In Vitro Culture of Rosmarinus officinalis L. in a Temporary Immersion System: Influence of Two Phytohormones on Plant Growth and Carnosol Production
- PMID: 34451844
- PMCID: PMC8398425
- DOI: 10.3390/ph14080747
In Vitro Culture of Rosmarinus officinalis L. in a Temporary Immersion System: Influence of Two Phytohormones on Plant Growth and Carnosol Production
Abstract
Emerging infectious diseases have become a major global problem with public health and economic consequences. It is an urgent need to develop new anti-infective therapies. The natural diterpene carnosol exhibit a wide variety of interesting antibacterial and antiviral properties, and it is considered a theoretical inhibitor of COVID-19 Mpro. However, this compound is present in the family Lamiaceae in low quantities. To obtain carnosol in concentrations high enough to develop pharmacological studies, we evaluated the efficiency of a micropropagation protocol of Rosmarinus officinalis using a solid medium and a temporary immersion system (TIS), as well as the effect of 6-benzylaminopurine (6-BAP) and α-naphthaleneacetic acid (NAA) on the growth of shoots. Moreover, we developed and validated an analytical method to quantify carnosol using the H-point standard additions method in the high-performance liquid chromatography diode array detector (HPLC-DAD). After 30 days of culture, TIS produced the maximum number of shoots per explant (24.33 ± 1.15) on a liquid medium supplemented with 6-BAP at 5.0 mg L-1. Next, we also evaluated the effect of immersion time and frequency for TIS. After 72 days of culture, the best results were obtained with an immersion cycle of 1 min every 12 h, yielding 170.33 ± 29.40 shoots. The quantification of carnosol on the samples was performed at a flow rate of 1.2 mL min-1 using binary isocratic mobile phase system 60:40 (v/v) 10 mM formic acid (pH 3.0) (A) and acetonitrile (B) on a reverse-phase column. The content of carnosol in the in vitro cultures was around 8-fold higher than in the wild plant. The present study represents an efficient alternative method to obtain carnosol for its pre-clinical and clinical development.
Keywords: 6-benzylaminopurine; Rosmarinus officinalis; carnosol; cultures; in vitro; infectious diseases; quantification; rosemary; temporary immersion system.
Conflict of interest statement
The authors declare no conflict of interest.
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References
-
- Holmes K.K., Bertozzi S., Bloom B.R., Jha P., Gelband H., De Maria L.M., Horton S. Major Infectious Diseases: Key Messages from Disease Control Priorities. In: Holmes K.K., Bertozzi S., Bloom B.R., Jha P., editors. Major Infectious Diseases. 3rd ed. The International Bank for Reconstruction and Development/The World Bank; Washington, DC, USA: 2017. pp. 1–27. - PubMed
-
- Carović-Stanko K., Petek M., Grdiša M., Pintar J., Bedeković D., Herak Ćustić M., Satovic Z. Medicinal plants of the family Lamiaceae as functional foods—A review. Czech J. Food Sci. 2016;34:377–390. doi: 10.17221/504/2015-CJFS. - DOI
-
- Macías-Alonso M., Sancén S.R., Marrero J.G. Carnosic acid and its derivatives: Diterpenes of biological interest. Biomed. J. Sci. Tech. Res. 2019;16:12172–12173. doi: 10.26717/BJSTR.2019.16.002877. - DOI
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