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Biomedical subjects

J Jankowski

Publications and source records attributed to J Jankowski.

At least 37 records · Page 2Linked to original sources

Mass-spectrometry-linked screening of protein fractions for enzymatic activities--a tool for functional genomics.

A simple and rapid strategy is described to screen protein fractions for defined enzymatic activity. A protein fraction from a porcine kidney extract was immobilized by covalent coupling to activated affinity beads. The immobilized proteins were incubated with probes specific for different enzyme activities. The reaction products were analyzed by matrix-assisted laser desorption/ionization (MALDI)-mass spectrometry. The MALDI spectra indicate the presence of 5'-nucleotidase, phosphatase, kinase, glutathione reductase, and renin activities in the kidney protein extract. Furthermore, the method can be used to screen for inhibitors of enzymatic reactions. The method is adaptable to high-throughput sample handling and automated mass spectrometric analysis and therefore suited for functional genomics.

Animals↗

CoenzymeA glutathione disulfide is a potent modulator of angiotensin II-induced vasoconstriction.

CoenzymeA glutathione disulfide (CoASSG) has recently been isolated from bovine adrenal glands and is assumed to play an important role in blood pressure (BP) control. We used the isolated perfused rat kidney to investigate the modulating effects of CoASSG on angiotensin II (AngII)-induced vasoconstriction. Permanent perfusion with CoASSG (1 micromol/L) for 60 min induced a significant (P < .05) shift to the left in the dose-response curve for AngII (about 3.1-fold), whereas the dose-response curve for norepinephrine (NE) was unaffected. During continuous perfusion with 1 micromol/L CoASSG, the repetitive application of 10 pmol AngII significantly increased its vasoconstriction by 170% +/- 14% (P < .05) and 235% +/- 50% (P < .05) for 60 and 120 min, respectively. The potentiation of AngII by permanent perfusion with CoASSG is dose- and time-dependent and shows a plateau at 120 min. Glutathione, oxidized coenzymeA, and coenzymeA (each 1 micromol/L) are not able to enhance the vasoconstriction induced by AngII. We conclude that CoASSG is able to potentiate the vasoactive properties of AngII, and that CoASSG might play an important role in BP regulation via modulating effects of AngII.

Angiotensin II↗

The critical role of adenosine and guanosine in the affinity of dinucleoside polyphosphates to P(2X)-receptors in the isolated perfused rat kidney.

1. The activation of P(2x)-receptors in the rat renal vasculature by dinucleoside polyphosphates with variable phosphate group chain length (Xp(n)X; X=Adenin (A) /Guanin (G), n=4 - 6) was studied by measuring their effects on perfusion pressure of the isolated perfused rat kidney at constant flow in an open circuit. 2. Like Ap(4)A, Ap(5)A and Ap(6)A the dinucleoside polyphosphates Ap(4)G, Ap(5)G and Ap(6)G exerted a vasoconstriction which could be blocked by suramin and pyridoxal-phosphate-6-azophenyl-2; 4-disulphonic acid (PPADS). 3. Gp(4)G, Gp(5)G and Gp(6)G showed only very weak vasoconstriction at high doses. 4. Ap(6)A and alpha, beta-meATP could not be blocked by the selective P(2x1)-receptor antagonisten NF023 (30 microM), whereas Ap(4)A, Ap(4)G, Ap(5)A, Ap(5)G and Ap(6)G were partially blocked by NF023. 5. Inhibition of endothelial NO-synthase by N(omega)-nitro-L-arginine methyl ester (L-NAME) did not affect vasoconstrictions induced by dinucleosidepolyphosphates. 6. P(2x)-receptor can only be activated if at least one adenosine moiety is present in the molecule. 7. Ap(n)G show a weaker vasoconstrictive action than corresponding Ap(n)A, concluding that two adenosine moieties enhance the P(2x)-receptor binding and activation. 8. Xp(n)X containing five phosphate groups show the most pronounced vasoconstrictive effect whereas four phosphate groups show the less effect, therefore the number of phosphate groups critically changes receptor affinity. 9. Additional experiments using permanent perfusion with alpha, beta-methylene ATP (alpha,beta-meATP) and the selective P(2x1)-receptor antagonist NF023 showed that the newly discovered human dinucleoside polyphosphates activated the vascular P(2x1)-receptor and an recently identified new P(2x)-receptor subtype. 10. The differential effects of dinucleoside polyphosphates allow a fine tuning of local perfusion via composition of Xp(n)Xs.

Adenosine↗

Structure-activity relationships of diadenosine polyphosphates (Ap(n)As), adenosine polyphospho guanosines (Ap(n)Gs) and guanosine polyphospho guanosines (Gp(n)Gs) at P2 receptors in the rat mesenteric arterial bed.

1. Vascular effects of diadenosine polyphosphates (Ap(n)As), adenosine polyphospho guanosines (Ap(n)Gs) and guanosine polyphospho guanosines (Gp(n)Gs), novel families of naturally-occurring signalling molecules, were investigated in methoxamine preconstricted rat isolated perfused mesenteric arterial beds. 2. Three different types of response were elicited by Ap(n)As and Ap(n)Gs. Those with a short polyphosphate chain (n=2 - 3) elicited vasorelaxation. Ap(3)A was more potent than Ap(2)A, and both were more potent than the corresponding Ap(n)G. Relaxations to Ap(3)A and Ap(3)G, but not to Ap(2)A and Ap(2)G, were blocked by endothelium removal and pyridoxalphosphate-6-azophenyl-2',4'-disulphonic acid (PPADS), a P2 receptor antagonist. 3. Longer polyphosphate chain Ap(n)As and Ap(n)Gs (n=4 - 6) elicited dose-dependent vasoconstriction followed by prolonged vasorelaxation, with a potency order for both types of response of Ap(5)A> or =Ap(6)A>Ap(4)A. A similar order and potency was observed for Ap(n)Gs. Contractions and prolonged relaxations were blocked by PPADS and P2X(1) receptor desensitization with alpha,beta-methylene ATP (alpha,beta-meATP), and were largely endothelium-independent. 4. In the presence of alpha,beta-meATP rapid relaxations to contractile Ap(n)As and Ap(n)Gs (n=4 - 6) were revealed. 5. Gp(n)Gs were virtually inactive, except for Gp(2)G which elicited vasoconstriction via PPADS- and alpha,beta-meATP-sensitive smooth muscle P2X(1)-like receptors. 6. These data show that, as with Ap(n)As, the length of the polyphosphate chain (n) is an important determinant of the activity of Ap(n)Gs at P2 receptors in the rat mesenteric arterial bed. When the chain is short (n=2 - 3) the purines elicit rapid vasorelaxation, which for Ap(3)A and Ap(3)G is mediated via endothelial P2Y(1)-like receptors. When the chain is long (n=4 - 6) Ap(n)As and Ap(n)Gs elicit vasoconstriction via P2X(1)-like receptors, followed by prolonged endothelium-independent vasorelaxation. Rapid relaxation to contractile dinucleotides (n=4 - 6) is revealed by block of vasoconstriction. Regarding the purine moiety, one adenine is crucial and sufficient for vasoactivity as Gp(n)Gs were largely inactive, and Ap(n)As and Ap(n)Gs approximately equipotent.

Adenosine Triphosphate↗

Increased vascular growth in hemodialysis patients induced by platelet-derived diadenosine polyphosphates.

BACKGROUND: Enhanced vascular smooth muscle cell (VSMC) growth is one hallmark of atherosclerosis. One mechanism responsible for stimulating arterial smooth muscle cell growth is the release of growth factors from platelets aggregating at endothelial lesions. Since in end-stage renal failure (ESRF) atherogenesis is markedly accelerated, the release of VSMC growth factors on aggregation of platelets from hemodialysis patients, ESRF patients in the predialysis stage, and healthy subjects was examined. METHODS: Platelets were activated by thrombin, and the supernatant was tested for growth stimulation in VSMCs from rat aorta. The cell proliferation rate was determined by [(3)H]-thymidine incorporation in VSMCs. The diadenosine polyphosphate (Ap(n)A with N = 3 to 6) content in the supernatant and in intact platelets was determined using a chromatographic assay established on the basis of affinity- and reversed-phase chromatographic methods. RESULTS: The thrombin-activated platelet supernatant from hemodialysis patients (N = 15) increased the [(3)H]-thymidine incorporation rate in VSMC s in comparison to the supernatant of healthy control subjects (N = 17, counts/supernatant of 10(6) stimulated platelets +/- SEM, 604 +/- 71 vs. 364 +/- 45, P < 0.05). The addition of the selective P2-receptor blocker pyridoxal-phosphate-6-azophenyl-2,4-disulfonic acid to supernatants inhibited the stimulatory effects of Ap(n)A on the growth of vascular smooth muscle cells (219 +/- 53 vs. 156 +/- 71 counts/supernatant of 106 stimulated platelets +/- SEM). The Ap(n)A (N = 3 to 6) amount of thrombin-activated platelet supernatants from hemodialysis patients was significantly higher than in platelets from 10 healthy control subjects (Ap(3)A, 119 +/- 32 vs. 12 +/- 3; Ap(4)A, 154 +/- 59 vs. 43 +/- 20; Ap(5)A, 39 +/- 14 vs. 13 +/- 6; Ap(6)A, 42 +/- 19 vs. 2 +/- 1 fg/platelet +/- SEM, each P < 0.05, N = 10). The intracellular Ap(n)A (N = 3 to 6) amount of intact platelets from hemodialysis patients (N = 61) was significantly higher than that from healthy control subjects [N = 30, Ap(n)A amount (fg/platelet +/- SEM): Ap(3)A, 366 +/- 68 vs. 14.7 +/- 1; Ap(4)A, 336 +/- 48 vs. 19 +/- 2; Ap(5)A, 227 +/- 35 vs. 10 +/- 1; Ap(6)A, 141 +/- 45 vs. 4 +/- 1; each P < 0.01]. CONCLUSIONS: The increased amount of dinucleoside polyphosphate in platelets from hemodialysis patients may be an important additional atherogenic factor.

Animals↗

Characterization of p-hydroxy-hippuric acid as an inhibitor of Ca2+-ATPase in end-stage renal failure.

Characterization of p-hydroxy-hippuric acid as an inhibitor of Ca2+-ATPase in end-stage renal failure. In patients with end-stage renal failure (ESRF), disturbances of Ca2+ metabolism are common. Besides hormonal changes, inhibition of cellular Ca2+-ATPase was postulated to contribute to uremic toxicity. We purified a potent inhibitor of the Ca2+-ATPase from the ultrafiltrate of patients with ESRF by multiple steps of high-performance liquid chromatography to homogeneity, and identified the isolated inhibitor by mass spectrometric methods as p-hydroxy-hippuric acid. The enzyme used for the Ca2+-ATPase assay system was isolated from red blood cells by cross-flow filtration. The activity of the Ca2+-ATPase was measured spectrophotometrically as the difference in hydrolysis of adenosine 5'-triphosphate (ATP) in the presence and absence of Ca2+ with different concentrations of ATP and p-hydroxyhippuric acid. The Ca2+-ATPase was found to be inhibited by p-hydroxy-hippuric acid at a concentration above 11.7 micromol/L. p-Hydroxyhippuric acid inhibited the erythrocyte Ca2+-ATPase by reducing Vmax and increasing the Km value. The EC50 (log mol/L; mean +/- SEM) for p-hydroxy-hippuric acid was calculated as 4.82 +/- 0.14. In conclusion, p-hydroxy-hippuric acid may play a role in disturbed Ca2+ metabolism in end-stage renal failure.

Calcium-Transporting ATPases↗

Vasoactive diadenosine polyphosphates in human placenta: possible candidates in the pathophysiology of pre-eclampsia?

BACKGROUND: One hypothesis of the pathophysiology of pre-eclampsia is that placentally derived, yet unidentified, vasoactive factors are released into the maternal circulation, causing hypertension. OBJECTIVE: To determine if diadenosine polyphosphates, new potent vasoconstrictors, are present in human placenta. METHODS AND RESULTS: Human placental tissue was homogenated and fractionated by size-exclusion chromatography, affinity chromatography, anion-exchange chromatography and reversed-phase chromatography. In fractions purified to homogeneity, diadenosine diphosphate, diadenosine triphosphate, diadenosine tetraphosphate, diadenosine pentaphosphate, diadenosine hexaphosphate and diadenosine heptaphosphate were identified by matrix-assisted laser desorption/ionization mass spectrometry, retention-time comparison and enzymatic cleavage analysis. CONCLUSIONS: The presence of diadenosine polyphosphates in human placenta makes them possible candidates for involvement in the pathophysiology of pre-eclampsia. However, their contribution to the pathophysiology of eclampsia requires substantiation in further studies.

Blood Vessels↗

Dinucleotides as growth-promoting extracellular mediators. Presence of dinucleoside diphosphates Ap2A, Ap2G, and Gp2G in releasable granules of platelets.

Dinucleoside diphosphates, Ap(2)A, Ap(2)G, and Gp(2)G represent a new class of growth-promoting extracellular mediators, which are released from granules after activation of platelets. The presence of theses substances was shown after purification from a platelet concentrate. The substances were identified by UV spectrometry, retention time comparison with authentic substances, matrix-assisted laser desorption/ionization mass spectrometry, post-source-decay matrix-assisted laser desorption/ionization mass spectrometry, and enzymatic analysis. Ap(2)A, Ap(2)G, and Gp(2)G have growth-stimulating effects on vascular smooth muscle cells in nanomolar concentrations as shown by [(3)H]thymidine incorporation measurements. The calculated EC(50) (log m; mean +/- S.E.) values were -6.07 +/- 0.14 for Ap(2)A, -6.27 +/- 0.25 for Ap(2)G, and -6.91 +/- 0.44 for Gp(2)G. At least 61.5 +/- 4.3% of the dinucleoside polyphosphates are released by platelet activation. The intraplatelet concentrations suggest that, in the close environment of a platelet thrombus, similar dinucleoside polyphosphate concentrations can be found as in platelets. Intraplatelet concentration can be estimated in the range of 1/20 to 1/100 of the concentration of ATP. In conclusion, Ap(2)A, Ap(2)G, and Gp(2)G derived from releasable granules of human platelets may play a regulatory role in vascular smooth muscle growth as growth-promoting mediators.

Animals↗

Isolation and characterization of coenzyme A glutathione disulfide as a parathyroid-derived vasoconstrictive factor.

BACKGROUND: Coenzyme A glutathione disulfide (CoA-SSG) was recently isolated from bovine adrenal glands and was shown to be a renal vasoconstrictor. The identification of CoA-SSG in human parathyroid glands and its action on cultured vascular smooth muscle cells (VSMCs) are described here. METHODS AND RESULTS: After purification to homogeneity by several chromatographic steps, CoA-SSG was identified by matrix-assisted laser desorption/ionization mass spectrometry and enzymatic analysis. The dose-dependent growth-stimulating effect of CoA-SSG on VSMCs, measured by the [(3)H]thymidine method, is characterized by a threshold of 10(-)(8) mol/L and a maximum effect of 10 micromol/L, increasing VSMC proliferation 254+/-21% above control. A dose of 10 micromol/L methylmalonyl-CoA and 10 micromol/L CoA increased the rate of proliferation of VSMCs only by 178+/-43% and 50+/-42% above control, respectively. Glutathione has no proliferative effect on VSMCs. The growth-stimulating effect of CoA-SSG (1 micromol/L) was decreased by the antagonists 3,7-dimethyl-1-propargylxanthine (DMPX; 11 micromol/L) (38% compared with CoA-SSG without antagonist) and pyridoxal-phosphate-6-azophenyl-2,4-disulfonic acid (PPADS; 10 micromol/L) (48% compared with CoA-SSG without antagonist; each P:<0. 05 versus control), indicating that the effect is mediated partly via A(2) and partly via P(2)Y(1) and/or P(2)Y(4) receptor. CONCLUSIONS: CoA-SSG may play a regulatory role in VSMC growth as a progression factor and thereby could play an important role in development of hypertension.

Acetates↗

Aberrant P-cadherin expression is a feature of clonal expansion in the gastrointestinal tract associated with repair and neoplasia.

The recognition of key roles for cadherins in the determination of epithelial cell phenotype, migration, differentiation, and tumour dissemination have stimulated much interest in this family of adhesion molecules. In the gastrointestinal tract, alteration of the expression of classical cadherins with aberrant P-cadherin up-regulation, associated with co-expression or loss of E-cadherin expression, is seen in neoplastic transformation of oral and oesophageal squamous mucosa and in lesions representing early neoplastic transformation of glandular mucosa, such as aberrant crypt foci and metaplastic and adenomatous polyps. This same phenotype is seen in enterocytes adjacent to foci of ulceration in the intestine in colitis, including inflammatory bowel disease, and in colitis-associated dysplasia. In coeliac disease, reversible E-cadherin down-regulation correlates with the degree of villous atrophy, but in contrast with colitis, aberrant P-cadherin expression is not a feature. Aberrant epithelial P-cadherin expression is thus associated with a proliferative phenotype related to ulceration and neoplastic transformation in the gastrointestinal tract, which may confer a survival advantage on these cells, but the relative functional roles of P-cadherin and E-cadherin and the molecular mechanisms underlyingP-cadherin/catenin interactions have yet to be elucidated.

Cadherins↗

Barrett's esophagus: disregulation of cell cycling and intercellular adhesion in the metaplasia-dysplasia-carcinoma sequence.

The incidence of both esophageal adenocarcinoma and Barrett's esophagus, a premalignant condition predisposing to this cancer, is rising rapidly. There is growing evidence that both of these conditions are related to the reflux of acid and bile into the esophagus. This results in inflammation and cell damage which initiates a sequence of events termed the metaplasia-dysplasia-carcinoma sequence in which the squamous epithelium is replaced by columnar epithelium exhibiting increasing degrees of dysplasia and overt malignancy. This sequence of events is underpinned by changes in cell cycling, such as accumulation of p16 and p53 mutations and increased cyclin D1 activity. Progression along this pathway is characterized by changes in intercellular adhesion, in particular, loss of adenomatous polyposis coli, reduced cadherin expression and increased catenin phosphorylation resulting in its nuclear translocation. Herein, we detail these molecular defects and propose how they may interrelate in an ordered progression in the development of esophageal adenocarcinoma.

Adenocarcinoma↗

[Evaluation of patient exposure to X-ray in view of monitoring carried out in diagnostic laboratories of Lódź region].

X-ray diagnostics, mostly due to a large variety of examinations, and a wide range of its application, is the major source of exposure to ionising radiation in the population. That is why special measurements are being carried out to evaluate the air-kerma values received by patients during X-ray examinations performed most frequently (i.e. lumbo-sacral spine radiography, chest radiography, and thoracic spine radiography). The measurements were performed in 39 different departments (in the Lódź region). The doses received by patients were measured simultaneously using thermoluminescence dosimetry (TLD) and a CONY dosimeter (PTW, Frieburg). In all, 196 measurements were made. The results obtained were compared with the reference levels recommended by the International Agency of Atomic Energy. The study indicates that over 90% of doses received by patients during chest radiography exceeds the recommended level. Of the 39 X-ray departments under control, in 31 the reference levels were exceeded for at least two radiological examinations, which means that in only 20% of departments the radiological equipment and work methodology ensure the acceptable levels of patients' exposure, while the other departments need interventions to explain the reasons why patients receive too high radiation doses, and to eliminate harmful over-exposure.

Catchment Area, Health↗

[The system of drug side effects monitoring in the cardiological wards of the University Hospital No. 1 in Poznań. 6-year observation].

According to the guidelines from the Polish Ministry of Health, it is necessary to develop in Poland a system for supervising the safety of pharmacotherapy. Within the framework of this system a crucial role has been allocated to the Regional Centres for Monitoring of Side Effects of Drugs, affiliated to University Schools of Medicine. As there is no established routine for reporting side effects of drugs in Poland by medical professionals, the only way to obtain the data on drugs side effects was to prepare the system for internal monitoring of side effects of drugs in three clinical cardiology wards of the Institute of Cardiology at the University Hospital No. 1 in Poznań. During the 6-year follow up, 208 cases were registered and classified according to the type of the side effect (A, B, C, D) and according to the division into pharmacological groups. Most of the reported side effects belonged to the type A (67.8%), and, subsequently, type C (23.6%), type D (6.2%), type B (2.4%). The presented analysis allowed only for identifying the side effects. For the assessment of incidence and the range of occurrence of these side effects it is necessary to work out an effective, multicenter system for monitoring side effects of drugs in Poland.

Cardiology↗

Film badges for personal dosimetry of roentgen radiation.

The paper describes the calibration procedure for and data obtained from routine X-ray dosimetry service in Poland. In 1998 the number of readouts amounted to 152,000. The dosimetry concerned 31,281 workers in 3,113 enterprises. The annual collective dose was assessed to be 16.7 man.Sv. The analysis of the calibration quality is discussed as well. Only 2.9% of all points lay outside the quality curve while the number of the acceptable outliers was 5%.

Calibration↗

Alpha spectrometry for measuring activity of glass-embedded 210PO isotope.

Measurements of exposure to radon are performed using numerous research methods which register either temporary or periodic radon concentrations. At the end of the 1990s reports on the possibility of defining past exposure to radon on the basis of measurement of the contents of 210Pb embedded in surface layer of glass were published. The registration of alpha particles emitted with glass was made using the spectrometric system. Use of the system for alpha spectroscopy leads finally to a significant lowering of the bottom threshold of detection and limits the influence of the negative background on the examined glass.

Glass↗

[Personnel exposure during interventional radiologic procedures].

Intervention radiology, known also as intravascular surgery, is a new medical specialisation that develops very rapidly. Radiological procedures performed under fluoroscopy include: dilatation of stenosed vessels, recanalization or vascular embolization and angioanastomosis. Although these procedures have been initiated by radiologists, the majority of them are performed now by physicians who are specialised in medical disciplines other than radiology (cardiologists, vascular surgeons, gastroenterologists, etc.). All these specialists are always aware of the fact that during radiological procedures, both the personnel and the patients are at risk of ionizing radiation. For that reason monitoring of the exposure in this occupational group is of particular importance. Bearing in mind that members of surgical teams are often in direct contact with x-ray tube, it is assumed that routine individual dosimetry of staff occupationally exposed to x-rays do not provide adequate assessment of the exposure risk. This paper describes measurements carried out among operating surgeons who perform the following procedures: cardiological interventions (percutaneous transluminal coronary angioplasty (PTCA) and bypass with preceding coronarography); neuroradiology (aneurysm embolization); and intravascular surgery within abdominal cavity (TIPS, nephrostomy). Dosimetric assessment was carried out in operating surgeons who are exposed mostly among the members of surgical teams as they have to be in direct contact with radiation sources. A comprehensive assessment of exposure included the following measurements: equivalent dose for the hands (measured by a specially designed finger dosimeter); equivalent dose for the trunk protected by a lead apron (a dosimeter placed under apron); and equivalent dose for the neck (a dosimeter placed on the upper, external edge of apron). In addition, a dose product and the surface of primary beam were measured (Diamentor dosimeter, PTW, Frieburg) which allowed to define the correlation between the entrance air kerma, measured with thermoluminscence dosimeters, and the amount of primary radiation emitted during the monitored procedure. In all, the surgical teams were monitored during 42 intervention procedures. The results of the study revealed that an operating surgeon is most exposed. The values of an annual effective dose and an annual equivalent dose for the hands and eyes, estimated for individual procedures, were as follows: (a) cardiological angioplastic procedures: effective dose--25 mSv, equivalent dose for the hands--438 mSv, equivalent dose for the eyes--265 mSv; (b) intravascular angioplastic procedures within the abdominal cavity and neuroradiological procedures: effective dose--4 mSv, equivalent dose for the hands--360 mSv, equivalent dose for the eyes--41 mSv. It should be stressed that the aforesaid maximum doses do not exceed relevant standard annual limits binding in Poland.

Air Pollution, Radioactive↗