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Results 1 - 50 of 249,983  for Everything (Includes Articles)

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1
Antitrypanosomal and Antileishmanial Activities of Flavonoids and Their Analogues: In Vitro, In Vivo, Structure-Activity Relationship, and Quantitative Structure-Activity Relationship Studies
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Antitrypanosomal and Antileishmanial Activities of Flavonoids and Their Analogues: In Vitro, In Vivo, Structure-Activity Relationship, and Quantitative Structure-Activity Relationship Studies

Tasdemir, D ; Kaiser, M ; Brun, R ; Yardley, V ; Schmidt, T. J ; Tosun, F ; Ruedi, P

Antimicrobial agents and chemotherapy, 2006-03-28, Vol.50 (4), p.1352-1364 [Peer Reviewed Journal]

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2
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Quantitative structure-activity relationships (Online)

-2002

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3
A structure–activity relationship linking non-planar PCBs to functional deficits of neural crest cells: new roles for connexins
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A structureactivity relationship linking non-planar PCBs to functional deficits of neural crest cells: new roles for connexins

Johanna Nyffeler ; Petra Chovancova ; Xenia Dolde ; Anna-Katharina Holzer ; Vladimir Purvanov ; Ilona Kindinger ; Anna Kerins ; David Higton ; Steve Silvester ; Barbara M A van Vugt-Lussenburg ; Enrico Glaab ; Bart van der Burg ; Richard Maclennan ; Daniel F Legler ; Marcel Leist

Archives of toxicology, 2018-03-01, Vol.92 (3), p.1225-1247 [Peer Reviewed Journal]

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4
Structure-activity relationship studies in drug development by NMR spectroscopy. [Volume 1]
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Structure-activity relationship studies in drug development by NMR spectroscopy. [Volume 1]

Atta-ur- Rahman 1942-; M. Iqbal Choudhary

2011

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5
Quantitative Structure-activity Relationship
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Book
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Quantitative Structure-activity Relationship

2017

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6
In vitro anti-cancer activity and structure-activity relationships of natural products isolated from fruits of Panax ginseng
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In vitro anti-cancer activity and structure-activity relationships of natural products isolated from fruits of Panax ginseng

Wei Wang ; Yuqing Zhao ; Elizabeth R. Rayburn ; Donald L. Hill ; Hui Wang ; Ruiwen Zhang

Cancer chemotherapy and pharmacology, 2007-04-01, Vol.59 (5), p.589 [Peer Reviewed Journal]

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7
Methane to Methanol: Structure–Activity Relationships for Cu-CHA
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Methane to Methanol: StructureActivity Relationships for Cu-CHA

Pappas, Dimitrios K ; Borfecchia, Elisa ; Dyballa, Michael ; Pankin, Ilia A ; Lomachenko, Kirill A ; Martini, Andrea ; Signorile, Matteo ; Teketel, Shewangizaw ; Arstad, Bjørnar ; Berlier, Gloria ; Lamberti, Carlo ; Bordiga, Silvia ; Olsbye, Unni ; Lillerud, Karl Petter ; Svelle, Stian ; Beato, Pablo

Journal of the American Chemical Society, 2017-10-25, Vol.139 (42), p.14961-14975

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8
Characterizing microbiota-independent effects of oligosaccharides on intestinal epithelial cells: insight into the role of structure and size: Structure-activity relationships of non-digestible oligosaccharides
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Characterizing microbiota-independent effects of oligosaccharides on intestinal epithelial cells: insight into the role of structure and size: Structure-activity relationships of non-digestible oligosaccharides

Peyman Akbari ; Johanna Fink-Gremmels ; Rianne H A M Willems ; Elisabetta Difilippo ; Henk A Schols ; Margriet H C Schoterman ; Johan Garssen ; Saskia Braber

European journal of nutrition, 2017-08-01, Vol.56 (5), p.1919 [Peer Reviewed Journal]

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9
Structure−Activity Relationships of Polymyxin Antibiotics
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StructureActivity Relationships of Polymyxin Antibiotics

Velkov, Tony ; Thompson, Philip E ; Nation, Roger L ; Li, Jian

Journal of medicinal chemistry, 2010-03-11, Vol.53 (5), p.1898-1916 [Peer Reviewed Journal]

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10
Quantitative structure–activity relationship methods for the prediction of the toxicity of pollutants
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Quantitative structureactivity relationship methods for the prediction of the toxicity of pollutants

Raghunath Satpathy

Environmental chemistry letters, 2019-03-01, Vol.17 (1), p.123-128 [Peer Reviewed Journal]

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11
Studies of structure-activity relationship on plant polyphenol-induced suppression of human liver cancer cells
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Studies of structure-activity relationship on plant polyphenol-induced suppression of human liver cancer cells

Jacky Loa ; Pierce Chow ; Kai Zhang

Cancer chemotherapy and pharmacology, 2009-05-01, Vol.63 (6), p.1007 [Peer Reviewed Journal]

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12
Quantitative structure-activity relationship modeling of renin-inhibiting dipeptides
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Quantitative structure-activity relationship modeling of renin-inhibiting dipeptides

Chibuike C Udenigwe ; Huan Li ; Rotimi E Aluko

Amino acids, 2012-04-01, Vol.42 (4), p.1379 [Peer Reviewed Journal]

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13
Structure–Activity Relationship for the 4(3H)‑Quinazolinone Antibacterials
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StructureActivity Relationship for the 4(3H)‑Quinazolinone Antibacterials

Bouley, Renee ; Ding, Derong ; Peng, Zhihong ; Bastian, Maria ; Lastochkin, Elena ; Song, Wei ; Suckow, Mark A ; Schroeder, Valerie A ; Wolter, William R ; Mobashery, Shahriar ; Chang, Mayland

Journal of medicinal chemistry, 2016-05-26, Vol.59 (10), p.5011-5021 [Peer Reviewed Journal]

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14
Discovery, Synthesis, and Structure–Activity Relationships of Conotoxins
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Discovery, Synthesis, and StructureActivity Relationships of Conotoxins

Akondi, Kalyana B ; Muttenthaler, Markus ; Dutertre, Sébastien ; Kaas, Quentin ; Craik, David J ; Lewis, Richard J ; Alewood, Paul F

Chemical reviews, 2014-06-11, Vol.114 (11), p.5815-5847 [Peer Reviewed Journal]

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15
Structure-activity relationship of ochratoxin A and synthesized derivatives: importance of amino acid and halogen moiety for cytotoxicity
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Structure-activity relationship of ochratoxin A and synthesized derivatives: importance of amino acid and halogen moiety for cytotoxicity

Ulrike Rottkord ; Christopher Röhl ; Ines Ferse ; Marie-Christin Schulz ; Uwe Rückschloss ; Michael Gekle ; Gerald Schwerdt ; Hans-Ulrich Humpf

Archives of toxicology, 2017-03-01, Vol.91 (3), p.1461 [Peer Reviewed Journal]

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16
Structure-Activity Relationship of Synthetic Variants of the Milk-Derived Antimicrobial Peptide αs2-Casein f(183–207)
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Structure-Activity Relationship of Synthetic Variants of the Milk-Derived Antimicrobial Peptide αs2-Casein f(183–207)

Avelino Alvarez-Ordóñez ; Máire Begley ; Tanya Clifford ; Thérèse Deasy ; Kiera Considine ; Colin Hill

Applied and Environmental Microbiology, 2013-09-01, Vol.79 (17), p.5179-5185 [Peer Reviewed Journal]

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17
In silico quantitative prediction of peptides binding affinity to human MHC molecule: an intuitive quantitative structure-activity relationship approach
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In silico quantitative prediction of peptides binding affinity to human MHC molecule: an intuitive quantitative structure-activity relationship approach

F Tian ; L Yang ; F Lv ; Q Yang ; P Zhou

Amino acids, 2009-03-01, Vol.36 (3), p.535 [Peer Reviewed Journal]

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18
Quantitative structure-activity relationship study of antitubercular fluoroquinolones
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Quantitative structure-activity relationship study of antitubercular fluoroquinolones

Nikola Minovski ; Marjan Vracko ; Tom Solmajer

Molecular diversity, 2011-05-01, Vol.15 (2), p.417 [Peer Reviewed Journal]

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19
Single-Atom-Based Vanadium Oxide Catalysts Supported on Metal–Organic Frameworks: Selective Alcohol Oxidation and Structure–Activity Relationship
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Single-Atom-Based Vanadium Oxide Catalysts Supported on Metal–Organic Frameworks: Selective Alcohol Oxidation and StructureActivity Relationship

Otake, Ken-ichi ; Cui, Yuexing ; Buru, Cassandra T ; Li, Zhanyong ; Hupp, Joseph T ; Farha, Omar K

Journal of the American Chemical Society, 2018-07-18, Vol.140 (28), p.8652-8656

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20
Inhibition of Angiotensin-Converting Enzyme Activity by Flavonoids: Structure-Activity Relationship Studies
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Inhibition of Angiotensin-Converting Enzyme Activity by Flavonoids: Structure-Activity Relationship Studies

Guerrero, Ligia ; Castillo, Julián ; Quiñones, Mar ; Garcia-Vallvé, Santiago ; Arola, Lluis ; Pujadas, Gerard ; Muguerza, Begoña Lu, Jian R

PloS one, 2012-11-21, Vol.7 (11), p.e49493-e49493

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21
Promises and Pitfalls of Quantitative Structure−Activity Relationship Approaches for Predicting Metabolism and Toxicity
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Promises and Pitfalls of Quantitative StructureActivity Relationship Approaches for Predicting Metabolism and Toxicity

Zvinavashe, Elton ; Murk, Albertinka J ; Rietjens, Ivonne M. C. M

Chemical research in toxicology, 2008-12-15, Vol.21 (12), p.2229-2236 [Peer Reviewed Journal]

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22
Synthesis and Structure−Activity Relationship Study of Potent Cytotoxic Analogues of the Marine Alkaloid Lamellarin D
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Synthesis and StructureActivity Relationship Study of Potent Cytotoxic Analogues of the Marine Alkaloid Lamellarin D

Pla, Daniel ; Marchal, Antonio ; Olsen, Christian A ; Francesch, Andrés ; Cuevas, Carmen ; Albericio, Fernando ; Álvarez, Mercedes

Journal of medicinal chemistry, 2006-06-01, Vol.49 (11), p.3257-3268 [Peer Reviewed Journal]

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23
Quantitative Structure–Activity Relationship (QSAR) for the Oxidation of Trace Organic Contaminants by Sulfate Radical
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Quantitative StructureActivity Relationship (QSAR) for the Oxidation of Trace Organic Contaminants by Sulfate Radical

Xiao, Ruiyang ; Ye, Tiantian ; Wei, Zongsu ; Luo, Shuang ; Yang, Zhihui ; Spinney, Richard

Environmental science & technology, 2015-11-17, Vol.49 (22), p.13394-13402 [Peer Reviewed Journal]

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24
Interpretation of Quantitative Structure–Activity Relationship Models: Past, Present, and Future
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Interpretation of Quantitative StructureActivity Relationship Models: Past, Present, and Future

Polishchuk, Pavel

Journal of chemical information and modeling, 2017-11-27, Vol.57 (11), p.2618-2639 [Peer Reviewed Journal]

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25
Cationic membrane peptides: atomic-level insight of structure-activity relationships from solid-state NMR
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Cationic membrane peptides: atomic-level insight of structure-activity relationships from solid-state NMR

Yongchao Su ; Shenhui Li ; Mei Hong

Amino acids, 2013-03-01, Vol.44 (3), p.821 [Peer Reviewed Journal]

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26
An Oxygen-Tolerant PET-RAFT Polymerization for Screening Structure-Activity Relationships
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An Oxygen-Tolerant PET-RAFT Polymerization for Screening Structure-Activity Relationships

Gormley, Adam J ; Yeow, Jonathan ; Ng, Gervase ; Conway, Órla ; Boyer, Cyrille ; Chapman, Robert

Angewandte Chemie (International ed.), 2018-02-05, Vol.57 (6), p.1557-1562 [Peer Reviewed Journal]

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27
Structure-activity relationship and mechanisms of reagents used in scheelite flotation
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Structure-activity relationship and mechanisms of reagents used in scheelite flotation

Wan-Zhong Yin ; Ji-Zhen Wang ; Zhong-Mei Sun

Rare metals, 2015-12-01, Vol.34 (12), p.882 [Peer Reviewed Journal]

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28
In Vivo Structure−Activity Relationship Study of Dorsomorphin Analogues Identifies Selective VEGF and BMP Inhibitors
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In Vivo StructureActivity Relationship Study of Dorsomorphin Analogues Identifies Selective VEGF and BMP Inhibitors

Hao, Jijun ; Ho, Joshua N ; Lewis, Jana A ; Karim, Kaleh A ; Daniels, R. Nathan ; Gentry, Patrick R ; Hopkins, Corey R ; Lindsley, Craig W ; Hong, Charles C

ACS chemical biology, 2010-02-19, Vol.5 (2), p.245-253 [Peer Reviewed Journal]

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29
The investigation of the quantitative structure–activity relationships between the structure of hydrazine derivatives and the reduction of Np(VI)
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The investigation of the quantitative structureactivity relationships between the structure of hydrazine derivatives and the reduction of Np(VI)

Xiao, Song-tao ; Xiao, Song-tao ; Ye, Guo-an ; Ye, Guo-an ; Li, Li ; Li, Li ; Liu, Xie-chun ; Liu, Xie-chun ; Yang, He ; Yang, He ; Li, Hui-bo ; Li, Hui-bo ; Yuan, Zhong-wei ; Yuan, Zhong-wei

Journal of radioanalytical and nuclear chemistry, 2017-03, Vol.311 (3), p.1565-1575 [Peer Reviewed Journal]

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30
Hypoxia‐inducible factor‐1 (HIF‐1) inhibitors from the last decade (2007 to 2016): A “structure–activity relationship” perspective
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Hypoxia‐inducible factor‐1 (HIF‐1) inhibitors from the last decade (2007 to 2016): A “structureactivity relationship” perspective

Bhattarai, Deepak ; Xu, Xuezhen ; Lee, Kyeong

Medicinal research reviews, 2018-07, Vol.38 (4), p.1404-1442 [Peer Reviewed Journal]

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31
Activity Landscape Representations for Structure−Activity Relationship Analysis
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Activity Landscape Representations for StructureActivity Relationship Analysis

Wassermann, Anne Mai ; Wawer, Mathias ; Bajorath, Jürgen

Journal of medicinal chemistry, 2010-12-09, Vol.53 (23), p.8209-8223 [Peer Reviewed Journal]

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32
Extreme Gradient Boosting as a Method for Quantitative Structure–Activity Relationships
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Extreme Gradient Boosting as a Method for Quantitative StructureActivity Relationships

Sheridan, Robert P ; Wang, Wei Min ; Liaw, Andy ; Ma, Junshui ; Gifford, Eric M

Journal of chemical information and modeling, 2016-12-27, Vol.56 (12), p.2353-2360 [Peer Reviewed Journal]

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33
In silico toxicity evaluation of dioxins using structure–activity relationship (SAR) and two-dimensional quantitative structure–activity relationship (2D-QSAR)
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In silico toxicity evaluation of dioxins using structureactivity relationship (SAR) and two-dimensional quantitative structureactivity relationship (2D-QSAR)

Hong Yang ; Zhe Du ; Wen-Juan Lv ; Xiao-Yun Zhang ; Hong-Lin Zhai

Archives of toxicology, 2019-11-01, Vol.93 (11), p.3207-3218 [Peer Reviewed Journal]

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34
α-Glucosidase inhibition by flavonoids: an in vitro and in silico structure–activity relationship study
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α-Glucosidase inhibition by flavonoids: an in vitro and in silico structureactivity relationship study

Carina Proença ; Marisa Freitas ; Daniela Ribeiro ; Eduardo F T Oliveira ; Joana L C Sousa ; Sara M Tomé ; Maria J Ramos ; Artur M S Silva ; Pedro A Fernandes ; Eduarda Fernandes

Journal of enzyme inhibition and medicinal chemistry, 2017-12-01, Vol.32 (1), p.1216-1228 [Peer Reviewed Journal]

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35
Structure−Activity Relationship Anatomy by Network-like Similarity Graphs and Local Structure−Activity Relationship Indices
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StructureActivity Relationship Anatomy by Network-like Similarity Graphs and Local StructureActivity Relationship Indices

Wawer, Mathias ; Peltason, Lisa ; Weskamp, Nils ; Teckentrup, Andreas ; Bajorath, Jürgen

Journal of medicinal chemistry, 2008-10-09, Vol.51 (19), p.6075-6084 [Peer Reviewed Journal]

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36
Antioxidant Structure–Activity Relationship Analysis of Five Dihydrochalcones
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Antioxidant StructureActivity Relationship Analysis of Five Dihydrochalcones

Li, Xican ; Chen, Ban ; Xie, Hong ; He, Yuhua ; Zhong, Dewei ; Chen, Dongfeng

Molecules (Basel, Switzerland), 2018-05-12, Vol.23 (5), p.1162 [Peer Reviewed Journal]

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37
Quantitative structure-activity relationships for organophosphates binding to acetylcholinesterase
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Quantitative structure-activity relationships for organophosphates binding to acetylcholinesterase

Christopher D Ruark ; C Eric Hack ; Peter J Robinson ; Paul E Anderson ; Jeffery M Gearhart

Archives of toxicology, 2013-02-01, Vol.87 (2), p.281 [Peer Reviewed Journal]

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38
Antibacterial activity of flavonoids and their structure-activity relationship: An update review
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Antibacterial activity of flavonoids and their structure-activity relationship: An update review

Farhadi, Faegheh ; Khameneh, Bahman ; Iranshahi, Mehrdad ; Iranshahy, Milad

Phytotherapy research, 2019-01, Vol.33 (1), p.13-40 [Peer Reviewed Journal]