The objectives of this study were to investigate the effects of successive continuous generation (SCG) cuttings of Buxus sinica var. parvifolia on the rejuvenation of ortets at the hormone level, detect levels of in...The objectives of this study were to investigate the effects of successive continuous generation (SCG) cuttings of Buxus sinica var. parvifolia on the rejuvenation of ortets at the hormone level, detect levels of indoleacetic acid (IAA), abscisic acid (ABA), isopentenyladenosine (iPA), zeatin riboside (ZR) and gibberellin4 (GA4) during the rooting process of different generations by means of enzyme-linked immunosorbent assay (ELISA) technology and statistically analyze the rooting characteristics of cuttings. The results show that, the root systems of subsequent generations (generation 1998, 2000) developed satisfactorily, only a few initial generation (generation 1990, 1994) cuttings rooted and the root growth was inhibited. Around the period of callus formation and root projection through the epidermis, there was a marked, regular variation in the levels of IAA, ABA and GA4 between the initial generations and subsequent generations.展开更多
Two new compounds 7-hydroxy-5-O-(β-D-glucopyranoside) flavan (1) and (Z)-4',6'-dihydroxy-2'-O-(β-D-glucopyranoside) chalcone (2), along with eight known compounds, were isolated from the stem bark of Dr...Two new compounds 7-hydroxy-5-O-(β-D-glucopyranoside) flavan (1) and (Z)-4',6'-dihydroxy-2'-O-(β-D-glucopyranoside) chalcone (2), along with eight known compounds, were isolated from the stem bark of Drypetes parvifolia (Euphorbiaceae). Their structures were established on the basis of spectroscopic analysis and chemical evidence.展开更多
On the basis of chemical and spectroscopic evidence,the structure of parvifolin was established as ent-7β,20-epoxy-kaurane-15-oxo-1α,6β,7β,11β,16α-pentaol.
A new diterpene glucoside with an ent-kaurene skeleton was isolated from Isodon parvifolia(Butalin)Hara. Its structure (1) was established by spectrbscopic and chemical methods.
Objective:To evaluate antioxidant,cytotoxic,and anti-venom capacity of crude bark extracts of Alstonia parvifolia Merr.Methods:Gas chromatography-mass spectrometry(GC-MS)and energy dispersive X-ray analyses were accom...Objective:To evaluate antioxidant,cytotoxic,and anti-venom capacity of crude bark extracts of Alstonia parvifolia Merr.Methods:Gas chromatography-mass spectrometry(GC-MS)and energy dispersive X-ray analyses were accomplished to characterize the chemical constituents of Alstonia parvifolia.Biochemical characterization was evaluated using an inhibitory phospholipase A_(2)(PLA_(2))assay,DPPH,and cytotoxicity assays.Using the constituents listed in the GC-MS analyses,molecular docking was conducted to inspect the binding energies between the chosen compounds and selected PLA_(2) isoforms.Results:GC-MS analyses showed that the Alstonia parvifolia crude extract consisted predominantly of acetylmarinobufogenin(14.89%),γ-sitosterol(10.44%),3-O-methyl-D-glucose(5.88%),3,5-dimethoxy-4-hydroxyphenylacetic acid(5.30%),(2α,5α)-17-methoxyaspidofractinin-3-one(AFM)(4.08%),and 2,3,5,6,7,8,9-heptahydro-1-phenyl-5-(p-chlorophenylimino)-1H-benzo[e][1,4]thiazepine(HPT)(1.37%).The principal elemental components of Alstonia parvifolia were Ca(4.012%)and K(1.496%),as exhibited by energy dispersive X-ray examination.Alstonia parvifolia showed significant free radical scavenging ability(IC_(50):0.287 mg/mL)and was non-cytotoxic to normal HDFn cells(IC_(50)>100μg/mL).Moreover,Alstonia parvifolia was favorably cytotoxic to MCF-7(IC_(50):4.42µg/mL),followed by H69PR,HT-29,and THP-1,with IC_(50) values of 4.94,5.07,and 6.27µg/mL,respectively.Alstonia parvifolia also displayed notable inhibition against PLA_(2) activity of Naja philippinensis Taylor venom with IC_(50) of(15.2±1.8)μg/mL.Docking and cluster analyses projected negative binding energies from AFM(−6.36 to−9.68 kcal/mol),HPT(−7.38 to−9.77 kcal/mol),and acetylmarinobufogenin(−7.22 to−9.59 kcal/mol).These calculations were for the particular interactions of Alstonia parvifolia constituents to PLA_(2) homologues where the utmost affinity was detected in HPT owing to the dipole interactions with amino acid residues.Conclusions:The bark extract of Alstonia parvifolia shows great potential as an anti-venom agent due to its low cytotoxic profile,remarkable PLA_(2) inhibition,and docking binding energies between its bioactive constituents and PLA_(2) homologues.展开更多
基金the National Natural Science Foundation of China (Grant No. 30070633).
文摘The objectives of this study were to investigate the effects of successive continuous generation (SCG) cuttings of Buxus sinica var. parvifolia on the rejuvenation of ortets at the hormone level, detect levels of indoleacetic acid (IAA), abscisic acid (ABA), isopentenyladenosine (iPA), zeatin riboside (ZR) and gibberellin4 (GA4) during the rooting process of different generations by means of enzyme-linked immunosorbent assay (ELISA) technology and statistically analyze the rooting characteristics of cuttings. The results show that, the root systems of subsequent generations (generation 1998, 2000) developed satisfactorily, only a few initial generation (generation 1990, 1994) cuttings rooted and the root growth was inhibited. Around the period of callus formation and root projection through the epidermis, there was a marked, regular variation in the levels of IAA, ABA and GA4 between the initial generations and subsequent generations.
基金One of the authors(J.Wandji)is grateful for grant(No.F/2624-3F)from the International Foundation for Science(Sweden)the sponsorship of the"UniversitéParis Descartes,France"during his multiple research visits in Paris.
文摘Two new compounds 7-hydroxy-5-O-(β-D-glucopyranoside) flavan (1) and (Z)-4',6'-dihydroxy-2'-O-(β-D-glucopyranoside) chalcone (2), along with eight known compounds, were isolated from the stem bark of Drypetes parvifolia (Euphorbiaceae). Their structures were established on the basis of spectroscopic analysis and chemical evidence.
文摘On the basis of chemical and spectroscopic evidence,the structure of parvifolin was established as ent-7β,20-epoxy-kaurane-15-oxo-1α,6β,7β,11β,16α-pentaol.
文摘A new diterpene glucoside with an ent-kaurene skeleton was isolated from Isodon parvifolia(Butalin)Hara. Its structure (1) was established by spectrbscopic and chemical methods.
基金supported by the De La Salle University Science Foundation in coordination with the University Research Coordination Office(Project number:18FU2TAY16-3TAY17).
文摘Objective:To evaluate antioxidant,cytotoxic,and anti-venom capacity of crude bark extracts of Alstonia parvifolia Merr.Methods:Gas chromatography-mass spectrometry(GC-MS)and energy dispersive X-ray analyses were accomplished to characterize the chemical constituents of Alstonia parvifolia.Biochemical characterization was evaluated using an inhibitory phospholipase A_(2)(PLA_(2))assay,DPPH,and cytotoxicity assays.Using the constituents listed in the GC-MS analyses,molecular docking was conducted to inspect the binding energies between the chosen compounds and selected PLA_(2) isoforms.Results:GC-MS analyses showed that the Alstonia parvifolia crude extract consisted predominantly of acetylmarinobufogenin(14.89%),γ-sitosterol(10.44%),3-O-methyl-D-glucose(5.88%),3,5-dimethoxy-4-hydroxyphenylacetic acid(5.30%),(2α,5α)-17-methoxyaspidofractinin-3-one(AFM)(4.08%),and 2,3,5,6,7,8,9-heptahydro-1-phenyl-5-(p-chlorophenylimino)-1H-benzo[e][1,4]thiazepine(HPT)(1.37%).The principal elemental components of Alstonia parvifolia were Ca(4.012%)and K(1.496%),as exhibited by energy dispersive X-ray examination.Alstonia parvifolia showed significant free radical scavenging ability(IC_(50):0.287 mg/mL)and was non-cytotoxic to normal HDFn cells(IC_(50)>100μg/mL).Moreover,Alstonia parvifolia was favorably cytotoxic to MCF-7(IC_(50):4.42µg/mL),followed by H69PR,HT-29,and THP-1,with IC_(50) values of 4.94,5.07,and 6.27µg/mL,respectively.Alstonia parvifolia also displayed notable inhibition against PLA_(2) activity of Naja philippinensis Taylor venom with IC_(50) of(15.2±1.8)μg/mL.Docking and cluster analyses projected negative binding energies from AFM(−6.36 to−9.68 kcal/mol),HPT(−7.38 to−9.77 kcal/mol),and acetylmarinobufogenin(−7.22 to−9.59 kcal/mol).These calculations were for the particular interactions of Alstonia parvifolia constituents to PLA_(2) homologues where the utmost affinity was detected in HPT owing to the dipole interactions with amino acid residues.Conclusions:The bark extract of Alstonia parvifolia shows great potential as an anti-venom agent due to its low cytotoxic profile,remarkable PLA_(2) inhibition,and docking binding energies between its bioactive constituents and PLA_(2) homologues.