Advanced Strategies for the Selection and Stabilization of Osteotropic Micronutrients Using Biopolymers

نویسندگان

1 Department of functional materials and engineering construction, North Caucasus Federal University, Stavropol, Russia

2 Department of functional materials and engineering construction, North Caucasus Federal University, Stavropol, Russia

3 Department of Social Sciences, Humanities and Technologies, National Research Moscow State University of Civil Engineering, Moscow, Russia

4 Department of Economy and Management, Volgograd State Technical University, Volgograd, Russia

5 Department of Digital Nutrition, Hotel and Restaurant Service, International Institute of Business Management

6 Department of Therapy, Kabardino-Balkarian State University named after Berbekov, Nalchik, Russia

7 Laboratory of Food and Industrial Biotechnology, North Caucasus Federal University, Stavropol, Russia

8 Department of functional materials and engineering construction, North Caucasus Federal University, Stavropol, Russia

9 Department of functional materials and engineering construction, North Caucasus Federal University, Stavropol, Russia

10 Department of Therapy, Dagestan State Medical University, Makhachkala, Republic of Dagestan, Russia

11 Department of Therapy, Dagestan State Medical University, Makhachkala, Republic of Dagestan, Russia

12 Department of Therapy, Stavropol State Medical University, Stavropol, Russia

doi
10.48309/jcr.2025.492520.1401
چکیده

A comprehensive review of the literature data on the choice of osteotropic micronutrients is presented as part of this review. The analysis showed that nanoscale osteotropic micronutrients (carbonates Ca, Mg, Zn, Mn, and Cu) are promising materials with a wide range of practical applications. The main methods of synthesis of each of the carbonates of osteotropic micronutrients, as well as ways to stabilize them with biopolymers, are considered. The review also presents the applications of nanoscale metal carbonates. An important field of application is medicine. In particular, the use of nanoscale materials as medicines with proven therapeutic effects and targeted drug delivery is being considered. The review also identifies problems and opportunities for further research and development in this area, emphasizes the need to optimize synthesis parameters, and explore new methods for stabilizing osteotropic micronutrients with biopolymers.