Literature DB >> 9829753

Antileukemia activity of a natural killer cell line against human leukemias.

Y Yan1, P Steinherz, H G Klingemann, D Dennig, B H Childs, J McGuirk, R J O'Reilly.   

Abstract

We describe here the in vitro and in vivo antileukemia activity of a recently described natural killer (NK) cell line (NK-92), which has features of human activated NK cells. The cytotoxic activity of rhIL2-dependent cultured NK-92 cells against primary patient-derived leukemic target cells [12 acute myelogenous leukemias (AMLs), 7 T acute lymphoblastic leukemias (T-ALLs), 14 B-lineage-ALLs, and 13 chronic myelogenous leukemias (CMLs)], human leukemic cell lines (K562, KG1, HL60, Raji, NALM6, TALL-104, CEM-S, and CEM-T) and normal bone marrow cells was measured in 51Cr-release assay (CRA). The patient-derived leukemias could be subdivided into three groups based on their sensitivity to NK-92 cells: insensitive (< or =19% lysis), sensitive (20-49% lysis), and highly sensitive (> or =50% lysis) at an E:T ratio of 9:1. Of 46 patient-derived samples, 24 (52.2%) were sensitive or highly sensitive to NK-92-mediated in vitro cytotoxicity (6 of 12 AMLs, 7 of 7 T-ALLs, 5 of 14 B-lineage-ALLs, and 6 of 13 CMLs). NK-92 cells were highly cytotoxic against all of the eight leukemic cell lines tested in a standard 4-h CRA. Normal human bone marrow hematopoietic cells derived from 18 normal donors were insensitive to NK-92-mediated cytolysis. In comparison with human lymphokine-activated killer cells, normal NK cells, and T cells, NK-92 cells displayed more powerful antileukemia activity against a patient-derived T-ALL as well as K562 and HL60 cells, both in in vitro CRA and in a xenografted human leukemia SCID mouse model. The NK-92 cells did not induce the development of leukemia in SCID mice after i.v., i.p., or s.c. inoculation. In adoptive transfer experiments, SCID mice receiving i.p. inoculations of human leukemias derived from a T-ALL (TA27) and an AML (MA26) that were highly sensitive to the cytolysis of NK-92 cells in vitro, as well as a pre-B-ALL (BA31) that was insensitive to the in vitro cytolysis of NK-92 cells, were treated by administration of NK-92 cells with or without rhIL2 (2 x 10(7) NK-92 cells i.p.; one dose or five doses). Survival times of SCID mice bearing the sensitive TA27 and MA26 leukemias were significantly prolonged by adoptive cell therapy with NK-92 cells. Some of the animals who received five doses of NK-92 cells with or without rhIL2 administration were still alive without any signs of leukemia development 6 months after leukemia inoculation. In contrast, survival of mice bearing the insensitive BA31 leukemia were not affected by this treatment. This in vitro and in vivo antileukemia effect of NK-92 cells suggests that cytotoxic NK cells of this type may have potential as effectors of leukemia control.

Entities:  

Mesh:

Year:  1998        PMID: 9829753

Source DB:  PubMed          Journal:  Clin Cancer Res        ISSN: 1078-0432            Impact factor:   12.531


  51 in total

1.  Natural killer cell lines preferentially kill clonogenic multiple myeloma cells and decrease myeloma engraftment in a bioluminescent xenograft mouse model.

Authors:  Brenna E Swift; Brent A Williams; Yoko Kosaka; Xing-Hua Wang; Jeffrey A Medin; Sowmya Viswanathan; Joaquin Martinez-Lopez; Armand Keating
Journal:  Haematologica       Date:  2012-01-22       Impact factor: 9.941

2.  In vivo tracking of genetically engineered, anti-HER2/neu directed natural killer cells to HER2/neu positive mammary tumors with magnetic resonance imaging.

Authors:  Heike E Daldrup-Link; Reinhardt Meier; Martina Rudelius; Guido Piontek; Morand Piert; Stephan Metz; Marcus Settles; Christoph Uherek; Winfried Wels; Jürgen Schlegel; Ernst J Rummeny
Journal:  Eur Radiol       Date:  2004-12-23       Impact factor: 5.315

3.  Natural killer cells inhibit oxaliplatin-resistant colorectal cancer by repressing WBSCR22 via upregulating microRNA-146b-5p.

Authors:  Haiyan Zhao; Wuyun Su; Qingmei Kang; Ze Xing; Xue Lin; Zhongjun Wu
Journal:  Am J Cancer Res       Date:  2018-05-01       Impact factor: 6.166

4.  Efficient ADCC killing of meningioma by avelumab and a high-affinity natural killer cell line, haNK.

Authors:  Amber J Giles; Shuyu Hao; Michelle Padget; Hua Song; Wei Zhang; John Lynes; Victoria Sanchez; Yang Liu; Jinkyu Jung; Xiaoyu Cao; Rika Fujii; Randy Jensen; David Gillespie; Jeffrey Schlom; Mark R Gilbert; Edjah K Nduom; Chunzhang Yang; John H Lee; Patrick Soon-Shiong; James W Hodge; Deric M Park
Journal:  JCI Insight       Date:  2019-10-17

Review 5.  Emerging agents and regimens for treatment of relapsed and refractory acute myeloid leukemia.

Authors:  Longzhen Cui; Yan Liu; Yifan Pang; Tingting Qian; Liang Quan; Zhiheng Cheng; Yifeng Dai; Xu Ye; Ying Pang; Jinlong Shi; Xiaoyan Ke; Depei Wu; Lin Fu
Journal:  Cancer Gene Ther       Date:  2019-07-11       Impact factor: 5.987

6.  Transfection of chimeric anti-CD138 gene enhances natural killer cell activation and killing of multiple myeloma cells.

Authors:  Hua Jiang; Wenhao Zhang; Peipei Shang; Hui Zhang; Weijun Fu; Fei Ye; Tianmei Zeng; Hejing Huang; Xueguang Zhang; Wanping Sun; Daniel Man-Yuen Sze; Qing Yi; Jian Hou
Journal:  Mol Oncol       Date:  2013-12-12       Impact factor: 6.603

Review 7.  Natural killer cell lines in tumor immunotherapy.

Authors:  Min Cheng; Jian Zhang; Wen Jiang; Yongyan Chen; Zhigang Tian
Journal:  Front Med       Date:  2012-03-31       Impact factor: 4.592

8.  NK-92 cellular therapy for pediatric relapsed/refractory Ewing sarcoma.

Authors:  Koray Yalcin; Ercument Ovali; Umut Ozdamarlar; Suna Celen; Gulsun Karasu; Akif Yesilipek; Volkan Hazar
Journal:  Int Cancer Conf J       Date:  2020-03-24

9.  Differential killing of pre-B acute lymphoblastic leukaemia cells by activated NK cells and the NK-92 ci cell line.

Authors:  G S D Reid; S Bharya; H-G Klingemann; K R Schultz
Journal:  Clin Exp Immunol       Date:  2002-08       Impact factor: 4.330

10.  Engineered drug-resistant immunocompetent cells enhance tumor cell killing during a chemotherapy challenge.

Authors:  Anindya Dasgupta; David McCarty; H Trent Spencer
Journal:  Biochem Biophys Res Commun       Date:  2009-11-10       Impact factor: 3.575

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