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J Corral

Publications and source records attributed to J Corral.

At least 37 records · Page 2Linked to original sources

Monoallelic deletion in the 5' region of the thyroglobulin gene as a cause of sporadic nonendemic simple goiter.

The cause of sporadic simple goiter is unknown in most cases. Family studies have suggested that this disorder may have a genetic component in some patients. We have previously demonstrated that some cases of endemic and nonendemic simple goiter are associated with a mutation within exon 10 of the thyroglobulin gene. Here we report a study of 50 cases diagnosed as having nonendemic simple goiter, and found 1 case with a large heterozygous deletion within the thyroglobulin gene. The deletion involves the promoter region and the 11 first exons of this gene and is associated with a euthyroid state. We hypothesize that the absence of thyroglobulin synthesis from the deleted allele may be responsible for a decreased level of thyroglobulin mRNA. Euthyroidism would be achieved by thyrotropin (TSH) stimulation but at the expense of goiter development.

Aged↗

Effects of ozone exposure on nuclear factor-kappaB activation and tumor necrosis factor-alpha expression in human nasal epithelial cells.

In this study we investigated a possible mechanism of the human airway inflammatory response to inhaled ozone (O(3)). Cultures of human nasal epithelial (HNE) cells, initiated from excised nasal turbinates and grown on collagen-coated Transwell tissue culture inserts, were exposed to 120, 240, or 500 ppb O(3) for 3 h. An electron spin resonance (ESR) signal that changed with time suggested free radical production in HNE cells exposed to O(3). Nuclear protein extracts were analyzed for the activated transcription factor NF-kappaB by electrophoretic mobility-shift assay (EMSA), and showed a small dose-response activation of NF-kappaB that coincided with O(3)-induced free radical production. Basal media were analyzed for the presence of tumor necrosis factor-alpha (TNF-alpha) using the enzyme-linked immunosorbent assay (ELISA). In cultures exposed to 120 ppb O(3), the mean TNF-alpha concentration was not significantly different from those exposed to air. However, exposure to 240 and 500 ppb O(3) significantly increased mean TNF-alpha expression, relative to controls, 16 h after exposure. These results support the hypothesis that the human airway epithelium plays a role in directing the inflammatory response to inhaled O(3) via free radical-mediated NF-kappaB activation.

Adult↗

Binding of recombinant apolipoprotein(a) to human platelets and effect on platelet aggregation.

The interaction of lipoprotein(a) [Lp(a)] with platelets is not well defined, particularly with regards to the individual contribution of the protein components of Lp(a), the apo B-100 and the apolipoprotein apo(a). This study investigated the binding of different recombinant apo(a) [r-apo(a)] isoforms, to human platelets and its effect on platelet aggregation. Scatchard analysis of saturation binding experiments demonstrated that human platelets display a single class of high affinity r-apo(a) binding sites (71 +/- 46 molec./platelet, Kd = 5.6 +/- 2.0 nmol/L). Platelet activation with strong agonists (thrombin, arachidonic acid) increased 2- to 10-fold the r-apo(a) binding, without affecting the affinity. Competition assays showed that the binding sites are highly specific for r-apo(a) and Lp(a). At high concentration t-PA could also bind to the r-apo(a) binding sites. By contrast, neither fibrinogen nor plasminogen inhibited to the r-apo(a) binding. The lysine analogue EACA inhibits the binding of r-apo(a) to platelets, thus suggesting the involvement of lysine residues in that interaction. Moreover, the r-apo(a) binding to platelets is unlikely mediated by GPIIb/IIIa-attached fibrin since it is not affected by platelet treatment with either LJ-CP8, a monoclonal antibody that specifically blocks fibrinogen binding to GPIIb/IIIa, nor GPRP, an inhibitor of fibrin polymerisation. Finally, we show that the distinct recombinant apo(a) proteins, as well as native Lp(a), promote an aggregation response of platelets to otherwise subaggregant doses of arachidonic acid. This proaggregant effect of r-apo(a) is dependent on its binding to platelets since it requires a minimum incubation time, and it is prevented by EACA at concentration inhibiting the r-apo(a)-platelet interaction. These results suggest that the prothrombotic action of Lp(a) may be in part mediated by modulating the platelet function through the interaction of its apo(a) subunit with a specific receptor at the platelet surface.

Adenosine Diphosphate↗

Effect of cold-storage in the accumulation of bioreactive substances in platelet concentrates treated with second messenger effects.

BACKGROUND AND OBJECTIVES: The mandatory 5-day of shelf-life platelet concentrates (PCs) creates outdating and inventory control problems in blood banking. Moreover, storage of PCs at 22-24 degrees C has been associated with a time-dependent accumulation of pyrogenic cytokines, potentially harmful for recipients. Previous studies have shown that supplementation of PCs with ThromboSol, a mixture of second-messengers effectors, might allow storage of functionally active platelets at refrigerated temperature to be extended. This study further investigates this storage approach by comparing the accumulation of bioactive compounds in standard and refrigerated PCs. DESIGN AND METHODS: The PCs were supplemented with ThromboSol or a control solution and stored in parallel at 24 degrees C with continuous agitation or undisturbed at 4 degrees C. Samples were removed on days 1, 5, 9 of storage, and assayed for their content of interleukin (IL)-6, IL-8, tumour necrosis factor (TNF)-alpha, transforming growth factor (TGF)-beta1, and anaphylatoxins C3a and C4a. RESULTS: Throughout storage, refrigerated PCs, both ThromboSol-treated and untreated units, displayed a slightly lower level of IL-6 and significantly lower concentration of IL-8 than conventionally stored PCs. ThromboSol slightly reduced the level of these cytokines in PCs. Throughout storage at 22 degrees C, an accumulation of anaphylatoxins C3a and C4a was seen both in both control and ThromboSol-treated PCs. This accumulation was significantly reduced in control PCs stored at 4 degrees C, but not in refrigerated PCs supplemented with ThromboSol. Cold-storage, with or without ThromboSol, had a minor effect on the accumulation of TGF-beta1 in PCs. INTERPRETATION AND CONCLUSIONS: Our data confirm that release of bioactive compounds during in vitro storage of PCs is a temperature-sensitive process. The ThromboSol-refrigeration system could be a useful alternative for extending storage of PCs, without increasing the accumulation of cytokines (IL-6, IL-8), known to be involved in febrile reactions in recipients. Nevertheless, this storage system has no benefit on the level of other bioactive compounds (TGF-beta1, anaphylatoxins C3a and C4a) in PCs.

Blood Platelets↗

Platelet GP Ib/IX/V complex: physiological role.

Platelets play an essential role in primary hemostasis and in thrombotic events, particularly in arterial vessels, as rheological conditions originate closer interactions between platelets and endothelium than lower shear rates. In response to vascular injury, platelets adhere to the subendothelial matrix by membrane receptors potentiating the generation of thrombin, become activated, and a series of biochemical processes induce platelet aggregation and liberation of intracellular metabolic products to the extracelular medium. Among platelet receptors, glycoprotein (GP) Ib/IX/V complex is peculiar, as it binds adhesive proteins, mainly von Willebrand factor (vWF), and thrombin, the main platelet agonist. Platelet adhesion and subsequent aggregation under conditions of high shear flow, essentially relies upon this receptor's capacity of binding to the subendothelial matrix, initiating signal transduction. Two proteins associated to GP Ib/IX/V, actin-binding protein (ABP) 280 and 14-3-3zeta, are potential mediators of signal transduction by the complex, but their specific contribution in this process is not yet fully understood. Additionally, two proteins implicated in signal transduction by immune stimuli, FcgammaRIIA and FcR gamma-chain, associate with GPIb/IX/V complex, and increasing data indicate a potential role in GPIbalpha mediated signal transduction.

14-3-3 Proteins↗

Factor XIII Val34Leu polymorphism in primary intracerebral haemorrhage.

INTRODUCTION: Recently, the common Val34Leu polymorphism of the A-chain factor XIII gene, associated with high factor XIII activity, has been identified as a protective genetic factor against occlusive arterial and venous diseases. Moreover, this polymorphism has been suggested to be the first one to increase the risk of cerebral haemorrhage in a small number of Caucasian patients. The aim of our study was to investigate the role of this polymorphism in patients with primary intracerebral haemorrhage from a distinct population. MATERIAL AND METHODS: Patients with non-traumatic primary intracerebral haemorrhage (n=116), age-, race-, sex- and risk factor-matched controls (n=116), and individuals from the general population (n=465) were genotyped for the factor XIII Val34Leu polymorphism by polymerase chain reaction and allele specific restriction assay. The relationships of the Val/Leu genotype with distinct intracerebral haemorrhagic risk factors and with early mortality associated with the haemorrhagic episode were also analysed. RESULTS: No statistical difference in terms of prevalence was detected between patients (P=0.190) and controls (P=0.181). The frequency of the FXIII Leu34 allele was similar in the general population (P=0.191). CONCLUSION: The results suggest that the Leu 34 allele of the A-chain factor XIII gene has a minor role in the development of non-traumatic primary intracerebral haemorrhage. Moreover, the simultaneous presence of the Leu 34 allele with selected risk factors for this disease does not increase the risk of developing this disease.

Aged↗

Evaluation of pooled platelet concentrates using prestorage versus poststorage WBC reduction: impact of filtration timing.

BACKGROUND: Concern for the undesirable consequences of transfusing passenger WBCs is leading to the general use of WBC-reduced platelet concentrates (PCs). However, the impact of prestorage versus poststorage WBC reduction on the quality of platelet products has not been clearly defined. STUDY DESIGN AND METHODS: Pooled PCs were WBC reduced before or after 5-day storage, by use of a WBC filter (PXL-8, Pall Corp.). Samples from pools were taken on days 1 and 5, before and after filtration, and on Day 9 of storage and assessed for cell counts, biochemical values, expression of platelet glycoproteins, thrombin generation, and content of IL-6, IL-8, TNFalpha, transforming growth factor beta1 (TGFbeta1), and anaphylatoxins C3a and C4a. RESULTS: Filtration of fresh and 5-day-stored pooled PCs via a PXL-8 filter was similarly efficient, rendering pools with low WBC counts (<1 x 10(6) cells) and high platelet recovery (>95%). No major changes were found in the metabolic behavior or the expression of platelet GPIb, GPIIb/IIIa, CD62, and CD63 in PCs filtered before or after storage. Filtration, either before or after storage, increased by less than 5 percent the proportion of CD62+ platelets. Moreover, no changes were found in the concentration of prothrombin fragments 1 and 2 and thrombin-antithrombin complexes in the pooled PCs derived from the time of filtration. Finally, prestorage WBC reduction abrogated the accumulation of IL-6 and IL-8, but it did not prevent that of anaphylatoxins C3a and C4a nor of TGFbeta1. However, filtration through a PXL-8 filter significantly reduced (40-90%) the amount of IL-8, C3a, and C4a in the filtrate. CONCLUSIONS: The timing of PXL-8 filtration of PCs has little impact on the efficiency of WBC reduction and on platelet recovery, and it does not seem to affect the quality of platelets or the generation of thrombin in the PCs. As regards the goal of reducing the amount of bioactive products in PCs, it remains uncertain as to whether prestorage WBC reduction fully eliminates the need for poststorage filtration. Prestorage filtration leads to low levels of IL-6 and IL-8 in PCs, but it does not impair the poststorage content of TGFbeta1 or anaphyla-toxins. By contrast, poststorage PXL-8 filtration removes significant amounts of C3a and C4a, and thus it might provide clinical benefits beyond those of prestorage WBC reduction.

Blood Preservation↗

Evaluation of leukocyte-depleted platelet concentrates obtained by in-line filtration.

BACKGROUND AND OBJECTIVES: The use of leukocyte-depleted platelet concentrates (PCs) is justified, yet questions remain regarding their properties. We have assessed the in vitro quality of WBC-reduced PCs obtained by using a new in-line filter. MATERIALS AND METHODS: Twenty blood units were randomized for standard component preparation, or for processing including in-line leukodepletion of platelet-rich plasma using an ATS(TM) PL Pall filter. The resultant PCs were compared during storage for several in vitro platelet quality parameters, content of cytokines and anaphylatoxins, and coagulation markers. RESULTS: In-line filtration of platelet-rich plasma through ATS PL was highly efficient rendering PCs with 99.93% less white blood cells (WBCs) than standard PCs. During storage for up to 9 days, leukocyte-depleted units displayed platelet content, biochemical parameters, and platelet surface expression of glycoproteins Ibalpha, IIb/IIa, CD62 and CD63, similar to those of standard units. However, in-line leukocyte-reduced PCs displayed no significant accumulation of IL-6 and IL-8 during storage in contrast to standard units. Moreover, while storage promoted complement activation with C3a and C4a liberation in both WBC-reduced PCs and standard units, the concentration of these anaphylatoxins after the 9-day storage period was higher in the former group. Finally, all units, standard and leukocyte-reduced, displayed a similar storage-promoted rise in TGF-beta(1), and a mild prolongation of activated partial thromboplastin and prothrombin times. CONCLUSION: In-line filtration during component preparation appears as an easy and effective procedure for obtaining prestorage leukocyte-depleted PCs. During subsequent blood bank storage, these WBC-reduced PCs display, in comparison with standard PCs, normal in vitro platelet properties, decreased accumulation of cytokines IL-6 and IL-8, and increased complement activation.

Anaphylatoxins↗

A common polymorphism flanking the ATG initiator codon of GPIb alpha does not affect expression and is not a major risk factor for arterial thrombosis.

The platelet membrane glycoprotein (GP) Ib alpha plays a key role in the initial formation of thrombi. Polymorphisms (VNTR and HPA-2) in this receptor are associated with increased risk of coronary heart disease (CHD) and cerebral vascular disease (CVD). We investigated whether a recently described polymorphism (S/R), due to a single base change (T-->C) five nucleotides upstream the initiator codon of GPIb alpha, might influence the expression of the protein, and be implicated in the development of arterial thrombosis. One hundred and thirty nine healthy individuals provided blood samples for DNA analysis of platelet GPIb alpha polymorphisms, and for flow cytometric analysis of the surface expression of the receptor. A group of 20 S/R normal individuals and an identical number of S/S participants, age and sex matched, was investigated for the analysis of the density of various platelet receptors. The distribution of the S/R polymorphism was also analyzed in two case/control studies including 104 CVD patients, 101 CHD patients, and one control age, sex, and environmental risk factors matched for each case patient. Surface density of GPIb alpha showed no wide variations between individuals, was not influenced by the presence of S or R alleles, nor associated with the VNTR or HPA-2 polymorphisms. The prevalence of the S/R genotype among CVD and CHD patients was not distinct from that in the control groups. We conclude that the S/R polymorphism of GPIb alpha, flanking the initiator codon of the receptor, does not seem to be associated with surface levels of the protein, and is not an independent risk factor for arterial thrombosis.

Adult↗

The FXIII Val34Leu polymorphism in venous and arterial thromboembolism.

BACKGROUND AND OBJECTIVE: Several hereditary disorders affecting coagulation factors have been identified as prothrombotic risk factors. Recently, the common Val34Leu polymorphism of the A-chain factor XIII gene, associated with high factor XIII activity, has been identified as a protective genetic factor against occlusive arterial and venous diseases in British and Finnish populations. The aim of our study was to investigate the role of this polymorphism in arterial and venous thromboembolic disorders in a distinct population. DESIGN AND METHODS: We analyzed the prevalence of this polymorphism in three case/control studies of consecutive patients from the south of Spain diagnosed as having acute coronary syndromes (101), acute cerebrovascular events (104), and deep venous thrombosis (97). RESULTS: No significant differences were detected in the prevalence of genotypes or alleles between patients and controls. INTERPRETATION AND CONCLUSIONS: The Leu 34 allele does not play an important role in the development of thromboembolic episodes in the Spanish population.

Adult↗

The role of glutathione in chronic adaptation to oxidative stress: studies in a normal rat kidney epithelial (NRK52E) cell model of sustained upregulation of glutathione biosynthesis.

Reduced glutathione (GSH) is considered to play a central role in protection of cells from oxidant injury. However, the question remains as to whether sustained elevation of intracellular GSH levels, as compared with the ability to rapidly upregulate GSH synthesis, is more important with respect to protection of cell constituents from oxidative stress. To address this question, we conducted studies to evaluate the direct influence of chronically increased endogenous GSH content on chemically induced intracellular free radical formation and oxidative stress using a kidney epithelial cell model adapted to sustain intracellular GSH concentrations in excess of eightfold that observed in unadapted parent kidney cells. Elevated GSH levels in adapted cells were found to be attributable, at least in part, to coordinately increased amounts of both the regulatory and catalytic subunits of gamma-glutamylcysteine synthetase (GCS), the rate-limiting enzyme in GSH synthesis. Studies using electron spin resonance (ESR) spectroscopy and scanning laser cytometry demonstrated that cells having sustained elevation of GSH levels did not attenuate free radical formation and associated oxidative stress compared with parent cells when treated with the prooxidant chemicals, menadione or potassium dichromate. In contrast, nonadapted kidney parent cells treated 18 h after initial prooxidant challenge displayed significantly attenuated free radical signals. Additionally, cells adapted to sustain excess GSH were somewhat more sensitive than parent cells in terms of resistance to prooxidant (chromate) toxicity, as determined by cell viability assays. These findings suggest that the capacity of cells to rapidly upregulate GSH synthesis, rather the ability to chronically sustain elevated intracellular GSH levels, may play a more important role in terms of protection from cytotoxicity associated with prooxidant chemical exposures.

Adaptation, Physiological↗

The mll-AF9 gene fusion in mice controls myeloproliferation and specifies acute myeloid leukaemogenesis.

The MLL gene from human chromosome 11q23 is involved in >30 different chromosomal translocations resulting in a plethora of different MLL fusion proteins. Each of these tends to associate with a specific leukaemia type, for example, MLL-AF9 is found mainly in acute myeloid leukaemia. We have studied the role of the Mll-AF9 gene fusion made in mouse embryonic stem cells by an homologous recombination knock-in. Acute leukaemias developed in heterozygous mice carrying this fusion as well as in chimeric mice. As with human chromosomal translocation t(9;11), the majority of cases were acute myeloid leukaemias (AMLs) involving immature myeloblasts, but a minority were acute lymphoblastic leukaemia. The AMLs were preceded by effects on haematopoietic differentiation involving a myeloproliferation resulting in accumulation of Mac-1/Gr-1 double-positive mature myeloid cells in bone marrow as early as 6 days after birth. Therefore, non-malignant expansion of myeloid precursors is the first stage of Mll-AF9-mediated leukaemia followed by accumulation of malignant cells in bone marrow and other tissues. Thus, the late onset of overt tumours suggests that secondary tumorigenic mutations are necessary for malignancy associated with MLL-AF9 gene fusion and that myeloproliferation provides the pool of cells in which such events can occur.

Animals↗

Prothrombotic genetic risk factors in young survivors of myocardial infarction.

It has long been thought that an individual thrombotic tendency increases the risk of myocardial infarction, especially in young adults. Several "prothrombotic" genetic factors that may influence the individual thrombotic risk have been identified. To investigate the association between the risk of myocardial infarction at a young age and genetic factors thought to be associated with an increased tendency to thrombosis (the polymorphisms 4G/5G of the PAI-1 gene, PIA1/PIA2 of the platelet glycoprotein IIIa, C3550T of the platelet glycoprotein Ib gene, G10976A of the factor VII gene, C677T of the methylenetetrahydrofolate reductase gene, G1691A of the factor V gene, and G20210A of the prothrombin gene), we performed a case-control study evaluating 200 survivors (185 men, 15 women) of myocardial infarction who had experienced the event before the age of 45 years and 200 healthy subjects with a negative exercise test, individually matched for sex, age, and geographic origin with the cases. The presence of the PIA2 polymorphic allele was the only prothrombotic genetic factor associated with the risk of myocardial infarction at a young age. The odds ratio for carriers of the PIA2 allele compared with those of the PIA1 allele was 1.84 (95% confidence intervals (CI) 1.12 to 3.03). There was a significant interaction between the presence of the PIA2 allele and smoking: with their simultaneous presence, 46% (95% confidence intervals 11% to 81%) of premature myocardial infarctions were attributable to the interaction between the two factors. In conclusion, carrying the PIA2 polymorphic allele of platelet glycoprotein IIIa was the only genetic prothrombotic factor associated with the risk of developing myocardial infarction at a young age. The clinical expression of this genetic predisposition seems to be enhanced by smoking.

Adult↗

Activation of NF-kappaB in normal rat kidney epithelial (NRK52E) cells is mediated via a redox-insensitive, calcium-dependent pathway.

Renal tubular epithelial cells are largely resistant to oxidant-induced injury despite their capacity to accumulate relatively high concentrations of potentially damaging prooxidant and thiol-depleting agents. In the present study, we tested the hypothesis that such resistance may be attributable to a lack or deficiency of signaling transduction pathways through which reactive oxidants have been shown to promote the activation of NF-kappaB, a transcriptional factor that is known to mediate the inducible expression of a wide variety of genes that are involved in inflammatory and other cytotoxic reactions in numerous cell types. NF-kappaB was found to be readily activated following exposure of cultured normal rat kidney epithelial (NRK52E) cells to bacterial lipopolysaccharide (LPS). However, in contrast to findings with many other cell types, the activation of NF-kappaB by LPS was not substantially altered either by pretreatment of cells with the thiol antioxidant, N-acetylcysteine, or by glutathione (GSH) depletion. Moreover, reactive oxidants and oxidative stress-generating chemicals were completely without effect with respect to NF-kappaB activation in NRK52E cells, even following GSH depletion. In contrast, LPS activation of NF-kappaB was substantially attenuated by the intracellular Ca2+ chelator, Quin 2AM, and by the Ca-channel inhibitor, ruthenium red. Moreover, thapsigargin, a Ca-ATPase inhibitor, promoted NF-kappaB activation comparable to that observed by LPS. Additionally, staurosporine, a Ca-dependent protein kinase C inhibitor, substantially decreased LPS-mediated NF-kappaB activation. These results demonstrate that the LPS-inducible expression of NF-kappaB in renal epithelial cells, in contrast to many other cell types, is not responsive to oxidative stress and is regulated, at least in part, by redox-insensitive modulation of intracellular calcium levels. These findings provide a basis for the highly tissue-specific expression and function of NF-kappaB in kidney epithelial cells, which may underlie their resistance to oxidant-mediated cytotoxicity.

Animals↗