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Biomedical subjects

O Larsson

Publications and source records attributed to O Larsson.

At least 73 records · Page 4Linked to original sources

Unbalanced chromosomal rearrangements in a metastasizing salivary gland tumor with benign histology.

Benign metastasizing pleomorphic adenoma (BMPA) is a rare tumor of the salivary glands. Despite benign histopathologic features, it can metastasize and is sometimes lethal. No chromosomal data have been reported for this tumor type. We have by chromosome banding and fluorescence in situ hybridization analysis examined the short-term cultures of three skeletal metastases from a BMPA and identified two related hypodiploid clones: 44,XX,dic(3;22)(p11;q13) or der(3)t(3;22)(p11;q?) add(22)(q?),der(9;21)(q10;q10),der(13)t(1;13)(q11;p13)/45,XX,-3,der(9;21 ) (q10;q10),der(13)t(1;13)(q11; p13),?der(22)t(3;22)(q22;q13), +mar. The karyotypic features of this BMPA thus differ from the characteristic cytogenetic findings in pleomorphic adenomas and carcinomas ex pleomorphic adenoma.

Adenoma, Pleomorphic↗

Insulin-like growth factor II inhibits glucose-induced insulin exocytosis.

We have investigated the effect of IGF-II on glucose-induced insulin release in the pancreatic beta-cell. Introduction of IGF-II during perifusion of the cells with 20 mM glucose abolished glucose-induced insulin release. Concomitant addition of IGF-II with 20 mM glucose caused a complete inhibition of insulin release. In addition, IGF-II inhibited Ca(2+)-induced insulin release from electropermeabilized pancreatic beta-cells. IGF-II had no effect on K(+)-or tolbutamide-induced insulin release. However, IGF-II could suppress K(+)-stimulated insulin release when cells were pretreated with the protein phosphatase inhibitor okadaic acid. The inhibitory effect of IGF-II on insulin release was not associated with significant changes in membrane potential, activity of the voltage-gated L-type Ca(2+)-channel or cytoplasmic free Ca2+ concentration. Pretreatment of the cells with pertussis toxin or the phorbol ester TPA abolished the inhibitory action of IGF-II on insulin release. Hence, the molecular mechanism whereby activation of the IGF-II/M6P receptor by IGF-II inhibits glucose-stimulated insulin exocytosis in the pancreatic beta-cell involves pertussis toxin-sensitive G proteins and is dependent on PKC activity.

Animals↗

Specific and sensitive detection of the EWS/FLI1 fusion protein in Ewing's sarcoma by Western blotting.

We applied Western blotting, using an antibody against the carboxy terminal of the FLI1 protein, for detection of the 68-kDa EWS/FLI1 fusion protein in cultured Ewing's sarcoma cells and in four surgical biopsies of Ewing's sarcoma. Of six different human cell lines, the 68-kDa fusion protein was identified only in Ewing's sarcoma cells carrying the t(11;22)(q24;q12) translocation. The four samples from Ewing's sarcoma patients were also found to contain the 68-kDa fusion protein. The lowest detection level for total protein loaded on the gel was 0.3 microg. When whole Ewing's sarcoma cells were used for Western blotting without prior protein extraction, the lowest detection level was 1,300 cells. It will be possible to use Western blotting for detection of the EWS/FLI1 fusion protein in the diagnosis of Ewing's sarcoma in surgical biopsy specimens, and possibly also in fine-needle aspirates. As the method is not dependent on the quality of mRNA in the sample and involves no risk of contamination, it will be a powerful complement to the reverse-transcription polymerase chain reaction (RT-PCR).

Blotting, Western↗

Central nervous system metastases of cutaneous malignant melanoma--a population-based study.

The objectives of this population-based study were to assess putative prognostic factors for central nervous system (CNS) metastases among patients with cutaneous malignant melanoma, to assess the cumulative risk of CNS metastases in different subsets of patients with recurrent disease, and to describe patient outcome. At a median follow-up of 11 years, 201/2516 patients with melanoma had developed CNS metastases, corresponding to a cumulative risk at 5 years of 7%. In 41 of these 201 patients the CNS metastases were recorded as the first site of recurrence. In a Cox's multivariate model, primary tumor thickness and ulceration in stage I patients were independent risk factors. The cumulative rates of incidence of CNS metastases 5 years after local or regional recurrence as first event were 5 and 42%, respectively. These results may help to form an individually based risk assessment, which might be of value for melanoma patients in certain occupations.

Adult↗

Expression of the insulin-like growth factor-1 receptor and its anti-apoptotic effect in malignant melanoma: a potential therapeutic target.

The insulin-like growth factor-1 receptor (IGF-1R) and its possible protective effect on apoptotic cell death in malignant melanoma was analysed in four commercial melanoma cell lines. Inhibition of N-linked glycosylation by tunicamycin, which has previously been shown to block the translocation of IGF-1R to the cell surface, blocked cell growth and/or induced cell death in these cell lines. Treatment with alphaIR-3, an antibody blocking the binding domain of IGF-1R, also resulted in growth arrest and/or apoptosis. We also analysed lymph node metastases of malignant melanoma by Western blotting and immunohistochemistry. All these cases were shown to express IGF-1R at the cell surface. In three cases of lymph node metastases we had access to both tumour specimens and cultured cells. One of these exhibited a substantially higher expression of IGF-1R than the two other cases. The corresponding cell lines showed growth arrest and apoptosis following treatment with alphaIR-3. However, the two cell lines with low expression of IGF-1R were more sensitive in this respect. Furthermore, we demonstrated an inverse correlation between IGF-1R expression and the frequency of apoptotic cells in the tumour specimens. Our data suggest that IGF-1R is crucial for the viability of malignant melanoma cells in vitro as well as in vivo.

Animals↗

Genetic imbalances in 67 synovial sarcomas evaluated by comparative genomic hybridization.

We used comparative genomic hybridization (CGH) to evaluate DNA sequence copy number changes in 67 synovial sarcomas of both monophasic and biphasic histological subtypes. Changes (mean among aberrant cases: 4.7 aberrations/tumor; range: 1-17), affecting most often entire chromosomes or chromosome arms, were detected in 37 sarcomas (55%). Gains and losses were distributed equally, but different chromosomes were affected with variable frequencies. The most frequent aberrations, each detected in 9-11 of 67 tumors, were gain of 8q and gain at 12q (12q14-15 and 12q23-qter), loss of 13q21-31, and loss of 3p. Other frequent changes (in 7 or 8 cases) included gains at 2p, 1q24-31, and 17q22-qter, and losses at 3cen-q23 and 10q21. High-level amplifications were seen in 7 cases. A total of 16 regions were detected. Two of them, 8p12-qter and 21q21-qter, seen in 4 and 2 tumors, respectively, were recurrent. No aberrations specific to histological subtype were identified. However, genetic changes in the monophasic tumors were more complex and numerous (mean among aberrant cases: 5.3 aberrations/tumor; range: 1-17) than in the biphasic tumors (mean: 2.5 aberrations/tumor; range: 1-5), and high-level amplifications occurred more frequently. All but 1 of the sarcomas showing high-level amplification were of the monophasic subtype. These findings may reflect differences in the pathogenesis and biological behavior of both histological subtypes of synovial sarcoma.

Adolescent↗

[Mechanisms of action of peroral antidiabetics. Sulfonylurea preparations block the ATP-dependent potassium channels].

Although hypoglycaemic sulphonylureas have been used to treat non-insulin-dependent diabetes mellitus (NIDDM) for the past forty years, their mechanisms of action at the molecular level have only recently been elucidated. A combination of electrophysiological and molecular biological techniques showed the target of sulphonylureas to be a sulphonylurea receptor (SUR1) and potassium channel (Kir6.2) complex. Together, these two proteins form the ATP-dependent potassium (KATP) channel occurring in insulin-secreting cells. An increase in the blood glucose level triggers a chain of events in insulin-secreting cells and K(ATP) channel closure which is a prerequisite for insulin secretion. In NIDDM, however, an increase in blood glucose fails to close the K(ATP) channel satisfactorily, but this can be remedied by the administration of sulphonylureas.

Adenosine Triphosphate↗

Evidence for protein dolichylation.

Labeling of human colon carcinoma cells with [3H]dol, followed by extensive delipidation and removal of dol-P oligosaccharides, showed that dol are bound to cellular proteins with sizes of 5, 10, 27, 75 and > 140 kDa. HPLC purification of proteolytic products of [3H]dol- and [35S]cys-labeled proteins revealed a hydrophobic peak containing both dol and cysteine. The dol/cys-labeled products were clearly separated from GG-cys, and exhibited a hydrophobicity between that of dol-P and dol. In another set of experiments delipidated proteins were treated with methyl iodide, which cleaves thioether bonds. After HPLC purification of released dol-like lipids, these were subjected to mass spectrometry. This demonstrated molecular ions with the same mass as that of dol. Taken together our data provide evidence for the existence of proteins covalently modified with dol.

Autoradiography↗

Inhibition of phosphatases and increased Ca2+ channel activity by inositol hexakisphosphate.

Inositol hexakisphosphate (InsP6), the dominant inositol phosphate in insulin-secreting pancreatic beta cells, inhibited the serine-threonine protein phosphatases type 1, type 2A, and type 3 in a concentration-dependent manner. The activity of voltage-gated L-type calcium channels is increased in cells treated with inhibitors of serine-threonine protein phosphatases. Thus, the increased calcium channel activity obtained in the presence of InsP6 might result from the inhibition of phosphatase activity. Glucose elicited a transient increase in InsP6 concentration, which indicates that this inositol polyphosphate may modulate calcium influx over the plasma membrane and serve as a signal in the pancreatic beta cell stimulus-secretion coupling.

Animals↗

Outcomes of patients with local recurrence of cutaneous malignant melanoma: a population-based study.

BACKGROUND: The definition of local recurrence of cutaneous malignant melanoma varies. The outcomes of patients with a local recurrence reported in the literature also vary, but the appearance of a local recurrence has generally been considered a negative prognostic sign. Few studies have been population-based thus far. METHODS: During the period 1976-1997, 3706 patients with cutaneous malignant melanoma (including 575 patients with melanoma in situ) were registered in a population-based regional cancer registry. Local recurrence was defined as a recurrence within the scar or transplant with no signs of regional or distant spread of the disease. Prognostic factors were investigated using univariate and multivariate analytic techniques. The prognostic importance of a local recurrence in terms of survival was analyzed using the Cox proportional hazards regression model, with local recurrence as a time-dependent covariate. RESULTS: Local recurrence as a first event was rare (occurring in 48 of 3706 patients, or 1.3%). Twenty-eight percent (11 of 39) of the patients with local recurrence of invasive primary melanoma developed distant metastases and subsequently died. Only ulceration had prognostic significance in univariate analysis. A Cox analysis, with melanoma death as the endpoint and local recurrence as a time-dependent covariate, demonstrated a relative risk of 1.3 associated with local recurrence; however, this was not statistically significant (confidence interval, 0.7-2.3). CONCLUSIONS: In this population-based study, local recurrence was a rare event. The outcomes after diagnosis were relatively favorable. The results did not indicate a major detrimental effect on survival from the local recurrence per se.

Adolescent↗

RIN14B: a pancreatic delta-cell line that maintains functional ATP-dependent K+ channels and capability to secrete insulin under conditions where it no longer secretes somatostatin.

The delta-cell line RIN14B was characterized with regard to ATP-regulated K+ (K(ATP)) channel activity and hormone release. By applying the patch-clamp technique, dose-response curves for ATP and the sulfonylurea tolbutamide were obtained in inside-out patches. The concentration causing half-maximal K(ATP) channel inhibition was found to be 23.7 and 27.6 microM for ATP and tolbutamide, respectively. ADP and diazoxide stimulated K(ATP) channel activity, an effect dependent on the presence of intracellular Mg2+. The stimulatory effect of diazoxide also required the presence of ATP. The kinetic properties of the K(ATP) channel were analysed in the presence of ATP, a combination of ADP and ATP and in nucleotide-free solutions. The distribution of K(ATP) channel open time could be described by a single exponential function with a time constant of approximately 30 ms in nucleotide-free and in ATP-containing solutions. The presence of both ATP and ADP resulted in the appearance of an additional time constant of > 150 ms. Single-channel unitary current-voltage (i-V) relation was characterised for the K((ATP) channel present in RIN14B cells. The slope conductance, measured at the reversal potential was found to be 19.1 +/- 2.4 pS. The permeability for K+ ions was calculated to be 0.31 x 10(-13) cm3 x s(-1). We have not been able to confirm the somatostatin releasing profile of the RIN14B cells using radioimmunoassays, nor could we find positive somatostatin stain with immunocytochemical techniques. We conclude that the RIN14B cell line, previously characterized as a somatostatin-secreting cell line, contains K(ATP) channels with properties closely resembling the K(ATP) channel described in the pancreatic beta-cell. However, the cell line appears to have dedifferentiated with regard to the ability to secrete somatostatin, maintaining the highly differentiated function of both insulin biosynthesis and exocytosis.

Adenosine Diphosphate↗

Evidence for a unique long chain acyl-CoA ester binding site on the ATP-regulated potassium channel in mouse pancreatic beta cells.

The mechanism by which long chain acyl-CoA (LC-CoA) esters affect the ATP-regulated potassium channel (KATP channel) was studied in inside-out patches isolated from mouse pancreatic beta cells. Addition of LC-CoA esters dramatically increased KATP channel activity. The stimulatory effect of the esters could be explained by the induction of a prolonged open state of the channel and did not involve alterations in single channel unitary conductance. Under control conditions, absence of adenine nucleotides, the distribution of KATP channel open time could be described by a single exponential, with a time constant of about 25 ms. Exposing the same patch to LC-CoA esters resulted in the appearance of an additional component with a time constant of >>150 ms, indicating a conformational change of the channel protein. LC-CoA esters were also able to potently activate channel activity at different ratios of ATP/ADP. Simultaneous additions of MgADP and LC-CoA esters resulted in a supra-additive effect on channel mean open time, characterized by openings of very long duration. Following modification of the KATP channel by a short exposure of the patch to the protease trypsin, the stimulatory effect of ADP on channel activity was lost while activation by LC-CoA esters still persisted. This indicates that LC-CoA esters and MgADP do not bind to the same site. We conclude that LC-CoA esters may play an important role in the physiological regulation of the KATP channel in the pancreatic beta cell by binding to a unique site and thereby inducing repolarization of the beta cell-membrane potential.

ATP-Binding Cassette Transporters↗

Insulin-like growth factor II signaling through the insulin-like growth factor II/mannose-6-phosphate receptor promotes exocytosis in insulin-secreting cells.

The insulin-like growth factor II (IGF-II)/mannose-6-phosphate (M-6-P) receptor is known to participate in endocytosis as well as sorting of lysosomal enzymes and is involved in membrane trafficking through rapid cycling between cytosolic membrane compartments and the plasma membrane. Here we demonstrate that IGF-II, acting through the IGF-II/M-6-P receptor, promotes exocytosis of insulin in the pancreatic beta cell. The effect of IGF-II was evoked at nonstimulatory concentrations of glucose, was mediated by a pertussis toxin sensitive GTP-binding protein, was dependent on protein kinase C-induced phosphorylation, and was independent of changes in cytoplasmic free Ca2+ concentration. Since the applied concentration of IGF-II is within the range normally found free in circulation in humans, this novel signaling pathway for the IGF-II/M-6-P receptor is likely to be involved in modulation of insulin exocytosis under physiological conditions.

Adenosine Triphosphate↗

Inhibition of N-linked glycosylation using tunicamycin causes cell death in malignant cells: role of down-regulation of the insulin-like growth factor 1 receptor in induction of apoptosis.

Recent studies have shown that inhibition of N-linked glycosylation using tunicamycin (TM) induces cell death in cultured cells (O. Larsson et al., J. Cell Sci., 106: 299-307, 1993; J. Y. Chang and V. Korolev, Exp. Neurol., 137: 201-211, 1996). The mechanisms underlying TM-induced cell death seem, however, to be complex in nature. In SV40-transformed cells, TM triggers within a few minutes mechanisms subsequently leading to apoptosis. These mechanisms, although still not fully understood, involve an elevation of [Ca2+]i (M. Carlberg et al., Carcinogenesis, 17: 2589-2596, 1996). In contrast, in melanoma cells, TM has to be present continuously for 24-48 h to elicit apoptosis. Before the appearance of apoptotic melanoma cells, assayed by gel-electrophoretic detection of oligonucleosomally fragmented DNA, the binding of insulin-like growth factor I (IGF-I) to the cells had become drastically decreased, which in turn was found to be due to down-regulation of IGF-I receptor proteins at the cell surface. Incubation of the cells with an antibody (alpha IR-3) against the IGF-I-binding site of the receptor resulted also in apoptosis, the kinetics of which were almost identical to those following treatment with TM. Furthermore, coincubation of a high concentration of IGF-I (50 ng/ml) with TM totally rescued the melanoma cells from apoptotic cell death during the first 48 h after addition of the drugs. This effect was shown to be abolished fully by alpha IR-3. Taken together, our data suggest strongly that N-linked glycosylation plays an important role in maintenance of viability of melanoma cells through regulating the translocation of IGF-I receptor to the cell surface.

Apoptosis↗

Thiol oxidation by 2,2'-dithiodipyridine causes a reversible increase in cytoplasmic free Ca2+ concentration in pancreatic beta-cells. Role for inositol 1,4,5-trisphosphate-sensitive Ca2+ stores.

2,2'-Dithiodipyridine (2,2'-DTDP), a reactive disulphide that mobilizes Ca2+ from ryanodine-sensitive Ca2+ stores in muscle, induced a biphasic increase in cytoplasmic free Ca2+ concentration ([Ca2+]i) in pancreatic beta-cells loaded with fura 2. This increase consisted of an early transient followed by a second, slower, rise. The [Ca2+]i transient was dependent on extracellular Ca2+ and disappeared on treatment with nimodipine. The reactive disulphide caused plasma membrane depolarization, as studied by the perforated-patch configuration of the patch-clamp technique. Hence membrane depolarization and opening of the L-type voltage-gated Ca2+ channels were responsible for the first transient in [Ca2+]i. The second slower increase in [Ca2+]i was prolonged but readily reversed by the disulphide-reducing agent 1,4-dithiothreitol. This increase in [Ca2+]i was not decreased by nimodipine or by omission of extracellular Ca2+, but was eliminated when the Ins(1,4,5)P3-sensitive Ca2+ pool was first depleted by carbachol. Ryanodine or its beta-alanyl analogue did not release Ca2+ from intracellular stores, and a high concentration of ryanodine did not inhibit Ca2+ release by 2,2'-DTDP. The disulphide compound suppressed glucose metabolism and decreased the mitochondrial inner-membrane potential. We conclude that thiol oxidation by 2,2'-DTDP affects Ca2+ homeostasis in beta-cells by multiple mechanisms. However, unlike the situation in muscle, in beta-cells 2,2'-DTDP releases Ca2+ from intracellular pools by mechanisms that do not involve activation of ryanodine receptors. Instead, in these cells the Ins(1,4,5)P3-sensitive intracellular Ca2+ store comprises an alternative target for the Ca(2+)-mobilizing action of the reactive disulphide compound.

2,2'-Dipyridyl↗

Use of 99mTc-MIBI scintigraphy in the evaluation of the response of osteosarcoma to chemotherapy.

The use of gamma camera scintigraphy with technetium-99m hexakis-2-methoxyisobutylisonitrile (99mTc-MIBI) for assessment of the response of high-grade osteosarcoma to preoperative chemotherapy was evaluated. Twelve patients with osteosarcoma of the extremities underwent planar examination with 99mTc-MIBI before and after preoperative chemotherapy according to the recommendations of the Scandinavian Sarcoma Group. After calculating a quotient for the tumour and the average activity of both extremities and correcting for background activity, the change in uptake between the two examinations was assessed. This was compared with histological examination of the ultimately resected specimen in 11 patients and progressive clinical disease in one. All the 11 tumours undergoing histological examination showed cellular necrosis of between 50% and 100% as well as a reduced uptake of 99mTc-MIBI, while the single progressive tumour showed an increased uptake. There was a correlation between the reduction of radiopharmaceutical uptake and the histological response in the entire series, while the variation was too large to allow conclusions in individual patients. This variation may have biological reasons or may be due to the planar imaging technique, which only allows semiquantitative evaluation. The technique reflects response to therapy but is not yet clinically applicable for the identification of poor responders, which would serve as a basis for alteration of the chemotherapy regimen. In order to evaluate whether such a role could be fulfilled, further studies using single-photon emission tomography with correction for attenuation and scattering of photons are necessary.

Adolescent↗