REFERENCES

1. Gawne PJ, Ferreira M, Papaluca M, Grimm J, Decuzzi P. New opportunities and old challenges in the clinical translation of nanotheranostics. Nat Rev Mater. 2023;8:783-98.

2. Bhatia SN, Chen X, Dobrovolskaia MA, Lammers T. Cancer nanomedicine. Nat Rev Cancer. 2022;22:550-6.

3. Li F, Tang Z, Zheng Y, et al. Responsive nanomedicine strategies achieve pancreatic cancer precise theranostics. Bioact Mater. 2026;55:334-75.

4. Liu ZS, Wen J, Huang CY, et al. Nanomedicines based on responsive nanocarriers for cancer therapy. Adv Therap. 2024;7:2300223.

5. Lemanowicz J, Kloska SM, Siwik-Ziomek A, Kołaczyk P, Lipińska UW, Kloska A. Biochemical mechanisms of cellular stress adaptation in the pathogenesis of chronic diseases. Molecules. 2026;31:1381.

6. Chen W, Zhao H, Li Y. Mitochondrial dynamics in health and disease: mechanisms and potential targets. Sig Transduct Target Ther. 2023;8:333.

7. Deng Z, Niu L, Wang Z, et al. Programmable living therapeutics for cancer immunotherapy. Cell Chem Biol. 2026;33:597-622.

8. Harimoto T, Hahn J, Chen Y, et al. A programmable encapsulation system improves delivery of therapeutic bacteria in mice. Nat Biotechnol. 2022;40:1259-69.

9. Liu S, Liu Z, Lei H, Miao YB, Chen J. Programmable nanomodulators for precision therapy, engineering tumor metabolism to enhance therapeutic efficacy. Adv Healthcare Mater. 2025;14:2403019.

10. Pacardo DB, Ligler FS, Gu Z. Programmable nanomedicine: synergistic and sequential drug delivery systems. Nanoscale. 2015;7:3381-91.

11. Wang H, Liu R, Wang S, Guan Y, Zhang Y. A highly programmable platform for sequential release of protein therapeutics. J Mater Chem B. 2021;9:1616-24.

12. Gong X, Li R, Wang J, et al. A smart theranostic nanocapsule for spatiotemporally programmable photo-gene therapy. Angew Chem Int Ed. 2020;59:21648-55.

13. Meng M, Wu J, Feng Y, et al. A comprehensive strategy based on high clinical translational nanosystem for programmable immunotherapy of triple negative breast cancer. Adv Mater. 2024;36:2314309.

14. Chagri S, Ng DYW, Weil T. Designing bioresponsive nanomaterials for intracellular self-assembly. Nat Rev Chem. 2022;6:320-38.

15. Ren Y, Zhou Z, Harley I, et al. Intracellular assembly of supramolecular peptide nanostructures controlled by visible light. Nat Synth. 2025;4:673-83.

16. Liu Z, Guo J, Qiao Y, Xu B. Enzyme-instructed intracellular peptide assemblies. Acc Chem Res. 2023;56:3076-88.

17. Kim S, Choi H, Jin S, et al. Self-assembly inside cellular organelles: aspects of functions and various strategies for cancer therapy. Giant. 2023;16:100189.

18. Sun X, Dong Y, Liu Y, Song N, Li F, Yang D. Self-assembly of artificial architectures in living cells - design and applications. Sci China Chem. 2022;65:31-47.

19. Zhang J, Hu Y, Wen X, et al. Tandem-controlled lysosomal assembly of nanofibres induces pyroptosis for cancer immunotherapy. Nat Nanotechnol. 2025;20:563-74.

20. Taresco V, Alexander C, Singh N, Pearce AK. Stimuli-responsive prodrug chemistries for drug delivery. Adv Therap. 2018;1:1800030.

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