19 results on '"Tran, Hue N. T."'
Search Results
2. Evaluation of Peptide Ligation Strategies for the Synthesis of the Bivalent Acid-Sensing Ion Channel Inhibitor Hi1a.
3. Changes in Potency and Subtype Selectivity of Bivalent NaV Toxins are Knot-Specific.
4. µ-Conotoxins Targeting the Human Voltage-Gated Sodium Channel Subtype NaV1.7
5. On the Utility of Chemical Strategies to Improve Peptide Gut Stability
6. On the Utility of Chemical Strategies to Improve Peptide Gut Stability
7. Pain-causing stinging nettle toxins target TMEM233 to modulate NaV1.7 function.
8. Changes in Potency and Subtype Selectivity of Bivalent NaVToxins are Knot-Specific
9. Evaluation of Efficient Non-reducing Enzymatic and Chemical Ligation Strategies for Complex Disulfide-Rich Peptides
10. The Allosteric Activation of α7 nAChR by α-Conotoxin MrIC Is Modified by Mutations at the Vestibular Site
11. Chemical Synthesis of TFF3 Reveals Novel Mechanistic Insights and a Gut-Stable Metabolite
12. Improving the Gastrointestinal Stability of Linaclotide
13. Structural and functional insights into the inhibition of human voltage-gated sodium channels by μ-conotoxin KIIIA disulfide isomers.
14. Enzymatic Ligation of a Pore Blocker Toxin and a Gating Modifier Toxin: Creating Double-Knotted Peptides with Improved Sodium Channel NaV1.7 Inhibition
15. Enzymatic Ligation of a Pore Blocker Toxin and a Gating Modifier Toxin: Creating Double-Knotted Peptides with Improved Sodium Channel NaV1.7 Inhibition
16. Manipulation of a spider peptide toxin alters its affinity for lipid bilayers and potency and selectivity for voltage-gated sodium channel subtype 1.7.
17. Changes in Potency and Subtype Selectivity of Bivalent Na V Toxins are Knot-Specific.
18. Discovery, Pharmacological Characterisation and NMR Structure of the Novel µ-Conotoxin SxIIIC, a Potent and Irreversible Na V Channel Inhibitor.
19. Enzymatic Ligation of a Pore Blocker Toxin and a Gating Modifier Toxin: Creating Double-Knotted Peptides with Improved Sodium Channel Na V 1.7 Inhibition.
Catalog
Books, media, physical & digital resources
Discovery Service for Jio Institute Digital Library
For full access to our library's resources, please sign in.