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osteosarcoma/fièvre

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Hyperthermia increases the susceptibility of chondro- and osteosarcoma cells to natural killer cell-mediated lysis.

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As an adjuvant to chemotherapy hyperthermia has proven to be successful as a treatment for osteo- and chondrosarcoma patients. The aim of this study was to investigate whether hyperthermia could increase cellular expression of heat-shock-protein 72 in human osteo- and chondrosarcoma cells and how

Reversible downregulation of telomerase activity by hyperthermia in osteosarcoma cells.

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Telomerase, a ribonucleoprotein enzyme, maintains telomere length and is expressed by the majority of malignant tumours, but not in normal tissue. Telomerase facilitates the division of tumour cells and its activity has been suggested as a prognostic indicator, but so far the regulation or

Apoptosis induced by hyperthermia in Dunn osteosarcoma cell line in vitro.

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The effect of hyperthermia at 43.5 degrees C for 1 h on Dunn osteosarcoma cells was studied. With sham-heated cells (37 degrees C, 1 h) as the control, the hyperthermia treated cells were divided into five groups. Time 0 group was the cells that were harvested immediately after heated at 43.5

Enhancement of osteosarcoma cell sensitivity to cisplatin using paclitaxel in the presence of hyperthermia.

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OBJECTIVE This paper aimed to evaluate the effects of a combination of paclitaxel and cisplatin on osteosarcoma (OS) cell lines in the presence of hyperthermia and to investigate the related mechanism. METHODS Two types of OS cell lines (OS732 and MG63) were treated with paclitaxel and cisplatin in

Reduction of tumor burden in a murine osteosarcoma following hyperthermia combined with cyclophosphamide.

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A radiation- and chemotherapy-resistant murine osteosarcoma was used to investigate the effect of local hyperthermia (42.5 +/-0.1 degrees, 30 min) alone and in combination with cyclophosphamide. The cytotoxicity of cyclophosphamide on murine osteosarcoma was established previously in our laboratory.
OBJECTIVE We observed that two osteosarcoma cell lines from the same tumor displayed marked differences in their sensitivities to photodynamic therapy (PDT) with aminolevulinic acid hexyl ester (hALA-PDT). We investigated why these two closely related lines had different hALA-PDT sensitivities and

In vitro evaluation of glass-glass ceramic thermoseed-induced hyperthermia on human osteosarcoma cell line.

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The use of biomaterials as implantable thermoseeds under the action of an external magnetic field is a very interesting methodology to focus the heat into the target tumors as osteosarcoma. In this study, biocompatible and bioactive G15GC85 thermoseeds, tailored through the combination of sol-gel

Effect of thermosensitive liposomal doxorubicin with hyperthermia on primary tumor and lung metastases in hamster osteosarcoma.

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We evaluated the effect of intravenous thermosensitive liposomal doxorubicin (TL-DOX) together with local hyperthermia on primary tumors in highly metastatic hamster osteosarcoma. This combination resulted in higher DOX concentrations in plasma, primary tumors and lungs than standard DOX under the

Hyperthermia using magnetite cationic liposomes for hamster osteosarcoma.

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BACKGROUND: We have developed magnetite cationic liposomes (MCLs) and applied them to local hyperthermia as a mediator. MCLs have a positive charge and generate heat under an alternating magnetic field (AMF) by hysteresis loss. In this study, the effect of hyperthermia using MCLs was examined in an

Effects of hyperthermia and differentiation on cultured Dunn osteosarcoma cells.

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We investigated the characteristics of morphology, DNA synthesis and argyrophilic nucleolar organizer regions (AgNORs) on murine Dunn osteosarcoma cells in response to heat (42 degrees C, 1 h) or dibutyryl cyclic adenosine 3',5'-monophosphate (Bt(2)cAMP). The cell morphology changes to a

Is Limb Salvage With Microwave-induced Hyperthermia Better Than Amputation for Osteosarcoma of the Distal Tibia?

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BACKGROUND Amputation has been the standard surgical treatment for distal tibia osteosarcoma owing to its unique anatomic features. Preliminary research suggested that microwave-induced hyperthermia may have a role in treating osteosarcoma in some locations of the body (such as the pelvis), but to

Synergistic interaction of 5-aminolevulinic acid-based photodynamic therapy with simultaneous hyperthermia in an osteosarcoma tumor model.

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In this study, the effectiveness and mechanism of combination therapy of 5-aminolevulinic acid-based photodynamic therapy (ALA-PDT) with simultaneous hyperthermia (HT) on human-derived osteosarcoma in vivo were examined. A tumor model was prepared by subcutaneously implanting human osteosarcoma into

Assessment of a novel nanoparticle hyperthermia therapy in a murine model of osteosarcoma.

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OBJECTIVE To evaluate the effects of nanoparticle hyperthermia therapy on monocyte function and tumor-derived factors associated with macrophage polarization in a murine osteosarcoma model. METHODS Experimental study. METHODS Female C3H mice. METHODS Peripheral blood monocyte cell surface phenotype,

Hyperthermia enhances the effect of β-lapachone to cause γH2AX formations and cell death in human osteosarcoma cells.

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OBJECTIVE The anti-cancer effect of β-lapachone (β-lap) is positively related to the cellular activity of NAD(P)H:quinone oxidoreductase (NQO1). Heat shock has been reported to elevate cellular NQO1. The effect of heating on the NQO1 expression in human osteosarcoma cells (HOS) and the response of

Metabolomic response of osteosarcoma cells to nanographene oxide-mediated hyperthermia.

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Nanographene oxide (nGO)-mediated hyperthermia has been increasingly investigated as a localized, minimally invasive anticancer therapeutic approach. Near InfraRed (NIR) light irradiation for inducing hyperthermia is particularly attractive, because biological systems mostly lack chromophores that
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