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47 results on '"Martus HJ"'

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1. Discovery of WRN inhibitor HRO761 with synthetic lethality in MSI cancers.

2. In vivo genotoxicity testing strategies: Report from the 8th International Workshop on Genotoxicity Testing (IWGT).

3. International Workshops on Genotoxicity Testing (IWGT): Origins, achievements and ambitions.

4. Identification of marker genes to monitor residual iPSCs in iPSC-derived products.

5. Genotoxicity evaluation of a valsartan-related complex N-nitroso-impurity.

6. A comparison of the lowest effective concentration in culture media for detection of chromosomal damage in vitro and in blood or plasma for detection of micronuclei in vivo.

8. Evaluation of two in vitro assays for tumorigenicity assessment of CRISPR-Cas9 genome-edited cells.

9. Comprehensive review of genotoxicity data for diclofenac.

11. Mode of action-based risk assessment of genotoxic carcinogens.

12. Summary of major conclusions from the 7th International Workshop on Genotoxicity Testing (IWGT), Tokyo, Japan.

13. In vivo genotoxicity testing strategies: Report from the 7th International workshop on genotoxicity testing (IWGT).

14. Gamma-H2AX immunofluorescence for the detection of tissue-specific genotoxicity in vivo.

15. X-ray Structures and Feasibility Assessment of CLK2 Inhibitors for Phelan-McDermid Syndrome.

16. Derisking Drug-Induced Carcinogenicity for Novel Therapeutics.

17. Setting Occupational Exposure Limits for Genotoxic Substances in the Pharmaceutical Industry.

18. Updated recommended lists of genotoxic and non-genotoxic chemicals for assessment of the performance of new or improved genotoxicity tests.

19. Evaluation of methyl methanesulfonate, 2,6-diaminotoluene and 5-fluorouracil: Part of the Japanese center for the validation of alternative methods (JaCVAM) international validation study of the in vivo rat alkaline comet assay.

21. Assessment of mechanisms driving non-linear dose-response relationships in genotoxicity testing.

22. Automatic analysis of the micronucleus test in primary human lymphocytes using image analysis.

23. Compilation and use of genetic toxicity historical control data.

24. Improvement of in vivo genotoxicity assessment: combination of acute tests and integration into standard toxicity testing.

25. High-content micronucleus assay in genotoxicity profiling: initial-stage development and some applications in the investigative/lead-finding studies in drug discovery.

26. Repair of sparfloxacin-induced photochemical DNA damage in vivo.

28. Interlaboratory evaluation of genomic signatures for predicting carcinogenicity in the rat.

29. Strategy for genotoxicity testing--metabolic considerations.

30. Methylphenidate is not clastogenic in cultured human lymphocytes and in the mouse bone-marrow micronucleus test.

31. Structure-activity considerations and in vitro approaches to assess the genotoxicity of 19 methane-, benzene- and toluenesulfonic acid esters.

32. Induction of gene mutations by 5-(2-chloroethyl)-2'-deoxyuridine (CEDU), an antiviral pyrimidine nucleoside analogue.

33. Induction of A:T to G:C transition mutations by 5-(2-chloroethyl)-2'-deoxyuridine (CEDU), an antiviral pyrimidine nucleoside analogue, in the bone marrow of Muta Mouse.

34. In vivo transgenic mutation assays.

35. Treatment and sampling protocols for transgenic mutation assays.

36. Genotoxicity assessment of the antiepileptic drug AMP397, an Ames-positive aromatic nitro compound.

37. In vivo transgenic mutation assays.

38. Characterization of color mutants in lacZ plasmid-based transgenic mice, as detected by positive selection.

39. Quantitative correlation between radiation-induced mutagenesis in endogenous genes and transgenes of mouse spermatogonial stem cells.

40. Transgenic mouse models for studying mutations in vivo: applications in aging research.

41. Rapid accumulation of genome rearrangements in liver but not in brain of old mice.

42. Transgenic mouse models for studying mutations in vivo: applications in aging research.

43. Evaluation of a plasmid-based transgenic mouse model for detecting in vivo mutations.

44. Plasmid-based transgenic mouse model for studying in vivo mutations.

45. Use of transgenic mouse models for studying somatic mutations in aging.

46. Spontaneous and X-ray-induced deletion mutations in a LacZ plasmid-based transgenic mouse model.

47. Malignantly transformed non-parenchymal liver epithelial cells and transformed oval cells suppress the homotypical gap junctional intercellular communication of co-cultured rat liver parenchymal cells.

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