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1. An interactive murine single-cell atlas of the lung responses to radiation injury

2. Lung Organotypic Slices Enable Rapid Quantification of Acute Radiotherapy Induced Toxicity

3. Evolution of tumor cells during AsiDNA treatment results in energy exhaustion, decrease in responsiveness to signal, and higher sensitivity to the drug

4. Characterization of Ultra-High-Dose Rate Electron Beams with ElectronFlash Linac

5. AsiDNA Treatment Induces Cumulative Antitumor Efficacy with a Low Probability of Acquired Resistance

6. Inhibition of DNA Repair by Inappropriate Activation of ATM, PARP, and DNA-PK with the Drug Agonist AsiDNA

7. Fitter Mitochondria Are Associated With Radioresistance in Human Head and Neck SQD9 Cancer Cells

8. Predictive biomarkers of resistance to hypofractionated radiotherapy in high grade glioma

9. Preclinical Studies Comparing Efficacy and Toxicity of DNA Repair Inhibitors, Olaparib, and AsiDNA, in the Treatment of Carboplatin-Resistant Tumors

10. Altering DNA Repair to Improve Radiation Therapy: Specific and Multiple Pathway Targeting

11. Combining the DNA Repair Inhibitor Dbait With Radiotherapy for the Treatment of High Grade Glioma: Efficacy and Protein Biomarkers of Resistance in Preclinical Models

12. Global Conservation of Protein Status between Cell Lines and Xenografts

13. Chronic oxidative stress promotes H2AX protein degradation and enhances chemosensitivity in breast cancer patients

14. A Preclinical Study Combining the DNA Repair Inhibitor Dbait with Radiotherapy for the Treatment of Melanoma

15. DNA-PK target identification reveals novel links between DNA repair signaling and cytoskeletal regulation.

16. Pharmacokinetics and Toxicity in Rats and Monkeys of coDbait: A Therapeutic Double-stranded DNA Oligonucleotide Conjugated to Cholesterol

17. Distribution and radiosensitizing effect of cholesterol-coupled Dbait molecule in rat model of glioblastoma.

18. Optimizing the design of oligonucleotides for homology directed gene targeting.

19. Hyperactivation of DNA-PK by double-strand break mimicking molecules disorganizes DNA damage response.

20. Sup Figure S8 from The DNA Repair Inhibitor Dbait Is Specific for Malignant Hematologic Cells in Blood

21. Data from The DNA Repair Inhibitor Dbait Is Specific for Malignant Hematologic Cells in Blood

22. Supplementary Tables S1-S2 and Supplementary Figures S1-S5 from The DNA Repair Inhibitor DT01 as a Novel Therapeutic Strategy for Chemosensitization of Colorectal Liver Metastasis

23. Supplementary Data from FLASH Irradiation Spares Lung Progenitor Cells and Limits the Incidence of Radio-induced Senescence

25. Supplementary figure S3 from Drug-Driven Synthetic Lethality: Bypassing Tumor Cell Genetics with a Combination of AsiDNA and PARP Inhibitors

27. Figure S3 from Micronuclei Frequency in Tumors Is a Predictive Biomarker for Genetic Instability and Sensitivity to the DNA Repair Inhibitor AsiDNA

28. Data from AsiDNA Is a Radiosensitizer with no Added Toxicity in Medulloblastoma Pediatric Models

31. Supplementary table 2 from Drug-Driven Synthetic Lethality: Bypassing Tumor Cell Genetics with a Combination of AsiDNA and PARP Inhibitors

32. Data from FLASH Irradiation Spares Lung Progenitor Cells and Limits the Incidence of Radio-induced Senescence

33. Supplementary table 3 from Drug-Driven Synthetic Lethality: Bypassing Tumor Cell Genetics with a Combination of AsiDNA and PARP Inhibitors

35. Data from Drug-Driven Synthetic Lethality: Bypassing Tumor Cell Genetics with a Combination of AsiDNA and PARP Inhibitors

36. Supplementary table 1 from Drug-Driven Synthetic Lethality: Bypassing Tumor Cell Genetics with a Combination of AsiDNA and PARP Inhibitors

39. Supplementary Data from Small-Molecule Drugs Mimicking DNA Damage: A New Strategy for Sensitizing Tumors to Radiotherapy

40. Data from Micronuclei Frequency in Tumors Is a Predictive Biomarker for Genetic Instability and Sensitivity to the DNA Repair Inhibitor AsiDNA

41. Supplementary Figure 1 from Spi-1/PU.1 Oncogene Accelerates DNA Replication Fork Elongation and Promotes Genetic Instability in the Absence of DNA Breakage

42. Supplementary Figure 4 from Spi-1/PU.1 Oncogene Accelerates DNA Replication Fork Elongation and Promotes Genetic Instability in the Absence of DNA Breakage

43. Supplementary Figure 2 from Spi-1/PU.1 Oncogene Accelerates DNA Replication Fork Elongation and Promotes Genetic Instability in the Absence of DNA Breakage

44. Data from Spi-1/PU.1 Oncogene Accelerates DNA Replication Fork Elongation and Promotes Genetic Instability in the Absence of DNA Breakage

45. Supplementary Methods, Figure Legends 1-4 from Spi-1/PU.1 Oncogene Accelerates DNA Replication Fork Elongation and Promotes Genetic Instability in the Absence of DNA Breakage

46. Supplementary Figure 3 from Spi-1/PU.1 Oncogene Accelerates DNA Replication Fork Elongation and Promotes Genetic Instability in the Absence of DNA Breakage

48. Innovation en radiothérapie en 2021

50. FLASH Radiotherapy & Particle Therapy conference, FRPT2021

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