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100 results on '"Proteome radiation effects"'

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1. Molecular mechanisms of neutron radiation dose effects on M 1 generation peas.

2. Comparison of Novel Proteomic Expression Profiles for Radiation Exposure in Male and Female C57BL6 Mice.

3. How does ionizing radiation affect amyloidogenesis in plants?

4. A single dose of Ultraviolet-A induces proteome remodeling and senescence in primary human keratinocytes.

5. UV induced changes in proteome of rats plasma are reversed by dermally applied cannabidiol.

6. Tissue Sampling and Homogenization in the Sub-Microliter Scale with a Nanosecond Infrared Laser (NIRL) for Mass Spectrometric Proteomics.

7. In vitro cellular and proteome assays identify Wnt pathway and CDKN2A-regulated senescence affected in mesenchymal stem cells from mice after a chronic LD gamma irradiation in utero.

8. Inactivation of Aspergillus species in real water matrices using medium pressure mercury lamps.

9. Protein interaction patterns in Arabidopsis thaliana leaf mitochondria change in dependence to light.

10. Proteome Damage Inflicted by Ionizing Radiation: Advancing a Theme in the Research of Miroslav Radman.

11. The Effect of Cannabidiol on UV-Induced Changes in Intracellular Signaling of 3D-Cultured Skin Keratinocytes.

12. Developmental acclimation of the thylakoid proteome to light intensity in Arabidopsis.

13. Light spectra affect the in vitro shoot development of Cedrela fissilis Vell. (Meliaceae) by changing the protein profile and polyamine contents.

14. Natural Exogenous Antioxidant Defense against Changes in Human Skin Fibroblast Proteome Disturbed by UVA Radiation.

15. Systemic modulation of stress and immune parameters in patients treated for prostate adenocarcinoma by intensity-modulated radiation therapy or stereotactic ablative body radiotherapy.

16. Spaceflight induces oxidative damage to blood-brain barrier integrity in a mouse model.

17. Chronic Occupational Exposure to Ionizing Radiation Induces Alterations in the Structure and Metabolism of the Heart: A Proteomic Analysis of Human Formalin-Fixed Paraffin-Embedded (FFPE) Cardiac Tissue.

18. Proteomics provides insights into the inhibition of Chinese hamster V79 cell proliferation in the deep underground environment.

19. Soybean recovery from stress imposed by multigenerational growth in contaminated Chernobyl environment.

20. Particle radiation-induced dysregulation of protein homeostasis in primary human and mouse neuronal cells.

21. Bioactive proteins in bovine colostrum and effects of heating, drying and irradiation.

22. Transcriptomic and proteomic approaches reveal biological basis of intraoperative radiotherapy-treated tumor bed modification in breast cancer patients: A pilot study.

23. Preoperative Radiotherapy Leads to Significant Differences in the Plasma Protein Profile of Rectal Cancer Patients.

24. Proteomic analysis of plasma proteins after low-level laser therapy in rats.

25. Phosphoproteomic analysis reveals plant DNA damage signalling pathways with a functional role for histone H2AX phosphorylation in plant growth under genotoxic stress.

26. A rapid and efficient method for N-termini analysis in short-lived proteins.

27. Differential modification of the C. elegans proteome in response to acute and chronic gamma radiation: Link with reproduction decline.

28. Plasma-derived extracellular vesicles yield predictive markers of cranial irradiation exposure in mice.

29. Different pro-angiogenic potential of γ-irradiated PBMC-derived secretome and its subfractions.

30. Characterization of damage on Listeria innocua surviving to pulsed light: Effect on growth, DNA and proteome.

31. Growth of Cyanobacteria Is Constrained by the Abundance of Light and Carbon Assimilation Proteins.

32. Use of Proteomic and Hematology Biomarkers for Prediction of Hematopoietic Acute Radiation Syndrome Severity in Baboon Radiation Models.

33. Proteins involved in the antioxidant and inflammatory response in rutin-treated human skin fibroblasts exposed to UVA or UVB irradiation.

34. Mobile phone specific electromagnetic fields induce transient DNA damage and nucleotide excision repair in serum-deprived human glioblastoma cells.

35. Effects of high-intensity static magnetic fields on a root-based bioreactor system for space applications.

36. Radiation-Induced Endothelial Inflammation Is Transferred via the Secretome to Recipient Cells in a STAT-Mediated Process.

37. Proteomics analysis reveals a dynamic diurnal pattern of photosynthesis-related pathways in maize leaves.

38. Systemic effects of ionizing radiation at the proteome and metabolome levels in the blood of cancer patients treated with radiotherapy: the influence of inflammation and radiation toxicity.

40. Time- and radiation-dose dependent changes in the plasma proteome after total body irradiation of non-human primates: Implications for biomarker selection.

41. Semi-quantitative proteomics of mammalian cells upon short-term exposure to non-ionizing electromagnetic fields.

42. Transcriptomic and proteomic analyses of leaves from Clematis terniflora DC. under high level of ultraviolet-B irradiation followed by dark treatment.

43. N-Chlorosuccinimide-Mediated Oxidative Chlorination of Thiols to Nα -Protected Amino Alkyl Sulfonyl Azides and Their Utility in the Synthesis of Sulfonyl Triazole Acids

44. Oxygen and differentiation status modulate the effect of X-ray irradiation on physiology and mitochondrial proteome of human neuroblastoma cells.

45. The effects of photodynamic treatment with new methylene blue N on the Candida albicans proteome.

46. Protein damage, radiation sensitivity and aging.

47. Multiomic Analysis of the UV-Induced DNA Damage Response.

48. Ion mobility-enhanced MS(E)-based label-free analysis reveals effects of low-dose radiation post contextual fear conditioning training on the mouse hippocampal proteome.

49. Differential Response and Priming Dose Effect on the Proteome of Human Fibroblast and Stem Cells Induced by Exposure to Low Doses of Ionizing Radiation.

50. Analysis of the Secretome of Apoptotic Peripheral Blood Mononuclear Cells: Impact of Released Proteins and Exosomes for Tissue Regeneration.

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