Heat-induced damage to HeLa-S3 cells: correlation of viability, permeability, osmosensitivity, phase-contrast light-, scanning electron- and transmission electron-microscopical findings.
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[1] J W Gray,et al. Effects of hyperthermia on survival and progression of Chinese hamster ovary cells. , 1978, Cancer research.
[2] K. Henle,et al. Heat fractionation and thermotolerance: a review. , 1978, Cancer research.
[3] W. Dewey,et al. A direct correlation between hyperthermia‐induced membrane blebbing and survival in synchronous G1 CHO cells , 1986, Journal of cellular physiology.
[4] E. Reynolds. THE USE OF LEAD CITRATE AT HIGH pH AS AN ELECTRON-OPAQUE STAIN IN ELECTRON MICROSCOPY , 1963, The Journal of cell biology.
[5] R. Mulcahy,et al. Hyperthermia and surface morphology of P388 ascites tumour cells: effects of membrane modifications. , 1981, International journal of radiation biology and related studies in physics, chemistry, and medicine.
[6] P S Lin,et al. Temperature-induced variations in the surface topology of cultured lymphocytes are revealed by scanning electron microscopy. , 1973, Proceedings of the National Academy of Sciences of the United States of America.
[7] W. Dewey,et al. Effects of hyperthermia on dividing Chinese hamster ovary cells and on microtubules in vitro. , 1982, Cancer research.
[8] K. Henle,et al. Effects of Hyperthermia (45°) on Macromolecular Synthesis in Chinese Hamster Ovary Cells , 1979 .
[9] J. Cervera,et al. Effects of thermic shock on HEp-2 cells. III. Accumulation of perichromatin granules. , 1980, Journal of ultrastructure research.
[10] C. Song,et al. 5-Thio-D-glucose selectively potentiates hyperthermic killing of hypoxic tumor cells. , 1978, Science.
[11] G Rotilio,et al. The biochemical mechanism of selective heat sensitivity of cancer cells. I. Studies on cellular respiration. , 1969, European journal of cancer.
[12] M. Yatvin. The influence of membrane lipid composition and procaine on hyperthermic death of cells. , 1977, International journal of radiation biology and related studies in physics, chemistry, and medicine.
[13] R. van Wijk,et al. Morphological response and survival of hepatoma cells during fractionated hyperthermia: effect of glycerol. , 1984, Radiation research.
[14] P N RAO,et al. HeLa Cells: Effects of Temperature on the Life Cycle , 1965, Science.
[15] C. Heidelberger,et al. Studies on the quantitative biology of hyperthermic killing of HeLa cells. , 1973, Cancer research.
[16] W. Coakley,et al. Lethality in mammalian cells due to hyperthermia under oxic and hypoxic conditions. , 1978, International journal of radiation biology and related studies in physics, chemistry, and medicine.
[17] E. Robbins,et al. Differential temperature sensitivity of normal and cancer cells in culture , 1970, Journal of cellular physiology.
[18] C. Lechene. Cellular volume and cytoplasmic gel , 1985, Biology of the Cell.
[19] S. Kim,et al. Killing of glucose-deprived hypoxic cells with moderate hyperthermia. , 1978, Radiation research.
[20] W. Dewey,et al. Variation in sensitivity to heat shock during the cell-cycle of Chinese hamster cells in vitro. , 1971, International journal of radiation biology and related studies in physics, chemistry, and medicine.
[21] K. Devaney,et al. Thermal instability in the endoplasmic reticulum of the rat hepatocyte , 1982, Virchows Archiv. B, Cell pathology including molecular pathology.
[22] P. Yi,et al. Hyperthermia-induced intracellular ionic level changes in tumor cells. , 1983, Radiation research.
[23] J. Haveman,et al. The role of energy in hyperthermia‐induced mammalian cell inactivation: A study of the effects of glucose starvation and an uncoupler of oxidative phosphorylation , 1981, Journal of cellular physiology.
[24] W. Welch,et al. Morphological study of the mammalian stress response: characterization of changes in cytoplasmic organelles, cytoskeleton, and nucleoli, and appearance of intranuclear actin filaments in rat fibroblasts after heat-shock treatment , 1985, The Journal of cell biology.
[25] D. Wheatley. Investigation of the mechanism of protein turnover in HeLa S-3 cells by incubation at elevated temperatures. , 1985, Experimental cell research.
[26] I. Yahara,et al. Heat shock induction of intranuclear actin rods in cultured mammalian cells. , 1986, Experimental cell research.
[27] U. Heine,et al. The behavior of HeLa-S3 cells under the influence of supranormal temperatures. , 1971, Journal of ultrastructure research.
[28] J. Cervera. Effects of thermic shock on HEp-2 cells. An ultrastructural and high-resolution autoradiographic study. , 1978, Journal of ultrastructure research.
[29] R. Rueckert,et al. Molecular events in the reproduction of animal cells. I. The effect of puromycin on the duplication of DNA. , 1962, Cancer research.
[30] B K Bhuyan,et al. Kinetics of cell kill by hyperthermia. , 1979, Cancer research.
[31] R. van Wijk,et al. Thermotolerance in cultured hepatoma cells: cell viability, cell morphology, protein synthesis, and heat-shock proteins. , 1984, Radiation research.
[32] P. Yi. Cellular ion content changes during and after hyperthermia. , 1979, Biochemical and biophysical research communications.