Allosteric Modulators of the Tertiary Alkanebisamino-Type. Variation of the Substitution of the Middle Chain Nitrogens
摘要:
Synthesis pathways of high flexibility for variously substituted alkanebisamine-type allosteric modulators of musearinic receptors capable of passing the blood-brain barrier were developed starting either from N,N'-(hexane-1,6-diyl)bistosylamide or adipic acid chloride. Pharmacological evaluation of some representative compounds revealed the allosteric potency to fall in a submicromolar range.
Allosteric Modulators of the Tertiary Alkanebisamino-Type. Variation of the Substitution of the Middle Chain Nitrogens
摘要:
Synthesis pathways of high flexibility for variously substituted alkanebisamine-type allosteric modulators of musearinic receptors capable of passing the blood-brain barrier were developed starting either from N,N'-(hexane-1,6-diyl)bistosylamide or adipic acid chloride. Pharmacological evaluation of some representative compounds revealed the allosteric potency to fall in a submicromolar range.
A photosensitive resin composition which is excellent in flexibility and impact resilience, which is less affected by humidity is provided. This composition comprises a soluble synthetic polymer, a photopolymerizable unsaturated compound, and a photo-polymerization initiator, wherein the soluble synthetic polymer comprises an addition polymer obtained by the reaction between a diamine compound having amino groups selected from primary and secondary amino groups and having no amide bonds in its molecule and a diisocyanate compound; and the addition polymer contains a polyoxyalkylene glycol component in an amount of 20 to 80% by weight.
Synthesis pathways of high flexibility for variously substituted alkanebisamine-type allosteric modulators of musearinic receptors capable of passing the blood-brain barrier were developed starting either from N,N'-(hexane-1,6-diyl)bistosylamide or adipic acid chloride. Pharmacological evaluation of some representative compounds revealed the allosteric potency to fall in a submicromolar range.