Radiation-induced potentially lethal damage: DNA lesions susceptible to fixation

scientific article published on April 1988

Radiation-induced potentially lethal damage: DNA lesions susceptible to fixation is …
instance of (P31):
review articleQ7318358
scholarly articleQ13442814

External links are
P356DOI10.1080/09553008814550901
P698PubMed publication ID3280508

P2093author name stringIliakis G
P2860cites workEvidence for similarities between radiation damage expressed by beta-araA and damage involved in the interaction effect observed after exposure of V79 cells to mixed neutrons and gamma radiation.Q54159129
Evidence for DNA double-strand breaks as the critical lesions in yeast cells irradiated with sparsely or densely ionizing radiation under oxic or anoxic conditions.Q54396787
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Effects of adenosine deaminase inhibitor 2'-deoxycoformycin on the repair and expression of potentially lethal damage sensitive to beta-araA.Q54668161
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Radiation-resistant and repair-proficient human tumor cells may be associated with radiotherapy failure in head- and neck-cancer patientsQ35600799
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Suppressive factor of tumour origin against macrophage phagocytosis of Staphylococcus aureusQ36043708
The differential response of human tumours to fractionated radiation may be due to a post-irradiation repair processQ36047175
Chromosomal aberrations and mortality of x-irradiated mammalian cells: emphasis on repairQ37472089
Hypothesis. Elkind recovery and “sub-lethal damage”: a misleading association?Q39624182
Conditioned medium from plateau-phase cells. Effect on growth of proliferative cells and on repair of potentially lethal radiation damageQ39922364
Potentially lethal damage repair as a possible determinant of human tumour radiosensitivityQ40224022
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Relationship between DNA repair and cell recovery: importance of competing biochemical and metabolic processesQ41508075
Isolation of cell cycle-dependent gamma ray-sensitive Chinese hamster ovary cellQ42799457
The repair of double-strand breaks in the nuclear DNA of Saccharomyces cerevisiae and its genetic controlQ43572485
Enhancement of X-ray induced potentially lethal damage by low temperature storage of mammalian cellsQ44095536
The radiosensitivity of melanoma cells in cultureQ45129379
Effects of nutritional state on the expression of radiation injury in two tumor subpopulations obtained from a heterogeneous human colon carcinomaQ45164631
Dose-rate effects in mammalian cells: V. Dose fractionation effects in noncycling C3H 10T 1/2 cells.Q52431774
The radiobiology of human neuroblastoma.Q52831825
Caffeine Enhancement of X-Ray Killing in Cultured Human and Rodent CellsQ53712681
Independent forms of potentially lethal damage fixed in plateau-phase Chinese hamster cells by postirradiation treatment in hypertonic salt solution or araA.Q53776203
Loss of repair capacity in density-inhibited cultures of C3H 10T1/2 cells during multifraction irradiation.Q53796410
Chromosome aberrations and radiation-induced cell death. II. Predicted and observed cell survival.Q53966528
P433issue4
P304page(s)541-584
P577publication date1988-04-01
P1433published inInternational Journal of Radiation Biology and related Studies in Physics, Chemistry, and MedicineQ27711278
P1476titleRadiation-induced potentially lethal damage: DNA lesions susceptible to fixation
P478volume53

Reverse relations

cites work (P2860)
Q727769424-Hydroxytamoxifen, an active metabolite of tamoxifen, does not alter the radiation sensitivity of MCF-7 breast carcinoma cells irradiated in vitro
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Q68909093Comparison of six different models describing survival of mammalian cells after irradiation
Q37297225Comparison of the repair of potentially lethal damage after low- and high-LET radiation exposure, assessed from the kinetics and fidelity of chromosome rejoining in normal human fibroblasts
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