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thymidine/грозница

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Orthotopic hepatic cancer: radiofrequency hyperthermia-enhanced intratumoral herpes simplex virus-thymidine kinase gene therapy.

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UNASSIGNED To validate the feasibility of using interventional radiofrequency hyperthermia(RFH) to enhance herpes simplex virus-thymidine kinase (HSV-TK)/ganciclovir (GCV) gene therapy of rat orthotopic hepatic cancer. UNASSIGNED Rat hepatocellular carcinoma cells (MCA-RH-7777) were transduced with

Effect of hyperthermia 42.5 degrees C/120 min on 3H-thymidine incorporation in different tissue components of Wilms' tumors: an in vitro study.

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BACKGROUND Survival rates of Wilms' tumors are correlated to tumor histology. Clinical studies and histological investigations have shown that different histological tumor components of Wilms' tumors also reveal different sensitivities to cytostatic agents and ionizing radiation. The aim of this

Molecular imaging-monitored radiofrequency hyperthermia-enhanced intratumoral herpes simplex virus-thymidine kinase gene therapy for rat orthotopic ovarian cancer.

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Objective: To establish the technique of intratumoral combination therapy of radiofrequency hyperthermia (RFH) with herpes simplex virus-thymidine kinase/ganciclovir (HSV-TK/GCV) gene therapy for rat ovarian cancers.Material and methods: This study consisted of three parts: (1) in

[Telomeric chromosome fusion in cells with micronuclei under the combined action of hyperthermia and hypothermia and halogenated analogs of thymidine].

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The reaction of cells with micronuclei in respect of the induction of specific dicentric chromosomes with halogenated analogs of thymidine at various temperatures was studied. The positive correlation between the temperature and frequency of dicentrics was shown for all halogenated analogs of

Expression and characterization of the thymidine kinase gene of African swine fever virus.

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The thymidine kinase (TK) gene of African swine fever virus (ASFV) was located within the viral genome by using two degenerate oligonucleotide probes derived from sequences of the vaccinia virus and cellular TK genes. The TK gene was mapped within a 0.72-kbp BglII-XhoI fragment (0.242 to 0.246 map

Cholangiocarcinoma: molecular imaging-guided radiofrequency hyperthermia-enhanced intratumoral herpes simplex virus thymidine kinase gene therapy.

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We investigated the feasibility of using radiofrequency hyperthermia (RFH) to enhance green fluorescent protein (GFP)/herpes simplex virus thymidine kinase (HSV-TK)/ganciclovir (GCV) gene therapy of cholangiocarcinoma. Cholangiocarcinoma cells and mice with cholangiocarcinoma were treated by (i)

Radiosensitization of C6 glioma by thymidine and 41.8 degrees C hyperthermia.

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The cytotoxic, antiproliferative, and radiosensitizing effects of thymidine (a nucleoside metabolite) were studied using the C6 glioma cell line in vitro. Radiosensitization by a combination of thymidine and 41.8 degrees C hyperthermia was also evaluated. Thymidine concentrations above 100

Sequence and evolutionary relationships of African swine fever virus thymidine kinase.

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The thymidine kinase gene of African swine fever virus was mapped in a 1.4-kb EcoRI-PstI fragment located in the left half of the Eco RI K fragment of African swine fever virus DNA by using degenerate oligonucleotide probes derived from regions of the thymidine kinase sequence conserved in several

Sensitization of C6 glioma to carboplatin cytotoxicity by hyperthermia and thymidine.

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Thymidine (a nucleoside metabolite) and 41.8 degrees C hyperthermia were used to sensitize C6 glioma cells to carboplatin cytotoxicity in vitro. Clinically achievable thymidine concentrations (0, 200, 400, or 1000 micrograms/ml X 24 hours) significantly enhanced carboplatin killing. Clinically

Radiosensitization of human T-cell leukemia by thymidine and 41.8 degrees C hyperthermia in vitro.

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This study tested whether thymidine, a naturally occurring nucleoside metabolite, could increase the sensitivity of human T-cell neoplasms to ionizing irradiation and whether adding 41.8 degrees C hyperthermia (X 1 h) to the combination of thymidine and irradiation would further enhance killing of

Interactions of thymidine, hyperthermia, and cis-diammine-1,1-cyclobutane dicarboxylate platinum (II) in human T-cell leukemia.

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Using JM and MOLT3, two human T-cell acute lymphoblastic leukemia cell lines, we investigated the ability of 24-h thymidine exposures to enhance the cytotoxicity of cis-diammine-1,1-cyclobutane dicarboxylate platinum (II) (carboplatin). Clinically achievable thymidine concentrations (for 24 h)

Effects of adriamycin and hyperthermia on cellular uptake of [3H]thymidine and its significance for the incorporation into DNA.

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Inhibition of the salvage DNA synthesis was studied in ascites tumour cells up to 240 min at moderately increased temperatures of 39 degrees C, 40.5 degrees C and 43 degrees C alone or in combination with adriamycin (ADR). Hyperthermia and ADR acted additively on salvage DNA synthesis. The

[Studies on the thymidine-triphosphate synthesis in malignant tumors. II. Effect of hyperthermia, Vitamin K and Cytotoxic agents (author's transl)].

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Measurements of the deoxyribonucleoside triphosphate (dNTP) contents, the [14C] thymidine and deoxyuridine incorporation and the "key enzymes" of the thymidine triphosphate (dTTP) synthesis, thymidine kinase and ribonucleotide reductase, in diploid Ehrlich-ascites carcinoma, under the application of

Non-Small-Cell Lung Cancer: Feasibility of Intratumoral Radiofrequency Hyperthermia-enhanced Herpes Simplex Virus Thymidine Kinase Gene Therapy.

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Purpose To validate the feasibility and efficacy of intratumoral radiofrequency hyperthermia (RFH)-enhanced herpes simplex virus (HSV) thymidine kinase (TK) and ganciclovir (GCV) (hereafter, HSV-TK/GCV) gene therapy for non-small-cell lung cancer (NSCLC). Materials and Methods This study was

The effect of hyperthermia 42.5 degrees C on the incorporation of 3H-thymidine into the DNA of solid tumours in childhood.

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Supranormal temperatures inhibit selectively the growth of malignant cells more than that of normal cells. The autoradiographic determination of the 3H-thymidine-labelling-index (LI) in vitro is a suitable method for the examination of thermosensitivity of individual human tumours. 44 solid tumours
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