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Biomedical subjects

R Vaccaro

Publications and source records attributed to R Vaccaro.

At least 19 recordsLinked to original sources

Early development of chick embryo respiratory nervous system: an immunohistochemical study.

The extrinsic and intrinsic respiratory nervous systems receive specific contributions from the vagal and sympathetic components. Using specific markers for vagal and sympathetic structures, we studied the distribution patterns of immunoreactivity to galanin (GAL), pituitary adenylate cyclase-activating polypeptide-27 (PACAP) and the tachykinin substance P in extrinsic and intrinsic nerve of chick embryo respiratory system, during development from the very early age to hatching. All peptides studied appeared in the intrinsic and extrinsic nervous systems early. We found substance P in both the vagal and sympathetic systems, PACAP in vagal components alone and GAL mainly in the sympathetic system. The intrinsic nervous system showed high immunoreactivity for all peptides studied. These data accord with the well known early trophic functions that peptides have on the development of nervous networks and modulatory activity on the intrinsic nervous system. The GAL again proves to be the main peptide in chick embryo sympathetic respiratory system.

Animals↗

Nervous system development in normal and atresic chick embryo intestine: an immunohistochemical study.

Intestinal motility disorders are a common complication after surgery for neonatal intestinal atresia. Although intestinal atresia causes alterations in the enteric nervous system, especially in its inner structures (nervous fibers in the mucosa, submucous and deep muscular plexuses), how these alterations develop is unclear. The chick model is a useful research tool for investigating the ontogenesis of the enteric nervous system and the pathogenesis of congenital bowel diseases. More information is needed on the overlap between the developing enteric nervous system and intestinal atresia. Because vasoactive intestinal polypeptide and substance P are typical intestinal neuropeptides, and vasoactive intestinal polypeptide acts as a modulator in neurodevelopment and an inhibitor of smooth muscle cell proliferation, our aim in this study was to investigate the distribution of their immunoreactivity in the developing enteric nervous system of normal and experimental chick models. We studied gut specimens excised from normal chick embryos (aged 12-20 days) and experimental chick embryos (aged 15-20 days) that underwent surgical intervention on day 12 to induce intestinal atresia (atresic embryos) or simply to grasp the bowel loop (sham-operated embryos). In normal chick embryos we showed vasoactive intestinal polypeptide and substance P immunoreactivity from day 12 in the submucous and myenteric plexuses. The distribution of peptide immunoreactivity differed markedly in atresic and normal or sham-operated gut embryos. These differences especially affected the inner structures of the enteric nervous system of specimens proximal to atresia and were related to the severity of dilation. Because nerve structures in the gut wall mucosa and submucous and deep muscular plexuses play a role in motility control and stretch sensation in the intestinal wall, our findings in the chick embryo may help to explain how gut motility disorders develop after surgery for neonatal intestinal atresia.

Animals↗

Ontogeny of guanylin-immunoreactive cells in rat salivary glands.

Guanylin-like peptides regulate electrolyte/water transport through the epithelia. Moreover, these peptides possess antiproliferative activity and regulate the turnover of epithelial cells. In an earlier study we localized guanylin immunoreactivity in secretory ducts of adult rodent salivary glands. In this study we investigated the appearance and distribution pattern of this peptide during the development of rat salivary glands. Guanylin immunoreactivity appeared at the beginning of cell differentiation from solid bud, on embryonic day 17 in the submandibular and sublingual glands and after day 18 in the parotid gland. Guanylin immunoreactivity appeared first in ductal and acinar anlage: its cell distribution pattern and fate differed in these two compartments. In the duct cells guanylin immunoreactivity spread after the duct system developed, whereas in acinar cells it disappeared after cell differentiation. The guanylin immunoreactivity we detected in adult salivary duct cells accords with guanylin's role in regulating electrolyte and water transport through the various epithelia. It does so by activating guanylate cyclase-C receptor, increasing intracellular cGMP concentration, and phosphorylating the cystic fibrosis transmembrane conductance regulator (CFTR) protein by the cGMP-dependent protein kinase II. This signaling cascade couples to the ductal electrolyte/water secretion and modulates finally the electrolyte composition of the saliva. On the other hand, CFTR is also involved in mechanisms of cell growth, by regulating apoptosis, and promoting cell differentiation. The early diffuse guanylin immunoreactivity we observed in ducts and acinar anlage, before the secretory set is operative, suggests guanylin has a role in cell differentiation.

Aging↗

Ontogeny of galanin-immunoreactive elements in chicken embryo autonomic nervous system.

To elucidate the main ontogenetic steps of galanin immunoreactivity within the extrinsic nerve supply of the alimentary tract, we undertook an immunohistochemical study of chicken embryo specimens. Fluorescence and streptavidin-biotin-peroxidase protocols were combined, using a galanin polyclonal antiserum, on transverse serial sections obtained from chicken embryos from embryonic Day 3 (E3) to hatching, and from 9-day-old newborn chicks. Galanin-immunoreactive cells were first detected at E3.5 within the pharyngeal pouch region, the nodose ganglion, the primary sympathetic chain, primitive splanchnic branches and the caudal portion of the Remak ganglion. At E5.5 galanin-immunoreactive cells and fibers appeared in the secondary (paravertebral) sympathetic chain, splanchnic nerves, peri- and preaortic plexuses, adrenal gland anlage and visceral nerves. Galanin-immunoreactive cells also lay scattered along the vagus nerve, and in the intermediate zone of the thoracolumbar spinal cord. At E18, galanin-immunoreactive cells and fibers were found along the entire Remak ganglion and around the gastrointestinal blood vessels. In post-hatching-9-day old chicks, the para- and prevertebral ganglia, but not the intermediate zone of the spinal cord, contained galanin-immunoreactive cells. Data indicate the presence of a consistent "galaninergic" nerve system supplying the chick embryonal gut wall. Whether this system has growth or differentiating role remains to be demonstrated. Its presence and distribution pattern in the later stages clearly support its well known role as a visceral neuromodulator of gut function.

Animals↗

Guanylin and uroguanylin in the parotid and submandibular glands: potential intrinsic regulators of electrolyte secretion in salivary glands.

The intestinal peptides guanylin and uroguanylin regulate the electrolyte/water transport in the gastrointestinal epithelium via activation of cystic fibrosis transmembrane conductance regulator (CFTR), the cystic fibrosis gene product. Because a major but incompletely understood function of the salivary glands is the CFTR-mediated secretion of an electrolyte-rich fluid, we investigated the rat and guinea pig parotid and submandibular glands for expression, cellular distribution, and subcellular localization of guanylin and uroguanylin. RT-PCR analyses with guanylin and uroguanylin-specific primers revealed that both peptides are highly expressed in the parotid and submandibular glands. At the translational level, western blotting analyses with peptide-specific guanylin and uroguanylin antibodies identified the expected 12.5-kDa immunoreactive peptides in these organs. At the cellular level, guanylin and uroguanylin were exclusively confined to epithelial cells of the intralobular and interlobular ducts. At the subcellular level, the immunoreactivities were localized by preembedding immunoelectron microscopy to small vesicles which were concentrated at the apical part of the secretory epithelial cells. The expression and cell-specific localization of guanylin and uroguanylin in the salivary glands indicate that these peptides may be specifically involved in the regulation of CFTR-mediated electrolyte/water secretion in the salivary gland ductal system.

Animals↗

Expression of guanylin in "pars tuberalis-specific cells" and gonadotrophs of rat adenohypophysis.

The intestinal peptide guanylin regulates the electrolyte/water transport in the gastrointestinal epithelium by paracrine/luminocrine mechanisms. Because guanylin also circulates in the blood, we investigated the rat hypothalamo-pituitary region for expression and cellular localization of this peptide. Reverse transcriptase-PCR analyses with guanylin-specific primers revealed expression of the peptide in the pars tuberalis and pars distalis of the pituitary. Western blotting analyses in hypophyseal tissue extracts identified the expected 12.5-kDa immunoreactive peptide by using two different region-specific guanylin antisera. Light and electron microscopic immunocytochemistry with the same antisera localized guanylin in "pars tuberalis-specific cells" in the juxtaneural pars tuberalis adjacent to nerve endings and blood vessels of the hypothalamo-pituitary portal system and in gonadotrophic cells within the distal pars tuberalis and ventrolateral part of the pars distalis. The presence and cell-specific localization of guanylin within the hypothalamo-hypophyseal system indicate that this peptide may be specifically involved in paracrine and endocrine regulatory mechanisms.

Animals↗

Ontogeny of PACAP immunoreactivity in extrinsic and intrinsic innervation of chicken gut.

An immunohistochemical study was conducted on the ontogeny of pituitary adenylate cyclase-activating polypeptide-27 (PACAP) immunoreactive elements within the extrinsic and intrinsic nerve supply of the chicken embryo gut. The first PACAP-immunoreactivity was detected in the extrinsic nerve supply at E 4 within the pharyngeal region and the primary sympathetic chain. At E 5.5 it appeared in the vagus nerve, the spinal cord, the secondary sympathetic chain, some perivascular plexuses and the Remak ganglion. In the intrinsic nerve supply, the first PACAP-immunoreactive elements were shown at E 4.5-E 5 in the mesenchymal bud of the proventriculus/gizzard. Then they gradually appeared also cranially and caudally both in myenteric and submucous plexuses.

Animals↗

A plate-rod device for treatment of cervicothoracic disorders: comparison of mechanical testing with established cervical spine in vitro load testing data.

Posterior cervical internal fixation has long been accomplished using wires, hooks, and rods. More recently, the cervical lateral mass screw and plate or rod systems have been used effectively in unstable lower cervical spine disorders. Each form of fixation has its advantages and disadvantages. Interspinous wiring and lateral mass screw placement obviate canal penetration in the cervical region but are associated with a potential neurologic risk as a result of canal encroachment. Minor canal intrusion by laminar hooks in the thoracic spine pose a lesser neurologic risk than in the cervical region. To exploit the benefits and safety features of spinal instrumentation, a combination plate rod construct (PRC) has been developed that obviates canal penetration in the cervical region by way of lateral mass and cervical pedicle screw fixation and hooks or wires in the thoracic spine. A biomechanical analysis of the PRC device was performed and compared with the in vivo maximal load data of the cervical spine and established maximal load data of the Roy-Camille posterior cervical fixation system. The PRC has greater strength and resistance to failure than is necessary to sustain maximal in vivo cervical spine loads, and it has also compared favorably with the parameters of the Roy-Camille system. The PRC device, or variations on it, is an excellent option for spinal fixation across the cervicothoracic junction because of its superior biomechanical qualities and versatility in stabilizing a complex anatomic junction of the spine.

Biomechanical Phenomena↗

Air quality index and its use in Italy's management plans.

The paper defines a specific Air Quality Index (AQI) introduced to evaluate the general trend of air quality within the elaboration of air quality management plans and discusses its application in the Trento (Italy) plan.

Air Pollution↗

Ontogeny of galanin-immunoreactive elements in the intrinsic nervous system of the chicken gut.

Galanin is a brain-gut peptide that is present in the central and peripheral nervous systems. In the gut, it is contained exclusively in intrinsic and extrinsic nerve supplies, and it is involved overall in the regulation of gut motility. To obtain information about the ontogeny of galanin, we undertook an immunohistochemical study of chicken embryos. The time of first appearance and the distribution patterns of galanin were investigated with fluorescence and streptavidin-biotin-peroxidase (ABC) immunohistochemical protocols by using a galanin polyclonal antiserum. The various regions of the gut and the pancreas were obtained from chicken embryos aged from 3 days of incubation to hatching. All specimens were fixed in buffered picric acid-paraformaldehyde, frozen, and cut with a cryostat. Galanin-immunoreactive neuroblasts were first detected at 4 days in the mesenchyme of the proventriculus/gizzard primordium and within the Remak ganglion. They then extended cranially and caudally, reaching all of the other gut regions at 6.5 days. Galanin-immunoreactive nerve elements mainly occupied the sites of myenteric and submucous plexuses. From day 15, galanin-immunoreactive nerve fibers tended to invade the circular muscular layer and part of the lamina propria of the mucosa. In the pancreas, weak galanin-immunoreactive nerve elements were detected at 5.5 days. They tended to be distributed among the glandular lobules according to the organ differentiation. The widespread distribution during the earlier embryonic stages represents evidence indicating that the neuropeptide galanin may have a role as a differentiating or growth factor. From late embryonic life, its predominant presence in sympathetic nerves and in muscular layers fits with the functions demonstrated previously in adults of other vertebrates for galanin as a modulator of intestinal motility.

Animals↗

An immunohistochemical study of the ontogeny of the neuroendocrine system in the chicken oesophagus.

The ontogenesis and distribution of serotonin-, chromogranin A-, chromogranin B-, galanin-, neurotensin-, bombesin- and neuropeptide Y-immunoreactive elements were studied in the chicken oesophagus during pre- and post-hatching life. Unlike positive nerve elements, that were present in pre- and post-hatching life, positive endocrine cells were observed only during embryonic life in the oesophageal epithelium. The first endocrine cells, immunoreactive for serotonin and chromogranins, appeared on day 12, in the cervical and thoracic portions of the oesophagus. At the same age, but only in its distal portion, a few bombesin- and neurotensin-immunoreactive cells also appeared. The number of the endocrine cells progressively increased, reaching a maximum on day 15. They then decreased, with a cranio-caudal progression, until they disappeared a few days after hatching. Almost all the serotonin-immunoreactive cells but only a subpopulation of bombesin- and neurotensin-immunoreactive cells colocalized chromogranins. About half of this subpopulation also colocalized serotonin. All these cells reacted positively with Grimelius argyrophile stain. The mucosa of the crop never contained positive endocrine cells. Positive nervous elements appeared first in the wall of the terminal oesophagus and only one or two days later in the proximal oesophagus including the crop. Nervous elements immunoreactive for galanin first appeared from days 6 to 7, for neurotensin from days 7 to 8, for neuropeptide Y from 13 to 15 and for bombesin from 15 to 18. At day 15 galanin-immunoreactive ganglionic cells and fibres occupied both the myenteric and submucous plexus and galanin-positive nerve fibres could be seen throughout the oesophageal wall from the adventitia to a thin subepithelial network. Neurotensin- and neuropeptide Y-immunopositive ganglionic cells and fibres, by contrast, invariably occupied the muscular and submucous layers. Scattered bombesin-immunoreactive ganglionic cells were observed only in the myenteric plexus. The number of positive nerve elements progressively increased until some weeks after birth. Density and intensity were always much higher for galanin and neurotensin than for neuropeptide Y and bombesin.

Animals↗

Gamma delta T cells are decreased in the blood of children with Bordetella pertussis infection.

The biological role of T cell receptor (TCR) gamma delta bearing cells is not yet fully understood. We studied 12 children with Bordetella pertussis infection and 12 age- and sex-matched healthy controls. Patients with whooping-cough yielded significantly lower relative and absolute numbers of blood TCR-gamma delta + cells than normal controls (both p < 0.001). It is suggested that the depletion of circulating gamma delta T cells in patients with Bordetella pertussis infection might be the result of the dispatch of these cells to the site of inflammation, i.e. the bronchial mucosa. Interestingly, other human lung diseases, such as allergic bronchial asthma and sarcoidosis display similar pulmonary phenotypical features.

Bronchi↗

Soluble CD30 serum antigen in Kawasaki disease.

Very high levels of sCD30, a glycoprotein surface antigen expressed by T lymphocytes and other mononuclear cells of the immune system, were found in serum samples from 10 children with typical Kawasaki disease (KD), but not in blood specimens from a vast cohort of paediatric control subjects. These data strongly support an involvement of CD30 T cells in the immune processes which take place at the level of lymphoid organs during the acute phase of KD.

Child, Preschool↗

Soluble CD30 antigen in human colostrum.

It is now well established that the CD30 glycoprotein is a surface antigen expressed by activated T cells producing T-helper (Th)-2-type lymphokines. Mounting laboratory evidence, however, suggests that CD30 expression is not confined to a functionally restricted subset of T cells, but also identifies activated cells with a Th-1 and Th-0 pattern of cytokine secretion. CD30-bearing T lymphocytes release a soluble form of the molecule (sCD30), which can be detected both in vitro and in vivo. In the present study, very high levels of sCD30 were found in colostrum from 20 puerperal women, but not in autologous and heterologous (nonpregnant women) blood samples. These data strongly support an involvement of CD30+ T cells in the immune processes which take place at the level of the mammary gland during pregnancy and lactation. Passively transferred immune components such as immunoglobulins, cytokines, macrophages, natural killer cells, granulocytes and memory/activated T cells, all of which may help the baby to fight off infections, have been revealed in human breast milk. However, how Th-2-type cytokine-secreting T cells or other T-cell types help to endow the congenitally immunocompromised newborn infant with extrinsic immunological support remains an open question.

Colostrum↗

Tuberculin skin test reactivity in Kawasaki disease.

A strongly positive tuberculin skin reaction (> 1.5 cm2) was observed during the acute phase of the illness in 11 children with Kawasaki disease (KD), but not in control pediatric patients with other febrile infections (41 patients) or diseases similar to KD (9 patients). The cutaneous sensitivity to intermediate strength [5 tuberculin units (TU)] purified protein derivative (PPD) inoculation had completely disappeared by the second monthly checkup. Peripheral blood T lymphocytes from KD subjects proliferated vigorously and produced significant amounts of IL-2 in response to the stimulation elicited by 0.05 TU/mL of PPD. In contrast, the proliferative response of, and IL-2 release by, control T cells was within background values. Mounting laboratory evidence suggests that heat shock proteins (HSP) may be involved in the pathogenesis of KD. Our clinical and experimental data may, therefore, have been due to immunologic cross-reactivity between mycobacterial derived HSP65 and its human homologue HPS63 (self P1 antigen). Despite the low number of patients investigated, our findings suggest that the tuberculin skin test and its in vitro correlates (T cell mitogenesis and IL-2 production) could provide simple and reliable diagnostic tools for identifying atypical forms of KD, or vice versa, in subjects not vaccinated against tuberculosis.

Cell Division↗

CD40 ligand expression on the surface of colostral T cells.

The proportion of T lymphocytes, mainly CD4 positive, co-expressing the CD40 ligand (CD40-L) was significantly greater (P = 0.001) in the colostrum of 10 breast-feeding mothers than in either autologous or heterologous blood. This surface glycoprotein is a T cell molecule involved in B cell isotype switching and immunoglobulin production with its natural counter-receptor, CD40, expressed by both adult and infant B lymphocytes. As the T cells of newborn infants fail to express the CD40-L when stimulated in vitro, the in vivo upregulation on milk T lymphocytes may be one of the mechanisms through which the mother transfers immune protection to the suckling infant.

Antigens, CD↗

Salmeterol in exercise-induced bronchoconstriction in asthmatic children: comparison of two doses.

Since the optimal dose of salmeterol in asthmatic children has not yet been clearly defined, we compared the efficacy and duration of the protective effect of two doses of salmeterol (25 and 50 micrograms) against exercise-induced bronchoconstriction. Twelve children (aged 7-14 yrs) with asthma were studied in a double-blind, cross-over, placebo-controlled design. On three separate days, exercise tests were performed 1 h and 12 h after administration of the drug. Pulmonary function measurements were performed before drug inhalation, before every exercise test and 1, 5, 10, 15 and 30 min after the end of exercise. The response was expressed as maximal decrease in forced expiratory volume in one second (FEV1). Both doses of salmeterol provided significant bronchodilation for up to 12 h, with no difference between them. Maximal exercise-induced decrease in FEV1 (% fall) 1 h after pretreatment was (mean +/- SD) 35 +/- 16, 10 +/- 10 and 4 +/- 3% for placebo, 25 and 50 micrograms salmeterol, respectively. At 12 h after pretreatment these values were 31 +/- 14, 19 +/- 12 and 15 +/- 13%, respectively. Individual protection against exercise-induced bronchoconstriction at 1 and 12 h did not vary between the dosages (p < 0.05), even though the protection obtained by 25 micrograms at 12 h was no longer significant versus placebo. We conclude that 25 micrograms of inhaled salmeterol provides equally effective long-lasting bronchodilation and acute protection against exercise-induced bronchoconstriction as 50 micrograms, and may be a suitable dose for most asthmatic children.

Administration, Inhalation↗