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PubMed · 5572375

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1971-05-01. Hiccup.. https://pubmed.ncbi.nlm.nih.gov/5572375/

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Rho-kinase inhibitor suppressed restenosis in porcine coronary balloon angioplasty.

BACKGROUND: Constrictive remodeling is thought to be more important than neointimal formation in coronary restenosis after balloon angioplasty. The inhibition of Rho-kinase prevents neointimal proliferation, but now this inhibition that affects constrictive remodeling remains unknown. To explore this issue further, we investigated whether a specific Rho-kinase inhibitor, Y-27632, could suppress restenosis after coronary balloon angioplasty in a porcine model. METHODS: Balloon angioplasty with local administration of Y-27632 (Y group) or vehicle (C group) was performed at 2 and 3 weeks after overstretch injury in a porcine coronary artery. Quantitative coronary angiography (QCA) and quantitative coronary ultrasound (QCU) were performed to assess the coronary lesion segment. A morphometrical analysis was performed in a histological study. Proliferative cells and p27(Kip1)-positive cells were evaluated in the arterial wall using immunohistochemistry. RESULTS: QCA and QCU demonstrated that the minimal lumen diameter and minimal lumen area were greater, and % stenosis was less in the Y group than in the C group. The QCU analysis also revealed a significant inhibition in the increase of the intimal area and a prevention of constrictive remodeling by Y-27632. In the histological study, the intimal, adventitial and collagen areas were significantly smaller in the Y group than in the C group. The Y group also exhibited significantly less proliferative activity and a significantly higher percentage of cells expressing p27(Kip1) in the arterial wall. CONCLUSION: Local delivery of Y-27632 suppressed constrictive remodeling as well as neointimal formation after coronary balloon angioplasty in pigs.

Amides↗

Solution structure of quinoline- and pyridine-derived oligoamide foldamers.

The unambiguous elucidation of a new folded structure in solution may prove to be a very challenging task. The NMR protocols developed for solving the solution structures of alpha-peptides have been applied to aliphatic beta- and gamma-peptides but are not directly applicable to aromatic oligomers. In particular, the string of spin systems in an aromatic sequence cannot be reconstituted solely from correlations between protons. For aromatic oligomers, it is shown that the assignment of a large part of the 13C NMR spectrum through HMBC and HSQC experiments allows to unambiguously assign proton NMR spectra and in turn to interpret NOE correlations. This has been implemented both with quinoline- and pyridine-derived oligoamide foldamers, and should be applicable to a wide range of oligomers including various combinations of monomers. The NOE correlations allow the unambiguous solution structure elucidation of helical conformations of oligoamides derived from pyridine and quinoline monomers showing that, in these series, the solution structures correspond very well to the structures observed in the solid state.

Amides↗

Anion recognition by neutral macrocyclic amides.

Although amides often serve as anchoring groups in natural and synthetic anion receptors, the structure-affinity relationship studies of amide-based macrocyclic receptors are still very limited. Therefore, we decided to investigate the influence of the size of the macroring on the strength and selectivity of anion binding by uncharged, amide-based receptors. With this aim, we synthesized a series of macrocyclic tetraamides derived from 2,6-pyridinedicarboxylic acid and aliphatic alpha,omega-diamines of different lengths. X-ray analysis shows that all ligands studied adopt expanded conformations in the solid state with the convergent arrangement of all four hydrogen-bond donors. 1H NMR titrations in DMSO solution revealed a significant effect of the ring size on the stability constants of anion complexes; the 20-membered macrocyclic tetraamide 2 is a better anion receptor than its both 18- and 24-membered analogues. This effect cannot be interpreted exclusively in terms of matching between anion diameter and the size of macrocyclic cavity, because 2 forms the most stable complexes with all anions studied, irrespective of their sizes. However, geometric complementarity manifests in extraordinarily high affinity of 2 towards the chloride anion. The results obtained for solutions were interpreted in the light of solid-state structural studies. Taken together, these data suggest that anion binding by this family of macrocycles is governed by competitive interplay between their ability to adjust to a guest, requiring longer aliphatic spacers, and preorganization, calling for shorter spacers. The 20-membered receptor 2 is a good compromise between these factors and, therefore, it was selected as a promising leading structure for further development of anion receptors. Furthermore, the study of an open chain analogue of 2 revealed a substantial macrocyclic effect. X-ray structure of the acyclic model 14 suggests that this may be due to its ill-preorganized conformation, stabilized by two intramolecular hydrogen bonds.

Amides↗