Synthesis and Biological Activity of Alkane-1,1-diylbis(phosphonates) of Diterpenoid Isosteviol
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[1] Fanxing Xu,et al. Diterpenoid lead stevioside and its hydrolysis products steviol and isosteviol: Biological activity and structural modification. , 2018, European journal of medicinal chemistry.
[2] A. Voloshina,et al. Phosphates of the Diterpenoid Isosteviol. Synthesis and Biological Activity# , 2018, Chemistry of Natural Compounds.
[3] E. Chmielewska,et al. Aminobisphosphonates based on cyclohexane backbone as coordinating agents for metal ions. Thermodynamic, spectroscopic and biological studies , 2018 .
[4] A. D. Voloshina,et al. Synthesis and antimicrobial and toxic properties of novel 1,3-bis(alkyl)-6-methyluracil derivatives containing 1,2,3- and 1,2,4-triazolium fragments , 2017, Russian Journal of Bioorganic Chemistry.
[5] A. Geronikaki,et al. Cytotoxicity and Anti–inflammation Profiles of Synthesized Thiazoles‐Based N‐Bisphosphonates and Relevant Bisphosphonic acids , 2016 .
[6] I. Rizvanov,et al. Triphenylphosphonium Cations of the Diterpenoid Isosteviol: Synthesis and Antimitotic Activity in a Sea Urchin Embryo Model. , 2015, Journal of natural products.
[7] L. Zakharova,et al. Self-assembling systems based on quaternized derivatives of 1,4-diazabicyclo[2.2.2]octane in nutrient broth as antimicrobial agents and carriers for hydrophobic drugs. , 2015, Colloids and surfaces. B, Biointerfaces.
[8] G. Strukul,et al. Copper‐mediated 1,4‐Conjugate Addition of Boronic Acids and Indoles to Vinylidenebisphosphonate leading to gem‐Bisphosphonates as Potential Antiresorption Bone Drugs , 2014 .
[9] V. Kataev,et al. Synthesis and antituberculosis activity of conjugates of the diterpenoid isosteviol and the drug dimephosphon , 2012, Chemistry of Natural Compounds.
[10] V. Alfonsov,et al. New hydrophosphoryl compounds derived from ent-16-oxobeyeran-19-oic acid , 2012, Russian Chemical Bulletin.
[11] D. Yanvarev,et al. Non-hydrolysable analogues of inorganic pyrophosphate as inhibitors of hepatitis C virus RNA-dependent RNA-polymerase , 2012, Russian Journal of Bioorganic Chemistry.
[12] R. Docampo,et al. 1-(Fluoroalkylidene)-1,1-bisphosphonic acids are potent and selective inhibitors of the enzymatic activity of Toxoplasma gondii farnesyl pyrophosphate synthase. , 2012, Organic & biomolecular chemistry.
[13] B. Vincenzi,et al. Bisphosphonate Effects in Cancer and Inflammatory Diseases , 2012, BioDrugs.
[14] J. Mönkkönen,et al. Biochemical and molecular mechanisms of action of bisphosphonates. , 2011, Bone.
[15] G. Morgan,et al. Antitumor effects and anticancer applications of bisphosphonates. , 2010, Seminars in oncology.
[16] J. Mönkkönen,et al. Activation of γδ T cells by bisphosphonates. , 2010, Advances in experimental medicine and biology.
[17] A. Gubaidullin,et al. New synthesis of diterpenoid (16S)-dihydrosteviol , 2009 .
[18] V. A. Al’fonsov,et al. Isosteviol acylphosphonates , 2009 .
[19] Hugo Poirier,et al. Linking bisphosphonates to the free amino groups in fluoroquinolones: preparation of osteotropic prodrugs for the prevention of osteomyelitis. , 2008, Journal of medicinal chemistry.
[20] H. Uludaǧ,et al. 'Magic bullets' for bone diseases: progress in rational design of bone-seeking medicinal agents. , 2007, Chemical Society reviews.
[21] E. Oldfield,et al. Isoprenoid biosynthesis as a drug target: bisphosphonate inhibition of Escherichia coli K12 growth and synergistic effects of fosmidomycin. , 2006, Journal of medicinal chemistry.
[22] F. Sansone,et al. Synthesis and spectroscopic studies of isosteviol-calix[4]arene and -calix[6]arene conjugates , 2005 .
[23] V. Mamedov,et al. Methyl ent-16α-dichlorophosphitobeyeran-19-oate as the first example of phosphorylated diterpenoid derivatives of the beyerane series , 2005 .
[24] Jonathan R. Green. Bisphosphonates: preclinical review. , 2004, The oncologist.
[25] Mary Jane Ferraro,et al. Methods for dilution antimicrobial susceptibility tests for bacteria that grow aerobically : approved standard , 2000 .
[26] R. Hohl,et al. Phosphonate and bisphosphonate analogues of farnesyl pyrophosphate as potential inhibitors of farnesyl protein transferase. , 1998, Bioorganic & medicinal chemistry.
[27] E. Mosettig,et al. STEVIOSIDE. II. THE STRUCTURE OF THE AGLUCON , 1955 .