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The chicken chorioallantoic membrane as a low-cost, high-throughput model for cancer imaging

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Here, we assessed the chicken chorioallantoic membrane (CAM) as an alternative to mice for preclinical cancer imaging...

A microthrombus-driven fixed-point cleaved nanosystem for preventing post-thrombolysis recurrence

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A thrombin-responsive and fixed-point cleaved Fu@pep-CLipo was developed for highly efficient and precise thrombolysis...

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Discover Yokogawa CellVoyager CQ1: Benchtop High-Content Analysis System

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Visualization of Tumor-Related Blood Vessels in Small Animals by Photoacoustic 3D Imaging System

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In Vivo Label-Free Observation of Tumor-Related Blood Vessels in Small Animals Using a Newly Designed Photoacoustic 3D...

Therapeutic effects of mesenchymal stem cells in myocardial infarction

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Application of focal X-ray irradiation in canaries

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Effects of the depletion of neural progenitors by focal X-ray irradiation on song production and perception in canaries

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Cellular impedance measurement- response of OVCAR-3 cells to Cisplatin and hyperthermia

Oct 25, 2017

The purpose of this study was to investigate the cytotoxic effect of hyperthermia and cisplatin on OVCAR-3 cells in vitro. Imitating the typical clinical conditions of HIPEC, OVCAR-3 cells were exposed to hyperthermia and cisplatin for 1 h. MTT viability test, flow cytometric analysis, and real-time cell and isobologram analysis were performed. Hyperthermia up to 42˚C did not significantly increase the effect of cisplatin regarding the viability and apoptosis of OVCAR-3 cells. Moreover, an antagonistic effect of hyperthermia and cisplatin was revealed. Dr.Jasukaitiene investigation of OVCAR-3 cells, critically disputes the benefit of hyperthermia in ovarian cancer treatment. Further in vitro and in vivo research is essential for better understanding of the mechanisms of action of hyperthermia and its role in the treatment of epithelial ovarian cancer.

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Agilent technologies

Agilent provides xCELLigence impedance-based, label-free, real time cell analysis system and NovoCyte flow cytometers.

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The RTCA DP Analyzer has three integrated stations for E-Plates 16 or CIM-Plates 16

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Located inside a tissue culture incubator, it is capable of switching any one of the wells on the E-Plate 96 to the RTCA Analyzer for impedance measurement

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Located inside a tissue culture incubator, it is capable of switching any one of the wells on any of six E-Plates to the RTCA Analyzer for impedance measurement

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Instrument can be integrated with automated liquid handling platforms or a robotic plate handler from different vendors

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