JOURNAL OF CHILEAN CHEMICAL SOCIETY

Vol 68 No 3 (2023): Journal of the Chilean Chemical Society
Original Research Papers

ADEQUACY OF LOW-COST TECHNIQUE FOR SOIL BACTERIAL ALGINATE/ZEIN ENCAPSULATION AT LABORATORY SCALE

Álvaro Gutiérrez
Instituto Milenio en Inmunología e Inmunoterapia, Laboratorio de Biología Integrativa (LIBi), Centro de Excelencia en Medicina Traslacional (CEMT), Núcleo Científico Tecnológico en Biorecursos (BIOREN), Universidad de La Frontera. Temuco, Región de la Araucanía, Chile.
Marcia Astorga-Elo
Grupo de Investigación en Alimentación y Nutrición Humana. Carrera de Nutrición y Dietética. Facultad de Ciencias de la Salud. Universidad Autónoma de Chile. Temuco, Región de la Araucanía, Chile.
Daisy Tapia-Valdebenito
Instituto de Ciencias Biomédicas. Facultad de Ciencias de la Salud. Universidad Autónoma de Chile. Temuco, Región de la Araucanía, Chile.
Claudia González Pastén
Formación General, Dirección Académica, Universidad Santo Tomas, Temuco, Región de la Araucanía, Chile.
Carlos Peña-Farfal
Instituto de Ciencias Aplicadas, Facultad de Ingeniería, Universidad Autónoma de Chile. Temuco Región de la Araucanía, Chile.
Claudia Rabert
Grupo de Investigación en Alimentación y Nutrición Humana. Carrera de Nutrición y Dietética. Facultad de Ciencias de la Salud. Universidad Autónoma de Chile. Temuco, Región de la Araucanía, Chile.; Instituto de Ciencias Biomédicas. Facultad de Ciencias de la Salud. Universidad Autónoma de Chile. Temuco, Región de la Araucanía, Chile.
Irma Fuentes Lillo
Departamento de Física y Química, Facultad de Ingeniería, Universidad Autónoma de Chile. Temuco, Región de la Araucanía, Chile.; Carrera de Química y Farmacia, Facultad de Ciencias de la Salud. Universidad Autónoma de Chile. Temuco, Región de la Araucanía, Chile.
Published December 31, 2023
Keywords
  • Alginate, Bacteria encapsulation, Low-cost Encapsulation.
How to Cite
Gutiérrez , Álvaro, Astorga-Elo , M., Tapia-Valdebenito, D., González Pastén, C., Peña-Farfal, C., Rabert , C., & Fuentes Lillo, I. (2023). ADEQUACY OF LOW-COST TECHNIQUE FOR SOIL BACTERIAL ALGINATE/ZEIN ENCAPSULATION AT LABORATORY SCALE. Journal of the Chilean Chemical Society, 68(3), 5940-5944. Retrieved from https://jcchems.com/index.php/JCCHEMS/article/view/2553

Abstract

In the contemporary context, the utilization of microorganisms across various disciplines has emphasized the growing significance of comprehending their fundamental mechanisms and enhancing delivery techniques, particularly in agriculture. Microencapsulation is one notably viable technique that establishes a controlled microenvironment, thus safeguarding microorganisms, offering superior handling, stability, and precisely controlled release. To evaluate a low-cost technique adaptation, this study explores the encapsulation of one plant growth-promoting bacteria isolated from burned soil, utilizing the ion gelation method facilitated by a simplified syringe pump model. The core materials comprise sodium alginate and LB medium as the support matrix, complemented by zein as the protective coat. The best result for capsule formation with viable bacteria was obtained with a 5% sodium alginate matrix compound in 2.5% Luria Bertani broth and 5% Zein for coating.

Additionally, in-depth insights into the chemical properties of the capsules and their components were obtained through ATR-FTIR spectroscopy, revealing vital interactions within these structures. In summary, this study represents a significant advancement in addressing contemporary agricultural challenges, especially those exacerbated by climate change. By introducing an economical and exploratory laboratory-scale technique for encapsulating soil bacteria, this research contributes to the development of sustainable agricultural practices. It underscores the potential of encapsulation in enhancing soil health, promoting plant vitality, and mitigating the adverse effects of climate change on agricultural ecosystems.

References

  1. S. Valdivia-Rivera, T. Ayora-Talavera, M. A. Lizardi-Jiménez, U. García-Cruz, J. C. Cuevas-Bernardino, N. Pacheco, Rev. Environ. Sci. Bio/Technol. 20, 815–838, (2021)
  2. R. P. John, R. D. Tyagi, S. K. Brar, R. Y. Surampalli, D. Prévost, Crit. Rev. Biotechnol. 31, 211-226, (2011)
  3. S. Compant, B. Duffy, J. Nowak, C. Clément, E. A. Barka, Appl. Environ. Microbiol. 71, 4951-4959, (2005)
  4. L. Ranjard, F. Poly, S. Nazaret, Res. Microbiol. 151, 167-177, (2000)
  5. P. T. da Silva, L. L. M. Fries, C. R. de Menezes, A. T. Holkem, C. L. Schwan, É. F. Wigmann, J. de Oliveira-Bastos, C. de Bona da Silva, Ciencia Rural, 44, 1304-1311, (2014)
  6. Y. Li, X. Li, Z. P. Liang, X. Y. Chang, F. T. Li, X. Q. Wang, X. J. Lian, Molecules 27, 5854, (2022)
  7. G. Petzold, M. P. Gianelli, G. Bugueño, R. Celan, C. Pavez, P. Orellana, J. Food Sci. Technol. 51, 183-190, (2014)
  8. S. Huang, M. L. Vignolles, X. D. Chen, Y. Le Loir, G. Jan, P. Schuck, R. Jeantet, Trends Food Sci. Technol. 63, 1-17, (2017)
  9. J. Baranauskaite, L. Ivanauskas, R. Masteikova, D. Kopustinskiene, A. Baranauskas, J. Bernatoniene, Pharm. Dev. Technol. 22, 792-803, (2017)
  10. M. Faieta, M. G. Corradini, A. Di Michele, R. D. Ludescher, P. Pittia, Food Biophys. 15, 50-63, (2020)
  11. I. Ilter, S. Akyil, M, Koc, Z. Demirel, M. C. Dalay, F. K. Ertekin, J. Biotechnol. 256, S26, (2017)
  12. S. H. Lee, D. Heng, W. K. Ng, H. K. Chan, R. B. H. Tan, J. Pharm. 403, 192-200, (2011)
  13. Y. Li, X. Li, Z. P. Liang, X. Y. Chang, F. T. Li, X. Q. Wang, X. J. Lian, Molecules, 27, 5854, (2022)
  14. L. W. Chan, L. T. Lim, P. W. S. Heng, J. Microencapsul. 17, 757-766, (2000)
  15. M. Jouki, N. Khazaei, F. Rezaei, R. Taghavian-Saeid, Int. Dairy J. 122, 105133, (2021)
  16. R. Saberi Riseh, Y. A. Skorik, V.K. Thakur, M. Moradi Pour, E. Tamanadar, S. S. Noghabi, Int. J. Mol. Sci. 22, 11165, (2021)
  17. V. Urtuvia, N. Maturana, F. Acevedo, C. Peña, A. Díaz-Barrera, World J. Microbiol. Biotechnol. 33, 198, (2017)
  18. R. S. Riseh, Y. A. Skorik, V. K. Thakur, M. M. Pour, E. Tamanadar, S. S. Noghabi, Int. J. Mol. Sci. 22, 11165, (2021)
  19. D. Wang, R. Lv, X. Ma, M. Zou, W. Wang, L. Yan, T. Ding, X. Ye, D. Liu, Food Hydrocoll. 83, 1-8, (2018)
  20. R. A. Begum, R. Lempert, E. Ali, T. A. Benjaminsen, T. Bernauer, W. Cramer, X. Cui, K. Mach, G. Nagy, N. C. Stenseth, R. Sukumar, P. Wester, In Climate Change 2022: Impacts, Adaptation, and Vulnerability. Contribution of Working Group II to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change, H. O. Pörtner, D. C. Roberts, M. Tignor, E. S. Poloczanska, K. Mintenbeck, A. Alegría, M. Craig, S. Langsdorf, S. Löschke, V. Möller, A. Okem, B. Rama eds. Cambridge University Press, UK and New York, NY, USA, 2022, pp. 121-196.
  21. V. Cordovez, F. Dini-Andreote, V. J. Carrión, J. M. Raaijmakers. Annu. Rev. Microbiol. 8, 69-88, (2019)
  22. D. Lyu, R. Backer, S. Subramanian, D. L. Smith, Front. Plant Sci. 11, 530945, (2020)
  23. A. Jurys, D. Feizienė, Plants, 10, 2000, (2021)
  24. D. T. Nagrale, A. Chaurasia, S. Kumar, S. P. Gawande, N. S. Hiremani, R. Shankar, N. Gokte-Narkhedkar, Renu, Y. G. Prasad, World J. Microbiol. Biotechnol. 39, 1-18, (2023)
  25. M. Vial, Caracterización física de los Suelos del Secano Interior de Malleco. Instituto de Investigaciones Agropecuarias, Temuco, 2020.
  26. G. D. Towner, Eur. J. Soil Sci. 25, 298-306, (1974)
  27. M. Jouki, Radiat. Phys. Chem. 85, 243-245, (2013)
  28. M. Majimbi, E. Brook, P. Galettis, E. Eden, H. Al-Salami, A. Mooranian, H. Al-Sallami, V. Lam, J. C. L. Mamo, R. Takechi, PLoS One, 16, e0243858, (2021)
  29. N. Khorshidian, A. Mahboubi, N. Kalantari, H. Hosseini, M. Yousefi, M. Arab, A. Gomez da Cruz, A. M. Mortazavian, F. S. Mahdavi, Iranian J. Pharm. Res. 18, 1180-1195, (2019)
  30. M. Yousefi, E. Khanniri, M. Shadnoush, N. Khorshidian, A. M. Mortazavian. Int. J. Biol. Macromol. 163, 44-54, (2020)
  31. A. L. Campaña, D. C. Sotelo, H. A. Oliva, A. Aranguren, N. Ornelas-Soto, J. C. Cruz, J. F. Osma, Polymers, 12, 1158, (2020)
  32. M. Keskin, S. Keskin, S. Kalayli. LWT-Ed. 108, 89-96, (2019)
  33. S. S. Dehkordi, I. Alemzadeh, A. S. Vaziri, A. Vossoughi, Appl. Biochem. Biotechnol. 190, 182-196, (2020)
  34. W. Zhao, P. Yuan, X. She, Y. Xia, S. Komarneni, K. Xi, Y. Che, X. Yao, D. Yang, J. Mater. Chem. A, 3, 14188–14194, (2019)
  35. B. H. Stuard, Infrared Spectroscopy: Fundamentals and Applications, John Wiley and Sons Ltda, New York, 2004.
  36. T. Wu, W. Han, Y. Han, L. Ma, M, Li, Y. Sun, B. Liu, B. Tian, Q. Fu, J. Mol. Liq. 386, 122569, (2023)
  37. Q. Liu, Y. Jing, C. Han, H. Zhang, Y. Tian, Food Hydrocoll. 93, 432-442, (2019)
  38. Z. Filip, S. Herrmann, J. Kubat, Microbiol Res. 159, 257-262, (2004)

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