Anhui Provincial Engineering Research Center for Polysaccharide Drugs Institute of Synthesis and Application of Medical Materials Department of Pharmacy, Wannan Medical College Jinghu, Wuhu, 241001, Anhui, China.
State Key Laboratory of Biochemical Engineering Institute of Process Engineering, Chinese Academy of Sciences, Beijing, 100190, China.
ChemMedChem. 2021 Aug 5;16(15):2381-2385. doi: 10.1002/cmdc.202100236. Epub 2021 Jun 10.
Therapeutic peptides have attracted significant attention in clinical applications due to their advantages in biological origination and good biocompatibility. However, the therapeutic performance of peptides is usually hindered by their short half-lives in blood and inferior activity. Herein, supramolecular nanodrugs of therapeutic peptides are constructed by covalent assembly of chemotherapeutic peptides through genipin cross-linking. The resulting nanodrugs have intense absorbance in the near-infrared region and high photothermal conversion efficiencies, leading to the possibility of photothermal therapy. The combination of photothermal therapy and chemotherapy using the nanodrugs shows synergistic therapeutic effects on cancer cells. Hence, covalent assembly not only maintains the chemotherapeutic activities of the peptides but also triggers supramolecular photothermal effects, demonstrating that the covalent assembly of therapeutic peptides through genipin cross-linking is an efficient approach in constructing supramolecular nanodrugs toward synergistic anticancer therapy.
治疗性肽由于其生物起源和良好的生物相容性而在临床应用中引起了极大的关注。然而,肽的治疗性能通常受到其在血液中的半衰期短和活性差的限制。本文通过京尼平交联化学治疗性肽的共价组装构建了治疗性肽的超分子纳米药物。所得纳米药物在近红外区域具有强烈的吸光度和高光热转换效率,从而有可能进行光热治疗。纳米药物的光热治疗和化学治疗的联合使用对癌细胞表现出协同治疗效果。因此,共价组装不仅保持了肽的化学治疗活性,而且引发了超分子光热效应,表明通过京尼平交联的治疗性肽的共价组装是构建协同抗癌治疗的超分子纳米药物的有效方法。