитирований: 3
    ABI
  13. From ex vivo to in vivo chimeric antigen T cells manufacturing: new horizons for CAR T-cell based therapy

    Eleonora Pinto, Lisa A. Lione, Mirco Compagnone +8

    Обзорная статья2025Цитирований: 3
    ABI
  14. Side-effect management of chimeric antigen receptor (CAR) T-cell therapy

    Maria‐Luisa Schubert, Michael Schmitt, L. Wang +4

    Обзорная статья2020Цитирований: 2
    ABI
  15. Lipid nanoparticles produce chimeric antigen receptor T cells with interleukin-6 knockdown in vivo

    Jinge Zhou, Lei Sun, Yujie Jia +8

    Статья2022Цитирований: 2
    ABI
  16. Overcoming on-target, off-tumour toxicity of CAR T cell therapy for solid tumours

    Christian Flugel, Robbie G. Majzner, Giedre Krenciute +4

    Обзорная статья2022Цитирований: 2
    ABI
  17. CAR-T cell-derived exosomes: a new perspective for cancer therapy

    Farnaz Sani, Shabnam Shojaei, Seyed Amirhossein Tabatabaei +4

    Обзорная статья2024Цитирований: 2
    ABI