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Biomedical subjects

Per Albertsson

Publications and source records attributed to Per Albertsson.

13 recordsLinked to original sources

Prognostic implications of creatine kinase elevation after primary percutaneous coronary intervention for acute myocardial infarction.

OBJECTIVES: We examined the prognostic implications of the absolute level and rate of increase of creatine kinase (CK) elevation after primary percutaneous coronary intervention (PCI). BACKGROUND: Peak creatine kinase (CK(peak)) and the rate of CK increase are related to reperfusion success and clinical outcomes after thrombolytic therapy for acute myocardial infarction (AMI). The utility of routine serial CK monitoring after primary PCI, in which normal antegrade blood flow is restored in most patients, is unknown. METHODS: In the Controlled Abciximab and Device Investigation to Lower Late Angioplasty Complications (CADILLAC) trial, 1,529 patients with AMI randomized to either stenting or balloon angioplasty, each with or without abciximab, had CK levels determined at baseline and at 8 +/- 1 h, 16 +/- 1 h, and 24 +/- 1 h after PCI. RESULTS: The CK(peak) occurred at baseline in 3.9% of patients, at 8 +/- 1 h in 69.6%, at 16 +/- 1 h in 20.0%, and at 24 +/- 1 h in 6.5%. The CK levels at all post-procedural time points were significantly higher in patients who died compared with the one-year survivors, as was CK(peak) (mean, 2,865 U/l vs. 1,885 U/l, respectively, p < or = 0.001). By multivariate analysis, CK(peak) was a significant predictor of one-year mortality (hazard ratio = 2.15, p = 0.0002), independent from post-PCI Thrombolysis In Myocardial Infarction (TIMI) flow. Both the improvement in left ventricular ejection fraction from baseline to seven months and its absolute level were inversely correlated with CK(peak) (p < 0.001 for both). In contrast, the time to CK(peak) was not an independent predictor of mortality or myocardial recovery. CONCLUSIONS: The CK(peak) after primary PCI is a powerful predictor of one-year mortality independent of other clinical and angiographic measures.

Angioplasty, Balloon, Coronary↗

On metronomic chemotherapy: modulation of angiogenesis mediated by VEGE-A.

Tumors are angiogenesis dependent. Preclinical studies have shown that well-tolerated continuous low dose, i.e. metronomic, chemotherapy can exert significant antiangiogenic effects per se and thereby a greater antitumor influence than conventional chemotherapy with high, spaced-out bolus doses. There are however, no means of quantitatively assessing the antiangiogenic effect of chemotherapy in tumors. We therefore used a surrogate tumor-free, non-surgical rat mesentery model and quantitatively studied the dose effect of metronomic treatment with cisplatin, cyclophosphamide, doxorubicin, fluorouracil and paclitaxel on VEGF-A-mediated angiogenesis, a characteristic of tumors. Cyclophosphamide and paclitaxel treatment exerted significant dose-dependent antiangiogenic effects, whereas doxorubicin treatment produced insignificant effects. By contrast, metronomic cisplatin and fluorouracil treatment occasionally significantly stimulated angiogenesis in a dose-dependent, non-linear manner. To our knowledge, this is the first report of metronomic chemotherapy stimulating angiogenesis in vivo. The data suggest that the angiogenic response to cisplatin, cyclophosphamide, fluorouracil and paclitaxel was significantly influenced by the presence of antioxidants in the vehicles or when co-treated with N-acetylcystein, a widely used free-radical scavenger. The data relating to the metronomic scheduling were compared with bolus treatment data for the identical agent formulations in the same experimental model. Cisplatin, cyclophosphamide and paclitaxel caused approximately the same overall, agent-specific angiogenesis-modulating effects following metronomic and bolus treatments. Moreover, apparently secondary delayed effects of chemotherapy affected capillary sprouting.

Acetylcysteine↗

The anti-tumour effect of low-dose continuous chemotherapy may partly be mediated by thrombospondin.

BACKGROUND: Tumour growth is dependent on angiogenesis. Antiangiogenic chemotherapy, i.e. continuous or metronomic low-dose chemotherapy, is a method for administrating cytostatics at a low and well-tolerated concentration without prolonged breaks. The target is the genetically stable endothelial cells playing a pivotal role in angiogenesis within the tumour. Different mediators could mediate the antiangiogenic effect of metronomic chemotherapy. One of these mediators could be thrombospondin (TSP). TSP is a potent inhibitor of angiogenesis and might therefore be important in controlling tumour growth. This study was designed to evaluate the effects of low-dose continuous or moderate-dose bolus chemotherapy on tumour growth and on tumour expression of TSP. MATERIALS AND METHODS: Rats bearing a malignant prostate tumour (Dunning AT-1) not expressing TSP were treated systemically with cyclophosphamide, doxorubicin or paclitaxel and the combination of cyclophosphamide and doxorubicin. Tumour growth and body weight were measured during the treatment. CD36, one of TSP's main receptors, was also analysed. The expression pattern of TSP-1, TSP-2 and CD36 was investigated using immunohistochemistry and Western blot analyses. Q-PCR was used to analyse TSP-1 mRNA expression. RESULTS: Low-dose cyclophosphamide and paclitaxel re-induced the expression of TSP in the tumours. However, following a bolus dose of doxorubicin, tumours showed no expression of TSP. Both cyclophosphamide and doxorubicin treatments decreased the tumour weight by more than 60% compared with vehicle controls. When cyclophosphamide and doxorubicin were combined the tumour weight was reduced by 47%, while paclitaxel reduced the tumour weight by 18% compared to the vehicle controls. CONCLUSIONS: Systemic low-dose continuous treatment of a rat prostate cancer model with cyclophosphamide and paclitaxel induced the expression of TSP in tumour tissue and inhibited tumour growth. These findings support the hypothesis that the anti-tumour effect of low-dose metronomic chemotherapy, at least with certain chemotherapeutics, is partly mediated by induction of endogenous antiangiogenic factors.

Animals↗

Guidelines for percutaneous coronary interventions. The Task Force for Percutaneous Coronary Interventions of the European Society of Cardiology.

In patients with stable CAD, PCI can be considered a valuable initial mode of revascularization in all patients with objective large ischaemia in the presence of almost every lesion subset, with only one exception: chronic total occlusions that cannot be crossed. In early studies, there was a small survival advantage with CABG surgery compared with PCI without stenting. The addition of stents and newer adjunctive medications improved the outcome for PCI. The decision to recommend PCI or CABG surgery will be guided by technical improvements in cardiology or surgery, local expertise, and patients' preference. However, until proved otherwise, PCI should be used only with reservation in diabetics with multi-vessel disease and in patients with unprotected left main stenosis. The use of drug-eluting stents might change this situation. Patients presenting with NSTE-ACS (UA or NSTEMI) have to be stratified first for their risk of acute thrombotic complications. A clear benefit from early angiography (<48 h) and, when needed, PCI or CABG surgery has been reported only in the high-risk groups. Deferral of intervention does not improve outcome. Routine stenting is recommended on the basis of the predictability of the result and its immediate safety. In patients with STEMI, primary PCI should be the treatment of choice in patients presenting in a hospital with PCI facility and an experienced team. Patients with contra-indications to thrombolysis should be immediately transferred for primary PCI, because this might be their only chance for quickly opening the coronary artery. In cardiogenic shock, emergency PCI for complete revascularization may be life-saving and should be considered at an early stage. Compared with thrombolysis, randomized trials that transferred the patients for primary PCI to a 'heart attack centre' observed a better clinical outcome, despite transport times leading to a significantly longer delay between randomization and start of the treatment. The superiority of primary PCI over thrombolysis seems to be especially clinically relevant for the time interval between 3 and 12 h after onset of chest pain or other symptoms on the basis of its superior preservation of myocardium. Furthermore, with increasing time to presentation, major-adverse-cardiac-event rates increase after thrombolysis, but appear to remain relatively stable after primary PCI. Within the first 3 h after onset of chest pain or other symptoms, both reperfusion strategies seem equally effective in reducing infarct size and mortality. Therefore, thrombolysis is still a viable alternative to primary PCI, if it can be delivered within 3 h after onset of chest pain or other symptoms. Primary PCI compared with thrombolysis significantly reduced stroke. Overall, we prefer primary PCI over thrombolysis in the first 3 h of chest pain to prevent stroke, and in patients presenting 3-12 h after the onset of chest pain, to salvage myocardium and also to prevent stroke. At the moment, there is no evidence to recommend facilitated PCI. Rescue PCI is recommended, if thrombolysis failed within 45-60 min after starting the administration. After successful thrombolysis, the use of routine coronary angiography within 24 h and PCI, if applicable, is recommended even in asymptomatic patients without demonstrable ischaemia to improve patients' outcome. If a PCI centre is not available within 24 h, patients who have received successful thrombolysis with evidence of spontaneous or inducible ischaemia before discharge should be referred to coronary angiography and revascularized accordingly--independent of 'maximal' medical therapy.

Angioplasty, Balloon, Coronary↗

Antiangiogenic effect of metronomic paclitaxel treatment in prostate cancer and non-tumor tissue in the same animals: a quantitative study.

Well-tolerated continuous or metronomic chemotherapy can exert a marked antiangiogenic and thus superior antitumor effect compared with conventional high-dose, temporarily spaced-out chemotherapy, as shown in preclinical studies. There is, however, no means of directly assessing the antiangiogenic effect in a tumor, a serious impediment to assessing the effects of putative antiangiogenic chemotherapeutics or treatments. In an attempt to circumvent or minimize this impediment we studied the antiangiogenic effect of well-tolerated metronomic paclitaxel therapy in a surrogate tumor-free tissue that allows true quantitative analysis as well as in syngeneic At-1 prostate cancer in the same rat. This novel model allows an accurate comparison of the angiogenesis-modulating effect of chemotherapy in the two tissues to be made. The effect of chemotherapy on VEGF-A-mediated angiogenesis, a characteristic of most tumors, was assessed truly quantitatively by microscopic morphometry and image analysis in the tumor-free mesentery. The chemotherapy significantly suppressed VEGF-A-mediated angiogenesis in the mesentery to an extent that closely mirrored the significant increase in tumor necrosis measured morphometrically and the significant decrease in tumor growth rate. This finding opens an avenue to study quantitatively and systematically the antiangiogenic effect of chemotherapeutic modalities and treatments that approximately mirror their antiangiogenic effect in the At-1 tumor.

Angiogenesis Inhibitors↗

The effectiveness of artificial neural networks in evaluating treatment plans for patients requiring external beam radiotherapy.

This study was designed to determine the ability of a neural network to use data summarized in artificial generated dose volume histograms (DVH) for the rectum to evaluate and compare different patient treatment plans for the treatment of localized prostate cancer. One radiotherapist evaluated 250 artificially generated DVHs representing the distribution of a dose of ration throughout the rectum during external radiotherapy for patients with prostatic adenocarcinoma (PAC). The data were also analyzed using the Lyman NTCP-model for assessing complication probabilities. A neural network consisting of 10 input nodes and one output node was trained to categorize the plans according to the radiotherapist's score. The volume in each isodose was used as input, and the risk for a severe complication was presented as output. The classifications made by the neural network matched those determined by the radiotherapist and the NTCP-model. All three techniques showed a high correlation between each other. Artificially generated dose volume histograms (DVH) for the rectum can be used for training a neural network for scoring rectal DVHs in treatment plans for localized prostate cancer.

Adenocarcinoma↗

Chemotherapy and antiangiogenesis--drug-specific, dose-related effects.

Dose-response effects of fluorouracil, paclitaxel, doxorubicin, cisplatin, methotrexate, cyclophosphamide and etoposide on VEGF165/164-mediated angiogenesis using the rat mesenteric-window angiogenesis assay are reported. VEGF is a pivotal pro-angiogenic factor in most tumors. Microvessel spatial extension, density, pattern formation and segment length were assessed quantitatively and objectively. A single i.v. injection of each drug was given at a low, intermediate or high dose, 7 days before sacrifice. All the drugs elicited significant responses in terms of one or more measured variables. Only paclitaxel, doxorubicin and cyclophosphamide significantly suppressed the overall angiogenic response (p < or = 0.0001, p < or = 0.0002 and p < or = 0.05, respectively), however. Taking toxicity into account, paclitaxel was more potent in inhibition of angiogenesis than the other agents. No clear correlation was found between drug half-life, the degree of toxic effects (in terms ofbody weight changes) and the antiangiogenic effect. The antiangiogenic effects were distinctly drug specific.

Animals↗

Chemotherapy and antiangiogenesis: drug-specific effects on microvessel sprouting.

Tumors are angiogenesis dependent. Some chemotherapeutics have been shown to be able to suppress angiogenesis and thus tumor growth in vivo at low, well-tolerated doses. Not much is known about the angiogenesis-modulating effects of chemotherapeutics in vivo, however. Microvessel sprouting is inherent to angiogenesis. Using the rat mesentery assay, we studied the effect of cyclophosphamide, doxorubicin and paclitaxel at a low, atoxic dose on the number of sprouts per unit tissue volume (No. SP) and their length (Le. SP) at the edge of the expanding network in VEGF165-mediated angiogenesis. A single dose of each cytotoxic drug was administered i.v. 7 days before the animals were sacrificed. Cyclophosphamide significantly lengthened the shortest Le. SP and shortened the longest Le. SP, doxorubicin did not significantly affect Le. SP, whereas paclitaxel significantly shortened both the shortest and the longest Le. SP. No correlation was found between the present results and the distinctly drug-specific results of microvessel segment number and length analyzed within central parts of the same expanding network. To our knowledge, this is the first quantitative report on the effect of chemotherapy on angiogenesis sprouting in vivo. Collectively, the data suggest that cyclophosphamide, doxorubicin and paclitaxel at a non-toxic dose primarily target different intrinsic components of the angiogenic cascade, leading to distinctly drug-specific effects.

Animals↗

Clinical benefit of small vessel stenting: one-year follow-up of the SISCA trial.

OBJECTIVE: To assess the long-term clinical benefit of elective stenting as compared with percutaneous transluminal coronary angioplasty (PTCA) in small coronary arteries. DESIGN: The Stenting in Small Coronary Arteries (SISCA) trial was a randomized trial comparing elective stenting with PTCA in coronary arteries with a reference diameter of 2.1-3.0 mm. The heparin-coated beStent was used. Control angiography was performed after 6 months, and the patients were followed clinically for 12 months. RESULTS: At 6 months the clinical outcome was significantly better in the stent group as compared with the PTCA group, with an event-free survival in 90.5 and 76.1% (p = 0.016), respectively. From 6 to 12 months, event-free survival was unchanged in both groups, demonstrating a sustained long-term clinical benefit of elective stenting. CONCLUSION: Angioplasty in small coronary arteries is associated with a favorable clinical outcome after 1 year. The clinical benefit of elective stenting using the Hepamed-coated beStent is maintained beyond 6 months, without any tendency towards late events. Thus, elective stenting should be considered as an option when treating small coronary arteries.

Aged↗