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1. Dose-Rate Effects of Protons and Light Ions for DNA Damage Induction, Survival and Transformation in Apparently Normal Primary Human Fibroblasts.

2. Evaluation of Histone Deacetylase Inhibitors as Radiosensitizers for Proton and Light Ion Radiotherapy.

3. Response of primary human fibroblasts exposed to solar particle event protons.

4. Melatonin protects human cells from clustered DNA damages, killing and acquisition of soft agar growth induced by X-rays or 970 MeV/n Fe ions.

5. Split-dose exposures versus dual ion exposure in human cell neoplastic transformation.

6. Proton-HZE-particle sequential dual-beam exposures increase anchorage-independent growth frequencies in primary human fibroblasts.

7. DNA damage quantitation by alkaline gel electrophoresis.

8. Induction of anchorage-independent growth in primary human cells exposed to protons or HZE ions separately or in dual exposures.

9. Endogenous DNA damage clusters in human skin, 3-D model, and cultured skin cells.

10. Processing of bistranded abasic DNA clusters in gamma-irradiated human hematopoietic cells.

11. Are endogenous clustered DNA damages induced in human cells?

12. Quantifying clustered DNA damage induction and repair by gel electrophoresis, electronic imaging and number average length analysis.

13. Low levels of endogenous oxidative damage cluster levels in unirradiated viral and human DNAs.

14. Evaluation of number average length analysis in quantifying double strand breaks in genomic DNAs.

15. Clustered DNA damages induced in human hematopoietic cells by low doses of ionizing radiation.

16. High efficiency detection of bi-stranded abasic clusters in gamma-irradiated DNA by putrescine.

17. Clustered DNA damages induced by x rays in human cells.

18. Quantifying DNA damage by gel electrophoresis, electronic imaging and number-average length analysis.

19. Frequencies and relative levels of clustered damages in DNA exposed to gamma rays in radioquenching vs. nonradioquenching conditions.

20. Clustered DNA damages as dosemeters for ionising radiation exposure and biological responses.

21. Clustered DNA damages induced by high and low LET radiation, including heavy ions.

22. Clustered damages and total lesions induced in DNA by ionizing radiation: oxidized bases and strand breaks.

23. Clustered DNA damages induced in isolated DNA and in human cells by low doses of ionizing radiation.

24. DNA damage quantitation by alkaline gel electrophoresis.

25. Isolation of high-molecular-length DNA from human skin.

26. Double strand breaks induced by low doses of gamma rays or heavy ions: quantitation in nonradioactive human DNA.

27. Human white blood cells contain cyclobutyl pyrimidine dimer photolyase.

28. Quantitative detection of single-copy genes in nanogram samples of human genomic DNA.

29. Quantitation of supercoiled DNA cleavage in nonradioactive DNA: application to ionizing radiation and synthetic endonuclease cleavage.

30. Transformation of human cells by DNA transfection.

31. Human cell transformation in the study of sunlight-induced cancers in the skin of man.

32. Transformation of human cells by DNAs ineffective in transformation of NIH 3T3 cells.

33. Human cell transfection with skin cancer DNAs.

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