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2. Gene expression profiling of mucinous ovarian tumors and comparison with upper and lower gastrointestinal tumors identifies markers associated with adverse outcomes.

3. A first-in-class pan-lysyl oxidase inhibitor impairs stromal remodeling and enhances gemcitabine response and survival in pancreatic cancer

4. Temporal profiling of the breast tumour microenvironment reveals collagen XII as a driver of metastasis

5. Multiphoton intravital microscopy of rodents

8. Tumor Biomechanics Alters Metastatic Dissemination of Triple Negative Breast Cancer via Rewiring Fatty Acid Metabolism

11. Compression-dependent microtubule reinforcement enables cells to navigate confined environments

15. Oral administration of bovine milk-derived extracellular vesicles induces senescence in the primary tumor but accelerates cancer metastasis

18. Ex vivo culture of intact human patient derived pancreatic tumour tissue

20. ROCK-mediated selective activation of PERK signalling causes fibroblast reprogramming and tumour progression through a CRELD2-dependent mechanism

22. Fibroblast growth factor-induced lens fiber cell elongation is driven by the stepwise activity of Rho and Rac.

23. BCRP drives intrinsic chemoresistance in chemotherapy-naïve breast cancer brain metastasis

24. Therapeutic blockade of ER stress and inflammation prevents NASH and progression to HCC

25. Evidence that TLR4 Is Not a Receptor for Saturated Fatty Acids but Mediates Lipid-Induced Inflammation by Reprogramming Macrophage Metabolism

28. A study examining the role of Rho family GTPases in the intracellular targeting of Src kinase during cell polarisation and migration

29. MASTL overexpression promotes chromosome instability and metastasis in breast cancer

30. Monitoring AKT activity and targeting in live tissue and disease contexts using a real-time Akt-FRET biosensor mouse

31. Data from Cancer-Associated Fibroblasts in Pancreatic Ductal Adenocarcinoma Determine Response to SLC7A11 Inhibition

32. Data from Rho Kinase Inhibition by AT13148 Blocks Pancreatic Ductal Adenocarcinoma Invasion and Tumor Growth

33. Supplemental Figures S1 to S5 from Rho Kinase Inhibition by AT13148 Blocks Pancreatic Ductal Adenocarcinoma Invasion and Tumor Growth

34. Figure S2 from Cancer-Associated Fibroblasts in Pancreatic Ductal Adenocarcinoma Determine Response to SLC7A11 Inhibition

35. Supplementary Table 2 from Cancer-Associated Fibroblasts in Pancreatic Ductal Adenocarcinoma Determine Response to SLC7A11 Inhibition

36. Supplementary Table 4 from Cancer-Associated Fibroblasts in Pancreatic Ductal Adenocarcinoma Determine Response to SLC7A11 Inhibition

37. Data from Intravital FLIM-FRET Imaging Reveals Dasatinib-Induced Spatial Control of Src in Pancreatic Cancer

38. Supplementary Movie 5 from Intravital FLIM-FRET Imaging Reveals Dasatinib-Induced Spatial Control of Src in Pancreatic Cancer

39. Supplementary Movie 4 from Intravital FLIM-FRET Imaging Reveals Dasatinib-Induced Spatial Control of Src in Pancreatic Cancer

41. Supplementary Figure S2 from Intravital FLIM-FRET Imaging Reveals Dasatinib-Induced Spatial Control of Src in Pancreatic Cancer

43. Supplementary Movie 4 from Spatial Regulation of RhoA Activity during Pancreatic Cancer Cell Invasion Driven by Mutant p53

44. Data from Spatial Regulation of RhoA Activity during Pancreatic Cancer Cell Invasion Driven by Mutant p53

45. Supplementary Figure 10 from Spatial Regulation of RhoA Activity during Pancreatic Cancer Cell Invasion Driven by Mutant p53

47. Supplementary Figure 6 from Spatial Regulation of RhoA Activity during Pancreatic Cancer Cell Invasion Driven by Mutant p53

48. Supplementary Movie 2 from Intravital FLIM-FRET Imaging Reveals Dasatinib-Induced Spatial Control of Src in Pancreatic Cancer

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