Register      Login
Australian Journal of Chemistry Australian Journal of Chemistry Society
An international journal for chemical science
RESEARCH FRONT

Novel Achiral Aryl‐Substituted Vanadocenes: Synthesisand Preliminary Cytotoxicity Studies

Brendan Gleeson A B , Anthony Deally A , Helge Müller‐Bunz A , Siddappa Patil A and Matthias Tacke A B
+ Author Affiliations
- Author Affiliations

A Conway Institute of Biomolecular and Biomedical Research, Centre for Synthesisand Chemical Biology (CSCB), UCD School of Chemistry and Chemical Biology, University College Dublin, Belfield, Dublin 4, Ireland.

B Corresponding authors. Email: matthias.tacke@ucd.ie, brendan.gleeson@ucd.ie

Australian Journal of Chemistry 63(11) 1514-1520 https://doi.org/10.1071/CH10196
Submitted: 13 May 2010  Accepted: 21 October 2010   Published: 11 November 2010

Abstract

From the reaction of 6‐(4‐methoxymethyl‐phenyl) fulvene (1a), 6‐(N‐methyl‐pyrrole) fulvene (1b), and 6‐(4‐dimethylamino‐phenyl) fulvene (1c) with LiBEt3H, the corresponding lithium cyclopentadienide intermediates (2ac) were synthesized. These intermediates were then transmetallated to vanadium with VCl4 to yield the substituted vanadocene dichlorides bis‐[(4‐methoxymethyl‐benzyl)cyclopentadienyl] vanadium(iv) dichloride (3a), bis‐[(N‐methylpyrrole)2‐methylcyclopentadienyl] vanadium(iv) dichloride (3b), and bis‐[(p‐dimethylaminobenzyl)cyclopentadienyl] vanadium(iv) dichloride (3c). The vanadocene dichloride 3a was characterized by single crystal X‐ray diffraction. All three vanadocenes had their cytotoxicity investigated through MTT based preliminary in vitro testing on the human renal cell line Caki‐1 in order to determine their IC50 values. Vanadocenes 3ab were found to have IC50 values of 6.5 and 5.2 µM, respectively, while 3c displayed a superior value of 1.7 µM.


References

[1]  P. Köpf‐Maier, Metal Complexes in Cancer Chemotherapy 1993, p. 259 (Ed. B. K. Keppler) (VCH Verlagsgesellschaft: Weinheim).

[2]  P. Köpf‐Maier, H. Köpf, Drugs Future 1986, 11, 297.

[3]  E. Melendez, Crit. Rev. Oncol. Hematol. 2002, 42, 309.
         | Crossref | GoogleScholarGoogle Scholar | 12050022PubMed |

[4]  F. Caruso, M. Rossi, Met. Ions Biol. Syst. 2004, 42, 353.
         | 1:CAS:528:DC%2BD2cXmtFGgurs%3D&md5=e0cbb72c439f1cd3d140a5a27921c9e7CAS | 15206108PubMed |

[5]  G. Lümmen, H. Sperling, H. Luboldt, T. Otto, H. Rubben, Cancer Chemother. Pharmacol. 1998, 42, 415.
         | Crossref | GoogleScholarGoogle Scholar | 9771957PubMed |

[6]  N. Kröger, U. R. Kleeberg, K. Mross, L. Edler, G. Sab, D. Hossfeld, Onkologe 2000, 23, 60.
         | Crossref | GoogleScholarGoogle Scholar |

[7]  K. Nishiyama, T. Shirahama, A. Yoshimura, Cancer 1993, 71, 3611.
         | Crossref | GoogleScholarGoogle Scholar | 1:STN:280:DyaK3s3lvVOnsw%3D%3D&md5=b2762f887723083ad67cd13604af6fd6CAS | 8098269PubMed |

[8]  S. L. Bruhn, J. H. Toney, S. J. Lippard, Prog. Inorg. Chem. 1990, 38, 477.
         | Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DyaK3MXktVSjsLc%3D&md5=8b580a0c6f1c7b7d64315d2365170281CAS |

[9]  J. S. Berns, P. A. Ford, Semin. Nephrol. 1997, 17, 54.
         | 1:CAS:528:DyaK2sXhtVyhsrk%3D&md5=2f33e64cd4e8595d313b1bfe3b13ba1cCAS | 9000550PubMed |

[10]  N. J. Sweeney, O. Mendoza, H. Müller‐Bunz, C. Pampillón, F.-J. K. Rehmann, K. Strohfeldt, M. Tacke, J. Organomet. Chem. 2005, 690, 4537.
         | Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD2MXhtFWqtbnE&md5=91d43c56f9f03bf411c89aa93bc57ba9CAS |

[11]  I. Fichtner, J. Claffey, B. Gleeson, M. Hogan, D. Wallis, H. Weber, M. Tacke, Lett. Drug Des. Discov. 2008, 5, 489.
         | Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD1MXjt1yiuw%3D%3D&md5=6c33c4654b1d081238cf0a8c4d3487aeCAS |

[12]  B. Gleeson, J. Claffey, D. Ertler, M. Hogan, H. Müller‐Bunz, F. Paradisi, D. Wallis, M. Tacke, Polyhedron 2008, 27, 3619.
         | Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD1cXhsVWnurvM&md5=e1e88c52bd17bdf0f1bb3156b1ad66e1CAS |

[13]  B. Gleeson, J. Claffey, A. Deally, M. Hogan, L. M. Menéndez Méndez, H. Müller‐Bunz, S. Patil, M. Tacke, Inorg. Chim. Acta 2010, 363, 1831.
         | Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BC3cXkvVejtbs%3D&md5=ff6358ce13e457ef028be0f1561214b3CAS |

[14]  S. Bradley, K. D. Camm, S. J. Furtado, A. L. Gott, M. Thornton‐Pett, T. J. Podesta, P. C. McGowan, Organometallics 2002, 21, 3443.
         | Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD38XltFKktLc%3D&md5=78aeb36ae471dc91e7c7ca7805fa42ffCAS |

[15]  J. Vinklárek, H. Paláčkova, J. Honziček, J. Holubová, M. Holčapek, I. Cisarová, Inorg. Chem. 2006, 45, 2156.
         | Crossref | GoogleScholarGoogle Scholar | 16499378PubMed |

[16]  H. Paláčkova, J. Vinklárek, J. Holubová, I. Cisarová, M. Erben, J. Organomet. Chem. 2007, 692, 3758.
         | Crossref | GoogleScholarGoogle Scholar |

[17]  C. S. Navara, A. Benyumov, A. Vassilev, R. K. Narla, P. Ghosh, F. M. Uckun, Anticancer Drugs 2001, 12, 369.
         | Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD3MXktVSks7o%3D&md5=9380bcbbe84943d63f071da7d8c5d043CAS | 11335794PubMed |

[18]  O. J. D’Cruz, A. Vassilev, F. M. Uckun, Biol. Reprod. 2000, 62, 939.
         | Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD3cXitFajtL4%3D&md5=c9dd2926d41ac757fa5cf290c82cb249CAS | 10727263PubMed |

[19]  P. Ghosh, O. J. D’Cruz, R. K. Narla, F. M. Uckun, Clin. Cancer Res. 2000, 6, 1536.
         | 1:CAS:528:DC%2BD3cXjtVOqtbg%3D&md5=7636ba3cd5e4d0e08ba0189567445fd1CAS | 10778987PubMed |

[20]  B. Gleeson, J. Claffey, M. Hogan, H. Müller‐Bunz, D. Wallis, M. Tacke, J. Organomet. Chem. 2009, 694, 1369.
         | Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD1MXjvVehtLg%3D&md5=4790b51c4a7350787f9407ef59d9f10cCAS |

[21]  B. Gleeson, J. Claffey, A. Deally, M. Hogan, L. M. M. Méndez, H. Müller‐Bunz, S. Patil, D. Wallis, M. Tacke, Eur. J. Inorg. Chem. 2009, 2804.
         | Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD1MXnvV2gtrs%3D&md5=468c6be1335fca83f41ac35f0cde63beCAS |

[22]  I. Fichtner, J. Claffey, A. Deally, B. Gleeson, M. Hogan, M. R. Markelova, H. Müller‐Bunz, H. Weber, M. Tacke, J. Organomet. Chem. 2010, 695, 1175.
         | Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BC3cXktVSgsL8%3D&md5=ee34269fb377ebceed5ccb9b125b6ce1CAS |

[23]  G. M. Sheldrick, SADABS Version 2.03 2002 (University of Göttingen: Germany).

[24]  G. M. Sheldrick, SHELXS‐97 and SHELXL‐97 1997 (University of Göttingen: Germany).

[25]  J. Claffey, H. Müller‐Bunz, M. Tacke, J. Organomet. Chem. 2010, 695, 2105.
         | Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BC3cXpvFOmsbs%3D&md5=5ea96ff54b27d53c626cc6351b2ce24fCAS |

[26]  N. J. Sweeney, O. Mendoza, H. Müller‐Bunz, C. Pampillon, F. J. K. Rehmann, K. Strohfeldt, M. Tacke, J. Organomet. Chem. 2005, 690, 4537.
         | Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD2MXhtFWqtbnE&md5=91d43c56f9f03bf411c89aa93bc57ba9CAS |

[27]  N. Sweeney, W. M. Gallagher, H. Müller‐Bunz, C. Pampillon, K. Strohfeldt, M. Tacke, J. Inorg. Biochem. 2006, 100, 1479.
         | Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD28Xot1Wrs74%3D&md5=4e2ca7148fe804703800bff6e2eb8fe0CAS | 16764931PubMed |

[28]  T. Mosmann, J. Immunol. Methods 1983, 65, 55.
         | Crossref | GoogleScholarGoogle Scholar | 1:STN:280:DyaL2c%2FovFSmtw%3D%3D&md5=b67165faae133257da2fe019dc20943dCAS | 6606682PubMed |