PubMed Health⌕ Search

Biomedical subjects

J C Reubi

Publications and source records attributed to J C Reubi.

At least 109 records · Page 6Linked to original sources

Intestinal vessels express a high density of somatostatin receptors in human inflammatory bowel disease.

BACKGROUND/AIMS: The neuropeptide somatostatin exerts multiple functions in the gastrointestinal tract and may also play a regulatory role in inflammatory bowel disease, as several other neuropeptides do, e.g., substance P or calcitonin gene-related peptide. Therefore, the expression of somatostatin receptors was evaluated in tissue sections of diseased intestines and compared with controls. METHODS: Somatostatin receptors were measured in intestinal samples of 6 patients with Crohn's disease, 3 with ulcerative colitis, and 7 controls using somatostatin receptor autoradiography with 125I-[Tyr3]-octreotide or 125I-[Leu8,D-Trp22,Tyr25]-somatostatin-28 as radioligands. Substance P receptors were measured similarly on adjacent sections. RESULTS: Somatostatin receptors are present in high density in most intramural veins, but not in arteries, of intestines in florid Crohn's disease or ulcerative colitis. The receptors are specific and of high affinity for somatostatin-14 and -28, as well as for octreotide. Somatostatin receptors remain undetectable in the veins of noninflamed control intestine. Substance P receptors are identified in the somatostatin receptor-positive veins and also in arteries. CONCLUSIONS: The expression of receptors for somatostatin in veins of inflamed intestines suggests an active involvement of this peptide in the pathophysiology of inflammatory bowel disease and perhaps of inflammation in general.

Adult↗

Expression of somatostatin receptors in childhood neuroblastoma.

Somatostatin receptors are expressed on certain neural crest-derived tumors, including pancreatic islet cell and carcinoid tumors, medullary thyroid carcinomas, pheochromocytomas, and paragangliomas. The authors evaluated the expression of high affinity somatostatin receptors in childhood neuroblastoma using autoradiography techniques with the somatostatin analogue 125I-octreotide or 125I-[Leu8,D-Trp22,Tyr25]-SS-28 as the radioligand. Thirty tumors from 30 children with neuroblastoma were analyzed. Twenty-three of 30 tumors that were tested expressed somatostatin receptors. Correlation of somatostatin receptor expression with survival was statistically significant. The survival of those patients whose tumors expressed somatostatin receptors was of longer duration than that of patients whose tumors did not. This was an independent prognostic factor. Somatostatin receptors were expressed more frequently in tumor tissue from patients with lower stages of disease and in those with no evidence of N-myc amplification. Tumoral somatostatin receptors are expressed in a subgroup of patients with childhood neuroblastoma. Survival analysis in this group of patients indicates that somatostatin receptor expression is a favorable prognostic factor. This finding may have important implications for the therapy of children with this malignancy.

Adolescent↗

Somatostatin and the immune and haematopoetic system; a review.

SS-R and SS have been demonstrated in non-pathological and pathological lymphoid tissue and may play a regulatory, mostly inhibitory, role in the immune response. SS is produced by lymphocytes and monocytes which suggests an autocrine or paracrine regulatory role, but SS may be released as well by nerve endings. It can therefore be hypothesized that apart from a role of SS in local, immunomodulation of cells belonging to the immune system, a second pathway exists in which this peptide exerts its effects via neuroendocrine modulation of the immune response which might represent a direct regulatory relation between the nervous and the immune system. The presence of SS-R in lymphoid neoplasm cells and in diseases involving activated mononuclear leukocytes allows the visualization of these diseases using octreotide scintigraphy. This technique may be used in the evaluation of the spread of these diseases and to monitor their response to therapy. Moreover, the presence of SS-R in immune diseases warrants studies on the efficacy of treatment with octreotide of patients suffering from these diseases.

Animals↗

Somatostatin receptor scintigraphy in carcinoids, gastrinomas and Cushing's syndrome.

High numbers of high-affinity somatostatin binding sites have been found on carcinoid tumors, gastrinomas, small cell lung cancers and the majority of medullary thyroid cancers, enabling in vivo visualization of these tumors with octreotide scintigraphy. A comparison of the results obtained at our institution and another 15 centers in Europe show a few remarkable similarities and differences. The overall sensitivity of octreotide receptor scintigraphy to detect the primary GEP tumor and its metastases is high, e.g. 80-90%. The main difference was found in gastrinomas and to a lesser extent in insulinomas. These differences might be attributed to different scanning protocols. Furthermore, octreotide scintigraphy also has a high sensitivity to localize the primary tumor and its metastases causing Cushing's syndrome by ectopic production of ACTH or CRH. Octreotide scintigraphy is a new, sensitive and noninvasive technique to localize somatostatin receptor expressing endocrine tumors and their metastases.

Carcinoid Tumor↗

[111In-DTPA-D-Phe1] octreotide scintigraphy in thyroidal and orbital Graves' disease: a parameter for disease activity?

Visualization of malignant lymphomas and granulomatous disease is possible by [111In-DTPA-D-Phe1]octreotide scintigraphy through binding of the radioligand to somatostatin receptors on activated leukocytes. Because thyroidal and orbital tissues are infiltrated by activated leukocytes in Graves' disease, a cross-sectional study to visualize disease activity with [111In-DTPA-D-Phe1]octreotide scintigraphy was performed. A correlation between thyroidal [111In-DTPA-D-Phe1]octreotide accumulation and free T4 (disease expression) and thyroid binding-inhibiting immunoglobulins (disease activity) is present in untreated hyperthyroid Graves' disease. There is also a correlation between orbital [111In-DTPA-D-Phe1]octreotide uptake and the clinical activity score (disease activity) and total eye score (disease expression), respectively, in Graves' orbitopathy. Visualization of thyroidal and orbital Graves' disease is feasible, but further investigation is necessary to establish the role of [111In-DTPA-D-Phe1]octreotide scintigraphy in representing disease activity and expression and in predicting therapeutical outcome.

Eye↗

Evaluation of somatostatin biosynthesis, somatostatin receptors and tumor growth in murine medullary thyroid carcinoma.

Spontaneous medullary thyroid carcinomas (MTCs) of old rat thyroids were analyzed for the expression of somatostatin and somatostatin binding sites in tumoral C cells in relation to the stage of tumor development, the mitotic activity of tumoral tissue and calcitonin biosynthesis as a marker of C cell differentiation. High levels of both immunoreactive somatostatin and its mRNA were detected in a subpopulation of tumoral C cells, gathered in areas suggesting a clonal proliferation and located preferentially at the periphery of the tumor. These cells also displayed high levels of calcitonin and its mRNA. However, many calcitonin immunoreactive cells showed no sign of somatostatin synthesis. The proliferative activity of the somatostatin-containing areas was low and slow compared to the areas lacking somatostatin production. However, it increased during the course of tumor growth. Somatostatin binding sites, measured with in vitro receptor autoradiography using 125I-[Tyr3]-octreotide or 125I-[Leu8, dTrp22, Tyr25]SS-28, were not detected in any of the MTCs tested. In rat MTC cells, somatostatin was associated with differentiation and slow proliferation, two parameters inversely correlated with the progression of malignancy. As expected, owing to the highly regulated secretion of the differentiated endocrine cell type, its presence was correlated with low basal calcitonin levels. However, the absence of somatostatin binding sites on any type of MTC cells does not favor a direct autocrine regulation of this peptide in this murine model of human MTC.

Animals↗

In vitro autoradiographic and in vivo scintigraphic localization of somatostatin receptors in human lymphatic tissue.

Receptors for the neuropeptide somatostatin (SS) were evaluated in vitro and in vivo in various human lymphatic tissues, ie, thymus, spleen, and lymph nodes; thymic carcinoids and thymomas were also tested. The receptors were measured in vitro using receptor autoradiography on tissue sections incubated with the SS analog 125I-[Tyr3]-octreotide or 125I-[Leu8,D-Trp22,Tyr25]-SS-28. All tissues were SS-receptor positive for either radioligand, except the thymomas. In thymic tissue, the receptors were diffusely located in the medulla, presumably on epithelial cells. In the spleen, the red pulp was strongly labeled. In the lymph nodes, the germinal centers were preferentially labeled. In all tissues, the receptors were of high affinity (kd thymus, 0.84 nmol/L; kd spleen, 1.6 nmol/L; kd lymph node, 0.62 nmol/L) and specific for SS. Displacement by nanomolar concentrations of SS-14, SS-28, and octreotide was observed, as was guanosine triphosphate dependency. The in vivo visualization of somatostatin receptors was performed after injection of 111In-DTPA-octreotide and gamma-camera scintigraphy. The spleen, but not thymus or lymph nodes, were visualized. These data suggest an important role for SS in regulating immune functions through SS receptors in thymus, spleen, and lymph nodes. Furthermore, SS may regulate neuroendocrine functions in the thymus.

Adolescent↗

Somatostatin receptor-positive primary breast tumors: genetic, patient and tumor characteristics.

In a series of 87 primary breast tumors, somatostatin receptor (SSR) expression was detected by in vitro autoradiography in 58 tumors. In 41 tumors the SSR expression was homogeneous and in 17 it was heterogeneous. Although the tumors were not selected by the investigators upon entry in the study, examination of the tumor and patient characteristics showed that a pre-selection had taken place for small tumors. Eighty percent of the tumors were classified as stage pT1 or pT2 tumors. This small tumor size and the large size of the tumor sections used for autoradiography can explain the high incidence of somatostatin expression in our series. Forty-three of these tumors, 30 SSR-positive and 13 SSR-negative, were tested for morphological and (immuno)histochemical markers of neuroendocrine differentiation. Three SSR-positive tumors were also positive for 2 or more other markers of neuroendocrine differentiation, suggesting that neuroendocrine breast tumors and SSR-positive breast tumors are overlapping, but independent, subgroups of tumors. To test whether specific genetic alterations are associated with SSR-positive or SSR-negative breast tumors, we examined in a selected series of 47 SSR-positive and 32 SSR-negative breast tumors a number of known genetic markers by Southern blotting. Deletions or rearrangements of the retinoblastoma (RB) tumor-suppressor gene were observed in 5 SSR-positive and 5 SSR-negative tumors. In 4 SSR-positive and also in 4 SSR-negative tumors an amplification of the neu oncogene was observed. Amplifications of the int-2 oncogene were found in 2 SSR-positive and 1 SSR-negative breast tumor. In one SSR-positive tumor an amplification of the c-myc oncogene was observed and in another SSR-positive tumor a rearrangement of the L-myc oncogene was found.

Autoradiography↗

Octreotide and related somatostatin analogs in the diagnosis and treatment of pituitary disease and somatostatin receptor scintigraphy.

Clinical introduction of octreotide, a long-acting somatostatin analog, has opened a new era in the medical therapy of patients with growth hormone (GH)- and thyroid-stimulating hormone (TSH)-secreting pituitary tumors. Good control of hormonal hypersecretion occurred in most patients, and tumor shrinkage has been observed in more than half of them. Octreotide therapy is of no value in most patients with Prolactin (PRL)- and adrenocorticotrophic (ACTH)-secreting pituitary tumors. However patients with Cushing's syndrome caused by ectopic ACTH secretion from a variety of endocrine tumors benefit from octreotide administration. In patients with visual disturbances related to chiasmal compression by nonfunctioning pituitary tumors, somatostatin analog administration has been reported to result in rapid improvement in visual acuity. This beneficial effect might not be related to a direct action of octreotide, but may reflect an effect on the retina and/or optic nerve. The presence of somatostatin receptors on a wide variety of pituitary tumors as well as on a number of parasellar tumors allows their in vivo visualization with radionucleotide-labelled somatostatin analogs. A positive scan in patients with GH- and TSH-secreting pituitary tumors is predictive of a good suppressive effect of octreotide on hormone release by these tumors. PRL- and ACTH-secreting pituitary adenomas cannot be visualized, but clinically nonfunctioning pituitary adenomas are visualized in 75% of cases with 111In-DTPA-octreotide. At present it is unclear whether this has consequences with regard to the medical treatment of these last group of patients. Somatostatin receptor scintigraphy can be successfully used in the differential diagnosis between pituitary hypersecretion of GH and/or ACTH and the ectopic secretion of growth hormone-releasing hormone (GHRH) and ACTH by peripherally localized endocrine tumors. Again the visualization of such tumors also predicts successful control of hormonal hypersecretion by octreotide.

Animals↗

Somatostatin receptor scintigraphy with [111In-DTPA-D-Phe1]- and [123I-Tyr3]-octreotide: the Rotterdam experience with more than 1000 patients.

Various tumours, classically specified as either neuroendocrine or non-neuroendocrine, contain high numbers of somatostatin receptors, which enable in vivo localization of the primary tumour and its metastases by scintigraphy with the radiolabelled somatostatin analogue octreotide. In addition granulomas and autoimmune processes can be visualized because of local accumulation of somatostatin receptor-positive activated mononuclear leucocytes. In many instances a positive scintigram predicts a favourable response to treatment with octreotide. It is tempting to speculate that octreotide labelled with an appropriate radionuclide might be used in cancer therapy. The successful application of radiolabelled octreotide in scintigraphy indicates the possible usefulness of other radiolabelled peptides, either native peptides or derivatives of these, in, for example, nuclear oncology. The small size of these peptides, e.g. bombesin and substance P, is of the utmost importance for a relatively fast blood clearance, thus leading to low background radioactivity. In this way peptides are powerful alternatives to (fragments of) monoclonal antibodies, the application of which to scintigraphic localization of specific cell surface antigen-bearing tumours is plagued by slow blood clearance and, hence, high background levels.

Humans↗

In vivo mitogenic effects of estradiol on colon cancers: role of gastrin and gastrin receptors.

We have previously reported mitogenic effects of gastrin on a mouse colon cancer (MC-26) cell line in vivo. The present studies were undertaken to determine if gonadal hormones can influence the mitogenic response of MC-26 cells to gastrin. The female gonadal hormone, estradiol (E2), was determined to be as mitogenic as pentagastrin (PG) for the growth of MC-26 tumors in mice; the mitogenic effects of E2 and PG were not additive. Female gonadal hormones were furthermore as effective as PG in maximally up-regulating gastrin receptor (GR) concentrations on MC-26 tumor membranes, which was confirmed in autoradiographic studies. Since PG and E2 had similar and non-additive trophic effects it was hypothesized that gastrin may be mediating the trophic effects of E2. Serum gastrin concentrations were significantly increased in E2 treated ovariectomized mice that correlated with an increase in tumor weights; E2 however was ineffective in stimulating the release of gastrin from perfused rat stomachs indicating that the increase in serum gastrin concentration on long-term treatment with E2 was mediated by some other mechanism. Saturable high-affinity E2 binding sites were not measured in MC-26 cells and tumors, supporting the possibility that mitogenic effects of E2 were probably mediated via indirect mechanisms. In summary our results indicate that both E2 and PG are equally mitogenic for colon cancer cells in vivo which may explain the sex- and age-related discrepancy in the incidence of human colon cancers.

Animals↗

Somatostatin analogue scintigraphy of malignant lymphomas.

Normal as well as activated lymphocytes, macrophages and leukaemic cells have previously been shown by radio receptor analysis to express receptors for somatostatin. An 111In labelled somatostatin analogue was already used successfully in the visualization of a variety of neuro-endocrine tumours. We investigated 10 consecutive patients with malignant lymphomas (Hodgkin's disease and non-Hodgkin's lymphomas). In all patients the lymphoma deposits could be visualized with somatostatin receptor imaging. In four patients additional tumour localizations were observed as compared to the results of combined physical and radiological (CT and ultrasound) examinations. In four cases tissue biopsies were taken and confirmed by autoradiography to be somatostatin receptor positive. These data indicate that malignant lymphomas may express somatostatin receptors in sufficient numbers and density to allow in vivo tumour visualization with a radiolabelled somatostatin analogue.

Hodgkin Disease↗

A case of antibody formation against octreotide visualized with 111In-octreotide scintigraphy.

A case of antibody formation in a patient with carcinoid syndrome is described. The patient was treated with octreotide in dosages up to 1.5 mg/day. Serum samples were analysed for the presence of octreotide antibodies before and after 20 months of octreotide treatment. In-vivo 111In-octreotide scintigraphy was performed before and during therapy, and after antibodies had developed. Before treatment, no serum antibodies against octreotide were detected. After 20 months of treatment, they were detectable up to a 1:115 serum dilution. The serum binding of 125I-Tyr3-octreotide was blocked by adding excess unlabelled Tyr3-octreotide, indicating the presence of specific octreotide antibodies. Before treatment, a normal distribution of radioactivity in the spleen and kidneys, irregular uptake in the liver due to metastases, and a hot spot in the lower abdomen were found during 111In-octreotide scintigraphy. After antibodies had developed, increased radioactivity over the heart and high background radioactivity in the abdomen with only faint visualization of the spleen, liver, and kidneys were found, indicating a prolonged presence of 111In-octreotide in the blood resulting from its being bound to antibodies. Increased radioactivity was also seen at the injection sites of the drug in the upper legs. In-vitro incubation of biopsy tissue from this site with 125I-Tyr3-octreotide revealed diffuse guanosine triphosphate (GTP) independent specific binding, indicating non-G-protein linked binding of labelled octreotide. This report describes the characteristic abnormalities during in-vivo 111In-octreotide scintigraphy in a patient with octreotide antibodies.(ABSTRACT TRUNCATED AT 250 WORDS)

Aged↗