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1. MD-2 determinants of nickel and cobalt-mediated activation of human TLR4.

2. Species-specific activation of TLR4 by hypoacylated endotoxins governed by residues 82 and 122 of MD-2.

3. Toll-Like Receptor 4 Activation in Cancer Progression and Therapy

4. Molecular Basis of the Functional Differences between Soluble Human Versus Murine MD-2: Role of Val135 in Transfer of Lipopolysaccharide from CD14 to MD-2

5. The molecular mechanism of species-specific recognition of lipopolysaccharides by the MD-2/TLR4 receptor complex

6. Delivery system for the enhanced efficiency of immunostimulatory nucleic acids

7. Novel Roles of Lysines 122, 125, and 58 in Functional Differences between Human and Murine MD-2

8. Essential Roles of Hydrophobic Residues in Both MD-2 and Toll-like Receptor 4 in Activation by Endotoxin

9. Engineered human cells: say no to sepsis

10. Glycolipid-based TLR4 Modulators and Fluorescent Probes: Rational Design, Synthesis, and Biological Properties

11. Activation of Human Toll-like Receptor 4 (TLR4)·Myeloid Differentiation Factor 2 (MD-2) by Hypoacylated Lipopolysaccharide from a Clinical Isolate of Burkholderia cenocepacia

12. MD-2 determinants of nickel and cobalt-mediated activation of human TLR4

13. Trehalose- and glucose-derived glycoamphiphiles: small-molecule and nanoparticle Toll-like receptor 4 (TLR4) modulators

14. A bistable genetic switch based on designable DNA-binding domains

15. Development of αGlcN(1↔1)αMan-based lipid A mimetics as a novel class of potent Toll-like receptor 4 agonists

16. Species-Specific Activation of TLR4 by Hypoacylated Endotoxins Governed by Residues 82 and 122 of MD-2

17. Tetraacylated lipid A and paclitaxel-selective activation of TLR4/MD-2 conferred through hydrophobic interactions

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