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Biomedical subjects

P Molnar

Publications and source records attributed to P Molnar.

At least 37 records · Page 2Linked to original sources

Phenotypic manifestations of insulin-like growth factor binding protein-1 (IGFBP-1) and IGFBP-3 overexpression in transgenic mice.

To provide further insight into the function of the IGFBPs, transgenic (Tg) mice which overexpressed IGFBP-1 and IGFBP-3 were generated. In this report we have compared the phenotypic manifestations observed in these Tg mice. The IGFBP-1 Tg mice were significantly smaller at birth, birth weight and gained less weight in the postnatal period. Organ weight was proportionately reduced relative to body weight in most organs. However the brain was markedly smaller in IGFBP-1 Tg mice. Mean plasma levels of Tg-derived IGFBP-1 ranged from 8 to 80 ng ml-1 in the different groups of IGFBP-1 Tg mice. In addition homozygous mice also demonstrated fasting hyperglycemia, impaired glucose tolerance and reduced fecundity. Two of the seven IGFBP-3 founders had measurable levels of hlGFBP-3 in the circulation and were bred to homozygosity. Maximal plasma levels of transgene-derived IGFBP-3 were 72-198 ng ml-1. Transgene expression was detected in the kidney, small intestine and colon by Northern blot analysis. The birth weight, litter size and body weight of IGFBP-3 Tg mice were not significantly different from wild-type mice. However, the spleen, liver and heart of IGFBP-3 Tg mice derived from both founders were significantly heavier compared with organs from wild-type mice. The relative weight of other organs such as the brain, kidney and lungs were similar to wild-type mice. From these data, we conclude that over expression of IGFBP-1 results in inhibition of IGF action and in profound impairment of brain development, modest inhibition of fetal and postnatal growth and inhibition of the metabolic effects of the IGFs. In contrast, modest over-expression of hlGFBP-3 has little effect other than some selective organomegaly.

Animals↗

Expression of human insulin-like growth factor-binding protein-3 in transgenic mice.

Transgenic mice which expressed human IGF-binding protein-3 (hIGFBP-3) were generated by pronuclear injection of an hIGFBP-3 cDNA driven by the mouse metallothionein 1 promoter. Two of the seven founder mice had measurable levels of hIGFBP-3 in the circulation. The serum levels of hIGFBP-3 increased as the mice were bred to homozygosity and were further induced by supplementing the drinking water with 25 mM ZnCl2. While the birth weight, litter size and body weight of transgenic mice were not significantly different from non-transgenic litter mates or wild-type mice derived from the same genetic background, the transgenic mice demonstrated selective organomegaly. The spleen, liver and heart of mice derived from both founders were significantly heavier compared with organs from non-transgenic mice (P < 0.05, P < 0.005 and P < 0.01 respectively). The weights of the brain and kidney were similar in transgenic and non-transgenic mice. Expression of the transgene was detected in the kidney, small intestine and colon by Northern blot analysis. Western ligand blotting of serum from transgenic mice did not demonstrate any change in the abundance of the IGFBPs detected by this method. When serum from transgenic mice was incubated with 125I-labeled IGF-I and analyzed by Sephacryl S-200 chromatography under neutral conditions a significantly (P < 0.05) increased amount of the radioactivity was found in the 140 kDa ternary complex compared with serum from wild-type mice. Immunoreactive hIGFBP-3 was detected in the 140 kDa ternary complex but the majority of immunoreactive hIGFBP-3 present in transgenic mouse serum eluted in later fractions indicating that it was not associated with the acid-labile subunit. These data demonstrate that modest constitutive expression of hIGFBP-3 has a selective effect on organ growth and development. The establishment of these IGFBP-3 transgenic mouse strains may provide useful models to investigate further the physiological role of IGFBP-3.

Animals↗

Effects of oestrogen on rat uterine expression of insulin-like growth factor-binding proteins.

Previous studies have established that the IGFs are involved in oestrogen-induced uterine proliferation. IGF-binding proteins (IGFBPs) are present in most biological fluids and tissues and may modulate the actions of the IGFs. We examined uterine, hepatic and renal expression of the IGFBPs throughout the oestrous cycle and investigated the effects of oestradiol (OE2) on IGFBP expression in ovariectomized (ovx) rats. Uterine expression of IGFBPs-1 and -3 showed a definite variation throughout the oestrous cycle with highest levels during dioestrus. In the liver and kidney the changes in IGFBP-1 and IGFBP-3 mRNA abundance were the opposite of those observed in the uterus, with the highest levels observed during oestrus. Administration of OE2 to ovx rats decreased uterine IGFBP-3 mRNA and increased IGFBP-4 mRNA levels. In these rats there were no consistent changes in renal IGFBP-1 or IGFBP-3 mRNAs; however, a significant increase in IGFBP-4 mRNA was observed in this tissue, as in the uterus. In the liver an increase in IGFBP-1 mRNA and a decrease in IGFBP-3 mRNA levels were observed in rats treated with OE2. Despite changes in uterine, hepatic and renal IGFBP mRNA levels, no significant variation was seen in serum IGFBPs as determined by ligand blotting of sera. These data demonstrate that there is a cyclical variation in the expression of the IGFBPs in the uterus, kidney and liver, and that OE2 is able to modulate differentially IGFBP expression in these tissues.

Animals↗

The effect of an amino acid-lowering diet on the rate of melphalan entry into brain and xenotransplanted glioma.

Melphalan (L-phenylalanine mustard, L-PAM, alkeran; molecular weight, 305,000) is transported across tumor cell membranes and the blood-brain barrier by the large neutral amino acid (LNAA) transport system. Normally, plasma LNAA levels are high enough and the affinity low enough that this system does not transport much melphalan into the brain. However, plasma amino acids can be reduced by fasting and protein-free diet. We used this method to reduce competition and to increase melphalan transport into brain tumors. In nude mice fasted for 12 h and then fed a protein-free diet for 2 and 6 h, mean plasma LNAA levels were 46% and 42% of control values. Nude mice with xenotransplanted D-54MG human gliomas were used to study tissue distribution and uptake kinetics of [3H]melphalan in a control group and a diet group (after a 12-h fast and 2 h of a 0% protein diet). The K1 (blood-to-tissue transfer constant) of melphalan, determined by graphical analysis and by nonlinear fitting to a 2-compartment model, was higher in the diet group in all tumor regions except the necrotic center of subcutaneous tumors; the increase was significant in the tumor periphery of brain and s.c. tumors. The ratio of K1s (diet to control) varied from 1.2 to 1.3 in brain tumors, 1.9 to 2.1 in subcutaneous tumors, and 1.8 to 3.1 in tumor-free brain. The apparent [3H]melphalan distribution space was significantly higher in the tumor periphery of both brain and subcutaneous tumors of the 15- and 30-min diet group. We also measured blood-brain barrier transport of [alpha-14C]aminoisobutyric acid and blood flow (with [131I]iodoantipyrine): the K1 of [alpha-14C]aminoisobutyric acid was 28.1 +/- 6.6 (SE) in brain tumors and 24.3 +/- 8.9 microliters/g/min in subcutaneous tumors. Blood flow was 58.2 --> 3.9 in brain tumors and 5.2 +/- 0.4 ml/100 g/min in subcutaneous tumors. Fasting, when combined with a protein-free diet, reduces plasma amino acid levels and thereby reduces competition between melphalan and LNAAs. This may increase the amount of melphalan that can enter a brain tumor without increasing the administered drug dose and suggests a therapeutic manipulation that can be used to increase the delivery of melphalan.

Amino Acid Transport Systems↗

Phorbol esters differentially regulate the expression of insulin-like growth factor-binding proteins in endometrial carcinoma cells.

We have examined the effects of protein kinase-C (PKC) activation on expression of the six known insulin-like growth factor-binding proteins (IGFBPs) by human endometrial carcinoma cells. Each of six known IGFBPs was expressed in one or more of the three cell lines examined. The addition of 10(-7) M 4 beta-phorbol 12-myristate 13-acetate (PMA) to HEC-50 and HEC-1B cells resulted in changes in cell morphology, growth inhibition, activation of PKC, and an increase in expression of IGFBP-1. PMA had no effect on these parameters in the Ishikawa cell line, which did not express IGFBP-1. In HEC-50 cells, the effect of PMA was blocked by the concomitant addition of the PKC inhibitor staurosporin and the simultaneous addition of cycloheximide. PMA also resulted in an increase in IGFBP-3 in HEC-50 cells and an increase in IGFBP-6 expression in HEC-1B cells. In contrast, IGFBP-3 expression was down-regulated by PMA in HEC-1B and Ishikawa cells. The abundance of IGFBP-2 and IGFBP-5 mRNAs was also reduced in HEC-1B and Ishikawa cells, respectively. IGFBP-4 was expressed only in HEC-50 cells and was not affected by PMA treatment. These data establish a role for the PKC pathway in regulation of expression of IGFBP-1, -2, -3, and -5 in endometrial adenocarcinoma cells and illustrate the complexity of cell type-specific expression of the IGFBPs.

Adenocarcinoma↗

Increased density of histiocytes in uterine leiomyomas.

The histiocyte content of leiomyomata and adjacent, histologically normal myometrium has been quantified morphometrically with the help of recently developed immunostaining for tissue macrophages. Histiocytes identified by immunoreaction for Factor XII subunit A and by double immunofluorescent labelings were found to be identical with tissue macrophages present in normal uteri. Histiocyte counts were significantly higher in leiomyomatous areas than in adjacent normal myometrium, and the distribution of these cells was also changed. In the normal uterine wall, histiocytes could be detected only in the connective tissue septa separating smooth muscle bundles, while in the myomatous nodules they were diffusely scattered throughout the whole area. In addition to providing new information on the cellular composition of leiomyomas, the present observations also raise several questions concerning the possible pathogenetic role of FXIII-positive histiocytes in neoplastic proliferation of uterine smooth muscle.

Factor XIII↗

Effect of hyperosmotic blood-brain barrier disruption on transcapillary transport in canine brain tumors.

Whether hyperosmotic blood-brain barrier (BBB) disruption is a technique that can be used to increase permeability of brain-tumor capillaries and thereby transiently increase drug delivery to the brain tumor is controversial. Nine virally induced brain tumors were studied in seven dogs, before and after hyperosmotic BBB disruption with 1.4 osmolar mannitol. Each dog was studied with computerized tomography (CT) after administration of the water-soluble tracer meglumine iothalamate. Each study lasted 30 minutes. A baseline CT scan and 35 to 40 additional CT scans were obtained to provide a time-related measurement of the amount of meglumine iothalamate in tissue (Am(t], and 30 plasma samples were collected to provide the time-related measurement of meglumine iothalamate in plasma (Cp(t]. The data were analyzed by three different methods: 1) a two-compartment model and nonlinear curve fitting were used to calculate K1 (blood-to-tissue or influx constant), k2 (tissue-to-blood or efflux constant), and Vp (plasma vascular space); 2) K1 values were calculated with a two-compartment model, assuming no efflux, at the time point for each CT scan; and 3) a "tissue advantage ratio" was calculated that expressed the ratio of tissue uptake of meglumine iothalamate at each time point, comparing values before and after BBB disruption. Regardless of which method of data analysis was used, there was a marked and significant increase in transcapillary transport of meglumine iothalamate to tumor-free brain regions, while there was only a small, transient, and insignificant increase to the brain tumors. Although there were often marked increases in delivery to cortex in the same hemisphere as the tumors, there was no significant increase to brain immediately surrounding the tumors, perhaps due to altered circulatory dynamics in this region. These data raise serious questions as to the wisdom of using this technique to increase drug delivery to brain tumors in patients and strongly support the continued study of this technique in experimental brain tumors before it is used in patients.

Animals↗

Intravenous adenosine selectively increases blood flow to xenotransplanted intracerebral gliomas.

Adenosine was infused intravenously at 10 mumol/(kg.min) into athymic ("nude") rats with intracerebral D-54MG xenotransplanted brain tumors, in an attempt to increase tumor blood flow. Cerebral blood flow (F) was measured with 14C-iodoantipyrine and quantitative autoradiography. Mean arterial blood pressure was 95 +/- 9.4 (SE) mm Hg in the adenosine group and 112 +/- 6.0 mm Hg in the controls. Averaged mean whole tumor F was significantly higher in adenosine-treated brain tumors (117.6 +/- 20.8 ml/[hg.min]) than in controls (62.2 +/- 9.7 ml/[hg.min]). Regionally, there were significant increases of F in tumor periphery and brain around tumor, but not in tumor center or any tumor-free brain regions. Focal values of F less than 5 ml/(hg.min) were present in some necrotic regions of adenosine-treated tumors. These results, obtained in unanesthetized rats with transplanted gliomas from a human cell line, confirm our earlier observations in avian sarcoma virus-induced brain sarcomas in dogs, and suggest that adenosine or perhaps other vasodilators could be used to selectively increase the delivery of lipid-soluble chemotherapeutic drugs to brain tumors.

Adenosine↗

Aggressive infantile myofibromatosis: report of a case of a clinically progressive congenital multiple fibromatosis.

We report a case of congenital multiple fibromatosis (infantile myofibromatosis) showing the typical spindle-cellular proliferation with prominent vascularity on light microscopical observations. Electron microscopy showed the abundance of fibroblasts with conspicuous collagen and reticulin fibers together with numerous cells sharing the characteristics of both fibroblasts and smooth muscle cells (myofibroblasts). Neither visceral involvement nor ossification has been detected during the 4-year-long follow-up period. However, the clinical course has shown a slow, continuous, protracted though destructive proliferation of subcutaneous myofibroblastic nodules. These findings are contrasted with previous reports that claimed that the presence of myofibroblasts indicates benign behavior and results in the regression of fibromatous lesions.

Extremities↗

A glial fibrillary acidic protein-expressing and tumorigenic cell line derived from an avian sarcoma virus-induced rat astrocytoma.

A permanent cell line, S635c15, was derived from an anaplastic astrocytoma induced by the Schmidt-Ruppin strain of avian sarcoma virus (ASV) in a female F-344 rat. Persistent expression of the astrocytic differentiation protein, glial fibrillary acidic protein (GFAP), was detected both in cultured cells after 100 passages in vitro and in transplanted tumors. Subcutaneous and intracerebral transplantation of S635c15 cells in syngeneic rats resulted in a 100% tumor incidence and a reproducible mortality distribution. S635c15 cells formed discrete masses after subcutaneous injection but grew intracranially as infiltrative lesions. Tumor blood flow and blood-to-tissue transport studies yield comparable values to other rat glioma models; S635c15 intracranial tumors proved to be a homogeneous model with little variation within and between tumors with respect to morphology, GFAP expression, blood flow, and permeability. This cell line provides a GFAP-expressing brain tumor model that extends the use of autochthonous ASV-induced astrocytomas by allowing in vitro and in vivo studies. It may be useful for further studies in neurobiology and brain tumor biology, diagnosis, and therapy.

Animals↗

Regional measurements of [14C]misonidazole distribution and blood flow in subcutaneous RT-9 experimental tumors.

Regional [14C]misonidazole-derived radioactivity (MISO*) was measured by quantitative autoradiography in s.c. RT-9 experimental tumors 0.5, 2, and 4 h after an i.v. bolus (25 mg) and constant infusion (10 mg/h) in rats. Misonidazole (MISO) concentration in plasma, tumor, and other tissues was also measured by high-pressure liquid chromatography. The distribution of MISO* in the tumors always resulted in a characteristic pattern with high peripheral and low central values. The high-activity regions in the tumor rim achieved tissue: plasma MISO* activity ratios of 0.97 and 2.2 by 0.5 and 4 h, respectively; for central tumor regions, this ratio was 0.20 and 0.32 for the same periods, respectively. The limited distribution of MISO* to central tumor regions could be correlated to low values of blood flow (measured with [131I]iodoantipyrine) and to diffusion from peripheral tumor regions. Low blood flow in the central regions of these tumors will significantly limit the distribution of MISO and other drugs to viable-appearing cells in these areas and could account in part for the failures of chemotherapy in certain solid tumors. Pharmacokinetic modeling indicates that 1 to 9 h may be necessary for MISO concentrations in some tumor regions to reach 50% of that in plasma.

Animals↗

Local blood flow in Walker 256 metastatic brain tumors.

Local blood flow (F) in metastatic Walker 256 (WL-256) brain tumors produced by the intracarotid artery injection of WL-256 tumor cells in rats was measured using 14C-iodoantipyrine and quantitative autoradiography. Blood flow was variable in the tumors; the overall range was 2 to 222 ml hg-1 min-1 and the maximum range in an individual tumor extended over 150 ml hg-1 min-1. Small tumors had mean blood flows similar to surrounding brain. Medium to large tumors had significantly lower flows; the lowest values were usually measured in necrotic or cystic regions, although low values (less than 20 ml hg-1) were also measured in some viable-appearing tumor regions. Blood flow was significantly reduced in brain adjacent to medium and large but not small tumors. A global depression of brain and tumor blood flow was measured in two animals with hydrocephalus and the largest tumor burden. The blood flow patterns of the WL-256 metastatic tumor model are not uniquely different from other brain tumor models although some individual differences exist.

Animals↗

Local blood-to-tissue transport in Walker 256 metastatic brain tumors.

Local blood-to-tissue transfer constants (K) in metastatic Walker 256 (WL-256) brain tumors produced by the intracarotid artery injection of WL-256 tumor cells in rats were measured using 14C-alpha-aminoisobutyric acid and quantitative autoradiography. Small compact and diffuse infiltrative intraparenchymal tumors had values of K similar to that of contralateral nontumorous brain tissue. Medium and large tumors, meningeal metastases and intraventricular tumors had higher K values (5 to 30 fold) than contralateral nontumorous brain tissue indicating that intraparenchymal tumor size and location in meningeal and choroidal tissue influence the permeability of tumor capillaries. The local intratumor values of K varied considerably in these tumors and this variability of K correlated to only a few specific histopathologic features of the tumors. The value of K abruptly decreased at the tumor-brain interface when this interface was sharply defined, indicating that the metastatic tumors have only a small effect on the permeability of adjacent brain capillaries. Low blood-to-tumor transport of water soluble drugs will significantly affect drug concentrations in the tumor and the tumor-drug exposure.

Aminoisobutyric Acids↗

Regional thymidine transport and incorporation in experimental brain and subcutaneous tumors.

The regional distribution and local incorporation of [14C]thymidine into a nonextractable tissue fraction, probably DNA, was measured in normal and neoplastic tissues. We studied brain tumors induced by avian sarcoma virus and ethylnitrosourea, and transplanted RG-2 intracerebral and subcutaneous gliomas. An incorporation quotient, Q, was calculated for different tumor regions and brain from the methanol nonextractable radioactivity in the tissue and the plasma concentration-time integral of thymidine. The incorporation quotient represents the rate of clearance of thymidine from blood and its incorporation into macromolecules (probably DNA). The values of Q were compared with a labeling index measured in the same tissue regions with conventional autoradiography. The following observations were made: (1) the mean plasma half-life of thymidine was 6.5 min; (2) the regional incorporation quotient in tumors varied from values comparable to normal brain to more than 100 times higher; (3) RG-2 tumors had significantly higher Qs than the other tumor models; (4) Q in subcutaneous tumors varied most widely (greater than 500-fold range); (5) the labeling index reflected the values of Q in some tumor regions but not in others; differences between the two were most frequently related to tumor cell density and the intensity of individual tumor cell labeling. A comparison of these data with previous studies of capillary permeability and blood flow in these tumor models indicates that the incorporation of [14C]thymidine into a nonextractable tissue fraction can be limited by transcapillary transport in brain tumors and by blood flow in systemic tumors, and that thymidine disposition in these tumors is not always indicative of the rate of DNA synthesis.

Animals↗

Concurrent measurements of blood flow and transcapillary transport in avian sarcoma virus-induced experimental brain tumors: implications for chemotherapy.

A blood-to-tissue transfer constant, K, and tissue blood flow, F, were measured concurrently in seven rats with a total of 19 separate brain tumors induced by intracerebral inoculation of avian sarcoma virus. Regional and local measurements of K and F were obtained using double-label quantitative autoradiography with alpha-[14C]aminoisobutyric acid and [131I]iodoantipyrine, computerized microdensitometry and image analysis. Apparent tissue extraction fractions and capillary permeability-surface area products were calculated for different tumor regions, brain adjacent to tumor and tumor-free brain. The following observations were made: five histological categories of the tumors were found; significant local and regional variations of both K and F were typical in each group, resulting in marked regional variability of permeability-surface area products but more uniform values of apparent extraction fraction; the values of F, K, permeability-surface area products and apparent extraction fraction correlated poorly with morphological features of the tumors (necrosis, cellularity, cytology, location and size); the extraction fraction of alpha-aminoisobutyric acid was usually highest in tumor centers and then decreased in a gradient from tumor periphery through adjacent brain; and regardless of classification or histological features, capillary permeability and surface area, and not tissue perfusion or blood flow, seem to determine the blood-to-tissue transport processes (delivery of bloodborne materials) in most regions of these experimental brain tumors. An operational pharmacokinetic model of drug concentration in tumor tissue is developed and the results of our analysis indicate that increases in capillary permeability such as measured in these studies would not be sufficient to deliver adequate amounts of water-soluble drugs with short plasma half-lives to tumor tissue.

Animals↗

Regional blood flow in ethylnitrosourea-induced brain tumors.

Regional blood flow was measured in experimental brain tumors using iodoantipyrine labeled with carbon 14 and quantitative autoradiography. A total of fifteen oligodendrogliomas, sixteen mixed gliomas, one astrocytoma, one ependymoma, and three malignant schwannomas were studied in 9 rats. The mean tumor blood flows for all glioma classifications were similar, averaging 45 +/- 3 (standard error of the mean) ml . hg-1 . min-1. Flow was fairly uniform within individual oligodendrogliomas and there was no apparent correlation between blood flow and tumor size or location. The mixed gliomas were larger than the oligodendrogliomas and had a wider range of blood flow. Small focal areas of necrosis were observed in 7 mixed gliomas, and low flows were usually measured in these regions; these flows were not always the lowest regional values measured within the mixed gliomas or total group of tumors, however. Small tumor regions with increased vascularity, frequently with endothelial cell proliferation, were observed in oligodendrogliomas and to a greater extent in mixed gliomas; these regions were correlated with small elevations in blood flow (10 to 15 ml . hg-1 . min-1) in comparison with surrounding tumor tissue. Brain adjacent to tumor usually had higher blood flows than that in tumor periphery. Hemispheric differences in blood flow related to the site of primary tumor growth were not observed.

Animals↗

Regional blood-to-tissue transport in ethylnitrosourea-induced brain tumors.

Regional blood-to-tissue transport, expressed as a unidirectional transfer rate constant (K), was measured in experimental brain tumors using alpha-aminoisobutyric acid (AIB) labeled with carbon 14 and quantitative autoradiography. A total of sixteen oligodendrogliomas, four mixed gliomas, three astrocytomas, two diffuse gliomatosis, one anaplastic astrocytoma, one ependymoma and four malignant schwannomas were studied in 9 rats. The mean Ks for all glioma classifications were similar, averaging 2.6 +/- 0.4 (standard error of the mean) ml . kg-1 . min-1, and were only slightly higher than those for nontumorous parietal cortex (2.1 ml . kg-1 . min-1), corpus callosum (0.9 ml . kg-1 . min-1), and a comparable region of brain tissue in the contralateral hemisphere (1.3 ml . kg-1 . min-1). Values of K varied minimally in the intracerebral gliomas and were marginally correlated with tumor cell morphology in only two tumors. In some (but not all) of the larger gliomas, increased vascularity, with or without endothelial proliferation, was associated with a 3- to 15-fold increase in K. Regional K values in malignant schwannomas were highly variable (4 to 207 ml . kg-1 . min-1) and generally were not correlated with specific histological features of the tumor, except in some regions with increased vascularity. Estimates of the average fractional extraction of AIB by the intracranial gliomas and malignant schwannomas were 0.01 and 0.2, respectively; average fractional extractions for nontumorous brain were approximately 0.003.

Aminoisobutyric Acids↗