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2. Metropolis. Urban Mindscapes

3. Hybrid Biosilica Nanoparticles for in-vivo Targeted Inhibition of Colorectal Cancer Growth and Label-Free Imaging.

4. A 3D Pancreatic Cancer Model with Integrated Optical Sensors for Noninvasive Metabolism Monitoring and Drug Screening.

5. Three-dimensional environment sensitizes pancreatic cancer cells to the anti-proliferative effect of budesonide by reprogramming energy metabolism.

6. SERS-based pH-Dependent detection of sulfites in wine by hydrogel nanocomposites.

8. Editorial: Stem cells in pancreatic cancer.

9. Quantifying heterogeneity to drug response in cancer-stroma kinetics.

11. LAMC2 marks a tumor-initiating cell population with an aggressive signature in pancreatic cancer.

12. SERS Quantification of Galunisertib Delivery in Colorectal Cancer Cells by Plasmonic-Assisted Diatomite Nanoparticles.

13. Nodal-induced L1CAM/CXCR4 subpopulation sustains tumor growth and metastasis in colorectal cancer derived organoids.

14. The Revolutionary Roads to Study Cell-Cell Interactions in 3D In Vitro Pancreatic Cancer Models.

15. A synergic approach to enhance long-term culture and manipulation of MiaPaCa-2 pancreatic cancer spheroids.

16. TGF-β1 secreted by pancreatic stellate cells promotes stemness and tumourigenicity in pancreatic cancer cells through L1CAM downregulation.

17. Determinants of metastatic competency in colorectal cancer.

18. ZFP57 maintains the parent-of-origin-specific expression of the imprinted genes and differentially affects non-imprinted targets in mouse embryonic stem cells.

19. The miR-17-92 cluster counteracts quiescence and chemoresistance in a distinct subpopulation of pancreatic cancer stem cells.

20. Studying Pancreatic Cancer Stem Cell Characteristics for Developing New Treatment Strategies.

21. Stromal gene expression defines poor-prognosis subtypes in colorectal cancer.

22. Intracellular autofluorescence: a biomarker for epithelial cancer stem cells.

23. Metformin targets the metabolic achilles heel of human pancreatic cancer stem cells.

24. Cripto regulates skeletal muscle regeneration and modulates satellite cell determination by antagonizing myostatin.

25. Pancreatic stellate cells form a niche for cancer stem cells and promote their self-renewal and invasiveness.

26. Nodal/Activin signaling drives self-renewal and tumorigenicity of pancreatic cancer stem cells and provides a target for combined drug therapy.

27. Pancreatic cancer stem cells: new insights and perspectives.

28. Pancreatic cancer stem cells - update and future perspectives.

29. A small synthetic cripto blocking Peptide improves neural induction, dopaminergic differentiation, and functional integration of mouse embryonic stem cells in a rat model of Parkinson's disease.

30. Lack of sik1 in mouse embryonic stem cells impairs cardiomyogenesis by down-regulating the cyclin-dependent kinase inhibitor p57kip2.

31. Cripto-1 is required for hypoxia to induce cardiac differentiation of mouse embryonic stem cells.

32. G protein-coupled receptor APJ and its ligand apelin act downstream of Cripto to specify embryonic stem cells toward the cardiac lineage through extracellular signal-regulated kinase/p70S6 kinase signaling pathway.

33. Effects of indole-3-acetic acid on Sinorhizobium meliloti survival and on symbiotic nitrogen fixation and stem dry weight production.

34. Qualitative and quantitative proteomic profiling of cripto(-/-) embryonic stem cells by means of accurate mass LC-MS analysis.

35. Introduction of a novel pathway for IAA biosynthesis to rhizobia alters vetch root nodule development.

36. Cripto promotes A-P axis specification independently of its stimulatory effect on Nodal autoinduction.

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