Search PubMed⌕ Search

Biomedical subjects

M A Hidalgo

Publications and source records attributed to M A Hidalgo.

At least 19 recordsLinked to original sources

Propionate induces pH(i) changes through calcium flux, ERK1/2, p38, and PKC in bovine neutrophils.

Propionate is a short-chain fatty acid produced under normal physiological conditions in the rumen of cattle. It is also involved in the inflammatory process and neutrophil function via calcium release, reactive oxygen species and intracellular pH (pH(i)) changes. This study examined the effect of propionate on the pH(i) of bovine neutrophils; specifically if pH(i) changes are controlled by calcium flux, and the mitogen-activated protein kinase (MAPK) pathway. Propionate caused rapid intracellular acidification and sustained alkalinization in bovine neutrophils loaded with 2',7'-bis-(2-carboxyethyl)-5-(and-6)-carboxyfluorescein acetoxymethyl ester (BCECF-AM), a fluorescent indicator of pH(i). The acidification phase seems to be controlled by intracellular calcium release and p38 MAPK pathway. The pH recovery phenomenon was mediated by an amiloride-sensitive Na+/H+ exchanger and H+ channel, and was inhibited by UO126 (an ERK1/2 MAPK phosphorylation inhibitor), Gö6850 (a PKC inhibitor) and calcium chelating. Ionomycin, a calcium ionophore, induced intracellular acidification and sustained alkalinization. The intracellular acidification was strongly inhibited by BAPTA-AM (an intracellular calcium chelator) and SB203580 (a p38 MAPK inhibitor). In addition, the intracellular alkalinization was reduced by EGTA (a calcium chelator), UO126, LY294002 (a PI3K inhibitor) and Gö6850. Propionate did not increase superoxide production, however it reduced the superoxide production induced by platelet-activating factor (PAF), and increased the release of superoxide induced by ionomycin. Our results suggest that propionate-induced intracellular acidification is mediated by intracellular calcium release and p38 MAPK activation, and that pH recovery is controlled via ERK1/2 MAPK, PKC and calcium entry in bovine neutrophils.

Animals↗

An analysis of postnatal growth in OF1 mice within an interval of 1-220 days of age.

The body weight growth of OF1 mice, both females and males, from day of birth to 220 days old is studied herein. After comparison of different theoretical models, an extension of Koops's multiphasic functions, the tetraphasic, is proposed as the best choice in so wide a time interval in mouse development. This function has allowed us to take into account different aspects of growth. Coefficients and phases of this function are characterized. The end of the first phase was established at 17 days of age. The second phase finished at 35 days of age in females and at 39 days in males. This difference increased during the third phase: the end of it was at 173 days of age in males, and at 160 days in females. The end of the fourth phase in OF1 mice would be produced after 220 days of age. Inflexion points in every four phases, in females and males, are situated. The biggest weight increase occurred in the second phase in both sexes, specially in males (1.26 g per day). Biological meanings of every phase are also discussed. The short lifetime of rodents have allowed us to study a great number of growth phases in a short period of time. Thus the present analysis could be a good starting point for the study of growth curves in other species of mammals.

Age Factors↗

Ultraviolet exposure of thymocytes: selective inhibition of apoptosis.

PURPOSE: To evaluate selective effects of ultraviolet (UV) irradiation on spontaneous and induced apoptosis in freshly extracted mice thymocytes. MATERIALS AND METHODS: Cells were exposed to UV radiation with emission peaks of 365 nm (UVA) exposures of 1620-10200 J m(-2), of 312 nm (UVB) exposures of 34-1620 J m(-2) or of 254 nm (UVC) exposures of 1.5-1620 J m(-2), and incubated for 5.5 h with or without hydrocortisone, phorbol-12-myristate-13-acetate or anti-Fas antibody. Additionally, cells were irradiated with gamma-rays (5 Gy) before UVB exposure (408 J m(-2)) at different times. Apoptosis was quantified by DNA fragmentation. RESULTS: Up to an irradiation of 5000 J m(-2), UVA exposure did not show any effect on thymocyte apoptosis, while at 10200 J m(-2) irradiation, considerable DNA fragmentation was observed. In contrast, UVB and UVC irradiation clearly inhibited natural and cortisone-induced apoptosis. Moreover, UVB inhibited apoptosis triggered by phorbol-12-myristate-13-acetate and gamma-irradiation, but not by anti-Fas antibody. CONCLUSIONS: The response of mouse thymocytes in culture to UV irradiation strongly depends on the wavelength used. It is suggested that either a survival or an apoptotic pathway occurs depending on the physiological state of the cell, spectral composition of the UV light and cell type. The possible involvement of extracellular signal-regulated kinase and stress-activated protein kinase/c-Jun N-terminal kinase in the apoptotic pathway is discussed.

Animals↗

Cold ischemia-induced damage to vascular endothelium results in permeability alterations in transplanted lungs.

UNLABELLED: Despite suggestions of a connection between endothelial damage and permeability alterations after ischemia and reperfusion in pulmonary tissue undergoing transplantation, no direct correlation between vascular endothelial discontinuity and parenchymal edema has yet been shown. METHODS: Forty-two rat lungs were harvested and stored for 48 or 72 hours under hypothermic and ischemic conditions. Stored pulmonary tissue was studied before transplantation and 5 minutes or 24 hours after transplantation by light microscopy and scanning electron microscopy of arterial vascular endothelium. RESULTS: Stored lungs not subjected to revascularization showed moderate perivascular edema, with small intercellular gaps in endothelial monolayers. Five minutes after transplantation, pulmonary tissue appeared congested, with perivascular and alveolar edema. Examination of vascular endothelium by scanning electron microscopy showed detachment of endothelial cells. Twenty-four hours after transplantation, edema, hemorrhage, and vascular congestion were found in all specimens. Arterial vascular endothelium showed weak intercellular connections, numerous intercellular gaps, and widespread cell detachment. Bronchial epithelial cells appeared damaged after storage, with loss of cilia, blebbing of apical cytoplasm, and cellular rounding. These changes were maintained 5 minutes after transplantation but appeared totally reversed after 24 hours in specimens stored 48 hours, whereas bronchial denudation was observed in 72-hour stored lungs. Statistically significant positive correlations (Kendall p < 0.001) between revascularization time and alveolar edema and hemorrhage were found for both storage periods. CONCLUSION: The results from this study demonstrate correlation between loss of endothelial monolayer continuity and histologic evidence of vascular permeability increases in pulmonary tissue before and after lung transplantation.

Adenosine↗

Effects of depolarizing or non-depolarizing preservation solutions on human endothelial cells during cold hypoxia.

1. Hypothermic storage of whole organs flushed with a preservation solution is common practice in clinical transplantation. This procedure leaves vascular endothelial cells in direct contact with the preservation solution during the length of the cold ischaemic period. 2. Aiming to study the effects of organ preservation on vascular endothelium, we subjected cultures of human umbilical vein endothelial cells to hypoxic and hypothermic storage conditions in vitro for 3 or 16 h. Four preservation solutions with different levels of sodium and potassium were tested. Morphometric analysis and 51Cr leakage index were used to assess monolayer continuity, cell viability and membrane integrity. 3. Hypothermic storage resulted in severe changes in endothelial cell morphology with formation of intercellular gaps that destroyed monolayer continuity after only 3h. Cellular blebbing was a common feature in seriously damaged cells. 4. Morphometric analysis and 51Cr leakage results correlated well. No significant differences between the solutions tested were found after 3h of hypothermic hypoxic storage. After 16h, viability and monolayer continuity were significantly better preserved (Mann-Whitney, P < 0.01) in cells stored in lactobionate-based solutions than in hypertonic citrate solutions. No significant differences were found between endothelial cells stored in extracellular versus intracellular types of solutions for the lactobionate-based solutions. 5. The results of the present experiment showed that after a period of hypothermic hypoxic storage, vascular endothelial cells appeared morphologically deformed and poorly attached in vitro. Lactobionate-based preservation solutions were more effective in preserving viability and continuity. Protection of vascular endothelium under cold hypoxic conditions could be a critical factor in successfully preserving organs for transplantation.

Cell Hypoxia↗

Scanning electron microscopic changes in morphology of pulmonary endothelium in rat lung isografts following hypothermic ischaemic storage and transplantation.

Endothelial monolayer integrity is a critical factor limiting vascular permeability of solid organs in transplantation. Several in vitro, ex vivo and in vivo studies suggest that damage to endothelial cells (EC) due to hypothermia and ischaemia-reperfusion injury causes morphological and functional damage to the endothelium leading to parenchymal oedema and haemorrhage. Aiming to study morphological changes to arterial pulmonary EC subjected to transplantation procedures, random scanning electron micrographs of vascular endothelium of rat lungs were taken. Forty-eight rat lungs were hypothermically stored for 48 or 72 hours in two different preservation solutions and studied either at the end of the cold storage period, or 5 min, 24 h or 4 weeks following transplantation. After 5 minutes of revascularization, micrographs showed EC shape variations, bleb formation and cell retraction with intercellular gap formation. Twenty-four hours after transplantation loss of monolayer continuity was widely extended. Four weeks of revascularization resulted in either well preserved specimens with nearly normal endothelium, or badly preserved arteries with fibrotic degeneration of the luminal vessel wall. The morphological disruptions found in this study help to explain the alterations in permeability control and vascular dysfunction observed in lung transplantation.

Animals↗

Morphological changes in rat single lung isografts after long-term survival.

A high priority in organ transplantation research is to increase the number of hours that an organ can be successfully preserved. Transplant programmes rely on hypothermia and flush solutions to maintain organ viability during the storage period. We studied long-term morphology in lungs stored for 24 or 48 hours using two modified versions of University of Wisconsin solution, one mimicking the extracellular medium and the other the intracellular medium. Four weeks after transplantation, X-ray and angiograms were used to assess the proportion of ventilating tissue, and light and electron microscopy to analyse morphology. Pulmonary tissue presented near-normal histological appearance in well preserved areas while fibrosis and chronic inflammation were found in scarring processes. Electron microscopy studies revealed some damage-related changes in tissue which appeared histologically normal. Four weeks after transplantation, quality and quantity of recovery were uniform for both solutions tested after 24 hours of storage. However, without reaching significance, after 48 hours the quantity of successfully preserved pulmonary tissue was greater in the group stored in the intracellular solution.

Animals↗

Effects of hypothermic storage on the vascular endothelium: a scanning electron microscope study of morphological change in human vein.

OBJECTIVE: The aims of this study were: i) to identify morphological changes occurring in the endothelium of human umbilical veins subjected to the typical storage procedures used in transplantation and ii) to determine the relative efficacy of preservation solutions containing intra and extracellular levels of sodium and potassium. EXPERIMENTAL DESIGN: Prospective. PROCEDURE: Scanning electron micrographs were taken pre and post cold hypoxic storage of human umbilical veins for 3 or 16 hours. RESULTS: Cold preservation resulted in severe cell detachment with subsequent loss of monolayer continuity and exposure of thrombogenic basal membrane components (highly significant after only 3 hours of cold storage, Kruskal-Wallis, p < 0.01). The morphological alterations culminated in EC with spherical shapes. Cytoplasmic membranes presented an increased number of microvilli and intercellular processes, followed by microvillous swelling and surface blebbing as damage increased. Bleb detachment was seen in severely damaged specimens. However, morphological preservation was not significantly affected by the duration of hypoxia or the ionic balance of the solution tested. CONCLUSIONS: The present results demonstrate that even short periods (3 hours) of cold storage without revascularization cause significant morphological damage to the endothelium. The ionic composition of the preservation solution did not significantly affect the process. The morphological changes seen in this study could explain storage-related problems such as loss of normal vascular permeability and increased thrombogenicity, problems often associated with transplantation procedures.

Cryopreservation↗

[Serine protease of Bacillus subtilis R].

Properties of a protease preparation obtained by ethanol precipitation of a concentrate of the culture fluid of Bacillus subtilis R (1 : 4 v/v; 4 degrees C) grown under the conditions of deep cultivation were studied. The use of specific inhibitors, EDTA and phenylmethylsulfonyl fluoride, made it possible to show that the enzyme belongs to the group of serine proteases. The preparation exhibited high stability in alkaline medium and thermostability; it hydrolyzed protein substrates and retained catalytic properties in the presence of a multicomponent detergent system. The preparation is recommended for use in those branches of industry where proteolysis is required and in the production of detergents (as a biological additive).

Bacillus subtilis↗

[Hemodynamic changes in hypoglycemic shock].

Severe hypoglycemia may be present in seriously ill patients; if it is not corrected opportunely a series of neuroendocrinal mechanisms take place aimed at correcting metabolic alterations. These mechanisms can produce hemodynamic alterations as well. Nine mongrel dogs were studied with continuous registration of: blood pressure, central venous pressure, cardiac frequency, respiratory frequency, electrocardiogram and first derivative (Dp/Dt). Six dogs received crystalline (fast acting) insuline intravenously (group 1). After hemodynamic changes were registered hypoglycemia was corrected with 50 per cent glucose solution. Complementary insuline doses were administered to three dogs (group 2); in this group hypoglycemia was not corrected. In group 1 during hypoglycemia there was an increase in blood pressure, central venous pressure, cardiac frequency, respiratory frequency and Dp/Dt, and changes in QT and T wave on the EKG; these changes were partially reversible after hypoglycemia was corrected. The above mentioned alterations persisted in group 2, breathing became irregular irregular and respiratory arrest supervened. It can be inferred that the hemodynamic response to hypoglycemia is predominantly adrenergic. The role of catecolamines, glucocorticoides, glucagon, insuline, cyclic AMP in metabolic and hemodynamic alterations consecutive to hypoglycemia are discussed.

Animals↗