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Biomedical subjects

C Sala

Publications and source records attributed to C Sala.

At least 37 records · Page 2Linked to original sources

Arthroscopic assessment of total hip replacement and polyethylene wear: a case report.

We report the case of a patient who showed clinical and radiological signs of massive polyethylene wear 3 years after total hip replacement. Arthroscopy was performed to assess the loosening of the acetabular cup. The procedure showed the polyethylene element to be broken into three pieces in the area corresponding to the upper border.

Arthroplasty, Replacement, Hip↗

Selection and mapping of replication origins from a 500-kb region of the human X chromosome and their relationship to gene expression.

In higher eukaryotes the mechanism controlling initiation of DNA replication remains largely unknown. New technologies are needed to shed light on how DNA replication initiates along the genome in specific regions. To identify the human DNA sequence requirements for initiation of replication, we developed a new method that allows selection of replication origins starting from large genomic regions of human DNA. We repeatedly isolated 15 new putative replication origins (PROs) from a human DNA region of 500 kb in which 17 genes have previously been characterized. Fine-mapping of these PROs showed that DNA replication can initiate at many specific points along actively transcribed DNA in the cell lines used for our selection. In conclusion, in this paper we describe a new method to identify PROs that suggests that the availability of initiation sites is dependent on the transcriptional state of the DNA.

Blotting, Southern↗

Headspace solid-phase microextraction of sulphides and disulphides using Carboxen-polydimethylsiloxane fibers in the analysis of wine aroma.

Headspace solid-phase microextraction was applied to gas chromatography coupled to flame photometric detection to develop a method for analysing volatile sulphides and disulphides in wine. The Carboxen-polydimethylsiloxane-coated silica fiber was tested and different parameters such as presampling time, ionic strength, stirring, headspace volume, ethanol concentration, time and temperature of extraction were optimized to make extraction as efficient as possible. The optimized conditions enabled limits of detection to be obtained at the ng/l levels. The fiber tested has a strong affinity for the sulphur compounds studied and enables these analytes to be quantitatively determined in wines. The Carboxen-polydimethylsiloxane-coated fiber is more efficient at extracting than fibers such as those which are polydimethylsiloxane-coated and polyacrylate-coated, but its repeatability is worse. The overall process was successfully applied to identify and quantify sulphur compounds in white, red, rose and vintage wines.

Adsorption↗

Shank, a novel family of postsynaptic density proteins that binds to the NMDA receptor/PSD-95/GKAP complex and cortactin.

NMDA receptors are linked to intracellular cytoskeletal and signaling molecules via the PSD-95 protein complex. We report a novel family of postsynaptic density (PSD) proteins, termed Shank, that binds via its PDZ domain to the C terminus of PSD-95-associated protein GKAP. A ternary complex of Shank/GKAP/PSD-95 assembles in heterologous cells and can be coimmunoprecipitated from rat brain. Synaptic localization of Shank in neurons is inhibited by a GKAP splice variant that lacks the Shank-binding C terminus. In addition to its PDZ domain, Shank contains a proline-rich region that binds to cortactin and a SAM domain that mediates multimerization. Shank may function as a scaffold protein in the PSD, potentially cross-linking NMDA receptor/PSD-95 complexes and coupling them to regulators of the actin cytoskeleton.

Actins↗

AMPA receptor-PDZ interactions in facilitation of spinal sensory synapses.

Silent synapses form between some primary sensory afferents and dorsal horn neurons in the spinal cord. Molecular mechanisms for activation or conversion of silent synapses to conducting synapses are unknown. Serotonin can trigger activation of silent synapses in dorsal horn neurons by recruiting AMPA receptors. AMPA-receptor subunits GluR2 and GluR3 interact via their cytoplasmic C termini with PDZ-domain-containing proteins such as GRIP (glutamate receptor interacting protein), but the functional significance of these interactions is unclear. Here we demonstrate that protein interactions involving the GluR2/3 C terminus are important for serotonin-induced activation of silent synapses in the spinal cord. Furthermore, PKC is a necessary and sufficient trigger for this activation. These results implicate AMPA receptor-PDZ interactions in mechanisms underlying sensory synaptic potentiation and provide insights into the pathogenesis of chronic pain.

Animals↗

Microtubule binding by CRIPT and its potential role in the synaptic clustering of PSD-95.

CRIPT is a postsynaptic protein that binds selectively to the third PDZ domain (PDZ3) of PSD-95. Here we show that CRIPT also binds directly to microtubules, thereby linking PSD-95 to the microtubule cytoskeleton. Disrupting the CRIPT-PSD-95 interaction in cultured hippocampal neurons with a PDZ3-specific peptide prevented the association of PSD-95 with microtubules and inhibited the synaptic clustering of PSD-95, chapsyn-110/PSD-93 and GKAP (a PSD-95-binding protein). However, the number of synapses and the synaptic clustering of NMDA receptors were unaffected, suggesting that PSD-95-family proteins are not essential for the maintenance of synapses and the synaptic localization of NMDA receptors.

Amino Acid Motifs↗

Role of subunit composition in determining acetylcholine receptor degradation rates in rat myotubes.

During neuromuscular junction maturation, the rapidly degrading receptors (Rr; t1/2 approximately equal to 1 day) are replaced by metabolically stable molecules (Rs; t1/2 approximately equal to 10 days). Rr and Rs do not interconvert, are differently regulated after denervation in adult muscle and are endowed of unique responses to stabilizing agents. In cultured rat myotubes all the epsilon subunit-containing acetylcholine receptors (epsilon-AchRs) are of the Rs type. In the present study we show that Rs exist also in absence of epsilon-AChR and that nonepsilon-(presumably gamma-)AChRs can be included in the Rs pool when epsilon-AChR expression is low. The data indicate that Rs metabolic properties are independent of AChR subunit composition and that epsilon subunit is a signal to efficiently sort AChR molecules to the Rs pool.

Animals↗

A human homologue of the Drosophila melanogaster diaphanous gene is disrupted in a patient with premature ovarian failure: evidence for conserved function in oogenesis and implications for human sterility.

Premature ovarian failure (POF) is a defect of ovarian development and is characterized by primary or secondary amenorrhea, with elevated levels of serum gonadotropins, or by early menopause. The disorder has been attributed to various causes, including rearrangements of a large "critical region" in the long arm of the X chromosome. Here we report identification, in a family with POF, of a gene that is disrupted by a breakpoint. The gene is the human homologue of the Drosophila melanogaster diaphanous gene; mutated alleles of this gene affect spermatogenesis or oogenesis and lead to sterility. The protein (DIA) encoded by the human gene (DIA) is the first human member of the growing FH1/FH2 protein family. Members of this protein family affect cytokinesis and other actin-mediated morphogenetic processes that are required in early steps of development. We propose that the human DIA gene is one of the genes responsible for POF and that it affects the cell divisions that lead to ovarian follicle formation.

Amino Acid Sequence↗

Hormonal-induced changes on the lipid composition and DPH fluorescence anisotropy of erythrocyte ghost from pre- and postmenopausal women.

Fluorescence anisotropy determinations were performed on hypotonically lysed red blood cells from 12 healthy, free living, premenopausal and 10 postmenopausal women fed a self-selected diet. Fatty acid composition of phospholipids and cholesterol esters, lipid/lipid and lipid/protein ratios were also determined in erythrocyte ghosts along the menstrual cycle or during hormonal replacement therapy. The postmenopausal women were treated with transdermal 17-beta estradiol (approx, delivery rate of 50 micrograms/day) for a 5-week period and with a combination of percutaneous administration of estradiol and orally administered medroxyprogesterone acetate (5 mg/day) for 5 weeks more. Premenopausal women were studied in the mid-follicular and mid-luteal phases of their menstrual cycles. Membrane fluidity in cells from the luteal phase was greater than that observed in the follicular phase. After estradiol treatment, postmenopausal women exhibited a significant raise in the fluorescence anisotropy. The association with progesterone prevented the estrogen-induced increase of the anisotropy values. Estrogen administration also produced an increment in the relative content of cholesterol and membrane proteins that was reverted by progesterone addition. Changes induced by estradiol treatment in the fatty acid pattern of phospholipids and cholesterol esters were characterized by an increment in the monoenoic/saturated fatty acid ratio and linoleic relative content, with a concomitant decrease in the proportion of arachidonic and docosatetraenoic acids. These results suggest that the modification of the desaturase activities may be involved in a mechanism by which these hormonal-induced changes take place. The present study demonstrated that human erythrocyte fluidity is under hormonal control subjected through changes in the proportion and quality of the membrane lipids.

Adult↗

Epsilon subunit-containing acetylcholine receptors in myotubes belong to the slowly degrading population.

Two types of muscle acetylcholine receptors (AChRs) can be distinguished on the basis of their degradation rates and sensitivities to innervation, muscle activity, and agents elevating intracellular cAMP. The first type (Rs), is present in a stable form (degradation t1/2 = approximately 10 d) at the adult innervated neuromuscular junctions (NMJs). Rs can also exist in a less stable form (called accelerated Rs; t1/2 = approximately 3-5 d) at denervated NMJs and in aneurally cultured myotubes; agents that increase intracellular cAMP reversibly modulate Rs stability. The second type of AChR is a rapidly degrading receptor (Rr) expressed only in embryonic and noninnervated muscles. Rr can be stabilized by ATP and not by cAMP. This study tested the hypothesis that the degradation properties unique to the Rs are attributable to the presence of the epsilon subunit. Immunoprecipitation and Western blot analysis of AChRs extracted from rat muscle cells in tissue culture showed that AChRs recognized by antibodies against the epsilon subunit degraded as a single population with a half-life similar to that of the slow component, Rs, in these cells. In addition, as for Rs receptors in denervated NMJs and cultured muscle cell, the degradation rate of these epsilon-containing AChRs was stabilized by dibutyryl-cAMP. The data indicate that the epsilon-containing AChRs behave like Rs. Thus, the presence of the epsilon subunit is sufficient for selecting an AChR molecule to the Rs pool.

Animals↗

Eleven X chromosome breakpoints associated with premature ovarian failure (POF) map to a 15-Mb YAC contig spanning Xq21.

Eleven balanced X-autosome translocations associated with premature ovarian failure (POF) were mapped to a YAC contig spanning most of Xq21 and constructed between the DXS223 and DXS1171 loci. The contig corresponds to a genomic region of about 15 Mb and contains the whole X-Y homologous region. The most proximal and most distal breakpoints associated with POF were mapped 15 Mb apart. The remaining breakpoints were localized along this large region, in the X-specific and in the X-Y homologous region. Four of the YACs contained two breakpoints in the same or in flanking STS intervals. Our results confirm the cytological findings and suggest that a minimum number of eight different genes in Xq21 may be involved with ovary development. Interruption of such loci could be the cause of POF.

Carrier Proteins↗

Effect of epidural anesthesia on colorectal anastomosis: a tonometric assessment.

PURPOSE: Epidural anesthesia is believed to benefit colorectal anastomotic blood flow because of the sympathetic blockade it produces. Our purpose is to measure with tonometry the effect of epidural anesthesia on colorectal anastomotic oxygenation. PATIENTS AND METHODS: Fifteen patients operated on for rectal cancer (radical anterior resection) were monitored postoperatively using tonometers placed in the stomach (celiac trunk), transverse colon (superior mesenteric artery), and the anastomotic area during the operation. An epidural catheter was placed at L1-2, and on the first postoperative day, 8 ml of bupivacaine (0.25 percent) was administered. The anesthetic effect extended up to T-4. Intramucosal pH (pHi) at the three locations was measured before, during, and after the epidural blockade. RESULTS: Gastric and transverse colon pHi increased during the epidural blockade from 7.35 +/- 0.01 to 7.41 +/- 0.01 and from 7.34 +/- 0.02 to 7.40 +/- 0.02, respectively. The anastomotic pHi decreased from 7.3 +/- 0.02 to 7.24 +/- 0.03 under the epidural and increased up to 7.34 +/- 0.02 after withdrawal of the effect on the following day. All pHi variations were statistically significant (P < 0.05, paired Student's t-test and Wilcoxon's test), because it was the comparison between gastric and transverse colon pHi with the anastomotic pHi during the epidural (P < 0.05, one-way analysis of variance and Kruskal-Wallis tests). None of the patients developed anastomotic or other complications. CONCLUSIONS: Epidural anesthesia with bupivacaine causes a significant decrease in the oxygenation-perfusion state of colorectal anastomosis in comparison with the increase in other areas of the digestive tract. Further studies need to be done to see if other epidural anesthetic-analgesic protocols also worsen colorectal anastomotic blood flow.

Adult↗

Mechanism and pressor relevance of the short-term cardiovascular and renin excitatory actions of the selective A2A-adenosine receptor agonists.

Selective A2A adenosine receptor agonists are potent vasodilators that reduce blood pressure and induce marked increments in heart rate and plasma renin activity (PRA). To examine the mechanisms and pressor relevance of these cardiac and renin responses, we measured blood pressure and heart rate by telemetry and PRA in separate sets of spontaneously hypertensive rats (SHRs), which were given i.p. 2-hexynyl-5-methylcarboxamidoadenosine (2HE-NECA, 0.01 mg/kg) and 2-[4-(2-carboxyethyl)phenethylamino]-5'-N-ethylcarboxamidoadenosin e (CGS 21680, 0.1 mg/kg) alone and after pretreatment with the beta 1-adrenoceptor blocking agent atenolol (100 mg/kg). The effects of 2HE-NECA (0.003 mg/kg) also were examined after pretreatment with the angiotensin-converting enzyme (ACE) inhibitor spirapril (3 mg/kg). Both A2A agonists induced marked reductions in blood pressure, associated with significant increments in heart rate and in PRA. Atenolol reduced blood pressure to the same extent as did the A2A agonists and markedly decreased heart rate and PRA. Pretreatment with atenolol entirely prevented the increase in heart rate and in PRA induced by the two A2A agonists but potentiated only slightly their antihypertensive effect. Spirapril alone reduced blood pressure and increased PRA and when given before 2HE-NECA potentiated its depressor and renin-stimulating effects by 44% and 69%, respectively. These results suggest that the increase in heart rate and in PRA induced by A2A agonists is the result of a reflex increase in sympathetic activity triggered by the decrease in blood pressure rather than of a direct stimulating effect on cardiac and renal A2A-adenosine receptors; the reactive activation of the renin-angiotensin system elicited by these compounds may contribute to blunting their antihypertensive effect.

Adenosine↗

Intraoperative photoplethysmographic diagnosis of ischemic colitis.

Intraoperative evaluation of ischemic colitis presents several problems related to diagnosis, severity, and extension. The aim of this study was to determine the usefulness of photopletysmography (PPG) to detect colonic arterial wave amplitude changes in patients operated on for ischemic colitis, comparing the affected area with a control area on the transverse colon. Four patients were studied, two with gangrenous colitis, and two with protracted "transient" ischemic colitis. All four patients survived. PPG is a useful method for intraoperative diagnosis and surgical assessment of ischemic colitis.

Aged↗

Selection and fine mapping of chromosome-specific cDNAs: application to human chromosome 1.

We have developed a methodology for identification and fine mapping of chromosome-specific transcripts. Combining digestion of DNA with different restriction enzymes, ligation to "bubble" linkers, and PCR amplification from Alu and "bubble" primers, we have synthesized human chromosome 1-specific sequences from DNA of a somatic cell hybrid, A9Neol. After hybridization to human fetal brain cDNA, we could efficiently capture chromosome 1-specific cDNAs. The cDNAs were sequenced and used as probes in hybridizations to high-density filters containing the arrayed CEPH Mega-YAC library and to the arrayed cDNA library from infant brain made by B. Soares, which has been extensively sequenced. By this approach we have been able to select chromosome 1-specific cDNAs, to map them to chromosome 1 YAC contigs, and to identify and map corresponding longer cDNAs and ESTs.

Animals↗

N-type Ca2+ channels are present in secretory granules and are transiently translocated to the plasma membrane during regulated exocytosis.

An intracellular pool of N-type voltage-operated calcium channels has recently been described in different neuronal cell lines. We have now further characterized the intracellular pool of N-type calcium channels in both IMR32 human neuroblastoma and PC12 rat pheochromocytoma cells. Intracellular N-type calcium channels were found to be accumulated in subcellular fractions where the chromogranin B-containing secretory granules were also enriched. 125I-omega-Conotoxin GVIA binding assays on fixed and permeabilized cells revealed that intracellular N-type calcium channels translocate to the plasma membrane in cells exposed to secretagogues (KCl, ionomycin, and phorbol esters). The kinetics, Ca2+ and protein kinase C dependence, and brefeldin A insensitivity of N-type calcium channels translocation were similar to the regulated release of chromogranin B, while no correlation was found with the constitutive secretion of a heparan sulfate proteoglycan. A PC12 subclone deficient in the regulated but not in the constitutive pathway of secretion had a small intracellular pool of N-type calcium channels, and no secretagogue-induced translocation occurred in these cells. Calcium channel translocation was accompanied by a stronger response of Fura-2-loaded cells to depolarizing stimuli, suggesting that the newly inserted channels are functional.

Animals↗