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Production of 3′,5′-cyclic diadenosine monophosphate complex with Mg,Al-layered double hydroxide

https://doi.org/10.29235/1029-8940-2024-69-3-249-253

Abstract

The possibility of using Mg,Al-layered double hydroxide (LDH) for production of nanoparticles comprising molecules of pharmaceutically valuable 3′,5′-cyclic diadenosine monophosphate (cyclic di-AMP) was demonstrated. Experimental conditions were optimized to produce LDH complexes with cyclic di-AMP (average size of 300 nm), which loading capacity in regard to the target compound reached 60 mass %. The fact of cyclic di-AMP release from LDH complex in pH-dependent mode (proceeding slightly slower at pH 7.4 than at pH 4.5) was stated. The obtained results testify in favor of applying the studied nanocomplexes for delayed delivery of cyclic di-AMP to the target immune cells.

About the Authors

M. A. Vinter
Institute of Microbiology of the National Academy of Sciences of Belarus
Belarus

Marharyta A. Vinter – Postgraduate Student, Institute of Microbiology of the National Academy of Sciences of Belarus.

2, Kuprevich Str., 220141, Minsk



A. S. Shchokolova
Institute of Microbiology of the National Academy of Sciences of Belarus
Belarus

Anastasia S. Shchokolova – Ph. D. (Biol.), Senior Researcher, Institute of Microbiology of the National Academy of Sciences of Belarus.

2, Kuprevich Str., 220141, Minsk



I. S. Kazlouski
Institute of Microbiology of the National Academy of Sciences of Belarus
Belarus

Illia S. Kazlouski – Ph. D. (Biol.), Leading Researcher, Institute of Microbiology of the National Academy of Sciences of Belarus.

2, Kuprevich Str., 220141, Minsk



A. I. Zinchenko
Institute of Microbiology of the National Academy of Sciences of Belarus
Belarus

Anatoly I. Zinchenko – Corresponding Member, D. Sc. (Biol.), Professor, Head of the Laboratory, Institute of Microbiology of the National Academy of Sciences of Belarus.

2, Kuprevich Str., 220141, Minsk



References

1. Pagani I., Ghezzi S., Alberti S., Poli G., Vicenzi E. Origin and evolution of SARS-CoV-2. European Physical Journal Plus, 2023, vol. 138, no. 2, art. 157. https://doi.org/10.1140/epjp/s13360-023-03719-6

2. Zinchenko A., Vinter M., Kazlovskii I. Interferons and their inducers as the elements to control COVID-19. Nauka i innovatsii [Science and innovations], 2023, no. 2, pp. 24–29 (in Russian).

3. Yin W., Cai X., Ma H., Zhu L., Zhang Y., Chou S. H., Galperin M. Y., He J. A decade of research on the second messenger c-di-AMP. FEMS Microbiology Reviews, 2020, vol. 44, no. 6, pp. 701–724. https://doi.org/10.1093/femsre/fuaa019

4. Deng L., Liang H., Xu M., Yang X., Burnette B., Arina A. [et al.]. STING-dependent cytosolic DNA sensing promotes radiation-induced type I interferon-dependent antitumor immunity in immunogenic tumors. Immunity, 2014, vol. 41, no. 5, pp. 843–852. https://doi.org/10.1016/j.immuni.2014.10.019

5. Ebensen T., Arntz A., Schulze K., Hanefeld A., Guzman C. A., Scherließ R. Pulmonary application of novel antigen-loaded chitosan nanoparticles co-administered with the mucosal adjuvant c-di-AMP resulted in enhanced immune stimulation and dose sparing capacity. Pharmaceutics, 2023, vol. 15, no. 4, art. 1238. https://doi.org/10.3390/pharmaceutics15041238

6. Wehbe M., Wang-Bishop L., Becker K. W., Shae D., Baljon J. J., He X., Christov P., Boyd K. L., Balko J. M., Wilson J. T. Nanoparticle delivery improves the pharmacokinetic properties of cyclic dinucleotide STING agonists to open a therapeutic window for intravenous administration. Journal of Controlled Release, 2021, vol. 330, pp. 1118−1129. https://doi.org/10.1016/j.jconrel.2020.11.017

7. Yang Y., Zhao X., Zhu Y., Zhang F. Transformation mechanism of magnesium and aluminum precursor solution into crystallites of layered double hydroxide. Chemistry of Materials, 2012, vol. 24, no. 1, pp. 81–87. https://doi.org/10.1021/cm201936b

8. Matusik J. Special issue: layered double hydroxides (LDH) and LDH-based hybrid composites. Materials, 2021, vol. 14, no. 10, art. 2582. https://doi.org/10.3390/ma14102582

9. Cavani F., Trifiro F., Vaccari A. Hydrotalcite-type anionic clays: preparation, properties and applications. Catalysis Today, 1991, vol. 11, pp. 173–301.

10. Kumari S., Sharma A., Kumar S., Thakur A., Thakur R., Bhatia S. K., Sharma A. K. Multifaceted potential applicability of hydrotalcite-type anionic clays from green chemistry to environmental sustainability. Chemosphere, 2022, vol. 306, art. 135464. https://doi.org/10.1016/j.chemosphere.2022.135464

11. Choi S. J., Oh J. M., Choy J. H. Anticancer drug-layered hydroxide nanohybrids as potent cancer chemotherapy agents. Journal of Physics and Chemistry of Solids, 2008, vol. 69, no. 5–6, pp. 1528–1532. https://doi.org/10.1016/j.jpcs.2007.10.140

12. Olfs H.-W., Torres-Dorante L. O., Eckelt R., Kosslick H. Comparison of different synthesis routes for Mg–Al layered double hydroxides (LDH): Characterization of the structural phases and anion exchange properties. Applied Clay Science, 2009, vol. 43, no. 3–4, pp. 459–464. https://doi.org/10.1016/j.clay.2008.10.009

13. Vinter M. A., Kazlouski I. S., Zinchenko A. I. Construction of bacterial strain forming inclusion bodies, exhibiting diadenylate cyclase activity. Molekulyarnaya i prikladnaya genetika [Molecular and applied genetics], 2022, vol. 33, pp. 105–109. https://doi.org/10.47612/1999-9127-2022-33-76-82

14. Olanrewaju J., Newalkar B. L., Mancino C., Komarneni S. Simplified synthesis of nitrate form of layered double hydroxide. Materials Letters, 2000, vol. 45, no. 6, pp. 307–310. https://doi.org/10.1016/S0167-577X(00)00123-3

15. Doson R., Elliot D., Elliot U., Dzhons K. Biochemist’s Handbook. Moscow, Mir Publ., 1991. 543 p. (in Russian).

16. Ibrahimova K. A. The synthesis methods and applications of layered double hydroxides – a brief review. Vestnik Natsional’nogo yadernogo tsentra Respubliki Kazakhstan [Bulletin of the National Nuclear Center of the Republic of Kazakhstan], 2022, no. 4, pp. 16–29. https://doi.org/10.52676/1729-7885-2022-4-17-29


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ISSN 1029-8940 (Print)
ISSN 2524-230X (Online)