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通过大环配合物对生物大分子毒素进行超分子解毒。

Supramolecular Detoxification of Macromolecular Biotoxin through the Complexation by a Large-Sized Macrocycle.

机构信息

Center for Supramolecular Chemistry and Catalysis, Department of Chemistry, Shanghai University, Shanghai, 200444, P. R. China.

State Key Laboratory of Toxicology and Medical Countermeasures, Beijing Institute of Pharmacology and Toxicology, Beijing, 100850, P. R. China.

出版信息

Adv Healthc Mater. 2022 Jul;11(14):e2200270. doi: 10.1002/adhm.202200270. Epub 2022 May 18.

Abstract

Biotoxins are diverse, complex, and hypertoxic, ultimately serving as grave and lasting menaces to humanity. Here, it is aimed to introduce a new detoxification methodology for macromolecular biotoxin through complexation by a very large macrocycle. A 25-mer peptide isolated from Lycosa erythrognatha spider venom (LyeTxI) is selected as the model macromolecular biotoxin. Quaterphen[4]arene, with a side length of ≈1.6 nm, has a sufficient cavity to bind LyeTxI. Hence, the water-soluble derivative of Quaterphen[4]arene (H) is designed and synthesized. H exhibits an overall host-guest complexation toward LyeTxI, resulting in a considerably high association constant of (7.01 ± 0.18) × 10  m . This encapsulation of peptide is interesting as traditional macrocycles can only engulf the amino acid residues of peptides due to their limited cavity size. In vitro assay verifies that complexation by H inhibits the interactions of LyeTxI with cell membranes, thereby reducing its cytotoxicity, suppressing hemolysis, and decreasing the release of lactate dehydrogenase. Notably, the intravenous administration of H has a significant therapeutic effect on LyeTxI-poisoned mice, alleviating inflammation and tissue damage, and markedly improving the survival rate from 10% to 80%. An efficient and potentially versatile approach is provided to detoxify macromolecular biotoxins, with giant macrocycle serving as an antidote.

摘要

生物毒素种类繁多、结构复杂且毒性极强,对人类健康构成严重且持久的威胁。本研究旨在探索一种利用大环分子通过配位作用对生物大分子毒素进行解毒的新方法。选择从狼蛛毒液中分离得到的 25 肽(LyeTxI)作为模型生物大分子毒素。具有 ≈1.6nm 边长的四环芳烃(Quaterphen[4]arene)空腔足以容纳 LyeTxI。因此,设计并合成了水溶性四环芳烃衍生物(H)。H 与 LyeTxI 之间存在较强的主客体配位作用,其结合常数高达(7.01 ± 0.18)×10^5 M^-1。这种肽的包合作用很有趣,因为传统大环分子由于其有限的空腔大小,只能包裹肽的氨基酸残基。体外实验验证了 H 与 LyeTxI 的配位作用可以抑制其与细胞膜的相互作用,从而降低其细胞毒性、抑制溶血并减少乳酸脱氢酶的释放。值得注意的是,H 对 LyeTxI 中毒的小鼠具有显著的治疗作用,可减轻炎症和组织损伤,将存活率从 10%提高到 80%。该研究为生物大分子毒素的解毒提供了一种高效且具有广泛应用前景的方法,大环分子可用作解毒剂。

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