Nano Letters 2018-04-12

Subnanometer Gold Clusters Adhere to Lipid A for Protection against Endotoxin-Induced Sepsis

Fang-Hsuean Liao, Te-Haw Wu, Yu-Ting Huang, Wen-Jye Lin, Chun-Jen Su, U-Ser Jeng, Shu-Chen Kuo, Shu-Yi Lin

Index: 10.1021/acs.nanolett.7b05464

Full Text: HTML

Abstract

Endotoxicity originating from a dangerous debris (i.e., lipopolysaccharide, LPS) of Gram-negative bacteria is a challenging clinical problem, but no drugs or therapeutic strategies that can successfully address this issue have been identified yet. In this study, we report a subnanometer gold cluster that can efficiently block endotoxin activity to protect against sepsis. The endotoxin blocker consists of a gold nanocluster that serves as a flakelike substrate and a coating of short alkyl motifs that act as an adhesive to dock with LPS by compacting the intramolecular hydrocarbon chain–chain distance (d-spacing) of lipid A, an endotoxicity active site that can cause overwhelming cytokine induction resulting in sepsis progression. Direct evidence showed the d-spacing values of lipid A to be decreased from 4.19 Å to either 3.85 or 3.54 Å, indicating more dense packing densities in the presence of subnanometer gold clusters. In terms of biological relevance, the concentrations of key pro-inflammatory NF-κB-dependent cytokines, including plasma TNF-α, IL-6, and IL-1β, and CXC chemokines, in LPS-challenged mice showed a noticeable decrease. More importantly, we demonstrated that the treatment of antiendotoxin gold nanoclusters significantly prolonged the survival time in LPS-induced septic mice. The ultrasmall gold nanoclusters could target lipid A of LPS to deactivate endotoxicity by compacting its packing density, which might constitute a potential therapeutic strategy for the early prevention of sepsis caused by Gram-negative bacterial infection.

Latest Articles:

Catalytic Nanotruss Structures Realized by Magnetic Self-Assembly in Pulsed Plasma

2018-04-16

[10.1021/acs.nanolett.8b00718]

Plasmonic Glasses and Films Based on Alternative Inexpensive Materials for Blocking Infrared Radiation

2018-04-16

[10.1021/acs.nanolett.8b00764]

Direct Visualization of Thermal Conductivity Suppression Due to Enhanced Phonon Scattering Near Individual Grain Boundaries

2018-04-13

[10.1021/acs.nanolett.8b00534]

Electrical Transport Signature of the Magnetic Fluctuation-Structure Relation in α-RuCl3 Nanoflakes

2018-04-12

[10.1021/acs.nanolett.8b00926]

Observation of Quasi-Two-Dimensional Polar Domains and Ferroelastic Switching in a Metal, Ca3Ru2O7

2018-04-12

[10.1021/acs.nanolett.8b00633]

More Articles...