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Michael Watson

Publications and source records attributed to Michael Watson.

22 records · Page 2Linked to original sources

Solution structure of mu-conotoxin PIIIA, a preferential inhibitor of persistent tetrodotoxin-sensitive sodium channels.

Mu-conotoxins are peptide inhibitors of voltage-sensitive sodium channels (VSSCs). Synthetic forms of mu-conotoxins PIIIA and PIIIA-(2-22) were found to inhibit tetrodotoxin (TTX)-sensitive VSSC current but had little effect on TTX-resistant VSSC current in sensory ganglion neurons. In rat brain neurons, these peptides preferentially inhibited the persistent over the transient VSSC current. Radioligand binding assays revealed that PIIIA, PIIIA-(2-22), and mu-conotoxins GIIIB discriminated among TTX-sensitive VSSCs in rat brain, that these and GIIIC discriminated among the corresponding VSSCs in human brain, and GIIIA had low affinity for neuronal VSSCs. (1)H NMR studies found that PIIIA adopts two conformations in solution due to cis/trans isomerization at hydroxyproline 8. The major trans conformation results in a three-dimensional structure that is significantly different from the previously identified conformation of mu-conotoxins GIIIA and GIIIB that selectively target TTX-sensitive muscle VSSCs. Comparison of the structures and activity of PIIIA to muscle-selective mu-conotoxins provides an insight into the structural requirements for inhibition of different TTX-sensitive sodium channels by mu-conotoxins.

Amino Acid Sequence↗

Fever as a marker of reactogenicity of an acellular pertussis-containing hexavalent vaccine (HEXAVAC) in a large-scale, open, randomized safety study in healthy French infants.

OBJECTIVE: New multivalent vaccines simplify childhood immunisation schedules and can increase vaccination coverage. However, they must have a reactogenicity profile which is acceptable and comparable with that of previously available vaccines. The objective of this trial was to assess the incidence of fever of 40.0 degrees C or higher following vaccination with HEXAVAC or concomitant PENTACOQ and HBVAXPRO. STUDY DESIGN: This was an open, randomized, pragmatic, post-licensure multicenter trial performed in France. Infants were randomly assigned to receive either a single injection of a hexavalent, aP-containing vaccine (HEXAVAC) or separate injections of a pentavalent, wP-containing vaccine (PENTACOQ) and Hepatitis B vaccine (HBVAXPRO) at 2, 3 and 4 months of age. Both groups received a HEXAVAC booster at 12-18 months of age. RESULTS AND DISCUSSION: 7151 infants were enrolled in 389 centers. During the combined three-day periods following the primary series injections, the incidence of fever of 40.0 degrees C or higher with HEXAVAC was not greater than with [PENTACOQ and HBVAXPRO]. The incidence of fever at thresholds of 38.0 degrees C, 38.5 degrees C, 39.0 degrees C and 39.5 degrees C was significantly lower in the HEXAVAC group. The vaccine attributable risk for fever of 40.0 degrees C following the booster injection with HEXAVAC was statistically acceptable. CONCLUSION: The incidence of fever of 40.0 degrees C or higher in this study was very low and similar in both groups (HEXAVAC or [PENTACOQ + HBVAXPRO] as a three-dose primary series). Fever > or =38.0 degrees C and < or =39.5 degrees C was significantly less frequent following administration of HEXAVAC. The incidence of fever of 40.0 degrees C or higher following a HEXAVAC booster dose was low in all infants studied.

Biomarkers↗