Tang Jennifer J-J, Sung Alexander P, Guglielmo Michael J, Navarrete-Galvan Lydia, Redelman Doug, Smith-Gagen Julie, Hudig Dorothy
Department of Microbiology and Immunology, Reno School of Medicine, University of Nevada, 1664 N. Virginia St., Reno, NV 89557, USA.
Department of Physiology and Cell Biology, Reno School of Medicine, University of Nevada, 1664 N. Virginia St., Reno, NV 89557, USA.
Antibodies (Basel). 2020 Oct 16;9(4):54. doi: 10.3390/antib9040054.
NK cell ADCC supports monoclonal antibody anti-tumor therapies. We investigated serial ADCC and whether it could be predicted by NK phenotypes, including expression of CD16A, CD2 and perforin. CD16A, the NK receptor for antibodies, has AA158 valine or phenylalanine variants with different affinities for IgG. CD2, a costimulatory protein, associates with CD16A and can augment CD16A-signaling. Pore-forming perforin is essential for rapid NK-mediated killing. NK cells were monitored for their ADCC serial killing frequency (KF). KF is the average number of target cells killed per cell by a cytotoxic cell population. KF comparisons were made at 1:4 CD16pos NK effector:target ratios. ADCC was toward Daudi cells labeled with Cr and obinutuzumab anti-CD20 antibody. CD16A genotypes were determined by DNA sequencing. CD2, CD16A, and perforin expression was monitored by flow cytometry. Serial killing KFs varied two-fold among 24 donors and were independent of CD16A genotypes and perforin levels. However, high percentages of CD2pos of the CD16Apos NK cells and high levels of CD16A were associated with high KFs. ROC analysis indicated that the %CD2pos of CD16Apos NK cells can predict KFs. In conclusion, the extent of serial ADCC varies significantly among donors and appears predictable by the CD2posCD16Apos NK phenotype.
自然杀伤(NK)细胞介导的抗体依赖的细胞介导的细胞毒性作用(ADCC)支持单克隆抗体抗肿瘤治疗。我们研究了连续ADCC以及它是否可以通过NK细胞表型来预测,包括CD16A、CD2和穿孔素的表达。CD16A是抗体的NK受体,有缬氨酸158或苯丙氨酸变体,对IgG具有不同亲和力。CD2是一种共刺激蛋白,与CD16A相关联,并可增强CD16A信号传导。形成孔道的穿孔素对于NK细胞快速介导的杀伤至关重要。监测NK细胞的ADCC连续杀伤频率(KF)。KF是细胞毒性细胞群体中每个细胞杀死的靶细胞的平均数量。在效应细胞与靶细胞比例为1:4的CD16阳性NK细胞条件下进行KF比较。ADCC作用针对用铬标记的Daudi细胞和奥滨尤妥珠单抗抗CD20抗体。通过DNA测序确定CD16A基因型。通过流式细胞术监测CD2、CD16A和穿孔素的表达。在24名供体中,连续杀伤KF变化两倍,且与CD16A基因型和穿孔素水平无关。然而,CD16A阳性NK细胞中高比例的CD2阳性和高水平的CD16A与高KF相关。ROC分析表明,CD16A阳性NK细胞的CD2阳性百分比可以预测KF。总之,连续ADCC的程度在供体之间有显著差异,并且似乎可以通过CD2阳性CD16A阳性NK细胞表型来预测。