Xie Wenjing, Wang Haoyu, Xu Huimin, Su Wen, Yuan Ting, Chang Jianqiao, Bai Yiqi, Fan Yixiao, Zhang Yang, Li Yunchao, Li Xiaohong, Fan Louzhen
Key Laboratory of Theoretical & Computational Photochemistry and Radiopharmaceuticals of Ministry of Education, College of Chemistry, Beijing Normal University, Beijing, 100875, China.
Nat Commun. 2025 Mar 19;16(1):2716. doi: 10.1038/s41467-025-57531-0.
Effective antitumor nanomedicines maximize therapeutic efficacy by prolonging drug circulation time and transporting drugs to target sites. Although numerous nanocarriers have been developed for accurate tumor targeting, their limited water solubility makes their stable storage challenging, and poses biosafety risks in clinical translation. Herein, we choose reduced glutathione (GSH) to quick synthesize gram-scale water-soluble large amino acids mimicking carbon quantum dots (LAAM GSH-CQDs) enriched in steric chain amino acid groups with solubility of up to 2.0 g mL. The water-solubility arises from a hexagonal arrangement formed between amino acid groups and water molecules through hydrogen bonding, producing chair-form hexamer hydration layers covering LAAM GSH-CQDs. This endows a noticeable stability against long-term storage and adding electrolytes. Specifically, they exhibit negligible protein absorption, immunogenicity, and hemolysis, with stealth effect, showing an extraordinarily tolerated dose (5000 mg kg) in female mice. The rich amino acid groups simultaneously endow them considerable tumor-specific targeting. The loading of first-line chemotherapeutic drug doxorubicin onto LAAM GSH-CQDs through π-π stacking without sacrificing their merits achieves superior tumor inhibition and minimal side effects compared to commercial doxorubicin liposomal. The tumor-targeted drug delivery platform offered by LAAM GSH-CQDs holds significant promise for advancing clinical applications in cancer treatment.
有效的抗肿瘤纳米药物通过延长药物循环时间并将药物输送到靶部位来最大化治疗效果。尽管已经开发了许多用于精确肿瘤靶向的纳米载体,但其有限的水溶性使其稳定储存具有挑战性,并在临床转化中带来生物安全风险。在此,我们选择还原型谷胱甘肽(GSH)快速合成克级水溶性大氨基酸模拟碳量子点(LAAM GSH-CQDs),其富含空间链氨基酸基团,溶解度高达2.0 g/mL。水溶性源于氨基酸基团与水分子通过氢键形成的六边形排列,产生覆盖LAAM GSH-CQDs的椅式六聚体水合层。这赋予了其对长期储存和添加电解质的显著稳定性。具体而言,它们表现出可忽略不计的蛋白质吸附、免疫原性和溶血作用,具有隐身效果,在雌性小鼠中显示出极高的耐受剂量(5000 mg/kg)。丰富的氨基酸基团同时赋予它们相当大的肿瘤特异性靶向性。通过π-π堆积将一线化疗药物阿霉素负载到LAAM GSH-CQDs上而不牺牲其优点,与市售阿霉素脂质体相比,实现了卓越的肿瘤抑制和最小的副作用。LAAM GSH-CQDs提供的肿瘤靶向药物递送平台在推进癌症治疗的临床应用方面具有重大前景。