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The purpose of this work was to determine how fractionated radiation used in the treatment of tumors affects the ability of cancer as well as normal cells to repair induced DNA double-strand breaks (DSBs) and how cells that have lost this ability die. Lymphocytic leukemia cells (MOLT4) were used as an experimental model, and the results were compared to those for normal cell types. The results show that cancer and normal cells were mostly unable to repair all DSBs before the next radiation dose induced new DNA damage. Accumulation of DSBs was observed in normal human fibroblasts and healthy lymphocytes irradiated in vitro after the second radiation dose. The lymphocytic leukemia cells irradiated with 4 × 1 Gy and a single dose of 4 Gy had very similar survival; however, there was a big difference between human fibroblasts irradiated with 4 × 1.5 Gy and a single dose of 6 Gy. These results suggest that exponentially growing lymphocytic leukemia cells, similar to rapidly proliferating tumors, are not very sensitive to fraction size, in contrast to the more slowly growing fibroblasts and most late-responding (radiation therapy dose-limiting) normal tissues, which have a low proliferation index.  相似文献   
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Plants of the Amaryllidaceae family, have a wide distribution through both tropical and sub-tropical regions of the world. They have also a long and notable place in the history of traditional and Western medicine. Amaryllidaceae alkaloids are a structurally diverse group of plant metabolites with a wide range of biological properties including antimalarial, antitumor, antimicrobial, antiviral, enzyme inhibitory, antioxidant, anticonvulsant and antifungal activities. Among them, the haemanthamine-type alkaloids, which have the 5,10b-ethanophenanthridine skeleton as the core structure, represented by haemanthamine and haemanthidine, have received considerable attention, since they have been reported to possess antitumor properties. The present review aims to summarize comprehensively the research that has been published on the Amaryllidaceae alkaloids haemanthamine and haemanthidine.

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Cellular response to ionizing radiation-induced damage depends on the cell type and the ability to repair DNA damage. Some types of cells undergo apoptosis, whereas others induce a permanent cell cycle arrest and do not proliferate. Our study demonstrates two types of response of embryonic diploid fibroblasts WI-38 to ionizing radiation. In the WI-38 cells p53 is activated, protein p21 increases, but the cells are arrested in G2 phase of cell cycle. Some of the cells die by apoptosis, but in remaining viable cells p16 increases, senescence associated DNA-damage foci occur, and senescence-associated beta-galactosidase activity increases, which indicate stress-induced premature senescence.  相似文献   
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