Publication Cover
Natural Product Research
Formerly Natural Product Letters
Volume 38, 2024 - Issue 6
194
Views
0
CrossRef citations to date
0
Altmetric
Research Articles

Phenolic components from the fruits of Solanum xanthocarpum with anti-inflammatory activity

, , , , , , , , ORCID Icon, & ORCID Icon show all
Pages 1007-1015 | Received 10 Nov 2022, Accepted 03 May 2023, Published online: 10 May 2023

References

  • Aeberhard EE, Henderson SA, Arabolos NS, Griscavage JM, Castro FE, Barrett CT, Ignarro LJ. 1995. Nonsteroidal anti-inflammatory drugs inhibit expression of the inducible nitric oxide synthase gene. Biochem Biophys Res Commun. 208(3):1053–1059.
  • Aga E-B, Li H-J, Chen J, Li P. 2012. Chemical constituents from the aerial parts of Codonopsis nervosa. Chin J Nat Med. 10(5):366–369.
  • Chang J, Xuan L-J, Xu Y-M. 1999. Two new phenylpropanetriol glycosides in the fruits of Melia toosendan. Acta Bot Sin. 41(11):1245–1248.
  • Chen D, Fan J, Wang P, Zhu L, Jin Y, Peng Y, Du S. 2012. Isolation, identification and antioxidative capacity of water-soluble phenylpropanoid compounds from Rhodiola crenulata. Food Chem. 134(4):2126–2133.
  • D'Abrosca B, DellaGreca M, Fiorentino A, Monaco P, Previtera L, Simonet AM, Zarrelli A. 2001. Potential allelochemicals from Sambucus nigra. Phytochemistry. 58(7):1073–1081.
  • Di L, Wang K-J, Zhu C-C, Li N. 2010. Chemical constituents from rhizomes of Curculigo capitulata. B Korean Chem Soc. 31(10):2999–3002.
  • Dinda B, Debnath S, Harigaya Y. 2007. Naturally occurring secoiridoids and bioactivity of naturally occurring iridoids and secoiridoids. A review, part 2. Chem Pharm Bull (Tokyo). 55(5):689–728.
  • Fayos J, Bellés JM, López-Gresa MP, Primo J, Conejero V. 2006. Induction of gentisic acid 5-O-beta-D-xylopyranoside in tomato and cucumber plants infected by different pathogens. Phytochemistry. 67(2):142–148.
  • Garzón-Porras AM, Bertuzzi DL, Lucas K, da Silva LCE, de Oliveira MG, Ornelas C. 2020. Nitric oxide releasing polyamide dendrimer with anti-inflammatory activity. ACS Appl Polym Mater. 2(5):2027–2034.
  • Hao L, Wang K, Zhao J, Wang M, Zhou L. 2012. Secondary metabolites from Halostachys caspica and their antimicrobial and antioxidant activities. Rec Nat Prod. 6(1):57–61.
  • He T, Zhao Y-C, Li P-Y, Weng Z-Y, Chang Y-L, Chen X-Y, Bai S-J, Liu Z-Z, She G-M. 2017. Chemical constituents from anti-inflammatory and analgesic active fraction of Gaultheria leucocarpa var. yunnanensis. Chinese Traditional and Herbal Drugs. 48(17):3469–3474.
  • Hyun BP, Kyu HL, Ki HK, Il KL, Kang RL. 2009. Lignans from the roots of Berberis amurensis. Nat Prod Res. 15(1):17–21.
  • Jiang H, Yang L, Ma G-X, Xing X-D, Yan M-L, Zhang Y-Y, Wang Q-H, Yang B-Y, Kuang H-X, Xu X-D. 2017. New phenylpropanoid derivatives from the fruits of Xanthium sibiricum and their anti-inflammatory activity. Fitoterapia. 117:11–15.
  • Jutiviboonsuk A, Zhang H-J, Tan GT, Ma C-Y, Van Hung N, Manh Cuong N, Bunyapraphatsara N, Soejarto DD, Fong HH. 2005. Bioactive constituents from roots of Bursera tonkinensis. Phytochemistry. 66(23):2745–2751.
  • Kamoldinov KS, Eshbakova KA, Aisa HA. 2018. Fatty acids and coumarins of Fraxinus syriaca. Chem Nat Compd. +. 54(1):166–167.
  • Kikuchi M, Sugiyama M. 1993. Characterization of Lariciresinol Glucosides from Osmanthus asiaticus. Heterocycles. 36(1):117–121.
  • Kuang H-X, Xia Y-G, Yang B-Y, Wang Q-H, Lü S-W. 2009. Lignan constituents from Chloranthus japonicus Sieb. Arch Pharm Res. 32(3):329–334.
  • Kumar S, Pandey AK. 2014. Medicinal attributes of Solanum xanthocarpum fruit consumed by several tribal communities as food: an in vitro antioxidant, anticancer and anti HIV perspective. Bmc Complem Altern M. 14:112.
  • Li N, Zeng W-L, Luo X-L, Yang C-B, Zhang Y-J, Ding Y, Zhao P. 2018. A new arbutin derivative from the leaves of Vaccinium dunalianum wight. Nat Prod Res. 32(1):65–70.
  • Liu J, Xu M, Zhu M-Y, Feng Y. 2015. Chemoreversal Metabolites from the Endophytic Fungus Penicillium citrinum Isolated from a Mangrove Avicennia marina. Nat Prod Commun. 10(7):1203–1205.
  • Liu S-K, Que S, Cheng W, Zhang Q-Y, Liang H. 2013. Chemical constituents from whole plants of Carduus acanthoides. China J Chin Mater Med. 38(14):2334–2337.
  • Ma C, Whitaker BD, Kennelly EJ. 2010. New 5-O-caffeoylquinic acid derivatives in fruit of the wild eggplant relative Solanum viarum. J Agric Food Chem. 58(20):11036–11042.
  • More SK, Lande AA, Jagdale PG, Adkar PP, Ambavade SD. 2013. Evaluation of anti-inflammatory activity of Solanum xanthocarpum Schrad and Wendl (Kaṇṭakāri) extract in laboratory animals. Anc Sci Life. 32(4):222–226.
  • Parmar KM, Itankar PR, Joshi A, Prasad SK. 2017. Anti-psoriatic potential of Solanum xanthocarpum stem in Imiquimod-induced psoriatic mice model. J Ethnopharmacol. 198:158–166.
  • Preet R, Gupta RC. 2018. HPTLC Analysis of Solanum xanthocarpum Schrad. and Wendl., a Siddha Medicinal Herb. Adv Pharmacol Sci. 2018:8546306.
  • Pungle R, Nile SH, Kharat AS. 2023. Green synthesis and characterization of Solanum xanthocarpum capped silver nanoparticles and its antimicrobial effect on multidrug-resistant bacterial (MDR) isolates. Chem Biol Drug Des. 101(3):469–478.
  • Ren G-J, Xu Z, Zhang H-D, Xie X. 2012. Study on Chemical Constituents of Clematis armandii. Chin J Exp Trad Med Formulae. 18(01):92–95.
  • Ro Lee K, Wan Woo K, Subedi L, Yeou Kim S, Un Choi S, Se Suh W. 2015. Phenolic derivatives from the stems of Lagerstroemia indica and their biological activity. Heterocycles. 91(12):2355.
  • Simaratanamongkol A, Umehara K, Niki H, Noguchi H, Panichayupakaranant P. 2014. Angiotensin-converting enzyme (ACE) inhibitory activity of Solanum torvum and isolation of a novel methyl salicylate glycoside. J Funct Foods. 11:557–562.
  • Tachai S, Nuntawong N. 2016. Uncommon secondary metabolites from Etlingera pavieana rhizomes. Nat Prod Res. 30(19):2215–2219.
  • Turghun C, Bakri M, Liu G-Y, Bobakulov K, Aisa HA. 2021. Phenolic glycosides from Nitraria sibirica leaves and their in vitro biological activities. Nat Prod Res. 35(8):1388–1392.
  • Velu P, Vijayalakshmi A, Iyappan P, Indumathi D. 2016. Evaluation of antioxidant and stabilizing lipid peroxidation nature of Solanum xanthocarpum leaves in experimentally diethylnitrosamine induced hepatocellular carcinogenesis. Biomed Pharmacother. 84:430–437.
  • Wang M, Kikuzaki H, Lin C-C, Kahyaoglu A, Huang M-T, Nakatani N, Ho C-T. 1999. Acetophenone glycosides from thyme (Thymus vulgaris L.). J Agric Food Chem. 47(5):1911–1914.
  • Wang S, Shi P, Qu L, Ruan J, Yang S, Yu H, Zhang Y, Wang T. 2017. Bioactive constituents obtained from the seeds of Lepidium apetalum Willd. Molecules (Basel, Switzerland). 22(4):540.
  • Wu J, Huang J-S, Xiao Q, Zhang S, Xiao Z-H, Li Q-X, Long L-J, Huang L-G. 2004. Complete assignments of 1H and 13C NMR data for 10 phenylethanoid glycosides. Magn Reson Chem. 42(7):659–662.
  • Xiao H-H, Dai Y, Wong M-S, Yao X-S. 2014. New lignans from the bioactive fraction of Sambucus williamsii Hance and proliferation activities on osteoblastic-like UMR106 cells. Fitoterapia. 94:29–35.
  • Xie X, Zhang H-D, Wen J-H, Song Y-L, Wang X-J, Zhao Y-W, Huang W-Z, Wang Z-Z, Qiao W. 2016. Studies on chemical constituents in Guizhi Fuling Capsule (VI). Chin Trad Herbal Drugs. 47(21):3795–3797.
  • Xing J-Y, Du B-Z, Feng X, Zhang H-X-G, Han Z-Z, Gao Z-P, Tu P-F, Chai X-Y. 2018. Phenolic constituents from stems of llex asprella. China J Chin Mater Med. 43(21):4267–4273.
  • Xu Z-P, Liu Y, Wang S-Y, Li Z-W, Lu D-X, Jiang P, Pan J, Guan W, Kuang H-X, Yang B-Y. 2022. Phenolic compounds of Solanum xanthocarpum play an important role in anti-inflammatory effects. Arab J Chem. 15(7):103877.
  • Zeng Q, Chang R-J, Qin J-J, Cheng X-R, Zhang W-D, Jin H-Z. 2011. New glycosides from Dracocephalum tanguticum maxim. Arch Pharm Res. 34(12):2015–2020.
  • Zhong X-N, Otsuka H, Ide T, Hirata E, Takushi A, Takeda Y. 1998. Hydroquinone glycosides from leaves of Myrsine seguinii. Phytochemistry. 49(7):2149–2153.
  • Zhou Y, Liu X-Y, Yu H-B, Lu X-L, Jiao B-H. 2017. Research of the secondary metabolites from Antarctic-derived fungus penicillium sp. S-2-10. China J Mar Drugs. 36(03):18–22.

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.