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18篇 您的检索式:作者名="vanderLans"
    题名 作者 年代 出处 被引量
1Expression of proliferating cell nuclear antigen (PCNA)/cyclin during the cell cycle显示文摘Kurki P Vanderlan M Dolbeare F 1986Exp Cell Res1986,166,1:1
2The absolute configuration of 1- (3', 4'-dihydroxyeinnamoyl) eyelopentane-2,3-diol from the amazonian tree Chimarrhis turbinate 显示文摘Carmen Lucia Cardoso Vanderlan da Silva Bolzani Dulce Helena Siqueira Silva 2006Journal of Nature Product2006,69,:1
3Synthesis and evaluation of novel prenylated chalcone derivatives as anti-leishmanial and anti-trypanosomal compounds显示文摘Thais Gaban Passalacqua Luiz Antonio Dutra Letícia de Almeida Angela Maria Arenas Velásquez Fabio Aurelio Esteves Torres Paulo Renato Yamasaki Mariana Bastos dos Santos Luis Octavio Regasini Paul A.M. Michels Vanderlan da Silva Bolzani Marcia A.S. Graminh 2015Bioorganic & Medicinal Chemistry Letters2015,,:1
4Expression of prolifer- ating cell nuclear antigen (PCNA)/cyclin during the cell cycle 显示文摘Kurki P Vanderlan M Dolbeare F 1986Exp Cell Res1986,166,1:1
5Antifungal amide from leaves of Piper hispidum显示文摘Alberto CA Vanderlan DSB Maria CMY 1998J Nat Prod1998,61,:1
6Neurologic sequelace of penetrating cervical trauma 显示文摘Vanderlan WB Tew BE Seguin CY 2009Spine2009,34,24:1
7Cytotoxic lignans from the stems of Styrax camporum (Styracaceae)显示文摘Helder L. Teles Jefferson P. Hemerly Patricia M. Pauletti Jose R. C. Pandolfi Angela R. Araujo Sandro R. Valentini M. Claudia M. Young Vanderlan Da S. Bolzani Dulce H. S. Silva 2005Natural Product Research2005,,4:1
8nor -Lignans from the leaves of Styrax ferrugineus (Styracaceae) with antibacterial and antifungal activity显示文摘Patricia Mendon?a Pauletti Angela Regina Araújo Maria Claudia Marx Young Astréa M Giesbrecht Vanderlan da Silva Bolzani 2000Phytochemistry2000,,6:1
9Further sesquiterpene pyridine alkaloids from Maytenus aquifolium 显示文摘JOAQUIM C VANDERLAN S B ANA M P 1998Phytochemistry1998,49,7:1
10Determination of the absolute configuration of natural product molecules using vibrational circular dichroism 显示文摘Joao M Batista J Vanderlan da SB 2014Studies Natural ProductsChem2014,41,:1
11Effect of agitation intensities on fungal morphology of submerged fermentation显示文摘Cui Y Q Vanderlans R G A M Luyben K C A M 1997Biotechnol Bioeng1997,55,5:1
12A simple hydrodynamic model for the liquid circulation velocity in a full-scale two- andthree-phase internal airlift reactor operating in the gas recirculation regime 显示文摘Heijnen J J Hols J vanderLans R G J M 1997Chemical Engineering Science1997,52,15:1
13Expression of proliferating cell nuclear antigen (PCNA)/cyclin during the cell cycle 显示文摘Kurki P Vanderlan M Dolbare F 1986Exp cell Res1986,166,:1
14Antiproliferative activity of pristimerin isolated from Maytenus ilicifolia (Celastraceae) in human HL-60 cells显示文摘Patricia Mar?al da Costa Paulo Michel Pinheiro Ferreira Vanderlan da Silva Bolzani Maysa Furlan Vania Aparecida de Freitas Formenton Macedo dos Santos Joaquim Corsino Manoel Odorico de Moraes Letícia Veras Costa-Lotufo Raquel Carvalho Montenegro Cláudia P 2008Toxicology in Vitro2008,,4:1
15Nitensidine A, a guanidine alkaloid from Pterogyne nitens , is a novel substrate for human ABC transporter ABCB1显示文摘Yasuhiro Tajima Hiroshi Nakagawa Ai Tamura Onat Kadioglu Kazuhiro Satake Yuji Mitani Hayato Murase Luis Octavio Regasini Vanderlan da Silva Bolzani Toshihisa Ishikawa Gert Fricker Thomas Efferth 2014Phytomedicine2014,,3:1
16Expression of proliferating cell nuclear antigen (PCNA)/cylin during the cell cycle显示文摘Kurki DP Vanderlan M Dolbeare F 1986Exp Cell Res1986,166,1:1
17Cognitive structures in the perception of modern technologies 显示文摘Daamen D vanderLans 1990Science Technology and Human Values1990,15,:1
18Anti-Candida and anti-Cryptococcus evaluation of 15 non-alkaloidal compounds from Pterogyne nitens显示文摘Objective: To evaluate anti-Candida and anti-Cryptococcus activities of 15 nonalkaloidal compounds from Pterogyne nitens Tulasne(Leguminosae), a South American medicinal plant.Methods: Compounds were submitted to antifungal assays, using microdilution method described by Clinical and Laboratory Standards Institute document, with minor modifications. Five species of Candida and two species of Cryptococcus, including clinical isolates were screened. Antifungal activity was expressed by minimum inhibitory concentration(MIC). Amphotericin B and fluconazole were used as standard antifungal drugs.Results: Among tested compounds, six substances presented fungal growth inhibition(MIC < 31.2 mg/m L) [three flavone derivatives(1–3), a glycosylated flavonol derivative(5)and two phenolic acids(10 and 12)]. Sorbifolin(1), exhibited potent antifungal activity,demonstrating MIC value of 3.90 mg/m L against Candida glabrata ATCC 90030, Cryptococcus gattii 118 and fluconazole-resistant clinical isolate of Cryptococcus neoformans var. grubii. Pedalin(2) and nitensoside B(3), two glycosylated flavone derivatives, were active against Cryptococcus neoformans ATCC 90012(MIC = 7.80 mg/m L).Conclusions: Flavone derivatives from Pterogyne nitens can serve as prototypes for the design and development of innovative anti-Candida and anti-Cryptococcus hits.Caroline Sprengel Lima Carlos Roberto Polaquini Mariana Bastos dos Santos Fernanda Patricia Gullo Fernanda Sangalli Leite Liliane Scorzoni Vanderlan da Silva Bolzani Maria Jose Soares Mendes-Giannini Ana Marisa Fusco-Almeida Andréia Alves Rezende Luis Octavio Regasini 2016Asian Pacific Journal of Tropical Biomedicine2016,6,10:0
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