PubMed Health⌕ Search

Biomedical subjects

U Kjörell

Publications and source records attributed to U Kjörell.

At least 19 recordsLinked to original sources

Ingrowth of sympathetic innervation occurs concomitantly with a decrease of ANP in the growing rat cardiac ventricles.

The relationship between the immunohistochemical expression of atrial natriuretic peptide and the occurrence of sympathetic nerve fibres, as visualized by staining for tyrosine hydroxylase, in the growing rat heart was evaluated. Rats were investigated at four different stages from birth to 21 days postnatally. The effects of chemical destruction of sympathetic nerve terminals in neonatal rats on the cardiac atrial natriuretic peptide content were furthermore examined by use of radioimmunoassay. There was in principle a reciprocal pattern of immunoreaction for atrial natriuretic peptide and tyrosine hydroxylase positive innervation in the ventricular myocardium, atrial natriuretic peptide reaction becoming less and less pronounced with the ingrowth of innervation positive for tyrosine hydroxylase. Furthermore, in the peripheral Purkinje fibre network, there was a marked atrial natriuretic peptide immunoexpression and scarce or no nerve fibres throughout the examination period. The radioimmunoassay measurements showed that chemical sympathectomy lead to elevated cardiac levels of atrial natriuretic peptide. The study shows that sympathetic innervation grows into the ventricular parts concomitantly with the occurrence of a decline in atrial natriuretic peptide expression during development of the heart. Furthermore, it is shown that a reversion of the in growth of sympathetic innervation by destruction of cardiac sympathetic nerves at an early stage leads to increased levels of atrial natriuretic peptide in the heart. The results give new evidence to the phenomenon that the atrial natriuretic peptide levels in the ventricular myocardium and the peripheral parts of the conduction system are under influence of the presence of sympathetic innervation.

Animals↗

Parallel increase in substance P and VIP in rat duodenum in response to irradiation.

Irradiation was administered to the upper abdomen of rats, whereupon the duodenum was examined. Numerous vasoactive intestinal peptide (VIP)- and substance P (SP)-like immunoreactive nerve fibers were seen in the damaged mucosa, often in close association to each other. The intensity of the SP- and VIP-like immunoreaction was increased in several of the tissue compartments and, as measured with radioimmunoassay, the contents of SP- and VIP-like materials were increased after 30 Gray. The results show that SP and VIP levels increase after irradiation and suggest that SP and VIP are involved in interactive reactions in the reorganization and inflammatory processes in the gut after abdominal irradiation.

Animals↗

Analysis of VIP and CGRP plasma levels after radiotherapy for treatment of metastasis from prostatic carcinoma.

It has previously been shown that radiotherapy leads to an increased level of neuropeptides in various organs. In the study we report here, we examined whether the plasma levels of two neuropeptides, vasoactive intestinal peptide (VIP) and calcitonin gene-related peptide (CGRP), are influenced by radiotherapy. Blood was collected at four time intervals after radiotherapy; 1-12 days after treatment for skeletal metastasis from prostatic carcinoma. The VIP- and CGRP-plasma levels, as analyzed by radioimmunoassay, were not statistically different between the different time points analyzed.

Bone Neoplasms↗

Increase in bombesin-like peptides in the spinal cord after dexamethasone treatment of adrenalectomized rats.

The potential influence of corticosteroids on the bombesin (BN)-like peptide family is unknown. Therefore, the effects of adrenalectomy (ADX) on the nervous system of Sprague-Dawley rats, some of them being treated with high doses of the synthetic glucocorticoid dexamethasone (DEX), were investigated. After 8-10 days of treatment, the rats were sacrificed and tissues were prepared for radioimmunoassay (RIA) and immunohistochemical examination. We found an increase in BN-like immunoreactivity in the superficial layers of the dorsal horn of the lumbar spinal cord in the ADX + DEX animals. This increase was confirmed by RIA (P < 0.05). The observations show that the expression of BN-like peptides is influenced by glucocorticoids. The altered levels of BN-like peptides may be related to the trophic and antinociceptive effects previously reported for these peptides.

Adrenalectomy↗

Does bombesin-like peptide mediate radiation-induced anorexia and satiety?

Bombesin (BN) and its mammalian counterpart gastrin-releasing peptide (GRP) act as neuroregulatory hormones and peripheral and central satiety-inducing agents. Previously, we demonstrated that irradiation induces an increase in the expression of BN/GRP in the innervation of the salivary glands in rats. We therefore carried out a study using radioimmunoassay (RIA) analysis and immunohistochemistry to examine whether saliva contains BN and whether irradiation affects the BN release to saliva in rats. Immunoreactivity for BN was detected not only in the innervation of the parenchyma but also in the duct cells and in the lumina of the ducts, suggesting entrance of BN into saliva. The RIA analysis confirmed that rat saliva contains a BN-like peptide. The observation shows that saliva contains this peptide but that there is no significant increase following the radiation schedule used. Nevertheless, the occurrence of an enhanced expression of BN in different peripheral tissues such as the salivary and laryngeal glands should be taken into consideration when discussing the clinically important problem of reduced food intake and anorexia in cancer patients.

Animals↗

Increased immunoexpression of atrial natriuretic peptide in the heart conduction system of the rat after cardiac sympathectomy.

The present investigation was designed to elucidate which role the sympathetic nerves play in the immunoexpression of atrial natriuretic peptide in the cardiac conduction system of the rat. In order to destroy the cardiac sympathetic nerve terminals, both surgical and chemical sympathectomy were performed. By use of immunohistochemical and radioimmunoassay techniques, the immunoreactivity and level of atrial natriuretic peptide in the conduction system and in the cardiac myocardium were determined. In contrast to the low degree of immunoreaction for atrial natriuretic peptide seen in control rats, the sympathectomized rats exhibited pronounced immunoreactivity for atrial natriuretic peptide in the atrioventricular bundle and bundle branches, which normally have high numbers of sympathetic nerve fibres. On the other hand, in the peripheral parts of the conduction system, where there are ordinarily few sympathetic nerve fibres, the degree of immunoreaction was unchanged. The quantitative measurements also showed that the entire ventricles, including the conduction system, contained increased levels of atrial natriuretic peptide in the treated hearts. The present study shows that destruction of the sympathetic nervous system leads to an increased level of atrial natriuretic peptide in the Purkinje fibres of bundle branches, which thus seem to have a dormant capacity for synthesis of this peptide. The results provide new evidence about the change in atrial natriuretic peptide levels that occurs when sympathetic innervation is altered.

Animals↗

Enhanced expression of neuropeptides in human breast cancer cell lines following irradiation.

Previously, we have observed that the expression of the neuropeptides bombesin (BN-), the mammalian counterpart being gastrin-releasing peptide (GRP), and substance P (SP) in intact normal tissues, such as salivary and laryngeal glands, increases in response to irradiation. In the present study, the aim was to evaluate whether irradiation can have effects on individual cells that normally synthesize neuropeptides. In addition, since these neuropeptides are potentially mitogenic, we studied tumor cells. Therefore, the estrogen receptor-negative human breast cancer cell line MDA-MB-231 and its subline, with acquired doxorubicin resistance, MDA-MB-231 Dox were examined before irradiation and 4, 10, and 15 days after irradiation with 4 Gy (195 kV, 2 Gy fractions with 4 hours interval). Potential dose related changes were studied by delivering single doses of 2 or 9 Gy with the same technique. Immunohistochemical and radioimmunoassay (RIA) methods were used for detection of the SP and BN/GRP. Before, and at all time points following irradiation, a subpopulation in both cell lines displayed an intense immunostaining of SP and BN/GRP. A partial reorganization of the immunoreactive material was observed 10 days after irradiation. The RIA-analyses displayed signs of a dose-related increase, and a time-dependent transient and significant increase in the content of both peptides. The pattern of changes differed between the two peptides, and was especially pronounced in the doxorubicin resistant cells with regard to SP. Another neuropeptide, calcitonin gene related peptide (CGRP), was not detected in the cells used. The results suggest that irradiation has effects on a population of cultured neuropeptide-synthesizing cells. The occurrence and the specific changes obtained in the levels of neuropeptides, in response to irradiation, might imply an importance in the growth of breast cancer cells and in explaining repair processes following irradiation.

Antibiotics, Antineoplastic↗

Intrinsic and extrinsic NPY nerves in transplanted neuroinsular complexes.

In mouse pancreatic islets, whether in situ or transplanted to kidney, nerve fibers and a few perikarya expressed NPY-like immunoreactivity (NPY-LI). In 4-5 day old grafts, NPY-LI coexisted with VIP-LI in randomly distributed nerve fibers. By 2-52 weeks, NPY mainly co-existed with tyrosine hydroxylase in fibers emanating from the kidney parenchyma. Radioimmunoassays indicated that the NPY levels increased with time, while those of VIP decreased. The study shows that NPY is primarily present in the intrinsic VIP-ergic innervation of islet grafts but later is mainly a constituent of the ingrowing sympathetic innervation.

Acetylcholinesterase↗

VIP in the rat parotid gland in response to irradiation.

In the present study, the immunohistochemical expression of vasoactive intestinal polypeptide (VIP) in the parotid gland of rats exposed to fractionated irradiation was examined. VIP concentration was analyzed by radioimmunoassay (RIA). Irradiation lead to a marked increase in the immunohistochemical expression of VIP in the innervation of the gland parenchyme. VIP-like immunoreactivity (LI) frequently coexisted with SP (substance P)-LI in these nerve fibers. The pattern of VIP-innervation in association with large ducts and blood vessel walls was unchanged. RIA analysis revealed a more than three-fold elevation in VIP content in the gland in response to irradiation. The increase in VIP immunoreaction and VIP content was seen at examination ten days after cessation of a five-day treatment with a total dose of 30-40 Gray. The upregulation of VIP may be related to changes in the production of neurotrophic factors and to an increased demand for a potentiation of secretagogue effects of SP.

Animals↗

Bombesin-like peptide is present in duct cells in salivary glands: studies on normal and irradiated animals.

Bombesin (BN) and its mammalian counterpart gastrin-releasing peptide act as neuroregulatory hormones and tissue-specific growth factors, and have been implicated as peripheral and central satiety-inducing agents. In the present study, the immunohistochemical expression of BN in submandibular, sublingual and parotid glands of rats was examined 10 days after 5 consecutive days with daily doses of 6-8 Gy irradiation. Radioimmunoassay (RIA) methods were also used. Immunoreactive granular structures were observed within duct cells of both controls and irradiated animals. In the parenchyma of irradiated animals, very few nerve fibres showing BN-like immunoreactivity were observed. The RIA analysis showed that the content of BN-like material significantly increased in submandibular and parotid glands in response to irradiation. The results suggest that mainly a non-neural form of BN is detected in the salivary glands in the immunohistochemical analysis. Thus, the immunohistochemical observations suggest that BN-like peptides may be present in the duct system, where they may be constituents of the saliva. The observations of an increase in BN content in response to irradiation are of interest as BN has mitogenic effects, may stimulate secretion and contributes to satiety.

Animals↗

Time- and dose-related changes in the expression of substance P in salivary glands in response to fractionated irradiation.

PURPOSE: The expression of different neuropeptides in the innervation of submandibular and parotid glands of the rats was examined 2 and 5 days after initiation of radiation treatment as well as 10 and 180 days following the termination of irradiation. METHODS AND MATERIALS: The irradiation was given on 2 or 5 consecutive days with daily doses of 4-8 Gy up to a total dose of 20-40 Gy. Immunohistochemical methods were used for the demonstration of substance P (SP), calcitonin gene-related peptide (CGRP), neuropeptide Y (NPY) and, the rate-limiting enzyme in the catecholamine synthetic pathway, tyrosine hydroxylase (TH). The content of SP was also analyzed by the use of radioimmunoassay (RIA). RESULTS: In the parenchyma of both the submandibular and the parotid glands of control animals as well as after 2 days of irradiation treatment, a few nerve fibers showing SP-like immunoreactivity (LI) were observed. A marked increase in the expression of SP in the innervation of the parenchyma in both glands was observed 10 days after cessation of radiation treatment. The number of stained nerve fibers and the intensity of fluorescence in the fibers seemed to be dose dependent because the group subjected to a total dose of 40 Gy displayed a more pronounced staining intensity than that treated with 30 Gy. These results were supported by the RIA analysis. One hundred eighty days after treatment no obvious differences in SP-expression were seen between control and irradiated animals. No acute and long-term alterations were seen with regard to the other peptides and TH. CONCLUSIONS: These results suggest that specific dose- and time-dependent changes in the expression of SP in the parenchyma of both submandibular and parotid glands occur in response to fractionated irradiation. The observations add further aspects to the tissue differences in physiological response and sensitivity to irradiation.

Animals↗

Bombesin-like immunoreactivity in the rat larynx: increase in response to irradiation.

It is previously well known that bombesin has effects as growth factor and that changes in bombesin content in air-way structures occur in various patho-physiological conditions. In the present study, the effects of radiotherapy on bombesin expression in the rat larynx were studied. Irradiation was given for five days, 6 or 8 gray daily. Ten days after cessation of irradiation, the subglottic part of the larynx from irradiated and control animals was dissected out, and processed for immunohistochemistry or radioimmunoassay. The radioimmunoassay analysis showed that the content of bombesin-like material increased 2-fold after irradiation. The immunohistochemical analysis displayed an increased bombesin-like immunoreactivity in local ganglionic cells and in nerve fibers in the submucosal glands. These nerve fibers are likely to be derived from the local ganglionic cells. On the other hand, there was no change in the pattern of immuno-reactivity in the innervation of the epithelium and the lamina propria, including the blood vessels. The observations show that radiotherapy can be added to the list of factors that influence bombesin expression in airway structures.

Animals↗

Distribution of intermediate filament proteins in developing and adult salivary glands in man.

Adult and developing salivary glands were investigated using five monoclonal antibodies against cytokeratins (CKs) and vimentin. Acinar cells displayed mainly CK 18 whereas CKs 7, 17 and 19 were only detected in duct and myoepithelial cells. All epithelial and myoepithelial cells were unreactive for one vimentin antibody (Vim 9) whereas with the other (Vim 24), myoepithelial cells and basal cells of excretory ducts were stained. Fetal cells showed the CK pattern of duct cells. At gestational week 18, a reaction for both vimentin antibodies could be found in basal cells of terminal tubules. Although vim 9 reactivity has been shown for a number of salivary neoplasms, it has not been detected in any adult epithelial salivary tissue. The finding of this reactivity in the fetal gland indicates that the expression of this intermediate filament protein in certain salivary neoplasms may be a sign of dedifferentiation resulting in the expression of a filament pattern found in an earlier stage of gland development.

Antibodies, Monoclonal↗

Immunohistochemical analyses of autoimmune sialadenitis in man.

The immunoreactivity pattern for different monoclonal antibodies to cytokeratins and to vimentin in epimyoepithelial islands typical for glands of patients with Sjögren's syndrome has been compared with that of normal parotid gland tissue. Two types of epithelial island cells were observed: one had an intermediate filament protein pattern similar to that of ordinary duct epithelial cells of normal parotid gland. The other had an intermediate filament protein pattern typical of myoepithelial and/or basal duct cells in normal glands. Thus, we conclude that the islands are composed of a mixed population of gland cells on the basis of their content of cytokeratins or of cytokeratins and vimentin. These cells might originate from pluripotential reserve cells or from ordinary duct, myoepithelial and/or basal duct cells which may have undergone metaplasia.

Antibodies, Monoclonal↗

A comparative analysis of intermediate filament proteins in bovine heart Purkinje fibres and gastric smooth muscle.

The intermediate filament (IF) composition of muscle cells of various sources is still a controversial issue. In the present study, the IF composition of bovine Purkinje fibres (PFs), atrial and ventricular myocardium, and gastric smooth muscle (SM) has been compared using biochemical and immunocytochemical methods. The Mr of the major IF subunit protein in all four tissues was 55,000. In two-dimensional (2-D) electrophoresis gels of Triton-treated ordinary atrial and ventricular myocardium and the gastric muscular wall, two or three isoelectric isoforms were seen, whereas in PFs up to seven isoforms caused by phosphorylation were observed. In immunofluorescence studies antibodies against the Mr 55,000 subunit of PFs and gastric SM, respectively, both showed identical reactivity with PFs, atrial and ventricular myocytes, gastric SM cells and some SM cells in intramyocardial and gastric muscular wall blood vessels. A small amount of vimentin (Mr 57,000) was also detected in 2-D gel electrophoresis in all four tissues as well as in immunoblotting of PFs with antibodies to vimentin. Immunofluorescence studies using both polyclonal and monoclonal antibodies to vimentin showed that vimentin was present in the endothelium and SM cells of both intramyocardial and gastric muscular wall vessels, sometimes together with desmin in the vascular SM cells, but was never seen in PF, atrial, ventricular or gastric SM cells proper. As expected, vimentin was present in interstitial tissue, i.e., fibroblasts and capillaries. However, interestingly, the monoclonal antibodies, which recognized different antigenic determinants of vimentin, did not give identical staining patterns. Especially the staining of the vascular SM cells differed. Since this staining pattern did not change upon denaturation and unmasking experiments, it seems that the organization of vimentin in different mesenchymal cell types varies. Vimentin was also detected in isolated PFs but here it was located solely in the contaminating interstitial tissue. Thus, desmin is the sole IF protein expressed in PFs, in atrial and ventricular myocytes and in gastric SM cells proper; vimentin alone being present in the interstitial tissue cells, whilst in vascular SM cells desmin and vimentin are coexpressed in various proportions. The variation in number of isoforms of desmin and the heterogeneity in staining of mesenchymal tissues with monoclonal vimentin antibodies probably indicates that the IF cytoskeletons are differently organized in various cell types, even though they contain IFs of the same class.

Animals↗

Cytoskeletal proteins in oncocytic tumors of the parotid gland.

Oncocytomas and Warthin's tumors were studied ultrastructurally and with immunofluorescence microscopic techniques against cytokeratins, desmin, vimentin, and actin, the latter characterizing myoepithelial cells. The cell types were found within oncocytomas, one type packed with mitochondria and virtually without filaments, the other contained fewer mitochondria but large amounts of cytokeratins. In Warthin's tumors, all cells contained cytokeratins, the basal cell to a much higher degree. No tumor cells contained vimentin or desmin. Actin was found only close to the apical cell surface in the cylindrical cells in the Warthin's tumors and around the few acinar lumina found in the oncocytomas; thus, a myoepithelial origin of oncocytic tumors of salivary glands seems less plausible. The similarity in staining pattern, namely the pronounced dimorphism of both tumor types, indicates a common progenitor of oncocytomas and the epithelial component in adenolymphomas.

Actins↗