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木菠萝凝集素-硫化铜纳米复合物通过细胞表面糖识别增强了对抗耐药菌的抗菌活性。

Jacalin-copper sulfide nanoparticles complex enhance the antibacterial activity against drug resistant bacteria via cell surface glycan recognition.

机构信息

School of Chemical and Biotechnology, SASTRA Deemed University, Thanjavur, 613401, Tamil Nadu, India.

School of Chemical and Biotechnology, SASTRA Deemed University, Thanjavur, 613401, Tamil Nadu, India.

出版信息

Colloids Surf B Biointerfaces. 2018 Mar 1;163:209-217. doi: 10.1016/j.colsurfb.2017.12.053. Epub 2017 Dec 30.

DOI:10.1016/j.colsurfb.2017.12.053
PMID:29304435
Abstract

In any therapeutic modality the usage of drug in high doses often leads to serious side-effects. Herein, we demonstrated a method to enhance the antibacterial efficacy of CuS NPs at lower concentration through interacting with jackfruit seed lectin, jacalin. Fluorescence quenching studies revealed that jacalin form complex with CuS NPs and the association constant was 1.91 × 10 M. Upon complex with jacalin, the bacterial minimum inhibitory concentration (MIC) of CuS NPs drastically decreases from 12.5 μM to 0.78 μM. The addition of jacalin specific sugar, galactose to jacalin-CuS NPs complex (JCuS NPs) reverses the MIC from 0.78 μM to 25 μM. Mechanistic study suggests that JCuS NPs kills bacteria in part by reactive oxygen species and membrane damage, but galactose prevents the action of JCuS NPs at 0.78 μM. JCuS NPs successfully reduce (14 fold) A. hydrophila colonization in an infected zerbra fish and rescue them completely from the infection, but galJCuS NPs and CuS NPs were ineffective at 0.78 μM. Collectively, our studies demonstrates that the enhance antibacterial activity of JCuS NPs is likely due to the interaction between the galactose binding site of jacalin and the bacterial strains, as a result NPs are targeted and delivered sufficiently.

摘要

在任何治疗模式中,药物高剂量的使用往往会导致严重的副作用。在此,我们展示了一种通过与木菠萝种子凝集素(jacalin)相互作用来提高 CuS NPs 在较低浓度下的抗菌功效的方法。荧光猝灭研究表明,jacalin 与 CuS NPs 形成复合物,其缔合常数为 1.91×10 M。与 jacalin 结合后,CuS NPs 的最低抑菌浓度(MIC)从 12.5 μM 急剧降低至 0.78 μM。向 jacalin-CuS NPs 复合物(JCuS NPs)中加入 jacalin 的特异性糖半乳糖,可将 MIC 从 0.78 μM 逆转至 25 μM。机制研究表明,JCuS NPs 通过活性氧物质和膜损伤部分杀死细菌,但半乳糖可在 0.78 μM 时阻止 JCuS NPs 的作用。JCuS NPs 成功地将感染的斑马鱼中的 A. hydrophila 定植减少了(14 倍),并完全挽救了它们免受感染,但在 0.78 μM 时,galJCuS NPs 和 CuS NPs 无效。总的来说,我们的研究表明,JCuS NPs 增强抗菌活性可能是由于 jacalin 的半乳糖结合位点与细菌菌株之间的相互作用,因此 NPs 被靶向并充分递送到目标部位。

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