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Cationic PAMAM Dendrimers as Pore-Blocking BinaryToxin Inhibitors

机译:阳离子PAMAM树枝状大分子作为孔阻塞二元毒素抑制剂

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摘要

Dendrimers are unique highly branched macromolecules with numerous groundbreaking biomedical applications under development. Here we identified poly(amido amine) (PAMAM) dendrimers as novel blockers for the pore-forming B components of the binary anthrax toxin (PA63) and Clostridium botulinum C2 toxin (C2IIa). These pores are essential for delivery of the enzymatic A components of the internalized toxins from endosomes into the cytosol of target cells. We demonstrate that at low μM concentrations cationic PAMAM dendrimers block PA63 and C2IIa to inhibit channel-mediated transport of the A components, thereby protecting HeLa and Vero cells from intoxication. By channel reconstitution and high-resolution current recording, we show that the PAMAM dendrimers obstruct transmembrane PA63 and C2IIa pores in planar lipid bilayers at nM concentrations. These findings suggest a new potential role for the PAMAM dendrimers as effective polyvalent channel-blocking inhibitors, which can protect human target cells from intoxication with binary toxins from pathogenic bacteria.
机译:树枝状聚合物是独特的高度分支的大分子,正在开发许多具有开创性的生物医学应用。在这里,我们确定了聚(酰胺胺)(PAMAM)树状聚合物作为二元炭疽毒素(PA63)和肉毒梭菌C2毒素(C2IIa)的成孔B成分的新型阻滞剂。这些孔对于将内在毒素的酶促A成分从内体传递到靶细胞的细胞质中至关重要。我们证明,在低μM浓度下,阳离子PAMAM树状聚合物可阻止PA63和C2IIa抑制通道介导的A组分转运,从而保护HeLa和Vero细胞免受中毒。通过通道重建和高分辨率电流记录,我们显示PAMAM树状聚合物在nM浓度下会阻塞平面脂质双层中的跨膜PA63和C2IIa孔。这些发现表明,PAMAM树状大分子作为有效的多价通道阻滞剂具有潜在的新作用,可以保护人类靶细胞免受致病菌的二元毒素的中毒。

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