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Inhibition of CaMKIIα Activity Enhances Antitumor Effect of Fullerene C60 Nanocrystals by Suppression of Autophagic Degradation

机译:通过抑制自噬降解,抑制CaMKIIα活性增强了富勒烯C60纳米晶体的抗肿瘤作用。

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Fullerene C60 nanocrystals (nano‐C60) possess various attractive bioactivities, including autophagy induction and calcium/calmodulin‐dependent protein kinase IIα (CaMKIIα) activation. CaMKIIα is a multifunctional protein kinase involved in many cellular processes including tumor progression; however, the biological effects of CaMKIIα activity modulated by nano‐C60 in tumors have not been reported, and the relationship between CaMKIIα activity and autophagic degradation remains unclear. Herein, nano‐C60 is demonstrated to elicit reactive oxygen species (ROS)‐dependent cytotoxicity and persistent activation of CaMKIIα in osteosarcoma (OS) cells. CaMKIIα activation, in turn, produces a protective effect against cytotoxicity from nano‐C60 itself. Inhibition of CaMKIIα activity by either the chemical inhibitor KN‐93 or CaMKIIα knockdown dramatically promotes the anti‐OS effect of nano‐C60. Moreover, inhibition of CaMKIIα activity causes lysosomal alkalinization and enlargement, and impairs the degradation function of lysosomes, leading to autophagosome accumulation. Importantly, excessive autophagosome accumulation and autophagic degradation blocking are shown to play an important role in KN‐93‐enhanced‐OS cell death. The synergistic anti‐OS efficacy of KN‐93 and nano‐C60 is further revealed in an OS‐xenografted murine model. The results demonstrate that CaMKIIα inhibition, along with the suppression of autophagic degradation, presents a promising strategy for improving the antitumor efficacy of nano‐C60.
机译:富勒烯C60纳米晶体(nano-C60)具有多种有吸引力的生物活性,包括自噬诱导和钙/钙调蛋白依赖性蛋白激酶IIα(CaMKIIα)活化。 CaMKIIα是一种多功能蛋白激酶,参与许多细胞过程,包括肿瘤进展;然而,尚未报道由nano-C60调节的CaMKIIα活性在肿瘤中的生物学作用,并且尚不清楚CaMKIIα活性与自噬降解之间的关系。在此,nano-C60被证明可引起骨肉瘤(OS)细胞中依赖活性氧(ROS)的细胞毒性和CaMKIIα的持续活化。 CaMKIIα的激活反过来又产生了抵抗nano-C60本身的细胞毒性的保护作用。通过化学抑制剂KN-93或CaMKIIα的抑制来抑制CaMKIIα活性,可显着促进nano-C60的抗OS作用。此外,抑制CaMKIIα活性会引起溶酶体碱化和增大,并削弱溶酶体的降解功能,导致自噬体的积累。重要的是,过量的自噬小体积累和自噬降解阻滞在KN-93增强型OS细胞死亡中起着重要作用。在OS异种移植的小鼠模型中进一步揭示了KN-93和nano-C60的协同抗OS功效。结果表明,CaMKIIα抑制作用以及自噬降解的抑制作用,为提高nano-C60的抗肿瘤功效提出了有希望的策略。

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