Publication Cover
Natural Product Research
Formerly Natural Product Letters
Volume 37, 2023 - Issue 13
193
Views
1
CrossRef citations to date
0
Altmetric
Research Articles

Four new terpenoids and other metabolites with potential anti-complementary activities from the aerial parts of Dracocephalum moldavica (Lamiaceae)

, , , , , , , & show all
Pages 2135-2143 | Received 22 Nov 2021, Accepted 06 Jan 2022, Published online: 22 Jan 2022

References

  • Aćimović M, Sikora V, Brdar-Jokanović M, Kiprovski B, Popović V, Koren A, Puvača N. 2019. Dracocephalum moldavica: Cultivation, chemical composition and biological activity. J Agron Technol Eng Manage. 2(1):153–167.
  • Chaturvedula VSP, Norris A, Miller JS, Ratovoson F, Andriantsiferana R, Rasamison VE, Kingston DGI. 2006. Cytotoxic diterpenes from Cassipourea madagascariensis from the Madagascar rainforest. J Nat Prod. 69(2):287–289.
  • Chu CJ, Li XL, Xia L, Zhang J, Chen DF. 2014. Chemical constituents in leaves of Vaccinium bracteatum and their anti-complementary activities. Chin Tradit Herb Drugs. 45(4):458–465.
  • Diao SB, Jin M, Sun JF, Zhou Y, Ye C, Jin Y, Zhou W, Li G. 2019. A new diarylheptanoid and a new diarylheptanoid glycoside isolated from the roots of Juglans mandshurica and their anti-inflammatory activities. Nat Prod Res. 33(5):701–707.
  • Ekabo OA, Farnsworth NR, Santisuk T, Reutrakul V. 1993. Phenolic, iridoid and ionyl glycosides from Homalium ceylanicum. Phytochemistry. 32(3):747–754.
  • Grabias B, Ofterdinger-Daegel S, Światek L, Kurowska A. 1993. Iridoid glycosides from Lathraea squamaria. Phytochemistry. 32(6):1489–1491.
  • Hu HB, Zheng XD, Jian YF, Liu JX, Zhu JH. 2011. Constituents of the root of Anemone tomentosa. Arch Pharm Res. 34(7):1079–1105.
  • Li SN, Sun JF, Wang JM, JL, Zong TQ, Zhou W, Li G. 2022. Two new phenolic glycosides from the fruits of Illicium verum. J Asian Nat Prod Res.24(1): 31-38.
  • Lian XY, Chen WH, Dang L, Li YC, Ho CY. 2017. (NHC)NiH-catalyzed intermolecular regio- and diastereoselective cross-hydroalkenylation of endocyclic dienes with α-Olefins. Angew Chem Int Ed Engl. 56(31):9048–9052.
  • Ly TN, Yamauchi R, Shimoyamada M, Kato K. 2002. Isolation and structural elucidation of some glycosides from the Rhizomes of Smaller Galanga (Alpinia officinarum Hance). J Agric Food Chem. 50(17):4919–4924.
  • Miyagoshi M, Amagaya S, Ogihara Y. 1987. The structural transformation of gardenoside and its related iridoid compounds by acid and beta-Glucosidase. Planta Med. 53(5):462–464.
  • Orihara Y, Furuya T. 1994. Biotransformation of 1,8-cineole by cultured cells of Eucalyptus perriniana. Phytochemistry. 35(3):641–644.
  • Saeidnia S, Gohari AR, Uchiyama N, Ito M, Honda G, Kiuchi F. 2004. Two new monoterpene glycosides and trypanocidal terpenoids from Dracocephalum kotschyi. Chem Pharm Bull (Tokyo). 52(10):1249–1250.
  • Shao MH, Dai W, Yuan SW, Lu Y, Chen DF, Wang Q. 2018. Iridoids from Pedicularis verticillata and their anti-complementary activity. Chem Biodivers. 15(6):e1800033.
  • Song WH, Cheng ZH, Chen DF. 2014. Anticomplement monoterpenoid glucosides from the root bark of Paeonia suffruticosa. J Nat Prod. 77(1):42–48.
  • Thuong PT, Min BS, Jin WY, Na MK, Lee JP, Seong RS, Lee YM, Song KS, Seong YH, Lee HK, Bae KH, Kang SS. 2006. Anti-complementary activity of ursane-type triterpenoids from Weigela subsessilis. Biol Pharm Bull. 29(4):830–833.
  • Toshmatov ZO, Li J, Eshbakova KA, Tang D, Xin XL, Aisa HA. 2019. New monoterpene glucosides from Dracocephalum komarovi and their anti-inflammatory activity. Phytochem Lett. 33:102–105.
  • Venditti A, Serrilli AM, Bianco A. 2013. Iridoids from Bellardia trixago (L.) all. Nat Prod Res. 27(15):1413–1416.
  • Wang JM, Sun JF, Jin L, Wang MJ, Huang YY, Jin M, Zhou W, Li G. 2021. A new monoterpenoid glycoside and a new phenolic glycoside isolated from Dracocephalum moldavica and their anti-complementary activity. Nat Prod Res. doi: 10.1080/14786419.2021.1957885.
  • Wang RS, Sun JF, JM, Ye C, Wang JM, JL, Ma YJ, Zhou W, Li G. 2021. Two new phenolic glycosides with anti-complementary activity from the roots of Sanguisorba officinalis L. Nat Prod Res. 35(22):4423–4432.
  • Weremczuk-Jeżyna I, Grzegorczyk-Karolak I, Frydrych B, Hnatuszko-Konka K, Gerszberg A, Wysokińska H. 2017. Rosmarinic acid accumulation and antioxidant potential of Dracocephalum moldavica L. cell suspension culture. Not Bot Horti Agrobo. 45(1):215–219.
  • Ye C, Jin M, Jin CS, Wang RS, Wang JM, Zhang Y, Li SN, Sun JF, Zhou W, Li G. 2021. Two novel flavonoids from the leaves of Rhododendron dauricum L. with their inhibition of TNF-α production in LPS-induced RAW 264.7 cells. Nat Prod Res. 35(8):1331–1339.
  • Zhao L, Tian SG, Wen E, Upur H. 2017. An ethnopharmacological study of aromatic Uyghur medicinal plants in Xinjiang, China. Pharm Biol. 55(1):1114–1130.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.