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Critical Reviews™ in Immunology

Publicou 6 edições por ano

ISSN Imprimir: 1040-8401

ISSN On-line: 2162-6472

The Impact Factor measures the average number of citations received in a particular year by papers published in the journal during the two preceding years. 2017 Journal Citation Reports (Clarivate Analytics, 2018) IF: 1.3 To calculate the five year Impact Factor, citations are counted in 2017 to the previous five years and divided by the source items published in the previous five years. 2017 Journal Citation Reports (Clarivate Analytics, 2018) 5-Year IF: 2.6 The Eigenfactor score, developed by Jevin West and Carl Bergstrom at the University of Washington, is a rating of the total importance of a scientific journal. Journals are rated according to the number of incoming citations, with citations from highly ranked journals weighted to make a larger contribution to the eigenfactor than those from poorly ranked journals. Eigenfactor: 0.00079 The Journal Citation Indicator (JCI) is a single measurement of the field-normalized citation impact of journals in the Web of Science Core Collection across disciplines. The key words here are that the metric is normalized and cross-disciplinary. JCI: 0.24 SJR: 0.429 SNIP: 0.287 CiteScore™:: 2.7 H-Index: 81

Indexed in

Strategies to enhance NK cell function for the treatment of tumors and infections

Volume 38, Edição 2, 2018, pp. 105-130
DOI: 10.1615/CritRevImmunol.2018025248
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RESUMO

Natural killer (NK) cells are innate immune cells equipped with the ability to rapidly kill stressed cells that are neoplastic or virally infected. These cells are especially important in settings where these stressed cells downregulate MHC class I molecules and evade recognition by cytotoxic T cells. However, the activity of NK cells alone is often suboptimal to fully control tumor growth or to clear viral infections. Thus, the enhancement of NK cell function is necessary to fully harness their antitumor or antiviral potential. In this review, we discuss how NK cell function can be augmented by the modulation of signal transduction pathways, by the manipulation of inhibitory/activating receptors on NK cells, and by cytokine-induced activation. We also discuss how some of these strategies are currently impacting NK cells in the treatment of cancer and infections.

CITADO POR
  1. Yang Chun-Lin, Zhang Peng, Liu Ru-Tao, Zhang Na, Zhang Min, Li Heng, Du Tong, Li Xiao-Li, Dou Ying-Chun, Duan Rui-Sheng, CXCR5-negative natural killer cells ameliorate experimental autoimmune myasthenia gravis by suppressing follicular helper T cells, Journal of Neuroinflammation, 16, 1, 2019. Crossref

  2. Chirino Leilani M., Kumar Suresh, Okumura Mariko, Sterner David E., Mattern Michael, Butt Tauseef R., Kambayashi Taku, TAM receptors attenuate murine NK‐cell responses via E3 ubiquitin ligase Cbl‐b, European Journal of Immunology, 50, 1, 2020. Crossref

  3. Tarazona Raquel, Lopez-Sejas Nelson, Guerrero Beatriz, Hassouneh Fakhri, Valhondo Isabel, Pera Alejandra, Sanchez-Correa Beatriz, Pastor Nieves, Duran Esther, Alonso Corona, Solana Rafael, Current progress in NK cell biology and NK cell-based cancer immunotherapy, Cancer Immunology, Immunotherapy, 69, 5, 2020. Crossref

  4. Subrakova V. G., Kulemzin S. V., Belovezhets T. N., Chikaev A. N., Chikaev N. A., Koval O. A., Gorchakov A. A., Taranin A. V., <i>shp-2</i> gene knockout upregulates CAR-driven cytotoxicity of YT NK cells, Vavilov Journal of Genetics and Breeding, 24, 1, 2020. Crossref

  5. Kang Hyun Mi, Kim Seong Koo, Lee Jae Wook, Chung Nack-Gyun, Cho Bin, Efficacy of low dose antithymocyte globulin on overall survival, relapse rate, and infectious complications following allogeneic peripheral blood stem cell transplantation for leukemia in children, Bone Marrow Transplantation, 56, 4, 2021. Crossref

  6. Naeimi Kararoudi Meisam, Tullius Brian P., Chakravarti Nitin, Pomeroy Emily J., Moriarity Branden S., Beland Kathie, Colamartino Aurelien B.L., Haddad Elie, Chu Yaya, Cairo Mitchell S., Lee Dean A., Genetic and epigenetic modification of human primary NK cells for enhanced antitumor activity, Seminars in Hematology, 57, 4, 2020. Crossref

  7. Forsyth Katherine S, Anguera Montserrat C, Time to get ill: the intersection of viral infections, sex, and the X chromosome, Current Opinion in Physiology, 19, 2021. Crossref

  8. Calabrese Leonard H., Caporali Roberto, Blank Christian U., Kirk Allan D., Modulating the wayward T cell: New horizons with immune checkpoint inhibitor treatments in autoimmunity, transplant, and cancer, Journal of Autoimmunity, 115, 2020. Crossref

  9. Chandel Vaishali, Kumar Dhruv, Role of Interferon in Cancer Metabolism, in Innate Immunity in Health and Disease, 2021. Crossref

  10. Senekal Noma Susan, Mahasa Khaphetsi Joseph, Eladdadi Amina, de Pillis Lisette, Ouifki Rachid, Natural Killer Cells Recruitment in Oncolytic Virotherapy: A Mathematical Model, Bulletin of Mathematical Biology, 83, 7, 2021. Crossref

  11. Chen Zhong, Viswanathan Ramya, Morgan Ethan L., Jeon Jun, Van Waes Carter, Proinflammatory Signaling Pathways and Genomic Signatures in Head and Neck Cancers, in Early Detection and Treatment of Head & Neck Cancers, 2021. Crossref

  12. Long Shiqi, Gu Yangzhuo, An Yuanyuan, Lin Xiaojin, Chen Xiaoqing, Wang Xianyao, Liao Chunxiang, Ouyang Weiwei, Wang Nianxue, He Zhixu, Zhao Xing, Reovirus enhances cytotoxicity of natural killer cells against colorectal cancer via TLR3 pathway, Journal of Translational Medicine, 19, 1, 2021. Crossref

  13. Mauser Martin, Kruger Deirdré, Pather Sugeshnee, Plani Frank, Posttraumatic Natural Killer Cell Decrease is Associated with Septic Complications, Journal of Surgical Research, 270, 2022. Crossref

  14. Robbins Gabrielle M., Wang Minjing, Pomeroy Emily J., Moriarity Branden S., Nonviral genome engineering of natural killer cells, Stem Cell Research & Therapy, 12, 1, 2021. Crossref

  15. Long Shiqi, Gu Yangzhuo, An Yuanyuan, Lin Xiaojin, Chen Xiaoqing, Wang Xianyao, Liao Chunxiang, Ouyang Weiwei, Wang Nianxue, He Zhixu, Zhao Xing, Reovirus Enhances Cytotoxicity of Natural Killer Cells Against Colorectal Cancer via TLR3 Pathway, SSRN Electronic Journal , 2020. Crossref

  16. Kaweme Natasha Mupeta, Zhou Fuling, Optimizing NK Cell-Based Immunotherapy in Myeloid Leukemia: Abrogating an Immunosuppressive Microenvironment, Frontiers in Immunology, 12, 2021. Crossref

  17. Biber Guy, Sabag Batel, Raiff Anat, Ben‐Shmuel Aviad, Puthenveetil Abhishek, Benichou Jennifer I C, Jubany Tammir, Levy Moria, Killner Shiran, Barda‐Saad Mira, Modulation of intrinsic inhibitory checkpoints using nano‐carriers to unleash NK cell activity, EMBO Molecular Medicine, 14, 1, 2022. Crossref

  18. Chen Zhenghu, Zeng Zihua, Wan Quanyuan, Liu Xiaohui, Qi Jianjun, Zu Youli, Targeted immunotherapy of triple-negative breast cancer by aptamer-engineered NK cells, Biomaterials, 280, 2022. Crossref

  19. Esmail Sally, Danter Wayne R., Stem‐cell based, machine learning approach for optimizing natural killer cell‐based personalized immunotherapy for high‐grade ovarian cancer, The FEBS Journal, 289, 4, 2022. Crossref

  20. Helmin-Basa Anna, Gackowska Lidia, Balcerowska Sara, Ornawka Marcelina, Naruszewicz Natalia, Wiese-Szadkowska Małgorzata, The application of the natural killer cells, macrophages and dendritic cells in treating various types of cancer, Physical Sciences Reviews, 7, 8, 2022. Crossref

  21. Yusubalieva G. M., Dashinimaev E. B., Gorchakov A. A., Kulemzin S. V., Brovkina O. A., Kalinkin A. A., Vinokurov A. G., Shirmanova M. V., Taranin A. V., Baklaushev V. P., Enhanced Natural Killers with CISH and B2M Gene Knockouts Reveal Increased Cytotoxicity in Glioblastoma Primary Cultures, Molecular Biology, 56, 5, 2022. Crossref

  22. Walekhwa Michael, Kagia Richard, Muturi Margaret, Immune Responses to SARS CoV-2: A Scoping Review, European Journal of Medical and Health Sciences, 3, 2, 2021. Crossref

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