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Biomedical subjects

G Fossati

Publications and source records attributed to G Fossati.

152 records · Page 9Linked to original sources

[Congenital anterior urethral fistulas (author's transl)].

Authors report a case of congenital urethral diverticulum which, in the first days of life, spontaneously fistulized. On the basis of the data reported in the Literature and of their own experience they discuss the etiopathogenesis of these rare types of urethral fistulas.

Humans↗

[The role of the granulocytes in ischemic cardiopathy].

Recent studies suggest that granulocytes (PMNs) play a role in the pathogenesis of acute and chronic myocardial ischemia and extension of myocardial injury. Granulocytes can release a variety of mediators tissue injury and synergize with these different mediators, cytokines and other cells resulting in amplification of neutrophil stimulation and rising to additional products with enhanced endothelial injury. Free radicals released by PMNs during ischemia or reperfusion produce deleterious effects on cell membranes, endothelial cells and myocardium. Experience in humans shows the modification of PMNs function in angina and during myocardial ischemia: upon reperfusion PMNs accumulate and produce an inflammatory response leading to endothelial injury. Rabbit derived antiserum dependent-reduction of circulating PMNs in the dog or using monoclonal antibody anti-CD11b/CD18 of PMNs resulted in smaller myocardial infarction. Another aspect of PMNs function is related to leukotriene C4 release; the vasoconstrictor effect of this leukotriene on coronary arteries is synergistic with that induced by platelet-released thromboxane A2, and the decrease in coronary flow produced by the combination of both substances is greater than the sum of changes caused by the two eicosanoids separately administered. The potential role of leukocytes, oxygen radicals, leukotrienes and granulocyte enzymes in the pathophysiology of myocardial injury due to regional ischemia and reperfusion is an area of intense investigation. This overview will not attempt to be exhaustive. Experimental and clinical studies to elucidate these events should not only provide insight into acute and chronic pathologic tissue damage, but may also lead to the identification of important new targets of pharmacologic intervention.

Acute Disease↗

Chemical synthesis and characterisation of rat chaperonin 10: effect of chain length, ions, heat and N-terminal acetylation on unchaperoned folding into its heptameric form.

Recently, the sequence of mitochondrial chaperonin 10 from Rattus norvegicus (rat cpn10), with N-terminal acetylation, has been published. Two syntheses of rat cpn10 were performed, the first using a classical carbodiimide-mediated double coupling protocol (Method A) and the second a more efficient HBTU/HOBT/single coupling procedure (Method B). The latter also involved the application of a capping procedure, using N-(2-chlorobenzyloxycarbonyloxy)succinimide [Z(2-Cl)-OSu]. The crude protein from Method A was purified using a two-step isoelectric focusing/RP-HPLC scheme and found to contain a high proportion of a deletion peptide (less Gln60). Conversely, rat cpn10 from Method B was purified to homogeneity by one-step RP-HPLC, using a reversible lipophilic chromatographic probe. The proportion of biologically active heptameric structure was directly related to the purity of the protein and attained 84% with material from Method B. The addition of Ca/Mg ions, pH 7.2, or a heating/cooling cycle increased the proportion of heptamer for less pure protein. Shorter sequences were found not to fold into heptamers, suggesting that aggregation/folding motifs are located in 1-25 and 77-101 regions of rat cpn10. The heptameric cpn10 (Method B) bound correctly to GroEL from E. coli, demonstrating that N-terminal acetylation is not necessary for its folding and binding to bacterial cpn60.

Acetylation↗