1. Introduction to cancer<br>2. Cancer therapy in the era of precision medicine<br>3. Precision medicine: Aspects in translational medicine<br>4. Biomaterials: Fundamentals, processing, and applications<br>5. Possible targets for biomaterials in cancer treatment<br>6. Biomaterials-based cancer diagnostics: Recent advances<br>7. Anti-cancer biomaterials: A special design for precision medicine<br>8. Natural plant-derived anti-cancer biomaterials<br>9. Combination cancer therapy by bio-macromolecules and small molecules<br>10. Biomaterials for cancer immunotherapy<br>11. Biomaterials for engineering tumor microenvironment<br>12. Biomaterials for cancer targeted drug delivery<br>13. Engineered smart biomaterials for anti-cancer gene delivery‏<br>14. Biofunctionalization of materials for targeting cancer cells<br>15. Reactive oxygen species (ROS)‐responsive materials in cancer therapy<br>16. Natural polymers for diagnosis and treatment of cancers<br>17. Synthetic polymers for malignancies treatment<br>18. Polymer-protein and polymer-drug conjugates in cancer therapy<br>19. Magnetic calcium phosphates for imaging and treating of cancers<br>20. Hydroxyapatite nanoparticles as anti-cancer agents<br>21. Bioactive magnetic glass-ceramics for cancer treatment<br>22. Mesoporous glasses in cancer therapy<br>23. Carbon biomaterials for cancer therapy: opportunities and challenges<br>24. Metals and metal compounds for cancer photothermal therapy<br>25. Smart nanoparticles for the treatment of drug-resistant tumors<br>26. Managing malignancies by magnetic electrospun nanofibers<br>27. Multiparametric preclinical assessment of theranostics materials<br>28. Health risk assessment of anti-cancer biomaterials<br>29. Future perspectives and challenges for biomaterials