Search PubMed⌕ Search

Biomedical subjects

D Juliano

Publications and source records attributed to D Juliano.

3 recordsLinked to original sources

Disintegrin interaction with alpha V beta 3 integrin on human umbilical vein endothelial cells: expression of ligand-induced binding site on beta 3 subunit.

The effect of seven disintegrins (albolabrin, barbourin, bitistatin, echistatin, eristostatin, flavoridin, and kistrin) and the neurotoxin analogue, mambin, on the adhesion of human umbilical vein endothelial cells (HUVEC) to immobilized vitronectin and fibronectin has been studied. Adhesion to vitronectin was significantly inhibited by echistatin, kistrin, flavoridin, and mambin. Echistatin, flavoridin, and kistrin bound with high affinity to immobilized alpha V beta 3 in solid phase assay; other disintegrins bound at a much lower level. Echistatin and flavoridin had a modest inhibitory effect on HUVEC adhesion to fibronectin. HUVEC adhered to disintegrins with a high selectivity toward bitistatin, echistatin, flavoridin, kistrin, and mambin. Adhesion of HUVEC to fibronectin and vitronectin resulted in cell spreading, whereas cells adhering to immobilized echistatin remained globular and cells adhering to kistrin showed abnormal morphology. Echistatin and kistrin potently inhibited the binding of monoclonal antibody (Mab) 7E3, which recognizes the alpha V beta 3 complex, to HUVEC. Echistatin and kistrin also induced the binding to HUVEC of Mab 62, which recognizes the ligand-induced binding site (LIBS) epitope on the beta 3 subunit, enhancing HUVEC binding to immobilized Mab 62. Similar results with both antibodies were obtained in Chinese hamster ovary cells transfected with alpha V beta 3 genes. In conclusion, disintegrin interaction with HUVEC appears to be selectively mediated by alpha V beta 3 receptors, and it results in an expression of LIBS epitope that may play a role in the regulation of ligand-binding affinity and intracellular signaling.

Animals↗

Zinc ions potentiate adenosine diphosphate-induced platelet aggregation by activation of protein kinase C.

Zinc deficiency has been linked to a bleeding tendency and impaired wound healing in several disease states. A number of investigators have suggested that zinc ions play a role in platelet aggregation in vitro as well as in in vivo studies. The purpose of the present study was to explore the mechanism by which adenosine diphosphate (ADP) and Zn2+ may act cooperatively during activation of blood platelets. We demonstrate that Zn2+ alone does not affect either formation of thromboxane A2 or intracellular calcium mobilization in platelets. On the other hand, we show that ADP and Zn2+ exert a cooperative effect on the phosphorylation of P-47 protein (pleckstrin), a substrate of protein kinase C in platelets. The inhibitory effect of this reaction by the compound Ro31, a specific inhibitor of the regulatory domain of protein kinase C, was compatible with our contention that Zn2+ may act directly on protein kinase C. Our study provides evidence that zinc ions present in plasma or platelets may modulate ADP-induced platelet aggregation. N,N,N',N'-tetrakis(2-pyridylmethyl)ethylenediamine (TPEN), a zinc chelator, blocked ADP-induced platelet aggregation. This aggregation was restored by 10 mumol/L of Zn2+ but not by other ions. Also, a Zn2+ ionophore, pyrithione, potentiated the ADP-induced platelet aggregation and this potentiation was blocked by TPEN. Experiments with the zinc ionophore suggest that intracellular zinc ions play an important role in activation of platelets, and in the absence of other platelet agonists it appears that it may be a requirement for ADP-induced platelet aggregation to occur.

Adenosine Diphosphate↗

Examiner standardization for caries studies.

Examiners in clinical control programs customarily undergo an intensive period of training to standardize their interpretation of diagnostic criteria. Data are presented summarizing examiner error rates in calibration examinations and reversal rates in a field study.

Child↗