What length of follow-up in patients with HIV and hepatitis C virus coinfection is necessary to consider the level of transaminases to be "persistently normal"?
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Biomedical subjects
Publications and source records attributed to M J Blanco.
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Repulsion plays a fundamental role in the establishment of a topographic map of the chick retinotectal projections. This has been highlighted by studies demonstrating the role of opposing gradients of the EphA3 receptor tyrosine kinase on retinal axons and two of its ligands, ephrin-A2 and ephrin-A5, in the tectum. We have analyzed the distribution of these two ephrins in other retinorecipient structures in the chick diencephalon and mesencephalon during the period when visual connections are being established. We have found that both ephrin-A2 and ephrin-A5 and their receptors EphA4 and EphA7 are expressed in gradients whose orientation is consistent with the topography of the nasotemporal axis of the respective retinofugal projections. In addition, their distribution suggests that receptor-ligand interactions may be involved in the organization of connections between the different primary visual centers and, thus, in the topographic organization of secondary visual projections. Interestingly, where projections lack a clear topographic representation, a uniform expression of the Eph-ephrin molecules was observed. Finally, we also show that a similar patterning mechanism may be implicated in the transfer of visual information to the telencephalon. These results suggest a conserved function for EphA receptors and their ligands in the elaboration of topographic maps at multiple levels of the visual pathway.
BACKGROUND: Isoprenoid biosynthesis is known to be essential for diverse cellular functions, including cell proliferation. The aim of this work was to study the effects caused by the addition of different inhibitors of isoprenylation (lovastatin, manumycin A, farnesyltransferase inhibitor III and N-acetyl-S-farnesyl-L-cysteine) to human retinal pigment epithelium (RPE) in culture, as potential coadjunctive-to-surgery treatments applicable to proliferative vitreoretinopathy. METHODS: Human RPE cell cultures were established from adult corneal donors. Proliferation levels were evaluated using the incorporation of 5-bromo-2'-deoxyuridine into the DNA. Cell viability was measured by tetrazolium bromide transformation. Apoptosis was determined by DNA fragmentation assay, TdT-mediated d-UTP-X nick-end labeling (TUNEL) and phosphatidylserine exposure assessment. Changes in cell morphology and actin cytoskeleton were evaluated using a phase-contrast microscope and by fluorescent staining of actin cables with TRITC-phalloidin. RESULTS: We found that lovastatin showed an important antiproliferative effect on human RPE cells in culture. This effect was clearly dose-dependent, and adding mevalonate could reverse it. We also found that lovastatin induced changes in the distribution of actin cytoskeleton and, finally, that it also induced RPE apoptosis. Manumycin A, farnesyltransferase inhibitor III and N-acetyl-S-farnesyl-L-cysteine also showed antiproliferative effects in RPE. However, they do not have any effect on cell morphology or induction of apoptosis. DISCUSSION: We identified various effects of lovastatin on human RPE cultures: inhibition of cell proliferation, modifications of the phenotype and induction of apoptosis. Interestingly, the addition of different inhibitors of protein isoprenylation only affected the proliferation of the cells. There was no evidence that isoprenylated proteins inhibition is related to lovastatin-induced RPE apoptosis.
This study reports on the frozen stability of all commonly measured coagulation proteins in normal citrated plasma: activated partial thromboplastin time, prothrombin time (%), thrombin time and fibrinogen (Clauss); clotting assays for factors II, V, VII, VIII, IX, X, XI and XII; functional assays for protein C (clotting), protein S (clotting), antithrombin (chromogenic) and plasminogen (chromogenic); and immunological assays for von Willebrand factor and D-dimer. All these factors listed are stable for up to 3 months if frozen at -24 degrees C or lower. At -74 degrees C, all these factors (allowing for 10% variation) were stable for at least 18 months, most were stable for 24 months. The number of proteins showing > 5% variation over baseline after 6 months storage indicates that some decay does occur even at -74 degrees C. There was no clear advantage in snap freezing at -74 degrees C and then storing at -24 degrees C over both freezing and storing at -24 degrees C; therefore, the freezing process itself is not responsible for the loss of stability. The best stability, especially at -24 degrees C, was obtained when small samples (1 ml) were stored in screw-cap tubes with a minimum dead space. The decrease in stability of the coagulation proteins directly correlates with the effect of temperature and time.
ABSTRACT The presence of free ribs is presumed to be a primitive morphological character observed only in a few families of Recent anurans, whereas the absence of ribs has been considered to be a derived condition that is widespread within this order. A comparative study of rib development based on representatives of several anuran lineages (Alytes, Bombina, Bufo, Discoglossus, Hyla, Pelobates, Pelodytes, Rana, and Xenopus) reveals a previously undetected diversity of developmental features in the formation and interaction between neural arches and ribs. The absence of free ribs at premetamorphic or later stages is verified in some groups, but we present for the first time evidence of the existence of larval rib rudiments in others, both in the anterior (Rana, Hyla) and posterior (Bufo, Discoglossus, Pelobates) presacral regions. Heterochrony seems to have played a major role in the processes underlying rib reduction. The intracolumnar differences between anterior (V(2)-V(4)) and posterior (V(5)-V(8)) regions are based on perturbations in the timing of early differentiation. Furthermore, a clear shift in the relative timing of ossification among evolutionary lineages was detected. In this respect Xenopus has a highly derived condition. The use of the morphological character of "rib loss" in phylogenetic analyses must be reconsidered due to the different convergent developmental paths described here. The phylogenetic analysis of a "sequence units" matrix of rib development is compared with current anuran phylogenies. Some evolutionary information appears to be clearly present in the ontogenetic data of this "missing morphology," but its value for evolutionary inferences is rather limited.
Whilst several G protein-coupled receptors (GPCRs) have been shown to play important roles during development, little study has been carried out on the G protein-coupled receptor kinases (GRKs) that modulate their activity in embryos. Here, we have analyzed the expression of GRK2, the predominant GRK expressed during embryogenesis. We show that at early stages, the expression of GRK2 is restricted to populations of cells that are undifferentiated, multipotent and in many cases, migratory. As such, GRK2 transcripts were found in the early mesoderm and neural crest as they migrate from the primitive streak and the neural tube, respectively. In the limb bud, GRK2 transcripts were observed in cells of the progress zone and in the interdigital areas. At later stages, the expression in the heart is compatible with the phenotype observed in the GRK2 deficient mice.
The Snail family of transcription factors has previously been implicated in the differentiation of epithelial cells into mesenchymal cells (epithelial-mesenchymal transitions) during embryonic development. Epithelial-mesenchymal transitions are also determinants of the progression of carcinomas, occurring concomitantly with the cellular acquisition of migratory properties following downregulation of expression of the adhesion protein E-cadherin. Here we show that mouse Snail is a strong repressor of transcription of the E-cadherin gene. Epithelial cells that ectopically express Snail adopt a fibroblastoid phenotype and acquire tumorigenic and invasive properties. Endogenous Snail protein is present in invasive mouse and human carcinoma cell lines and tumours in which E-cadherin expression has been lost. Therefore, the same molecules are used to trigger epithelial-mesenchymal transitions during embryonic development and in tumour progression. Snail may thus be considered as a marker for malignancy, opening up new avenues for the design of specific anti-invasive drugs.
This paper assesses the extent to which the sensitivity decrement frequently observed in vigilance tasks is affected by temporal variations in the luminance level of the stimuli displayed on the screen of a cathode-ray tube (CRT) monitor. First, it was confirmed that the luminance of the stimuli displayed on the screen of the CRT monitor decreases substantially during the first hour after turning the monitor on, and then it remains quite stable. Second, an experiment was carried out in which participants performed a visual vigilance task at three different time periods within which the luminance of the stimuli displayed on the screen of a CRT monitor either decreased or remained stable. The results indicate that the vigilance decrement is modulated by temporal fluctuations of the luminance of the monitor screen, which is used to display the stimuli. However, the relationship between both variables is not simple: the largest sensitivity decrement was not associated with the largest luminance decrement, but to a medium luminance decrement.
PURPOSE: Retinitis pigmentosa (RP) is the most prevalent inherited degeneration in the retina. The clinical manifestations are variable in terms of severity, age of onset and progression. The clinical variation is paralleled by genetic heterogeneity (more than 20 different loci have been described to date). The aim of this work was to identify mutations in rhodopsin gene and to determine the frequencies of the different genetic forms of RP in the Galician population. METHODS: 47 previously diagnosed RP patients and their relatives were studied. Genetic forms of RP were identified by recording full family history and clinical examination. DNA samples from patients with RP and control individuals were screened for point mutations in the rhodopsin gene by using PCR SSCPs (Single Strand Conformation Polymorphisms) and direct sequencing in 36 unrelated nonsyndromic RP patients. RESULTS: We report the frequency distribution of the different genetic RP forms. In the SSCPs analysis of rhodopsin gene we found different mobility shifts: one variant in the 5'-untranslated region of the gen and one variant in the third intron. Direct sequencing revealed an A269-->G and an C3982-->T transitions, respectively. Additionally, we observed a single base change in codon 160 (C-->A) of this gene. CONCLUSIONS: Polymorphisms are commom findings in the exon 1 and 3 of rhodopsin gene. They are neutral variations and do not represent a change in the protein. No significant differences in the frecuencies of A269-->G and C3982-->T polymorphisms among the three groups of RP patients (ADRP, ARRP, Esporadic RP) and normal individuals were found. There was no significant deviation from Hardy-Weinberg's equilibrium in each genotype in any group.
Design principles and syntheses of three haptens that were recently reported to generate amide bond cleaving catalytic antibodies are described. The hapten designs sought to induce acidic and/or basic residues in antibody binding sites via charge complementarity, and also to generate a hydrophobic binding pocket for an external phenol nucleophile. The charged yet aromatic nature of these haptens presented some unique synthetic challenges and solutions to which are described below.
BACKGROUND: Abnormal vitreoretinal relationships have recently been implicated in many vitreoretinal disorders. Sites of abnormal vitreoretinal adherences are likely to exist in eyes predisposed to rhegmatogenous retinal detachment (RD), causing either retinal tears or incomplete posterior vitreous detachment (PVD). The present study was designed in two parts to identify the risk for preoperative and postoperative proliferative vitreoretinopathy (PVR) due to incomplete PVD. METHODS: We prospectively evaluated the vitreoretinal relationships using high-resolution kinetic echography in 102 consecutive eyes of 100 patients with rhegmatogenous RD. In the first part, a case-control study was conducted to compare the vitreous status in patients with preoperative PVR (cases) with that in patients with non-PVR-complicated RD (controls). During the second part, patients with noncomplicated RD (65 eyes) who were operated on by a simple retinal attachment procedure were followed up for a mean period of 6.6 months to compare the recurrence of RD due to postoperative PVR according to their vitreous status. RESULTS: Patients with PVR on study entry had a higher prevalence of partial PVD (28 of 32 eyes, 87%) than did controls (25 of 70 eyes, 35%). The statistical significance of this difference was independent of all other variables studied. After a mean follow-up period of 6.6 months, the incidence of recurrence of RD associated with postoperative PVR was 33% in the eyes with incomplete PVD, compared with 4.9% in the eyes without incomplete PVD. CONCLUSIONS: Our results support the notion that the occurrence of incomplete PVD in RD is a significant risk factor for preoperative and postoperative PVR.
The wrist (carpus) and ankle (tarsus) of most tetrapods, as well as the wrist of anurans, contains relatively small nodular skeletal elements. The anuran tarsus, however, comprises a pair of long bones, the proximal tarsals tibiale and fibulare, which resemble the lower leg bones, tibia and fibula (zeugopodium). In this paper we investigate whether the proximal tarsals of Xenopus are of zeugopodial character identity, i.e. whether they develop under the influence of the same genes that pattern the lower limb. We compare Hoxa-11 expression in the forelimb bud with that in the hind limb bud by whole-mount in situ hybridization. Hoxa-11 has been implicated in the development of the lower limb. In Xenopus we note three differences between Hoxa-11 expression in fore- and hind limb buds: (1) Hoxa-11 expression is maintained until the hind limb bud reaches a larger size (2 mm) than that of the forelimb bud (1.5 mm); (2) Hoxa-11 expression is maintained over larger spatial domains than in the forelimb; and (3) Hoxa-11 expression has a pronounced posterior polarity in the hind limb, but not in the forelimb. Hind limb expression of Hoxa-11 can be understood as a heterochronic prolonging of the expression dynamic in the forelimb. Finally we found that the proximal tarsals start to develop within the expression domain of Hoxa-11, while in the forelimb the lower arm elements reach the distal expression limit of Hoxa-11. The gene expression data presented here support the notion of a zeugopodial identity of the proximal tarsal elements in Xenopus.
X-linked retinitis pigmentosa (XLRP) accounts for 10-25% of RP families and causes the most severe form of the disease in terms of onset and progression. Although three different loci (RP3, RP2 and RP15) have been proposed on the short arm of the X-chromosome by linkage analysis, RP3 represents the disease locus in the majority of XLRP families. The identification of female carriers of X-linked RP is important for genetic counselling. The presence of fundus and electroretinogram (ERG) abnormalities have been reported to be as high as 87 and 90%, respectively. However, in clinical practice it has not always been possible to know the carrier state of females at risk. Thirty-five members of a Spanish family with X-linked RP were evaluated by linkage analysis using nine polymorphic markers (CYBB, DXS1110, M6, DXS6679, DXS1068, DXS1058, MAOA, MAOB and DXS6849) that map to the X-chromosome region Xp21.1 to Xp11.3, in an attempt to determine the carrier state of these females at risk. It was possible to establish that a RP3 mutation is, most likely, segregating in this family.
We analyzed the Hox gene complement of the zebrafish Danio rerio using a PCR survey. We found 18 new zebrafish HOM/Hox type sequences and one sequence of the msh group. For groups 1-3 and 8-10 we could unambiguously assign the zebrafish fragments to cognate groups. The assignment for cognate groups 4-7 had to remain tentative due to insufficient sequence variation. The number of zebrafish Hox fragments classified as members of cognate groups 1-4, 8, and 9 is identical to the number of genes in corresponding cognate groups of the mouse and human genomes. We found only two differences between the zebrafish and mouse Hox gene complement: four putative genes in group 10 (three in mammals) and only seven in the medial groups 5 to 7 (eight in mammals). Together with the previously published Hox gene sequences of the killifish, the larger number of zebrafish genes in group 10 is positive evidence for variation in the Hox gene complements among bony fish. In contrast, the Hox gene complement appears to be highly conserved among all tetrapods.
The concept of heterochrony derives from classical approaches to the study of ontogeny and phylogeny. Under the influence of landmark books by deBeer (1930) and Gould (1977), the traditional theories have been revised to fit into the conceptual framework of modern genetics and evolutionary theory. The current scheme, however, suffers from a problem of lack of precise definitions. The term heterochrony is now used to refer to a developmental process as well as to an evolutionary pattern. That is, it refers to a microevolutionary process of adaptation, operating in local populations under selection and to a macroevolutionary pattern based on undefined internal laws of form. Such conceptually contradictory frameworks are a source of confusion and of empirical misuse of concepts. We propose to reduce the dependence of current thinking about heterochrony on the concept of "timing" and instead focus on the organization of sequences of developmental events in ontogeny. Although Haeckelian views have been rejected, most experts would agree that some subtle parallelism between ontogeny and phylogeny does occur. This relationship deserves renewed attention and urodeles are particularly suited to study it due to their variable patterns of ontogeny and complex life cycles. Current reductionist attempts to apply the morphological terminology and postulates of classical heterochrony concepts to cellular and molecular (genetic) aspects of morphogenesis are problematic. Molecular heterochrony requires a linear or strictly hierarchical structure of gene regulation of development. In addition, isomorphism between genetic mutations and morphological changes would be required for the existing terminology to apply. Finally, we caution against a broad interpretation of heterochronic processes at the molecular level, since the approach may end up permitting the meaningless interpretation of any developmental change as heterochrony.
Several reports have shown that weak, extremely-low-frequency (ELF), pulsed magnetic fields (PMFs) can adversely affect the early embryonic development of the chick. In this study, freshly fertilized chicken eggs were exposed during the first 48 h of postlaying incubation to PMFs with 100 Hz repetition rate, 1.0 microT peak-to-peak amplitude, and 500 microseconds pulse duration. Two different pulse waveforms were used, having rise and fall times of 85 microseconds (PMF-A) or 2.1 microseconds (PMF-B). It has been reported that, with 2 day exposure, these fields significantly increase the proportion of developmental abnormalities. In the present study, following exposure, the eggs were allowed to incubate for an additional 9 days in the absence of the PMFs. The embryos were taken out of the eggs and studied blind. Each of the two PMF-exposed groups showed an excess in the percentage of developmental anomalies compared with the respective sham-exposed samples. This excess of anomalies was not significant for the PMF-A-treated embryos (P = 0.173), whereas it was significant for the PMF-B-exposed group (P = 0.007), which showed a particularly high rate of early embryonic death. These results reveal that PMFs can induce irreversible developmental alterations and confirm that the pulse waveform can be a determinant factor in the embryonic response to ELF magnetic fields. The data also validate previous work based on the study of PMFs' effects at day 2 of embryonic development under field exposure.
The results of administering the Harvard Group Scale of Hypnotic Susceptibility, Form A (HGSHS:A) of Shor and E. Orne (1962) to a Spanish sample are on the whole consistent with those results obtained in other normative studies, especially Bongartz's work with a German sample, and they confirm HGSHS:A's usefulness in non-Anglophone countries. The Spanish HGSHS:A's reliability and validity remain within the limits reported for other locales, but there are certain discrepancies with respect to the difficulty of two HGSHS:A items.