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Biomedical subjects

J W Smit

Publications and source records attributed to J W Smit.

At least 19 recordsLinked to original sources

(R)- and (S)-[11C]verapamil as PET-tracers for measuring P-glycoprotein function: in vitro and in vivo evaluation.

The mdr1 gene product P-glycoprotein (P-gp) is involved in the bioavailability and pharmacokinetics of various drugs. Racemic [(11)C]verapamil has been used to image P-gp expression in vivo. A racemic tracer, however, is not suitable for quantification. The purpose of the present study was to identify the most appropriate enantiomer of [(11)C]verapamil as a potential PET-tracer for quantifying P-gp function. The two enantiomers, (R)- and (S)-[(11)C]verapamil, were synthesized and studied in vivo. For the in vivo model mdr1a/1b double gene knock-out and wild type mice were used. The in vitro study made use of the LLC-PK1 MDR cell line to examine the P-gp mediated transport of both enantiomers. The biodistribution of (R)- and (S)-[(11)C]verapamil in dKO and WT mice demonstrated no stereoselectivity of verapamil for P-gp in the blood-brain barrier and in the testes. In addition, no significant differences in P-gp transport for both enantiomers were observed in the in vitro experiments. Previous studies have shown that (R)-verapamil is metabolized less in man and that it has lower affinity for calcium channels. Since (R)- and (S)-verapamil have equal transport for P-gp, the (R)-enantiomer seems to be the best and safest candidate as PET-tracer for measuring P-gp function in vivo.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Personal dosimetry of the staff during treatment of neuroendocrine tumours with a high dose of Indium-111 Octreotide.

BACKGROUND: Therapeutic doses with Indium-111 (In-111)-DTPA-Octreotide are currently used in patients with somatostatin receptor positive tumours. It may result in tumour regression in some patients and this effect is ascribed to cell and receptor specific cytotoxicity by Auger or conversion electrons. Personnel being involved in this treatment may receive high radiation doses due to the emission of 173 keV and 247 keV photons. The aim of the present study was to assess the radiation dose to the personnel at different time intervals during treatment with Indium-111 Octreotide. METHODS: Five consecutive patients suffering from a neuroendocrine tumour were included in this dosimetry study. In total, 18 treatments with Indium-111 Octreotide have been given with a mean dose of 8000 MBq every three weeks. Three dosimeters (whole body, left and right hand) and a dose rate monitor were used to register doses and dose rates during labelling, administration and in-patient follow-up and whole body scintigraphy. These procedures were performed by a pharmacist, a nuclear physician and a technologist, respectively. RESULTS: The whole body dose received during the labelling procedure was 5 microSv. The mean total exposure time during administration, whole body scintigraphy and clinical follow-up was 47 minutes revealing a mean whole body dose of 45 microSv. The mean radiation dose to the hands was 60 microSv per treatment. CONCLUSIONS: The radiation risk to staff members and technologists seems to be very low during in-patient treatments with high dose Indium-111 Octreotide. According to the safety regulations no special radiation protection measures or personal dosimetry is required.

Allied Health Personnel↗

Mitochondrial disruption and limited apoptosis of erythroblasts are associated with high risk myelodysplasia. An ultrastructural analysis.

AIMS: To investigate the ultrastructural characteristics of erythroblasts in myelodysplasia (MDS) which might be of additional importance in understanding its pathogenesis. METHODS AND RESULTS: 22 patients were classified according to FAB (French-American-British classification), IPSS (international prognostic score system), cytogenetic risk factors and transfusion dependency. Using electron microscopy, in 77% of the cases, nuclear abnormalities consisting of disrupted membranes and cystic/dilated perinuclear spaces were noted. In a limited number of patients (n=7), a low percentage of apoptosis in the erythroid lineage (mean 3.1+/-1.6%; median 3%: range 1-6) (normal controls: <0.5%) could be noted, primarily in mature erythroblasts and significantly associated with spongiform nuclear features. In all patients extensive cytoplasmic vacuolization and myelin figures in erythroblasts were demonstrated. In 55% of the cases, enlarged and abnormal mitochondria were observed, significantly associated with iron-accumulation. A significant inverse relation existed between the absence of apoptosis and more advanced, or high risk disease and cytogenetic risk factors. Mitochondrial abnormalities were significantly correlated with high risk disease as well with an increase in transfusion dependency. CONCLUSIONS: These data indicate that in MDS apoptosis may play a role in early stages of disease. The overall prominent defects in mitochondria might be an additional defect that is involved in ineffective erythropoiesis.

Adult↗

A novel chromosomal translocation t(3;5)(q12;p15.3) and loss of heterozygosity on chromosome 22 in a multifocal follicular variant of papillary thyroid carcinoma presenting with skin metastases.

Classic genetic rearrangements in papillary carcinoma of the thyroid involve the RET- or TRK proto-oncogenes. We report a novel chromosomal translocation t(3;5)(q12;p15.3), confirmed by fluorescence in situ hybridization, in a multifocal follicular variant of a papillary carcinoma of the thyroid in a 79-year-old woman, with skin metastases as a presenting symptom. Three years earlier, another cutaneous metastasis on her scalp was misdiagnosed as hidradenoma. Four tumour foci were recognized in the thyroid, two with a follicular variant of papillary carcinoma. To detect loss of heterozygosity, 14 chromosomes were investigated with 59 microsatellite markers. A clonal relationship was detected between the two foci of tumour in the thyroid gland containing follicular variant of papillary carcinoma and one of the skin lesions tested, all demonstrating loss of heterozygosity (LOH) in the same region of chromosome 22. Based on earlier reports, the low rate of LOH detected is in agreement with the diagnosis papillary carcinoma of the thyroid. Whole body scintigraphy performed after ablative therapy with radioiodine revealed multiple metastases in the lungs and skeleton. After repeated radioiodine therapy, thyroglobulin under thyroxine suppression became undetectable and post-therapeutic scintigraphy revealed important regression of metastases.

Aged↗

Expression of the human sodium/iodide symporter (hNIS) in xenotransplanted human thyroid carcinoma.

The uptake of iodide in thyroid epithelial cells is mediated by the sodium/iodide symporter (NIS). The uptake of iodide is of vital importance for thyroid physiology and is a prerequisite for radioiodine therapy in thyroid cancer. Loss of iodide uptake due to diminished expression of the human NIS (hNIS) is frequently observed in metastasized thyroid cancer. So far, no animal model for the study of radioiodine therapy in thyroid cancer has been available. Strategies to restore iodide uptake in thyroid cancer include the exploration of hNIS gene transfer into hNIS defective thyroid cancer. We have performed a stable transfection of hNIS into the hNIS defective follicular thyroid carcinoma cell line FTC133. Stably transfected colonies exhibited high uptake of Na125I, which could be blocked completely with sodium perchlorate. hNIS transfected FTC133 and non-transfected cell lines injected subcutaneously in nude mice formed tumors after 6 weeks. Iodide uptake in the hNIS transfected tumor was much higher than in non-transfected tumor, but a rapid release of radioactivity from the hNIS transfected tumor was observed. Further studies are necessary to investigate the role of hNIS in relation to other thyroid specific proteins in iodide metabolism in thyroid cancer.

Animals↗

P-glycoprotein limits oral availability, brain, and fetal penetration of saquinavir even with high doses of ritonavir.

The low oral bioavailability of the HIV protease inhibitor (HPI) saquinavir is dramatically increased by coadministration of the HPI ritonavir. Because saquinavir and ritonavir are substrates and inhibitors of both the drug transporter P-glycoprotein (P-gp) and of the metabolizing enzyme CYP3A4, we wanted to sort out whether the ritonavir effect is primarily mediated by inhibition of CYP3A4 or P-gp or both. P-gp is known to limit the bioavailability, brain, testis, and fetal penetration of its substrates, so effective inhibition of P-gp by ritonavir in vivo might open up pharmacological sanctuary sites for saquinavir, with the potential of beneficial effects on therapy, but also of increased toxicity. In vitro, P-gp-mediated transport of saquinavir and ritonavir was only moderately inhibited by both HPIs compared with the potent P-gp inhibitor PSC833. When [(14)C]saquinavir was orally coadministered with a maximum tolerated dose of ritonavir to wild-type and P-gp-deficient mice, saquinavir bioavailability was dramatically increased in both strains, but P-gp still limited the oral bioavailability of saquinavir, and its penetration into brain and fetus. These data indicate that in vivo, ritonavir is a relatively poor P-gp inhibitor. The highly increased bioavailability of saquinavir because of ritonavir coadministration most likely results from reduced saquinavir metabolism. Importantly, our data indicate that it is unlikely that ritonavir coadministration will substantially affect the contribution of P-gp to pharmacological sanctuary sites such as brain, testis, and fetus. Thus, if one wanted to effectively open these sites for therapeutic purposes, more efficient P-gp inhibitors should be applied.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Reduced hepatic uptake and intestinal excretion of organic cations in mice with a targeted disruption of the organic cation transporter 1 (Oct1 [Slc22a1]) gene.

The polyspecific organic cation transporter 1 (OCT1 [SLC22A1]) mediates facilitated transport of small (hydrophilic) organic cations. OCT1 is localized at the basolateral membrane of epithelial cells in the liver, kidney, and intestine and could therefore be involved in the elimination of endogenous amines and xenobiotics via these organs. To investigate the pharmacologic and physiologic role of this transport protein, we generated Oct1 knockout (Oct1(-/-)) mice. Oct1(-/-) mice appeared to be viable, healthy, and fertile and displayed no obvious phenotypic abnormalities. The role of Oct1 in the pharmacology of substrate drugs was studied by comparing the distribution and excretion of the model substrate tetraethylammonium (TEA) after intravenous administration to wild-type and Oct1(-/-) mice. In Oct1(-/-) mice, accumulation of TEA in liver was four to sixfold lower than in wild-type mice, whereas direct intestinal excretion of TEA was reduced about twofold. Excretion of TEA into urine over 1 h was 53% of the dose in wild-type mice, compared to 80% in knockout mice, probably because in Oct1(-/-) mice less TEA accumulates in the liver and thus more is available for rapid excretion by the kidney. In addition, we found that absence of Oct1 leads to decreased liver accumulation of the anticancer drug metaiodobenzylguanidine and the neurotoxin 1-methyl-4-phenylpyridium. In conclusion, our data show that Oct1 plays an important role in the uptake of organic cations into the liver and in their direct excretion into the lumen of the small intestine.

Animals↗

Six months of recombinant human GH therapy in patients with ischemic cardiac failure does not influence left ventricular function and mass.

Beneficial effects of recombinant human GH on cardiac function have been reported in humans with GH deficiency and in patients with idiopathic dilated cardiomyopathy. No randomized controlled trial has been performed on the effects of recombinant human GH on cardiac function in patients with ischemic cardiac failure. We therefore randomly assigned 22 patients with ischemic cardiac failure (left ventricular ejection fraction, <40%; 19 men and 3 women; mean age, 64 yr) to receive 6 months of unblinded therapy with recombinant human GH (2.0 IU/d) or no treatment. Primary end points were left ventricular ejection fraction and left ventricular mass. Left ventricular end-diastolic volume, left ventricular end-systolic volume, and myocardial perfusion, both at rest and during exercise, were assessed as well. Cardiac imaging techniques were electrocardiographically gated single photon emission computer tomography and magnetic resonance imaging. In addition, biochemical and biometric measurements were performed. Nineteen patients completed the study (10 controls and 9 GH-treated subjects). IGF-I and IGF-binding protein-3 increased significantly after recombinant human GH treatment (+24% and +58%, respectively) compared with control values (-14% and +5%; P < 0.05). Left ventricular ejection fraction, left ventricular end-diastolic volume, left ventricular end-systolic volume, left ventricular mass, and myocardial perfusion were not influenced by recombinant human GH therapy. We conclude that 6 months of recombinant human GH treatment in patients with ischemic cardiac failure had no beneficial effect on left ventricular function and mass.

Aged↗

Structural genomics in endocrinology.

Traditionally, endocrine research evolved from the phenotypical characterisation of endocrine disorders to the identification of underlying molecular pathophysiology. This approach has been, and still is, extremely successful. The introduction of genomics and proteomics has resulted in a reversal of this sequence of endocrine research: reverse endocrinology. This approach has provided endocrinology with powerful tools to dissect novel molecular pathways involved in health and disease and to identify new drug targets, like the peroxisome-proliferator activated receptor (PPAR) nuclear receptor family. The reiterative combination of innovative genomics and proteomics, and classical endocrine approaches will enable maintenance of endocrinology as a front-runner in biological research and innovate therapeutical approaches in a continuing interaction between bed and bench.

Biomedical Research↗

Role of breast cancer resistance protein in the bioavailability and fetal penetration of topotecan.

BACKGROUND AND METHODS: Breast cancer resistance protein (BCRP/MXR/ABCP) is a multidrug-resistance protein that is a member of the adenosine triphosphate-binding cassette family of drug transporters. BCRP can render tumor cells resistant to the anticancer drugs topotecan, mitoxantrone, doxorubicin, and daunorubicin. To investigate the physiologic role of BCRP, we used polarized mammalian cell lines to determine the direction of BCRP drug transport. We also used the BCRP inhibitor GF120918 to assess the role of BCRP in protecting mice against xenobiotic drugs. Bcrp1, the murine homologue of BCRP, was expressed in the polarized mammalian cell lines LLC-PK1 and MDCK-II, and the direction of Bcrp1-mediated transport of topotecan and mitoxantrone was determined. To avoid the confounding drug transport provided by P-glycoprotein (P-gp), the roles of Bcrp1 in the bioavailability of topotecan and the effect of GF120918 were studied in both wild-type and P-gp-deficient mice and their fetuses. RESULTS: Bcrp1 mediated apically directed transport of drugs in polarized cell lines. When both topotecan and GF120918 were administered orally, the bioavailability (i.e., the extent to which a drug becomes available to a target tissue after administration) of topotecan in plasma was dramatically increased in P-gp-deficient mice (greater than sixfold) and wild-type mice (greater than ninefold), compared with the control (i.e., vehicle-treated) mice. Furthermore, treatment with GF120918 decreased plasma clearance and hepatobiliary excretion of topotecan and increased (re-)uptake by the small intestine. In pregnant GF120918-treated, P-gp-deficient mice, relative fetal penetration of topotecan was twofold higher than that in pregnant vehicle-treated mice, suggesting a function for BCRP in the maternal-fetal barrier of the placenta. CONCLUSIONS: Bcrp1 mediates apically directed drug transport, appears to reduce drug bioavailability, and protects fetuses against drugs. We propose that strategic application of BCRP inhibitors may thus lead to more effective oral chemotherapy with topotecan or other BCRP substrate drugs.

ATP Binding Cassette Transporter, Subfamily G, Mem↗

[Embolization of skeletal metastases in patients with differentiated thyroid carcinoma].

Treatment options in patients with bone metastases of differentiated thyroid carcinoma are limited and mostly aimed at palliation. Conventional treatment modalities are: radioiodine therapy, surgery or external irradiation. A lesser known option is selective embolization of tumour metastases. During selective catheterization of the arteries that feed the metastases embolization material (e.g. polyvinyl alcohol particles) is injected into the local vasculature under radiographic control. The embolization is immediately evaluated angiographically. This therapy was used in three patients with differentiated thyroid carcinoma, a 60-year-old man suffering from back ache, paresis and afterwards paralysis of the lower body parts with incontinence, and in two women aged 59 years (suffering from diplopia and a pelvic metastasis) and aged 27 years (suffering from neurological symptoms or pain of the right leg due to a pelvic metastasis). In all three the symptoms disappeared after the embolization and ensuing treatment with radioactive iodine. Due to recurrent increase in serum thyroglobulin concentration repeated re-embolization was necessary, but during a follow-up period of 3-5 years the palliation remained adequate. Selective embolization appears to be a safe and efficacious treatment, with good tolerability for the patient. Embolization alone or preferably preceded by radioiodine therapy may lead to decreased tumour progression and often gives rise to immediate relief of symptoms.

Adenocarcinoma, Follicular↗

Autologous stem cell transplantation in multiple myeloma after VAD and EDAP courses: a high incidence of oligoclonal serum Igs post transplantation.

Thirty-seven patients with multiple myeloma (stage II and III, 65% increased beta2-microglobulin level) were prospectively treated with a median of 3.7 VAD courses (range 2-8) followed by cyclophosphamide (6 g/m2) in conjunction with G-CSF (5 microg/kg filgrastrim (n = 14), or 3.5 microg/kg lenograstrim (n = 22)), and peripheral stem cell (PSC) isolation. After regeneration this was followed by one EDAP course and high-dose melphalan (HDM, 200 mg/m2) in combination with re-infusion of PSC. Adequate stem cell mobilization was obtained with both G-CSF regimens. A median of 41x10(6) CD34+ cells/kg (range 4.5-161) was collected in a median of 1.6 leukapheresis procedures following filgrastrim (n = 14) and 24x10(6) CD34+ cells/kg (range 2. 3-80) in a median of 1.7 leukapheresis procedures following lenograstrim (n = 22) which indicated no significant difference (P = 0.24) between both G-CSF regimens. A rapid hematological recovery was obtained after HDM with reinfusion of a median of 9.3x10(6) CD34+ cells/kg. After the total courses the overall response was 84% with a complete remission rate of 30%. Currently the median overall survival is 44.0 months (95% CI 38.9-49.1) with a median follow-up of 33 months (range 3-51) and a median event-free survival of 29.0 months (95% CI 25.3-32.7) (n = 33). Post transplantation a high incidence of oligloclonal serum immunoglobulins (Igs) was observed. In 73% of the patients new oligoclonal or monoclonal serum bands were noticed 3 months post transplantation. IgG-lambda and IgG-kappa bands predominated. In 48% of the cases the oligoclonal Igs disappeared after a median follow-up of 22 months (range 8-36), whereas in 52% of the cases the oligoclonal Igs persisted with a median follow-up of 31 months (range 21-45), which did not correlate with a significant difference in overall, and event-free survival between both subgroups.

Adjuvants, Immunologic↗

Excessive apoptosis of bone marrow erythroblasts in a patient with autoimmune haemolytic anaemia with reticulocytopenia.

We report a patient with autoimmune haemolytic anaemia (AIHA) with reticulocytopenia, who showed excessive apoptosis of erythroblasts. Ultrastructural analysis of bone marrow cells showed that 50% of erythroblasts had characteristic features of apoptosis, which was confirmed by staining with Annexin-V. In addition, in contrast to normal erythroblasts, Ig staining of the entire erythroblast population could be shown. These data show that apoptosis may contribute to the mechanism of reticulocytopenia in AIHA.

Anemia, Hemolytic, Autoimmune↗

Lymphocyte subset abnormalities in multitransfused HIV-negative haemophilia A patients are not due to chronic hepatitis C virus infection.

Several abnormalities of immune parameters have been described in HIV-negative haemophiliacs, including changes in numbers of T4 and T8 cells, T4/T8 ratio and numbers of activated T cells. To assess the contribution of hepatitis C to these abnormalities, we compared lymphocyte subsets in 20 HIV-negative HCV-positive haemophilia A patients and in 14 non-haemophiliacs with chronic hepatitis C with those in 18 healthy controls. In haemophilia patients, higher numbers of T lymphocytes and activated T8 cells, lower numbers of B lymphocytes and a normal T4/T8 ratio were seen. These differences were either not demonstrated in hepatitis C controls or were less pronounced and in the opposite direction. We conclude that haemophilia A patients showed abnormalities in lymphocyte subsets that could not be attributed to chronic hepatitis C.

Adult↗