24. Pavlides S., Whitaker-Menezes D., Castello-Cros R., Flomenberg N., Witkiewicz A. K., Frank P. G., Casimiro M. C., Wang C., Fortina P., Addya S., Pestell R. G., Martinez-Outschoorn U. E., Sotgia F., Lisanti M. P. (2009). The reverse Warburg effect: aerobic glycolysis in cancer associated fibroblasts and the tumor stroma. Cell Cycle, 8 (23): 3984–4001.
25. Martinez-Outschoorn U. E., Balliet R. M., Rivadeneira D. B., Chiavarina B., Pavlides S., Wang C., Whitaker-Menezes D., Daumer K. M., Lin Z., Witkiewicz A. K., Flomenberg N., Howell A., Pestell R. G., Knudsen E. S., Sotgia F., Lisanti M. P. (2010). Oxidative stress in cancer associated fibroblasts drives tumor-stroma co-evolution: A new paradigm for understanding tumor metabolism, the field effect and genomic instability in cancer cells. Cell cycle (Georgetown, Tex.), 9 (16): 3256–3276.
26. Pokorný J., Pokorny J., Kobilková J., Jandová A., Holaj, R. (2020). Cancer Development and Damped Electromagnetic Activity. Applied Sciences, 10, 1826.
27. Fang Z., Xu J., Zhang B., Wang W., Liu J., Liang C., Hua J., Meng Q., Yu X., Shi S. (2020). The promising role of noncoding RNAs in cancer-associated fibroblasts: an overview of current status and future perspectives. J Hematol Oncol 13, 154.
28. Zhao H., Yang L., Baddour J., Achreja A., Bernard V., Moss T., Marini J. C., Tudawe T., Seviour E. G., San Lucas F. A., Alvarez H., Gupta S., Maiti S. N., Cooper L., Peehl D., Ram P. T., Maitra A., Nagrath D. (2016). Tumormicroenvironment derived exosomes pleiotropically modulate cancercell metabolism. Elife, 5: e10250.
29. Zhang H., Deng T., Liu R., Ning T., Yang H., Liu D., Zhang Q., Lin D., Ge S., Bai M., Wang X., Zhang L., Li H., Yang Y., Ji Z., Wang H., Ying G., Ba Y. (2020). CAF secreted miR-522 suppresses ferroptosis and promotes acquired chemo-resistance ingastric cancer. Mol Cancer, 19: 43.
30. Conciatori F., Bazzichetto C., Falcone I., Pilotto S., Bria E., Cognetti F., Milella M., Ciuffreda L. (2018). Role of mTOR Signaling in Tumor Microenvironment: An Overview. International journal of molecular sciences, 19 (8), 2453.
31. Akman M., Belisario D. C., Salaroglio I. C., Kopecka J., Donadelli M., De Smaele E., Riganti C. (2021). Hypoxia, endoplasmic reticulum stress and chemoresistance: dangerous liaisons. J Exp Clin Cancer Res, 11; 40 (1): 28.
32. Ippolito L., Morandi A., Taddei M. L., Parri M., Comito G., Iscaro A., Raspollini M. R., Magherini F., Rapizzi E., Masquelier J., Muccioli G. G., Sonveaux P., Chiarugi P., Giannoni E. (2019). Cancer-associated fibroblasts promote prostate cancer malignancy via metabolic rewiring and mitochondrial transfer. Oncogene, 38 (27): 5339–5355.
33. Liu D., Gao Y., Liu J., Huang Y., Yin J., Feng, Y., Shi L., Meloni B. P., Zhang C., Zheng M., Gao J. (2021). Intercellular mitochondrial transfer as a means of tissue revitalization. Signal Transduction and Targeted Therapy, 6 (1): 65.
34. Zampieri L. X., Silva-Almeida C., Rondeau J. D., Sonveaux P. (2021). Mitochondrial Transfer in Cancer: A Comprehensive Review. Int. J. Mol. Sci., 22, 3245.
35. Dong L. F., Kovarova J., Bajzikova M., Bezawork-Geleta A., Svec D., Endaya B., Sachaphibulkij K., Coelho A. R., Sebkova N., Ruzickova A., Tan A. S., Kluckova K., Judasova K., Zamecnikova K., Rychtarcikova Z., Gopalan V., Andera L., Sobol M., Yan B., Pattnaik B., Bhatraju N., Truksa J., Stopka P., Hozak P., Lam A. K., Sedlacek R., Oliveira P. J., Kubista M., Agrawal A., Dvorakova-Hortova K., Rohlena J., Berridge M. V., Neuzil J. (2017). Horizontal transfer of whole mitochondria restores tumorigenic potential in mitochondrial DNA-deficient cancer cells. Elife. 15; 6: e22187.
36. McCully J. D., Cowan D. B., Pacak C. A., Toumpoulis I. K., Dayalan H., Levitsky S. (2009). Injection of isolated mitochondria during early reperfusion for cardioprotection, Am. J. Physiol. Heart. Circ. Physiol., 296, H94–H105.
37. Blask D. E., Dauchy R. T., Dauchy E. M., Mao L., Hill S. M., Greene M. W., Belancio V. P., Sauer L. A., Davidson L. (2014). Light exposure at night disrupts host/cancer circadian regulatory dynamics: impact on the Warburg effect, lipid signaling and tumor growth prevention. PLoS One. 6; 9 (8): e102776.
38. Reiter R. J., Sharma R., Ma Q., Rorsales-Corral S., de Almeida Chuffa L. G. (2020). Melatonin inhibits Warburg-dependent cancer by redirecting glucose oxidation to the mitochondria: a mechanistic hypothesis. Cell. Mol. Life Sci. 77, 2527–2542.
39. Dong L., Gopalan V., Holland O., Neuzil J. (2020). Mitocans Revisited: Mitochondrial Targeting as Efficient Anti-Cancer Therapy. International journal of molecular sciences, 21 (21), 7941.
40. Sigston E. A. W., Williams B. R. G. (2017). An Emergence Framework of Carcinogenesis. Front. Oncol. 7: 198.
Эпилог
Есть у революции начало. Будет революции конец
Биологическая эволюция и научно-техническая революция: рождение после-человека