Kang Yoon-Tae, Niu Zeqi, Hadlock Thomas, Purcell Emma, Lo Ting-Wen, Zeinali Mina, Owen Sarah, Keshamouni Venkateshwar G, Reddy Rishindra, Ramnath Nithya, Nagrath Sunitha
Department of Chemical Engineering Biointerfaces Institute University of Michigan Ann Arbor MI 48109 USA.
Michigan Medicine Pulmonary and Critical Care Division University of Michigan Ann Arbor MI 48109 USA.
Adv Sci (Weinh). 2021 Jan 28;8(6):2003747. doi: 10.1002/advs.202003747. eCollection 2021 Mar.
As the recognition between natural killer (NK) cells and cancer cells does not require antigen presentation, NK cells are being actively studied for use in adoptive cell therapies in the rapidly evolving armamentarium of cancer immunotherapy. In addition to utilizing NK cells, recent studies have shown that exosomes derived from NK cells also exhibit antitumor properties. Furthermore, these NK cell-derived exosomes exhibit higher stability, greater modification potentials and less immunogenicity compared to NK cells. Therefore, technologies that allow highly sensitive and specific isolation of NK cells and NK cell-derived exosomes can enable personalized NK-mediated cancer therapeutics in the future. Here, a novel microfluidic system to collect patient-specific NK cells and on-chip biogenesis of NK-exosomes is proposed. In a small cohort of non-small cell lung cancer (NSCLC) patients, both NK cells and circulating tumor cells (CTCs) were isolated, and it is found NSCLC patients have high numbers of NK and NK-exosomes compared with healthy donors, and these concentrations show a trend of positive and negative correlations with bloodborne CTC numbers, respectively. It is further demonstrated that the NK-exosomes harvested from NK-graphene oxide chip exhibit cytotoxic effect on CTCs. This versatile system is expected to be used for patient-specific NK-based immunotherapies along with CTCs for potential prognostic/diagnostic applications.
由于自然杀伤(NK)细胞与癌细胞之间的识别不需要抗原呈递,因此在迅速发展的癌症免疫治疗手段中,NK细胞正被积极研究用于过继性细胞疗法。除了利用NK细胞外,最近的研究表明,源自NK细胞的外泌体也具有抗肿瘤特性。此外,与NK细胞相比,这些源自NK细胞的外泌体表现出更高的稳定性、更大的修饰潜力和更低的免疫原性。因此,能够高度灵敏且特异性地分离NK细胞和源自NK细胞的外泌体的技术,有望在未来实现个性化的NK介导的癌症治疗。在此,我们提出了一种新型微流控系统,用于收集患者特异性NK细胞并在芯片上生成NK外泌体。在一小群非小细胞肺癌(NSCLC)患者中,NK细胞和循环肿瘤细胞(CTC)均被分离出来,结果发现,与健康供体相比,NSCLC患者的NK细胞和NK外泌体数量较多,并且这些浓度分别与血源CTC数量呈正相关和负相关趋势。进一步证明,从NK-氧化石墨烯芯片收获的NK外泌体对CTC具有细胞毒性作用。这个多功能系统有望用于基于患者特异性NK细胞的免疫治疗,并结合CTC用于潜在的预后/诊断应用。