Cancer Stem Cells and Signaling Pathways
Editat de Surajit Pathak, Antara Banerjeeen Limba Engleză Paperback – 31 oct 2023
- Presents cancer stem characteristics and their signaling pathways
- Highlights the use of animal models for cancer research, the use of genetically modified stem cells to deliver antitumor agents, and the significance of stem cell signaling in drug discovery
- Covers basic and translational research appropriate for scientists and clinicians exploring alternative treatments for various cancers
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Specificații
ISBN-13: 9780443132124
ISBN-10: 0443132127
Pagini: 698
Dimensiuni: 191 x 235 mm
Greutate: 1.18 kg
Editura: ELSEVIER SCIENCE
ISBN-10: 0443132127
Pagini: 698
Dimensiuni: 191 x 235 mm
Greutate: 1.18 kg
Editura: ELSEVIER SCIENCE
Public țintă
Scientists and researchers involved in studying the properties of stem cells, cancer stem cells (CSCs), and signaling pathways associated with CSCs, targeted cancer therapy, and other diseases from multi-disciplinary perspectives. Also, post-graduate students, studying basic science, life science or biomedical sciences.Pharmaceutical companies involved with CSCs in drug discovery.Cuprins
1. Origin of cancer stem cells (CSCs) and the signalling pathways associated with stem cells and cancer stem cells
2. The importance of niche in therapeutic strategies targeting normal and cancer stem cells
3. Cancer stem cell research: A phosphoproteomic approach
4. Role of Mechanotransduction in stem cells and cancer progression
5. Cancer stem cell signaling in neuroblastoma progression- In touch with reality
6. Role of cancer stem cells in developing chemoresistance of solid tumor
7. The cell surface markers and signaling pathways of cancer stem cells: Target for potent Therapeutics
8. Lung cancer stem cells markers and its potential therapeutic molecular targets
9. Role of cancer stem cells in maintenance of tumor heterogeneity in brain tumors
10. Colorectal cancer stem cells: Overview and potential targeted therapy
11. Pancreatic cancer stem cells and inflammation: Milestones achieved and challenges ahead
12. Epigenetic modification: Key regulator of reprogramming in cancer stem cells
13. Regulation of cancer stemness, cell signaling, reactive oxygen species, and microRNAs in cancer stem cells
14. The stem cell niche: Key role on cell therapy in regenerative medicine
15. Controlled and targeted proliferation of stem cells for therapeutic application
16. MicroRNAs as theranostics: Combating breast cancer stem cells
17. Chemical approaches to stem cell and signaling pathways for therapeutics
18. Responsive biomimetic nanocarriers and its role in stem cell-based targeting therapeutics
19. Stem cell signalling in nephroblastoma with reference to Wilms tumor
20. Brain cancer stem cells: Overview and potential targeted therapy
21. Pancreatic cancer and stem cell
22. Epigenetic modulation of cancer stem cells in vitro 3D models
23. Epigenetic signalling: Regulation of cancer stem cells in colorectal cancer
24. Cancer stem cells, signalling pathways and chemopreventive effects of phytochemicals in androgen-regulated cancers
25. Biomarkers and signalling pathways of esophageal cancer stem cells: promising targets to limit the metastatic potential and stemness.
26. miRNA signalling networks of therapeutic interest involved in angiogenesis regulation by cancer stem cells
27. An altered metabolic landscape drives quiescence to the reawakening of cancer stem cells.
28. Canonical WNT signaling pathway in cancer stem cells and potential inhibitors of therapeutic importance
29. A mechanistic view of the role of thyroid cancer stem cells in microenvironment
30. Cancer stem cells and maintenance of tumor heterogeneity/microenvironment
31. An overview of the role of proto-oncogenes in tissue-specific stem cells
32. Components of cancer stem cells microenvironment: Influence on the tumorigenic property and stemness in cancer stem cells.
33. An overview of hepatocellular carcinoma stem cells and potential targeted therapies
34. Cancer stems cell-derived exosomes: What is known to date
35. Signaling mechanisms of chemoresistance in breast cancer stem cells for therapeutics
2. The importance of niche in therapeutic strategies targeting normal and cancer stem cells
3. Cancer stem cell research: A phosphoproteomic approach
4. Role of Mechanotransduction in stem cells and cancer progression
5. Cancer stem cell signaling in neuroblastoma progression- In touch with reality
6. Role of cancer stem cells in developing chemoresistance of solid tumor
7. The cell surface markers and signaling pathways of cancer stem cells: Target for potent Therapeutics
8. Lung cancer stem cells markers and its potential therapeutic molecular targets
9. Role of cancer stem cells in maintenance of tumor heterogeneity in brain tumors
10. Colorectal cancer stem cells: Overview and potential targeted therapy
11. Pancreatic cancer stem cells and inflammation: Milestones achieved and challenges ahead
12. Epigenetic modification: Key regulator of reprogramming in cancer stem cells
13. Regulation of cancer stemness, cell signaling, reactive oxygen species, and microRNAs in cancer stem cells
14. The stem cell niche: Key role on cell therapy in regenerative medicine
15. Controlled and targeted proliferation of stem cells for therapeutic application
16. MicroRNAs as theranostics: Combating breast cancer stem cells
17. Chemical approaches to stem cell and signaling pathways for therapeutics
18. Responsive biomimetic nanocarriers and its role in stem cell-based targeting therapeutics
19. Stem cell signalling in nephroblastoma with reference to Wilms tumor
20. Brain cancer stem cells: Overview and potential targeted therapy
21. Pancreatic cancer and stem cell
22. Epigenetic modulation of cancer stem cells in vitro 3D models
23. Epigenetic signalling: Regulation of cancer stem cells in colorectal cancer
24. Cancer stem cells, signalling pathways and chemopreventive effects of phytochemicals in androgen-regulated cancers
25. Biomarkers and signalling pathways of esophageal cancer stem cells: promising targets to limit the metastatic potential and stemness.
26. miRNA signalling networks of therapeutic interest involved in angiogenesis regulation by cancer stem cells
27. An altered metabolic landscape drives quiescence to the reawakening of cancer stem cells.
28. Canonical WNT signaling pathway in cancer stem cells and potential inhibitors of therapeutic importance
29. A mechanistic view of the role of thyroid cancer stem cells in microenvironment
30. Cancer stem cells and maintenance of tumor heterogeneity/microenvironment
31. An overview of the role of proto-oncogenes in tissue-specific stem cells
32. Components of cancer stem cells microenvironment: Influence on the tumorigenic property and stemness in cancer stem cells.
33. An overview of hepatocellular carcinoma stem cells and potential targeted therapies
34. Cancer stems cell-derived exosomes: What is known to date
35. Signaling mechanisms of chemoresistance in breast cancer stem cells for therapeutics