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1. Piezo channels and GsMTx4: Two milestones in our understanding of excitatory mechanosensitive channels and their role in pathology.

2. Human PIEZO1 Ion Channel Functions as a Split Protein.

3. Stretch induced endothelin-1 secretion by adult rat astrocytes involves calcium influx via stretch-activated ion channels (SACs)

4. Real Time FRET Based Detection of Mechanical Stress in Cytoskeletal and Extracellular Matrix Proteins.

5. A fluorescence energy transfer-based mechanical stress sensor for specific proteins in situ.

6. Mechanosensitive channel properties and membrane mechanics in mouse dystrophic myotubes.

7. Bilayer-dependent inhibition of mechanosensitive channels by neuroactive peptide enantiomers.

8. Identification of a Peptide Toxin from Grammostola spatulata Spider Venom that Blocks Cation-selective Stretch-activated Channels.

10. Mechanosensitive ion channels and the peptide inhibitor GsMTx-4: History, properties, mechanisms and pharmacology

11. Effects of stretch-activated channel blockers on[Ca2+]i and muscle damage in themdxmouse.

12. Investigating the interaction of Grammostola rosea venom peptides and model lipid bilayers with solid-state NMR and electron microscopy techniques.

13. GsMTx4-D provides protection to the D2.mdx mouse.

14. GsMTx4-D is a cardioprotectant against myocardial infarction during ischemia and reperfusion.

15. Effects of Lys to Glu mutations in GsMTx4 on membrane binding, peptide orientation, and self-association propensity, as analyzed by molecular dynamics simulations.

16. Caveolae Regulation of Mechanosensitive Channel Function in Myotubes.

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