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1. Development of a Personalised Device for Systemic Magnetic Drug Targeting to Brain Tumours

5. SENP3-FIS1 axis promotes mitophagy and cell survival under hypoxia.

6. Inhibition of ATR opposes glioblastoma invasion through disruption of cytoskeletal networks and integrin internalization via macropinocytosis.

7. Ex-vivo drug screening of surgically resected glioma stem cells to replace murine avatars and provide personalise cancer therapy for glioblastoma patients.

8. Development and Optimisation of Tumour Treating Fields (TTFields) Delivery within 3D Primary Glioma Stem Cell-like Models of Spatial Heterogeneity.

9. DNA damage response inhibitors enhance tumour treating fields (TTFields) potency in glioma stem-like cells.

10. Development of a Personalised Device for Systemic Magnetic Drug Targeting to Brain Tumours.

11. Precision oncology using ex vivo technology: a step towards individualised cancer care?

12. DDRugging glioblastoma: understanding and targeting the DNA damage response to improve future therapies.

14. Identification and Validation of ERK5 as a DNA Damage Modulating Drug Target in Glioblastoma.

15. Tumour treating fields therapy for glioblastoma: current advances and future directions.

16. MRNIP is a replication fork protection factor.

17. EML4-ALK V3 oncogenic fusion proteins promote microtubule stabilization and accelerated migration through NEK9 and NEK7.

18. The 'Ins and Outs' of Early Preclinical Models for Brain Tumor Research: Are They Valuable and Have We Been Doing It Wrong?

19. The relationship of CDK18 expression in breast cancer to clinicopathological parameters and therapeutic response.

20. The bornavirus-derived human protein EBLN1 promotes efficient cell cycle transit, microtubule organisation and genome stability.

21. Human CDK18 promotes replication stress signaling and genome stability.

22. MRNIP/C5orf45 Interacts with the MRN Complex and Contributes to the DNA Damage Response.

23. Ciliogenesis and the DNA damage response: a stressful relationship.

24. FANCD2 re-expression is associated with glioma grade and chemical inhibition of the Fanconi Anaemia pathway sensitises gliomas to chemotherapeutic agents.

25. Ccdc13 is a novel human centriolar satellite protein required for ciliogenesis and genome stability.

26. The leukemia-associated Rho guanine nucleotide exchange factor LARG is required for efficient replication stress signaling.

27. The centriolar satellite protein Cep131 is important for genome stability.

28. CK2 phospho-dependent binding of R2TP complex to TEL2 is essential for mTOR and SMG1 stability.

29. Preventing nonhomologous end joining suppresses DNA repair defects of Fanconi anemia.

30. Downregulation of homologous recombination DNA repair genes by HDAC inhibition in prostate cancer is mediated through the E2F1 transcription factor.

31. FANCM: fork pause, rewind and play.

32. FANCM-FAAP24 and HCLK2: roles in ATR signalling and the Fanconi anemia pathway.

33. FANCM and FAAP24 function in ATR-mediated checkpoint signaling independently of the Fanconi anemia core complex.

34. RTEL1 maintains genomic stability by suppressing homologous recombination.

35. Low-dose hyper-radiosensitivity: past, present, and future.

36. DOG-1 is the Caenorhabditis elegans BRIP1/FANCJ homologue and functions in interstrand cross-link repair.

37. Transition in survival from low-dose hyper-radiosensitivity to increased radioresistance is independent of activation of ATM Ser1981 activity.

38. Emerging links between the biological clock and the DNA damage response.

39. HCLK2 is essential for the mammalian S-phase checkpoint and impacts on Chk1 stability.

40. C. elegans FANCD2 responds to replication stress and functions in interstrand cross-link repair.

41. Class II histone deacetylases are associated with VHL-independent regulation of hypoxia-inducible factor 1 alpha.

42. A systems comparison of once- versus twice-daily milking of pastured dairy cows.

43. The life and death of DNA-PK.

44. Evasion of early cellular response mechanisms following low level radiation-induced DNA damage.

45. Enhanced radiation response through directed molecular targeting approaches.

46. Hematopoietic progenitor stem cell homing in mice lethally irradiated with ionizing radiation at differing dose rates.

47. Low-dose hyper-radiosensitivity: a consequence of ineffective cell cycle arrest of radiation-damaged G2-phase cells.

49. Enhanced radiation and chemotherapy-mediated cell killing of human cancer cells by small inhibitory RNA silencing of DNA repair factors.

50. Expression of the DNA-PK binding protein E4-34K fails to confer radiation sensitivity to mammalian cells.

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