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O Vales

Publications and source records attributed to O Vales.

At least 19 recordsLinked to original sources

The ultrastructure of the reaction of arterial walls to cholesterol crystals in atheroembolism.

Scanning electron microscopy of atheromatous material revealed flat rhombic cholesterol crystals piled one upon the other. The fate of cholesterol crystals in the atheromatous material was followed after injection intra-arterially into the left renal arteries and left common carotid arteries of rabbits. The lipid and membranous component of the atheromatous material disappeared from the lumen of the vessels in 2-3 days after injection. Macrophages engulfed small cholesterol crystals and exposed surfaces attracted a layer of platelets. Larger cholesterol crystals evoked a giant cell response while within the lumen. Some cholesterol crystals penetrated the vessel walls or were included in the vessel wall reaction and induced a covering of endothelial cells sequestrating them from the lumen. The cholesterol crystals contained in some of the macrophages showed fracture lines and in some instances there were associated myelin figures. Large cholesterol crystals eventually elicited a fibroblastic response from the vessel wall (at about 1-4 weeks after injection) which could give rise to partial or almost complete occlusion of the vessel lumen.

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Electron microscopy of the sequence of events in the atheroembolic occlusion of cerebral arteries in an animal model.

Atheromatous material was removed from human atheromas, suspended in sterile saline in the ratio of 1 g to 5 ml and ground to allow passage through a needle; 0-5 ml of this suspension was injected into the left common carotid artery of 16 rabbits. Six animals died after the injection. The remaining animals were killed after various time intervals and the occluded arteries studied by electron microscopy. The general pattern of the embolic event in the cerebral arteries was that there were 3 groups of changes. Firstly, an immediate period of atherothrombotic occlusion occurred, which was followed by some resolution of the obstruction so as to leave the cholesterol crystals of the embolus stuck in the vessel walls as the only remaining element of the embolus in some cases. Finally, there was a late period in which the cholesterol crystals were isolated from the lumen of the vessel and surrounded by macrophages, fibroblastic cells and collagen. Endothelial lined channels developed in the original obstruction.

Animals↗

[Brenner tumor].

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