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Biomedical subjects

B Gustavsson

Publications and source records attributed to B Gustavsson.

At least 55 records · Page 3Linked to original sources

Progesterone stimulates degradation of urokinase plasminogen activator (u-PA) in endometrial stromal cells by increasing its inhibitor and surface expression of the u-PA receptor.

Progesterone stimulates differentiation and inhibits the growth of endometrial tissue. Also, progesterone reduces plasminogen activator (PA) activity, which implies reduced turnover of extracellular matrix proteins in the secretory phase. To elucidate the mechanism responsible for reduced PA activity, primary cultures of human endometrial stromal cells were stimulated with estradiol and progesterone. Conditioned media were assayed for urokinase-type and tissue-type PA (u-PA and t-PA, respectively), PA inhibitor-1 (PAI-1), and PA activity. Binding of [125I]u-PA and [125I]u-PA:PAI-1 complex to the u-PA receptor and clearance of these ligands were studied. The PA activity of conditioned medium decreased after stimulation with progesterone, and this was secondary to a decrease in u-PA, but not t-PA, and an increase in PAI-1. Northern blot analysis showed induction of PAI-1 messenger ribonucleic acid, whereas the content of u-PA messenger ribonucleic acid was not influenced. Furthermore, the number of free u-PA receptor-binding sites was increased by estradiol and progesterone. The stromal cells degraded complexed u-PA more efficiently than free u-PA, and degradation of both ligands was inhibited by colchicine, chloroquine, and methylamine. Degradation was increased after hormone treatment, and this was apparently due to increased ligand binding, because neither ligand affinity nor the relative rate of degradation was increased. Increased expression of u-PA receptor-binding sites was not regulated on the transcriptional level, but may result from posttranslational mechanisms, such as decreased turnover of the receptor. Activation of plasminogen by receptor bound u-PA initiates a cascade of proteolytic events in the extracellular matrix that is important during tissue proliferation. Our data suggest that differentiated endometrial stroma in the secretory phase regulates extracellular proteolysis by increased elimination of u-PA through increased release of PAI-1 and increased u-PA receptor density.

Adult↗

Relationship of intraoperative electrophysiological criteria to outcome after selective functional posterior rhizotomy.

At British Columbia's Children's Hospital, the criteria used in selective functional posterior rhizotomy (SFPR) evolved in three distinct phases. In Phase 1 the electrophysiological criteria for abnormality included a low threshold to a single stimulation, a sustained response to 50-Hz stimulation, and spread outside the segmental level being stimulated. In Phase 2 the electrophysiological criteria were unchanged, but fewer L3-4 nerve roots were cut. In Phase 3, fewer L3-4 nerve roots were cut, as in Phase 2, but based on the results of posterior nerve root stimulation in nonspastic controls, the only electrophysiological criterion used was contralateral and suprasegmental spread. The present study examined the relationship between the criteria used in each phase and patient outcome. The records of 77 consecutive children who underwent SFPR and had a minimum follow-up period of 1 year were reviewed, comprising 25, 19, and 33 patients in Phases 1, 2, and 3, respectively. Outcome parameters included quantitative assessments of lower-limb spasticity and range of motion, and qualitative assessments of lower-limb function. In Phase 3, 52% of the nerve roots were cut, compared to 66% in Phases 1 and 2. In all three phases there was a significant decrease in lower-limb spasticity and an increase in range of movement, with the smallest decrease in spasticity in Phase 3. Over 90% of children in each phase improved with respect to lower-limb function, and excluding independent walkers and quadriplegics confined to a wheelchair, improvement in the level of ambulation occurred in 87.5%, 71.4%, and 73.7% of patients, in Phases 1, 2, and 3, respectively.

Adolescent↗

Treatment of liver metastases from colorectal cancer with hepatic artery occlusion, intraportal 5-fluorouracil infusion, and oral allopurinol. A randomized clinical trial.

BACKGROUND: Regional therapy for colorectal liver metastases aimed at prolonging survival has not been tested fully in a randomized trial with untreated control subjects. This study explored the efficacy of temporary hepatic artery occlusion followed by intraportal infusion of 5-fluorouracil (5-FU) and oral allopurinol as biochemical modulators in prolonging the survival of patients with nonresectable liver metastases and no extrahepatic cancer. METHODS: Eighty-four patients were considered for randomization, of whom 24 were excluded at laparotomy because of extrahepatic cancer (n = 17) or resectable lesions (n = 5). In two patients, no cancer was identified in the liver. Thirty-two patients were allocated to receive treatment, and 28 were allocated to receive no regional or systemic treatment. Six patients were excluded after randomization because of major protocol violations. RESULTS: The median survival time for patients was 17 months (range, 0-66), and for control subjects, the median was 8 months (range, 0-31). Log rank analysis demonstrated a significant survival benefit for treatment versus no treatment (P = 0.0039). (In two patients, early death was due to toxicity from the wrong dose of 5-FU and the wrong route of administration, respectively; the mean and median survival were reduced by 1 month). CONCLUSION: This study identified a treatment modality that prolongs survival in patients with nonresectable liver metastases and no extrahepatic metastases from colorectal cancer, suggesting that control subjects receiving no therapy may not be necessary in future randomized trials.

Administration, Oral↗

Point mutations of the thyrotropin receptor determining structural requirements for its ability to bind thyrotropin and to stimulate adenylate cyclase activity.

The two cysteines C494 and C569, located in the first and second extracellular loop, respectively, of the thyrotropin (TSH) receptor, were mutated to serines to test the functional significance of the putative disulfide bond between these two cysteines. Single (C494S and C569S) and double (C494/569S) mutant receptors were generated, transiently expressed in COS cells, and compared with regard to the ability to bind ligand and to mediate stimulation of adenylate cyclase activity. The double mutant retained ligand binding capacity, in contrast to the single cysteine mutants that were essentially devoid of binding capacity. The ability of the mutated receptor variants to stimulate adenylate cyclase activity was lost or greatly reduced.

Adenylyl Cyclases↗

Hepatic artery occlusion and energy charge in rat liver tumour.

Hepatic artery ligation (HAL) is a model for inducing a vascular attack on liver tumours which causes a reduction in tumour growth. To determine in an experimental rat liver adenocarcinoma the duration and magnitude of changes in adenonucleotide concentration and energy charge (EC) after HAL, analyses of energy-rich nucleotides were performed at 1, 2, 24 and 168 hours after HAL or a SHAM procedure. There was a significant decrease of the ATP content and energy charge in the tumour one hour after HAL. Two hours after HAL this difference had decreased and with longer observation it was not detectable. Twenty-four hours of starvation did not significantly alter the effects of HAL on the tumour. HAL gives rise to a transient energy depletion of the tumour which is not completely compensated for by glycolysis after 1 hour, but is restored after 2 hours.

Adenocarcinoma↗

The surgical and natural morbidity of aggressive resection for posterior fossa tumors in childhood.

The morbidity associated with gross total removal of pediatric posterior fossa tumors is well recognized although it is rarely isolated from other factors that comprise the management morbidity for these tumors. This study reviews (1) the operative and postoperative complications in 105 patients and (2) the neurological morbidity in a subset of 91 patients undergoing gross total removal of their tumor between 1982 and 1992. Gross total removal was achieved in 102 patients with a single procedure. Two patients with residual tumor underwent early repeat craniotomy for excision and 1 is being followed without repeat resection. Intra- and postoperative complications occurred in 33 patients and included hematoma requiring craniotomy (3), gastrointestinal hemorrhage (2), hydrocephalus requiring shunt placement (9), wound problems (4), and pseudomeningocele formation requiring additional treatment (5). Delayed onset hydrocephalus requiring shunting occurred in 2 patients and spinal deformity in 4 patients. Worsening of preoperative deficit (new cranial nerve palsies, worsening ataxia, bulbar dysfunction including apnea, mutism and seizures) occurred in 41% of patients operated on for primitive neuroectodermal tumors (PNET) (14/34), 53% of ependymomas (10/19), and 30% of astrocytomas (15/50). No patient who had a choroid plexus tumor was worsened by the procedure. Complete recovery of new postoperative deficits occurred in 14% of PNET (2/14), 50% of ependymoma (5/10) and 47% of astrocytoma (7/15), most often within 6 months of the procedure. Residual neurological morbidity, due to persistence of preoperative symptoms or due to deficits that occurred as the result of the surgical procedure, was assessed in a subgroup of 91 patients followed for an average of 48 months (2-147 months). This assessment did not include morbidity due to adjuvant therapy. Sixty-two percent of patients continued to exhibit abnormal cerebellar or bulbar signs. Forty-three percent of the total population exhibited limitation in function due to residual deficit. Only 38% of patients were both functionally normal and had a normal neurological examination at last follow-up.

Adolescent↗

Thyrotropin (TSH)-induced receptor internalization in nonthyroidal cells transfected with a human TSH-receptor complementary deoxyribonucleic acid.

TSH-induced desensitization was studied in nonthyroidal cells expressing functionally active TSH receptors (TSHR). Chinese hamster ovary (CHO) cells and mouse NIH 3T3 cells were stably transfected with a human TSHR cDNA. Stimulation of the CHO-TSHR and NIH-TSHR cells with 10 mU/ml TSH resulted in a decreased sensitivity to a second TSH stimulation only in the NIH-TSHR cells. A decrease in TSH-induced cAMP was present within 1 h and coincided with a decreased binding of [125I]TSH. The half-maximal effect was observed after a 3- to 4-h stimulation with TSH, and exposure of cells to TSH for 20 h led to a 70-80% inhibition of cAMP formation. After withdrawal of TSH, cells regained full responsiveness to TSH after 6 h. Moreover, the desensitization effect observed in NIH-TSHR cells was not mimicked by forskolin and, therefore, was not mediated by cAMP. Stimulation of the CHO-TSHR cells with TSH did not result in a desensitization toward a second TSH stimulation, nor did it reduce the binding of [125I]TSH. This difference between the two cell lines might be explained by a higher turnover rate of receptors in the CHO cells. Indeed, incubation of cells with [125I]TSH showed a more efficient internalization of ligand in the CHO-TSHR cells compared to the NIH-TSHR cells. In summary, the homologous desensitization observed in TSHR-transfected NIH 3T3 cells appears to be the result of ligand-induced receptor down-regulation.

3T3 Cells↗

Structural studies of the Vibrio cholerae O:5 O-antigen polysaccharide.

The O-polysaccharide from Vibrio cholerae O:5 has been investigated, using NMR spectroscopy as the main method. Fast atom bombardment mass spectrometry (FABMS) studies of fragments obtained on treatment with anhydrous hydrogen fluoride or methanolic hydrogen chloride gave further structural information. Some structural features were also determined by comparison of nuclear Overhauser enhancement (NOE) contacts with calculated H-H distance in different oligosaccharide models. It is concluded that the O-polysaccharide has the following structure, in which D-Qui p NAc4NAc is 2,4-diacetamido-2,4,6-trideoxy-D-glucose, and D-Fuc p 3NX is 3-amino-3,6-dideoxy-D-galactose acylated with a (R,R)-3-hydroxy-3-methyl-5-oxoproline group. [formula: see text]

Carbohydrate Conformation↗

Energetics of nutrition and polyamine-related tumor growth alterations in experimental cancer.

The aim of this study was to evaluate whether food intake modulates experimental tumour growth by acute alterations in the energy state and blood flow of the tumour, and if so whether such changes are related to alterations in the enzyme ornithinedecarboxylase (ODC) and DNA synthesis. Inbred mice (C57BL/J) bearing a syngeneic undifferentiated and rapidly growing tumour were used. The tumour levels of high energy phosphates were measured in vivo by 31-P-NMR spectroscopy and biochemically following tissue extraction. DNA synthesis was estimated by measuring the incorporation of bromodeoxy-uridine into tumour DNA. Difluoro-methylornithine (DFMO) was used to inhibit ODC-activity. Tumour blood flow was estimated by a 132Xe local clearance technique. Tumour progression was associated with a significant decrease in tumour tissue high energy phosphates. Acute starvation decreased DNA-synthesis and tumour energy charge as well as its PCr/Pi which were rapidly normalised during subsequent refeeding. These changes were related to similar alterations in tumour blood flow. The inorganic phosphate (Pi) resonance and the resonances in the phosphomonoester (PME) region were considerably increased in tumour tissue. Inhibition of ODC-activity by DFMO decreased DNA-synthesis, which was associated with a secondary increase in tumour high energy phosphates probably due to a lowered energy demand for tumour cell division. The results demonstrate that host undernutrition was translated into retarded tumour growth associated with a decrease in the energy state and blood flow of the tumour. The results have bearing for the evaluation and planning of all treatment protocols with potential influence on food intake in experimental tumour-bearing animals.

Adenosine Triphosphate↗

Quantitation of thymidylate synthase, dihydrofolate reductase, and DT-diaphorase gene expression in human tumors using the polymerase chain reaction.

A polymerase chain reaction (PCR)-based method was used to quantitate the expression levels of low abundance genes relevant to cancer drug activity. RNA from tumor samples as small as 20 mg was isolated and converted to cDNA using random hexamers. The 5' primers for the PCR contained a T7 polymerase promoter sequence, allowing the PCR-amplified DNA to be transcribed to RNA fragments. In each sample, the linear ranges of amplification of each cDNA of interest were established. Relative gene expressions were calculated by extrapolating the amounts of PCR products generated within the linear amplification regions of each gene to equal volumes of the cDNA solution. The method was accurate to less than a 2-fold difference in expression levels. Using beta 2-microglobulin and beta-actin gene expressions as internal reference standards and cDNA from HT-29 cells as an external linearity standard, we measured the relative expressions of thymidylate synthase, dihydrofolate reductase, and DT-diaphorase in a number of clinical tumor samples. The expressions of these genes varied from 50- to 100-fold among different tumors, although most of the values were grouped within about a 10-fold range. The amount of thymidylate synthase gene expression in tumor tissues was directly proportional to the content of thymidylate synthase protein. Those tumors with the lowest thymidylate synthase expression had the best response to both the 5-fluorouracil-leucovorin and 5-fluorouracil-cisplatin combinations.

Actins↗

Calculation of restriction fragment lengths by image processing.

The image processing system, LabEye Profile, calculates the size of DNA restriction fragments according to the formula MD = f(x); x = 1/log bp. The migration distances (MD) of known fragment sizes are interpolated by the use of cubic splines. Cubic splines are also used to correct for gel distortions. A comparison to the Biotrac system, which uses the reciprocal method, gives almost identical standard deviations for calculated sizes compared to known sizes, 0.88% for LabEye Profile and 0.89% for Biotrac. The measurement error for LabEye Profile is 0.24% of the size of the fragments.

Base Composition↗

The influence of hepatic artery ligation and of vasopressin on liver tumour blood flow in rats.

The blood flow in an experimental adenocarcinoma in the rat liver was determined with the 133Xe-washout technique before and after hepatic artery ligation (HAL). There was an initial reduction of the washout of 50%. This was further reduced after 1 day by 50%, which was maintained for 7 days. Seven days after HAL or sham procedures the 133Xe-washout was of similar magnitude in the liver tumours, although after the sham procedure the tumours were larger (3.4 g vs. 1.5 g). The estimated tumour blood flow was then approximately 0.04 ml x min-1 x g-1. The influence on normal liver parenchyma of HAL was a reduction at 30 minutes, which was maintained for 7 days. Postacton--a synthetic vasopressin--did not influence the 133Xe-washout in normal liver parenchyma in non-tumour, as well as in tumour-bearing animals. There was no influence of Postacton on the 133Xe-washout in the liver tumours. Thirty minutes after HAL Postacton gave a reduction of blood flow in normal liver parenchyma of tumour-bearing animals, which is thus only from the portal vein. In tumours Postacton did not significantly reduce the tumour blood flow immediately after HAL.

Animals↗

Cell membrane receptors for urokinase plasminogen activator are increased in malignant ovarian tumours.

The binding of 125I-labelled urokinase plasminogen activator (uPA) to cell membranes of ovarian tumours was characterised. Binding was fast, specific to HMW-uPA, and saturated at low concentration [1.5 (range 1.2-1.6) nmol/l]. Scatchard analysis suggested a single class of binding sites with Kd 1.1 (0.9-1.3) nmol/l. These data indicate the presence of a specific cell membrane receptor for uPA in ovarian tumours, whose characteristics are similar to those reported for uPA receptors in other tissues. Endogenously occupied receptors were uncovered by exposing the membranes to acid conditions (pH 2) before assay, thereby allowing quantitation of the total amount of receptor. uPA receptors were assayed in 10 malignant and 6 benign epithelial ovarian tumours. The total number of receptors was higher in the malignant tumours. This was secondary to increases of both free and occupied receptors. We conclude that this reflects the biological function of cell surface bound plasminogen activation in tumour growth and spread.

Adenocarcinoma↗

A somatic point mutation in a putative ligand binding domain of the TSH receptor in a patient with autoimmune hyperthyroidism.

Nucleotide sequence analysis of PCR fragments of TSH receptor cDNA synthesized from thyroid RNA of a patient with autoimmune hyperthyroidism, revealed two different sequences in the first position of codon 36. In one of the sequences, there was a C for G substitution leading to the D36----H substitution in the predicted peptide. Both variants were also found in genomic DNA of thyroid tissue. However, only the germ line sequence was found in other tissues representing all three different germ layers. The novel sequence is therefore likely to represent a somatic mutation in the thyroid tissue, of possible relevance for the pathogenesis of the patient's thyroid disorder.

Adult↗

Effect on liver tumor growth in rats of allopurinol and 5-fluorouracil in combination with hepatic artery ligation.

Rats with an experimental solitary liver tumor of a nitrosoguanidine-induced colonic adenocarcinoma were subjected to hepatic artery ligation (HAL) alone or in combination with 5-fluorouracil (5-FU) in three different doses, with or without the addition of allopurinol. The drugs were injected i.p. on 3 consecutive days before or after the HAL procedure. HAL alone significantly reduced the tumor growth compared with the control procedure (P less than 0.001). This observation was correlated with a significantly prolonged survival for the ligated animals (P less than 0.01). The administration of a low dose of 5-FU (15 mg/kg per day) in combination with allopurinol (100 mg/kg per day) enhanced tumor growth compared with that in animals treated with 5-FU only (P less than 0.01) or nontreated animals (P less than 0.05). A significant increase in survival was observed in animals given a high dose of 5-FU (60 mg/kg per day) after HAL compared with non-treated animals (P less than 0.001) as well as animals subjected to HAL alone (P less than 0.02). All animals receiving more than 15 mg/kg per day 5-FU before HAL succumbed within 10 days. The addition of allopurinol did not protect the animals against this mortality. These observations indicate that the effect of HAL followed by 5-FU is dose-dependent and that, at least in this treatment modality, allopurinol does not modulate the toxicity of 5-FU.

Allopurinol↗

Cardiopulmonary hemodynamics and pharmacokinetics after hepatic intraarterial infusion of 5-fluorouracil (5-FU). An experimental study in the pig.

Reported 5-FU-induced cardiac side effects may be explained by drug-induced hemodynamic changes and/or by direct myocardial toxicity due to regional drug uptake. This question was studied in 11 animals given constant infusions and 6 animals given bolus 5-FU infusions into the hepatic artery. Six animals, which received normal saline infusion, served as controls. A second aim was to study possible pulmonary drug clearance. Aortic, pulmonary arterial, and coronary sinus plasma 5-FU concentrations were determined during constant and after the bolus infusions of 5-FU. The V5 ECG, aortic, pulmonary arterial, and right atrial pressures were recorded continuously, and cardiac output and coronary sinus blood flow were recorded intermittently in all animals. No significant alterations in hemodynamic variables were seen during constant infusion. After the bolus infusion, an increased arterio-mixed venous oxygen content difference was recorded. Pharmacokinetic data after 3-min infusions indicated pulmonary drug uptake and release; during constant infusions, the data indicated myocardial drug uptake. As there were no alterations in myocardial oxygen demand or supply or in systemic hemodynamics during this myocardial drug uptake, it is likely that the cardiotoxicity is related to the direct effects of the drug on cardiac myocytes.

Animals↗