4. Materiales suplementarios

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Referencias:

1. Barroso Fernandez, J. (2017). Aguas sulfuradas y dermatología. Boletin Sociedad Española Hidrologia Medica, 32(2), 177–186. https://doi.org/10.23853/bsehm.2017.0406

2. Chattopadhyay, M., Nwadibia, E., Strong, C. D., Gralla, E. B., Valentine, J. S., & Whitelegge, J. P. (2015). The Disulfide Bond, but Not Zinc or Dimerization, Controls Initiation and Seeded Growth in Amyotrophic Lateral Sclerosis-linked Cu,Zn Superoxide Dismutase (SOD1) Fibrillation. The Journal of Biological Chemistry, 290(51), 30624–30636. https://doi.org/10.1074/jbc.M115.666503

3. Guo, W., Cheng, Z., & Zhu, Y. (2013). Hydrogen sulfide and translational medicine. Acta Pharmacologica Sinica, 34(10), 1284–1291. https://doi.org/10.1038/aps.2013.127

4. Le ha ganado a su enfermedad contra todo pronóstico. (n.d.). Primera Hora. Retrieved October 18, 2020, from https://www.primerahora.com/noticias/puerto-rico/notas/le-ha-ganado-a-su-enfermedad-contra-todo-pronostico/

5. Li, Y., Yan, J., Zhang, X., & Huang, K. (2013). Disulfide bonds in amyloidogenesis diseases related proteins. Proteins, 81(11), 1862–1873. https://doi.org/10.1002/prot.24338

6. Miller, L. M., Bourassa, M. W., & Smith, R. J. (2013). FTIR spectroscopic imaging of protein aggregation in living cells. Biochimica et Biophysica Acta (BBA) - Biomembranes, 1828(10), 2339–2346. https://doi.org/10.1016/j.bbamem.2013.01.014

7. Moran, S. D., & Zanni, M. T. (2014). How to Get Insight into Amyloid Structure and Formation from Infrared Spectroscopy. The Journal of Physical Chemistry Letters, 5(11), 1984–1993. https://doi.org/10.1021/jz500794d

8. Musteikyte, G., Ziaunys, M., & Smirnovas, V. (2020). Methylene blue inhibits nucleation and elongation of SOD1 amyloid fibrils. PeerJ, 8. https://doi.org/10.7717/peerj.9719

9. Pavia, D. L., Lampman, G. M., Kriz, G. S., & Vyvyan, J. R. (2013). Introduction to Spectroscopy. 786.

10. Pratt, A. J., Shin, D. S., Merz, G. E., Rambo, R. P., Lancaster, W. A., Dyer, K. N., Borbat, P. P., Poole, F. L., Adams, M. W. W., Freed, J. H., Crane, B. R., Tainer, J. A., & Getzoff, E. D. (2014). Aggregation propensities of superoxide dismutase G93 hotspot mutants mirror ALS clinical phenotypes. Proceedings of the National Academy of Sciences, 111(43), E4568–E4576. https://doi.org/10.1073/pnas.1308531111

11. PRIME PubMed | Sulphurous Mineral Waters: New Applications for Health. (n.d.). Retrieved February 1, 2021, from https://www.unboundmedicine.com/medline/citation/28484507/Sulphurous_Mineral_Waters:_New_Applications_for_Health_

12. Rosario-Alomar, M. F., Quiñones-Ruiz, T., Kurouski, D., Sereda, V., Ferreira, E. B., Jesús-Kim, L. D., Hernández-Rivera, S., Zagorevski, D. V., López-Garriga, J., & Lednev, I. K. (2015). Hydrogen Sulfide Inhibits Amyloid Formation. The Journal of Physical Chemistry B, 119(4), 1265–1274. https://doi.org/10.1021/jp508471v

13. Spectroscopy for the Biological Sciences | Wiley. (n.d.). Wiley.Com. Retrieved February 27, 2021, from https://www.wiley.com/en-us/Spectroscopy+for+the+Biological+Sciences-p-9780471733546

14. Vázquez @SarahFVazquez, M. P. R.-S. (n.d.). Causa preocupación alza de casos de ALS en la isla. Metro. Retrieved February 27, 2021, from https://www.metro.pr/pr/estilo-vida/2016/04/26/causa-preocupacion-alza-casos-als-isla.html

15. Xu, M.-M., Ren, W.-M., Tang, X.-C., Hu, Y.-H., & Zhang, H.-Y. (2016). Advances in development of fluorescent probes for detecting amyloid-β aggregates. Acta Pharmacologica Sinica, 37(6), 719–730. https://doi.org/10.1038/aps.2015.155

16. Yakupova, E. I., Bobyleva, L. G., Vikhlyantsev, I. M., & Bobylev, A. G. (2019). Congo Red and amyloids: History and relationship. Bioscience Reports, 39(1). https://doi.org/10.1042/BSR20181415