Pharmaceutical Biology (Jan 2020)

A high-throughput assay for screening natural products that boost NK cell-mediated killing of cancer cells

  • Zihang Xu,
  • Xiaowen Zhu,
  • Lin Su,
  • Chunpu Zou,
  • Xiao Chen,
  • Yifei Hou,
  • Chenyuan Gong,
  • Wanyi Ng,
  • Zhongya Ni,
  • Lixin Wang,
  • Xuewei Yan,
  • Yangzhuangzhuang Zhu,
  • Xiaoning Jiao,
  • Chao Yao,
  • Shiguo Zhu

DOI
https://doi.org/10.1080/13880209.2020.1748661
Journal volume & issue
Vol. 58, no. 1
pp. 357 – 366

Abstract

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Context Natural killer (NK) cells can eliminate malignant cells and play a vital role in immunosurveillance. Administration of natural compounds represents a promising approach for antitumor immunotherapy, which may enhance the NK cell activity via multiple mechanisms. Objective Establishing approaches to evaluate the effect of select natural products on NK cell-mediated cytotoxicity. Materials and methods We selected a natural product library containing 2880 pure compounds, which was provided by the National Centre for Drug Screening of China. 0.1% DMSO was employed as a negative control, and 100 U/mL human recombinant IL-2 was employed as a positive control. To evaluate the % of tumour cells which were killed by NK cells, expanded NK cells were co-cultured with tumour cells and then treated with natural products at the concentration of 10 μM. After 24-h co-incubation, luminescent signal was detected and percent lysis was calculated. Results We report on the results of a three-round high-throughput screening effort that identified 20-deoxyingenol 3-angelate (DI3A) and its analogue ingenol 3-angelate (I3A) as immuno enhancers which boosts NK cell-mediated killing of non-small cell lung cancer cells (NSCLCs). Biophotonic cytotoxicity assay and calcein release assay were used as two well-established NK cell cytotoxicity detection assays to validate the immuno-enhancing effects of DI3A and I3A, which was achieved by increasing degranulation and interferon-gamma secretion of NK cells. Conclusions Our newly established ATP-based method was a valuable and information-rich screening tool to investigate the biological effects of natural products on both NK cells and tumour cells.

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