$\require{mediawiki-texvc}$

연합인증

연합인증 가입 기관의 연구자들은 소속기관의 인증정보(ID와 암호)를 이용해 다른 대학, 연구기관, 서비스 공급자의 다양한 온라인 자원과 연구 데이터를 이용할 수 있습니다.

이는 여행자가 자국에서 발행 받은 여권으로 세계 각국을 자유롭게 여행할 수 있는 것과 같습니다.

연합인증으로 이용이 가능한 서비스는 NTIS, DataON, Edison, Kafe, Webinar 등이 있습니다.

한번의 인증절차만으로 연합인증 가입 서비스에 추가 로그인 없이 이용이 가능합니다.

다만, 연합인증을 위해서는 최초 1회만 인증 절차가 필요합니다. (회원이 아닐 경우 회원 가입이 필요합니다.)

연합인증 절차는 다음과 같습니다.

최초이용시에는
ScienceON에 로그인 → 연합인증 서비스 접속 → 로그인 (본인 확인 또는 회원가입) → 서비스 이용

그 이후에는
ScienceON 로그인 → 연합인증 서비스 접속 → 서비스 이용

연합인증을 활용하시면 KISTI가 제공하는 다양한 서비스를 편리하게 이용하실 수 있습니다.

Leaves of Magnolia liliflora Desr. as a high-potential by-product: Lignans composition, antioxidant, anti-inflammatory, anti-phytopathogenic fungal and phytotoxic activities

Industrial crops and products, v.125, 2018년, pp.416 - 424  

Wu, Hai-bo (College of Life and Environmental Sciences, Minzu University of China, Beijing, 100081, China) ,  Liu, Ting-ting (College of Life and Environmental Sciences, Minzu University of China, Beijing, 100081, China) ,  Zhang, Zheng-xi (College of Life and Environmental Sciences, Minzu University of China, Beijing, 100081, China) ,  Wang, Wen-shu (College of Life and Environmental Sciences, Minzu University of China, Beijing, 100081, China) ,  Zhu, Wen-wen (College of Life and Environmental Sciences, Minzu University of China, Beijing, 100081, China) ,  Li, Lin-feng (College of Life and Environmental Sciences, Minzu University of China, Beijing, 100081, China) ,  Li, Yu-rong (College of Life and Environmental Sciences, Minzu University of China, Beijing, 100081, China) ,  Chen, Xue (College of Life and Environmental Sciences, Minzu University of China, Beijing, 100081, China)

Abstract AI-Helper 아이콘AI-Helper

Abstract After harvesting the flower buds of Magnolia liliflora Desr. (the traditional Chinese medicine known as “Xinyi”), a significant quantity of M. liliflora leaf (MLL) was generated as a by-product. The aim of this study is to verify the potential use of MLL and isolate its bioacti...

주제어

참고문헌 (46)

  1. BMC Complement. Altern. Med. Adedapo 8 1 2008 10.1186/1472-6882-8-53 Antibacterialand antioxidant properties of the methanol extracts of the leaves and stems of Calpurnia aurea 

  2. Phytochemistry Ahmed 59 851 2002 10.1016/S0031-9422(01)00442-3 Two highly oxygenated eudesmanes and 10 lignans from Achillea holosericea 

  3. Biol. Pharm. Bull. Ahn 24 1085 2001 10.1248/bpb.24.1085 Inhibitory activity of lignan components from the flower buds of Magnoliae fargesii on the expression of cell adhesion molecules 

  4. J. Funct. Foods Bai 25 314 2016 10.1016/j.jff.2016.06.009 Bioactives from stems and leaves of mung beans (Vigna radiata L.) 

  5. Tetrahedron Banerji 40 5047 1984 10.1016/S0040-4020(01)91253-0 Sylvone, a new furanoid lignan of Piper sylvaticum 

  6. Trends Food Sci. Technol. Barba 49 96 2016 10.1016/j.tifs.2016.01.006 Green alternative methods for the extraction of antioxidant bioactive compounds from winery wastes and by-products: a review 

  7. Anal. Biochem. Benzie 239 70 1996 10.1006/abio.1996.0292 The ferric reducing ability of plasma (FRAP) as a measure of “antioxidant power”: the FRAP assay 

  8. J. Food Sci. Technol. Bhatnagar 52 521 2013 10.1007/s13197-013-1012-0 Development of a rapid method for determination of lignans content in sesame oil 

  9. Chem. Pharm. Bull. Chen 36 1791 1988 10.1248/cpb.36.1791 Three new neolignans, fargesones A, B and C, from the flower buds of Magnolia fargesii 

  10. Ind. Crops. Prod. de Almeida Rochelle 87 150 2016 10.1016/j.indcrop.2016.03.044 The anti-biofilm potential of commonly discarded agro-industrial residues against opportunistic pathogens 

  11. Phytochemistry Diaz 19 285 1980 10.1016/S0031-9422(00)81975-5 Neolignans from Aniba lancifolia 

  12. Duke 1985 Medicinal Plants of China, Reference Publications 

  13. Food. Chem. Durazzo 140 666 2013 10.1016/j.foodchem.2012.09.062 Phenols, lignans and antioxidant properties of legume and sweet chestnut flours 

  14. Org. Biomol. Chem. Eklund 3 3336 2005 10.1039/b506739a Chemical studies on antioxidant mechanisms and free radical scavenging properties of lignans 

  15. Gang 1997 Phylogenetic Links in Plant Defense Systems: Lignans, Isoflavonoids, and Their Reductases 

  16. J. Chin. Pharm. Sci. He 10 180 2001 Studies on the chemical components of Clematis chinensis 

  17. Tetrahedron Hofer 37 1181 1981 10.1016/S0040-4020(01)92047-2 Stereochemistry of tetrahydrofurofuran derivatives-circular dichroism and absolute conformation 

  18. Ind. Crops. Prod. Huang 91 302 2016 10.1016/j.indcrop.2016.07.033 Triterpenes isolated from acorns of Quercus serrata var. brevipetiolata exert anti-inflammatory activity 

  19. Molecules Hwang 15 3507 2010 10.3390/molecules15053507 Antifungal effect of (+)-pinoresinol isolated from Sambucus williamsii 

  20. Phytochemistry Iida 21 673 1982 10.1016/0031-9422(82)83163-4 Hydroperoxysesquiterpene and lignan constituents of Magnolia kobus 

  21. J. Nat. Prod. Jung 61 808 1998 10.1021/np970445+ Magnone A and B, novel anti-PAF tetrahydrofuran lignans from the flower buds of Magnolia fargesii 

  22. Food Res. Int. Landete 46 410 2012 10.1016/j.foodres.2011.12.023 Plant and mammalian lignans: a review of source, intake, metabolism, intestinal bacteria and health 

  23. Bull. Korean Chem. Soc. Lee 26 913 2005 10.5012/bkcs.2005.26.6.913 Lignans from the flower buds of Magnolia fargesii 

  24. Helv. Chim. Acta Lee 91 2361 2008 10.1002/hlca.200890256 Lignans from the bark of Magnolia kobus 

  25. Biofactors Lee 38 300 2012 10.1002/biof.1022 Fargesin improves lipid and glucose metabolism in 3T3-L1 adipocytes and high-fat diet-induced obese mice 

  26. BMC. Cancer Lee 15 576 2015 10.1186/s12885-015-1580-7 Magnolin inhibits cell migration and invasion by targeting the ERKs/RSK2 signaling pathway 

  27. China Pharm. Li 23 015 2012 Study on extraction and inclusion technology of volatile oils from Xincang Bishu Capsules 

  28. Fitoterapia Li 97 92 2014 10.1016/j.fitote.2014.05.011 Isolation and identification of phase i metabolites of phillyrin in rats 

  29. Acta Hortic. Sin. Li 42 1150 2015 Effects of drying methods on chemical composition and antioxidant activity of the flowers of magnolia liliflora Desr 

  30. Lishizhen. Med. Mater. Med. Res. Liu 19 1911 2008 Analysis of the volatile oils from the flowers of magnolia liliflora desr. by gc-ms 

  31. Chin. Trad. Herb. Drugs Liu 44 1397 2013 Chemical constituents from flower buds of she medicine magnolia liliflora 

  32. Chin. J. Pharm. Lv 2 005 2013 Experimental study on safety in guinea pig about the different components of Flos Magnolia Nose Drop 

  33. Phytochemistry Ma 41 287 1996 10.1016/0031-9422(95)00578-1 A neolignan and lignans from Magnolia biondii 

  34. J. Nat. Prod. Min 67 1980 2004 10.1021/np040113m New furofuran and butyrolactone lignans with antioxidant activity from the stem bark of Styrax japonica 

  35. Tetrahedron Lett. Pelter 18 4137 1977 10.1016/S0040-4039(01)83447-X Revised structures for epiaschantin and epimagnolin 

  36. J. Nat. Prod. Pieters 56 899 1993 10.1021/np50096a013 Isolation of a dihydrobenzofuran lignan from South American dragon’s blood (Croton spp.) as an inhibitor of cell proliferation 

  37. Free. Radic. Biol. Med. Re 26 1231 1999 10.1016/S0891-5849(98)00315-3 Antioxidant activity applying an improved ABTS radical cation decolorization assay 

  38. Curr. Med. Chem. Shen 15 1616 2008 10.2174/092986708784911515 Chemistry and bioactivity of Flos Magnoliae, a Chinese herb for rhinitis and sinusitis 

  39. Ind. Crops Prod. Tehranifar 34 1523 2011 10.1016/j.indcrop.2011.05.007 High potential of agro-industrial by-products of pomegranate (Punica granatum L.) as the powerful antifungal and antioxidant substances 

  40. Planta. Med. Wang 78 141 2012 10.1055/s-0031-1280311 Lignans from the flower buds of Magnolia liliflora Desr 

  41. Oxid. Med. Cell. Longev. Wang 1 2014 Magnolin protects against contrast-induced nephropathy in rats via antioxidation and antiapoptosis 

  42. Bioorg. Med. Chem. Lett. Wikul 22 5215 2012 10.1016/j.bmcl.2012.06.068 (+)-pinoresinol is a putative hypoglycemic agent in defatted sesame (Sesamum indicum) seeds though inhibiting α-glucosidase 

  43. Ind. Crops. Prod. Wu 92 77 2016 10.1016/j.indcrop.2016.07.046 Insecticidal activity of sesquiterpene lactones and monoterpenoid from the fruits of Carpesium abrotanoides 

  44. J. Agric. Food. Chem. Yamauchi 63 5224 2015 10.1021/acs.jafc.5b01099 Evaluation of plant growth regulatory activity of furofuran lignan bearing a 7,9′:7′,9-diepoxy structure using optically pure (+)-and (?)-enantiomers 

  45. Nat. Prod. Res. Dev. Yang 24 298 2012 Vasorelaxant effect on isolated rabbit aortic rings and chemical constituents of n-butanol fraction from leaves of Magnolia officinalis rehd et wils 

  46. Flav. Frag. Cosm. Zhang 2 003 1999 Studies on the chemical constituents of volatile oil of Magnolia liliflora extracted by supercritical CO2 fluid 

관련 콘텐츠

이 논문과 함께 이용한 콘텐츠

저작권 관리 안내
섹션별 컨텐츠 바로가기

AI-Helper ※ AI-Helper는 오픈소스 모델을 사용합니다.

AI-Helper 아이콘
AI-Helper
안녕하세요, AI-Helper입니다. 좌측 "선택된 텍스트"에서 텍스트를 선택하여 요약, 번역, 용어설명을 실행하세요.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.

선택된 텍스트

맨위로