Kim Seong-Hoon, Kim Mi-Jin, Lim Mina, Kim Jihye, Kim Hyunmin, Yun Chang-Koo, Yoo Yun-Joo, Lee Youngjun, Min Kyunghoon, Choi Yong-Soo
Department of Biotechnology, CHA University, Seongnam 13488, Republic of Korea.
Research & Development Division, Humancellbio Co., Ltd., Suwon 16227, Republic of Korea.
Cancers (Basel). 2023 Jun 17;15(12):3225. doi: 10.3390/cancers15123225.
An in vitro culture period of at least 2 weeks is required to produce sufficient natural killer (NK) cells for immunotherapy, which are the key effectors in hematological malignancy treatment. Mitochondrial damage and fragmentation reduce the NK cell immune surveillance capacity. Thus, we hypothesized that the transfer of healthy mitochondria to NK cells could enhance their anticancer effects. Allogeneic healthy mitochondria isolated from WRL-68 cells were transferred to NK cells. We evaluated NK cells' proliferative capacity, cell cycle, and cytotoxic capacity against various cancer cell types by analyzing specific lysis and the cytotoxic granules released. The relationship between the transferred allogenic mitochondrial residues and NK cell function was determined. After mitochondrial transfer, the NK cell proliferation rate was 1.2-fold higher than that of control cells. The mitochondria-treated NK cells secreted a 2.7-, 4.1-, and 5-fold higher amount of granzyme B, perforin, and IFN-γ, respectively, when co-cultured with K562 cells. The specific lysis of various solid cancer cells increased 1.3-1.6-fold. However, once allogeneic mitochondria were eliminated, the NK cell activity returned to the pre-mitochondrial transfer level. Mitochondria-enriched NK cells have the potential to be used as a novel solid cancer treatment agent, without the need for in vitro cytokine-induced culture.
为了产生足够数量用于免疫治疗的自然杀伤(NK)细胞,体外培养期至少需要2周,NK细胞是血液系统恶性肿瘤治疗中的关键效应细胞。线粒体损伤和碎片化会降低NK细胞的免疫监视能力。因此,我们假设将健康的线粒体转移到NK细胞中可以增强其抗癌效果。从WRL-68细胞中分离出的同种异体健康线粒体被转移到NK细胞中。我们通过分析特异性裂解和释放的细胞毒性颗粒来评估NK细胞对各种癌细胞类型的增殖能力、细胞周期和细胞毒性能力。确定了转移的同种异体线粒体残余物与NK细胞功能之间的关系。线粒体转移后,NK细胞的增殖率比对照细胞高1.2倍。当与K562细胞共培养时,经线粒体处理的NK细胞分别分泌的颗粒酶B、穿孔素和IFN-γ量高出2.7倍、4.1倍和5倍。各种实体癌细胞的特异性裂解增加了1.3至1.6倍。然而,一旦同种异体线粒体被清除,NK细胞活性就会恢复到线粒体转移前的水平。富含线粒体的NK细胞有潜力用作一种新型的实体癌治疗剂,无需体外细胞因子诱导培养。