Planta Med 2017; 83(14/15): 1233-1241
DOI: 10.1055/s-0043-118034
Natural Product Chemistry and Analytical Studies
Original Papers
Georg Thieme Verlag KG Stuttgart · New York

Microscopic and Phytochemical Comparison of the Three Leonurus Species L. cardiaca, L. japonicus, and L. sibiricus [*]

Anna Pitschmann
1   Department of Pharmacognosy, University of Vienna, Vienna, Austria
,
Christine Waschulin
1   Department of Pharmacognosy, University of Vienna, Vienna, Austria
,
Christina Sykora
1   Department of Pharmacognosy, University of Vienna, Vienna, Austria
,
Sodnomtseren Purevsuren
2   School of Pharmacy, Health Sciences University of Mongolia, Ulaanbaatar, Mongolia
,
Sabine Glasl
1   Department of Pharmacognosy, University of Vienna, Vienna, Austria
› Author Affiliations
Further Information

Publication History

received 28 December 2016
revised 13 July 2017

accepted 27 July 2017

Publication Date:
24 August 2017 (online)

Abstract

At least three Leonurus species, Leonurus cardiaca, Leonurus japonicus, and Leonurus sibiricus, are used in various traditional medicinal systems for different therapeutic purposes. The plant names “L. sibiricus” and “L. japonicus” are often used as synonyms, which causes confusion in literature and implies that several studies may be based on improperly identified plant material. To avoid further confusion, the current status of the identification of these three species is illustrated. Characteristics for their unequivocal identification are presented using stereo and light microscopy as well as HPTLC.

The establishment of the species-specific anatomical, morphological, and phytochemical characters was based on reference specimens in comparison with wild collected or commercially obtained material. Morphologically, the species differed in shape and length ratio of the upper and lower lip of the corolla. Differentiating anatomical characters involve the presence, density, and dimension of trichomes on different organs. Detailed anatomical descriptions of the leaves and corollae of L. japonicus and L. sibiricus are given and compared to L. cardiaca. These three sets of characters facilitate fast and reliable identification. Complementary HPTLC fingerprints show type-specific patterns that allow the differentiation of L. japonicus from the other two species. For the distinction of L. cardiaca and L. sibiricus, flower morphology has to be considered.

The presented data contribute to the quality control of the three Leonurus species and additionally meet a definite and timely need regarding the introduction of L. japonicus to the European Pharmacopoeia in addition to the already existing monograph of L. cardiaca.

* Dedicated to Professor Dr. Max Wichtl in recognition of his outstanding contribution to phytotherapy research.


Supporting Information

 
  • References

  • 1 The Plant List. Leonurus. Available at. http://www.theplantlist.org/tpl1.1/search?q=leonurus Accessed September 7, 2016
  • 2 World Health Organization. Medicinal plants in Mongolia. Geneva: World Health Organization Press; 2013
  • 3 Stöger EA, Friedl F. Arzneibuch der Chinesischen Medizin – Monographien des Arzneibuches der Volksrepublik China 2000, 2005 und 2010. Stuttgart: Deutscher Apotheker; 2012
  • 4 Wichtl M, Bauer R, Blaschek W, Buff W, Hiller K, Lichius JJ, Löw D, Stahl-Biskup E, Teuscher E. Teedrogen und Phytopharmaka, 5th edition. Stuttgart: Wissenschaftliche Verlagsgesellschaft mbH; 2009
  • 5 Krestovskaja T. Systematics and phytogeography of Leonurus L. In: Harley RM, Reynolds T. editors Advances in Labiate science. Kew: Royal Botanic Gardens; 1992: 139-148
  • 6 Harley R, Paton A. Leonurus japonicus Houtt. (Labiatae): the correct name for a common tropical weed. Kew Bull 2001; 56: 243-244
  • 7 Krestovskaja T. Chtoe takoe Leonurus heterophyllus Sweet (Lamiaceae). Novosti Sist Vyssh Rast 1987; 24: 156-158
  • 8 Kupryanova LA. Leonurus. Flora URSS, Vol. 21. Leningrad: Academiae Scientiarum U.R.S.S; 1954: 156-157
  • 9 Hayashi K, Ikoma R, Deyama T. Phenolic compounds and iridoids from Leonurus sibiricus . J Nat Med Tokyo 2001; 55: 276
  • 10 Kuchta K, Ortwein J, Rauwald HW. Leonurus japonicus, Leonurus cardiaca, Leonotis leonurus: a novel HPLC study on the occurrence and content of the pharmacologically active guanidino derivative leonurine. Pharmazie 2012; 67: 973-979
  • 11 Shang X, Pan H, Wang X, He H, Li M. Leonurus japonicus Houtt.: ethnopharmacology, phytochemistry and pharmacology of an important traditional Chinese medicine. J Ethnopharmacol 2014; 152: 14-32
  • 12 Global Biodiversity Information Facility. Leonurus japonicus Houtt. Available at. http://www.gbif.org/species/6410563 Accessed January 22, 2015
  • 13 Luo S, Mai L, Zhu Z. Separation and determination of alkaloids of Leonurus sibiricus . Zhong Yao Tong Bao 1985; 10: 32-35
  • 14 Schmidt S, Jakab M, Jav S, Streif D, Pitschmann A, Zehl M, Purevsuren S, Glasl S, Ritter M. Extracts from Leonurus sibiricus L. increase insulin secretion and proliferation of rat INS-1E insulinoma cells. J Ethnopharmacol 2013; 150: 85-94
  • 15 European Pharmacopoeia (CD-ROM). Strasbourg: EDQM; 2014
  • 16 The Japanese Pharmacopoeia. Tokyo: Pharmaceuticals and Medicinal Devices Agency; 2011
  • 17 Hohmann B, Reher G, Stahl-Biskup E. Mikroskopische Drogenmonographien der deutschsprachigen Arzneibücher. Stuttgart: Wissenschaftliche Verlagsgesellschaft; 2001
  • 18 Duarte M, Lopes J. Morfoanatomia Foliar e Caulinar de Leonurus sibiricus L., Lamiaceae. Acta Farm Bonaerense 2005; 24: 68-74
  • 19 Monschein M, Holzer T, Wolkinger V, Heuberger H, Seidenberger R, Heubl G, Bauer R. Discrimination of Leonurus japonicus and Leonurus cardiaca by phytochemical and DNA analyses. 62nd International Congress and Annual Meeting of the Society for Medicinal Plant and Natural Product Research. Guimaraes, Portugal: 2014
  • 20 Pitschmann A, Zehl M, Heiss E, Purevsuren S, Urban E, Dirsch VM, Glasl S. Quantitation of phenylpropanoids and iridoids in insulin-sensitising extracts of Leonurus sibiricus L. (Lamiaceae). Phytochem Anal 2016; 27: 23-31
  • 21 Kuchta K, Ortwein J, Calis I, Volk RB, Rauwald HW. Identification of Cardioactive Leonurus and Leonotis Drugs by Quantitative HPLC Determination and HPTLC Detection of Phenolic Marker Constituents. Nat Prod Commun 2016; 11: 1129-1133
  • 22 Kuchta K, Volk RB, Rauwald HW. Stachydrine in Leonurus cardiaca, Leonurus japonicus, Leonotis leonurus: detection and quantification by instrumental HPTLC and 1H-qNMR analyses. Pharmazie 2013; 68: 534-540
  • 23 Kuchta K, Ortwein J, Hennig L, Rauwald HW. 1H-qNMR for direct quantification of stachydrine in Leonurus japonicus and L. cardiaca . Fitoterapia 2014; 96: 8-17
  • 24 Narukawa Y, Niimura A, Noguchi H, Tamura H, Kiuchi F. New diterpenoids with estrogen sulfotransferase inhibitory activity from Leonurus sibiricus L. J Nat Med 2014; 68: 125-131
  • 25 Kubota S, Nakashima S. The study of Leonurus Sibiricus, L. I. Chemical study of the alkaloid (Leonurin) isolated from Leonurus Sibiricus, L. Folia Pharmacol Japon 1930; 11: 153-158
  • 26 Hayashi Y. Ingredients of Leonurus sibiricus. I. Yakugaku Zasshi 1962; 82: 1020-1025
  • 27 Reuter G, Diehl HJ. Guanidine derivatives in Leonurus sibiricus . Pharmazie 1971; 26: 777
  • 28 Bensky D, Clavey S, Stöger E. Chinese Herbal Medicine – Materia medica. 3rd ed.. ed. Seattle, WA: Eastland Press Inc.; 2004
  • 29 Rätsch C. Enzyklopädie der psychoaktiven Pflanzen. Aarau: AT Verlag; 1998
  • 30 Wagner H, Bauer R, Melchart D, Xiao PG, Staudinger A. Chromatographic Fingerprint Analysis of Herbal Medicines. Wien: Springer; 2011
  • 31 Flemming J, Noetzel I, Arnhold J, Rauwald HW. Leonurus cardiaca L. herb extracts and their constituents promote lactoperoxidase activity. J Funct Foods 2015; 17: 328-339