Henan Provincial People's Hospital, People's Hospital of Zhengzhou University, Zhengzhou, 450003, China.
Key Laboratory of Natural Medicine and Immune Engineering, School of Pharmacy, Henan University, Kaifeng, 475004, China.
Adv Healthc Mater. 2022 Nov;11(22):e2200817. doi: 10.1002/adhm.202200817. Epub 2022 Sep 13.
The existing treatments for ischemic stroke cannot meet the clinical needs so far. Quercetin (QT) is an effective apoptosis inhibitor and antioxidant flavonoid, but its water solubility is poor and has no targeting. In this study, QT is modified with hyaluronic acid (HA) to form a water-soluble conjugate HA-QT, which can specifically bind to CD44 receptors and response to hyaluronidase. Next, a novel delivery system SS31-HA-QT is prepared by further modification with SS31, a polypeptide capable of penetrating the blood-brain barrier (BBB) and indiscriminately targeting mitochondria. Meanwhile, IR780, a near-infrared dye, is conjugated onto HA-QT and SS31-HA-QT to form diagnosis tools to trace HA-QT and SS31-HA-QT. In vitro and in vivo results shows that SS31 can four-fold increase the drug penetration into BBB without any toxicity. The highly expressed CD44 and hyaluronidase in ischemic area ensured the targeted delivery of QT to the ischemic region. Importantly, the mitochondrial targeting of damaged neurons is also achieved by SS31. Further studies confirmed that SS31-HA-QT exerted neuron-protection by activating mitophagy, and its mechanism involved Akt/mTOR related TFEB and HIF-1α activation. Hence, SS31-HA-QT shall be a promising neuroprotective drug due to its high water-solubility, superior triple-targeted neuroprotective ability, low toxicity, and high efficiency.
目前,缺血性脑卒中的治疗方法尚不能满足临床需求。槲皮素(QT)是一种有效的细胞凋亡抑制剂和抗氧化黄酮类化合物,但水溶性差,没有靶向性。本研究通过透明质酸(HA)对 QT 进行修饰,形成一种具有水溶性的共轭物 HA-QT,它可以特异性结合 CD44 受体,并对透明质酸酶产生响应。接下来,通过进一步与能够穿透血脑屏障(BBB)并无差别靶向线粒体的多肽 SS31 进行修饰,制备了一种新型的递送系统 SS31-HA-QT。同时,将近红外染料 IR780 连接到 HA-QT 和 SS31-HA-QT 上,形成用于追踪 HA-QT 和 SS31-HA-QT 的诊断工具。体外和体内结果表明,SS31 可以使药物穿透 BBB 的能力增加四倍,而没有任何毒性。缺血区域中高表达的 CD44 和透明质酸酶确保了 QT 能够靶向递送到缺血区域。重要的是,SS31 还实现了对受损神经元的线粒体靶向。进一步的研究证实,SS31-HA-QT 通过激活线粒体自噬发挥神经元保护作用,其机制涉及 Akt/mTOR 相关的 TFEB 和 HIF-1α 激活。因此,由于 SS31-HA-QT 具有高水溶性、优越的三重靶向神经保护能力、低毒性和高效性,它有望成为一种有前途的神经保护药物。