[1] TW Hambley, Metal based therapeutics, Science

advertisement
[1] T.W. Hambley, Metal based therapeutics, Science 318 (2007) 1392.
[2] P.J. Sadler, et al. (Bertini, I., Gray, H.B., Stiefel, E.I., Selverstone, V.L., eds), (2007)
95 University Science Books.
[3] J.L. Sessler, Medicinal inorganic chemistry in ACS symp. Ser. 930 (2005) 453
CAPLUS.
[4] L. Ronconi, P.J. Sadler, Coord. Chem. Rev. 252 (2008) 2239.
[5] N. Farrel, Comprehensive Coordination Chemistry II. 9 (2003) 809.
[6] M.C. Linder, Mut. Res. 475 (2001) 141.
[7] P. J. Dyson, G. Sava, Dalton Trans. (2006) 1929.
[8] T. Storr, K.H. Thomson, and C. Orvig, Chem. Soc. Rev. 35 (2006) 534.
[9] G. Zhao, H. Lin, Curr. Med. Chem. Anti-Cancer Agents 5 (2005) 137.
[10] B.K. Keppler, Chem. Inform. Rev. 22(1991) 25.
[11] B. Lippert, Coord. Chem. Rev. 200-202 (2000) 487.
[12] C. Metcalfe, J.A. Thomas, Chem. Soc. Rev. 32 (2003) 215.
[13] R. Blasius, C. Moucheron and A.K.D. Mesmaeker, Eur. J. Inorg. Chem. (2004)
3971.
[14] M. Galanski, V.B. Arion, M.A. Jakupec, B.K. Keppler, Curr. Pharma. Design 9
(2003) 2078.
167
[15] B. Rosenberg, L.V. Camp, J.E. Trosko, V.H. Mansour, Nature 222 (1969) 385.
[16] B. Rosenberg, L.V. Camp, E.B. Grimley, A.J. Thompson, J. Biol. Chem. 242 (1967)
1347.
[17] J. Reedijk, Chem. Commun. (1996) 801.
[18] S.H.van Rijt, P J. Sadler Drug Discov. Today 14 (2009) 1089.
[19] A. Bergamo, G. Sava, Dalton Trans. (2007) 1267.
[20] S.P. Fricker, Dalton Trans. (2007) 4903.
[21] D. Wang, S.J. Lippard, Nat. Rev. Drug Discov. 4 (2005) 307.
[22] G. I. Miessler, D. A. Tarr, Inorganic Chemistry, third ed. Prentice Hall, (2003) 299.
[23] H. B. Gray, Proc. Nat. Acad. Sci. USA, 100 (2003) 3563.
[24] T.W. Hambley, Dalton Trans. (2007) 4929.
[25] G. Bertrand, 8th Int. Conf. Appl. Appl. Chem. 28 (1912) 30.
[26] C. Orvig, M.J. Abrams, Chem. Rev. 99 (1999) 2201.
[27] K.H. Thomson, C. Orvig, Dalton Trans. (2006) 761.
[28] K.H.Thomson, and C. Orvig, Medicinal Inorganic Chemistry in concepts and model
System in Bioinorganic Chemistry, (Ed) N. Metzler-Nolte and H.-B. kraatz, Wiley-VCH,
New York, in press.
168
[29] G. Facchin, E. Kremer, D. A. Barrio, S. B. Etcheverry, A. J. C.Filho, M. H. Torre,
Polyhedron 28 (2009) 2329.
[30] M. Izumi, Pharm. Bull. 29 (1954) 275.
[31] R. Nagane, M. Chikira, M. Oumi, H. Shindo, W.E. Antholine, J. Inorg. Biochem. 78
(2000) 243.
[32] T.R. Hazbun, F.L. Stahura, M.C. Mossing, Biochemistry 36 (1997) 3680.
[33] Z. Xu, J.C. DiCesare, P.W. Baures, J. Comb. Chem. 8 (2010) 24.
[34] Y. Che, G. R. Marshall, J. Med. Chem. 49 (2006) 111.
[35] N.M. Davies, X.W. Teng, Adv. Pharm. 1 (2003) 242.
[36] P.M. Williams, Pergamon Press: Oxford, 1989.
[37] L.M. van Langen, E. de Vroom, F. van Rantwijk, R.Sheldon, FEBS Lett. 456 (1999)
89.
[38] A. Bossi, M. Cretich, P.G. Righetti, Biotechnol. Bioengg. 60 (1998) 454.
[39] L. Ming, L. Zhiqiang, C. Huanwen, L. Shuying, J. Qinhan, J. Mass. Spectrom. 40
(2005) 1072.
[40] A.M. Rouhi, Chiral business. Chem. Eng. News 81(2003) 45.
[41] S.H. Laurie, Comprehensive Coordination Chemistry, eds. G. Wilkinson, R.D.
Gillard and J. A. McCleverty, Pergamon, Press, Oxford, 2 (1987) 739.
169
[42] B. Sarkar, T. P. A. Kruck, in the Biochemistry of Copper. Eds. J. Pesiach, P.Aisen,
W. E. Blumberg, Academic press. New York (1966) 183.
[43] P.Z. Neumann, A.S. Kortsak, J. Clin. Invest. 46 (1967) 646.
[44] M. N. Hughes, Inorganic Chemistry of Biological Processes, John Wiely & Sons,
New York (1981).
[45] O. Yamauchi, A. Odani, M. Takani, Dalton Trans. (2002) 3411.
[46] I.T. Ahmed, A.A.A. Boraei, Spectrosc. Lett. 38 (2005) 47.
[47] P.R. Reddy, A.M. Reddy, Indian J. Chem. 41A (2002) 2083.
[48] H. Hodl, M.G. Schmid, G. Gübitz, J. Chromatogr. A 1204 (2008) 210.
[49] M.A. Neelakantan, F. Rusalraj, J. Dharmaraja, S. Johnsonraja, T. Jeyakumar, M. S.
Pillai, Spectrochim. Acta. Part A 71 (2008) 1599.
[50] K.B. Gudasi, M.S. Patil, R.S. Vadavi, R.V. Shenoy, S.A. Patil, M. Nethaji,
Spectrochim. Acta Part A 67 (2007) 172.
[51] S. Mylonas, A. Valavanidis, V. Voukouvalidis, Inorg. Chim. Acta 55 (1981) 125.
[52] E.J. Gao, Q. Wu, C.S. Wang, M.C. Zhu, L. Wang, H.Y. Liu, Y. Huang, Y.G. Sun, J.
Coord. Chem. 62 (2009) 3425.
[53] J.R.J. Sorenson, in: G. Berthon (Ed.), Bioinorganic Medicine, Marcel Dekker, New
York, 2 (1995) 1128
170
[54] R. Ren, P. Yang, W. Zheng, Z. Hua, Inorg. Chem. 39 (2000) 5454.
[55] T.Y. Lin, C.H. Wu, J. Catal. 232 (2005) 117.
[56] C.P. Pradeep, P.S. Zacharias, S.K. Das, Eur. J. Inorg. Chem. (2007) 5377.
[57] S.G. Telfer, T. Sato, R. Kuroda, J. Lefebvre, D.B. Leznoff, Inorg. Chem. 43 (2004)
421.
[58] R. Fleischer, H. Wunderlich, M. Braun, Eur. J. Org. Chem. 6 (1998) 1063.
[59] J. Hartung, S. Drees, M. Greb, P. Schmidt, I. Svoboda, H. Fuess, A. Murso, D.
Stalke, Eur. J. Org. Chem. 2003 (2003) 2388.
[60] J.L. Vicario, D. Badia, L. Carrillo, E. Reyes, J. Etxebarria, Curr. Org. Chem. 9
(2005) 219.
[61] G. Lu, Y.M. Li, X.S. Li, A.S.C. Chan, Coord. Chem. Rev. 249 (2005) 1736 and
references therein.
[62] L. Pu, H.B. Yu, Chem. Rev. 101 (2001) 757.
[63] C.P. Pradeep, T. Htwe, P.S. Zacharias, S. K. Das, New J. Chem. 28 (2004) 735.
[64] C.P. Pradeep, P.S. Zacharias, S.K. Das, J. Chem. Sci. 117 (2005) 133.
[65] C.P. Pradeep, S.K. Das, Polyhedron 28 (2009) 630.
[66] S.J. Brown, X. Tao, T.A. Wark, D.W. Stephan, P.K. Mascharak, Inorg. Chem. 27
(1988) 1581.
171
[67] S.J. Brown, X. Tao, D.W. Stephan, P.K. Mascharak, Inorg. Chem. 25 (1986) 3377.
[68] Z.S. Yang, Y.L. Wang, G.C. Zhao, Anal. Sci. 20 (2004) 1127.
[69] B. Spingler, C.D. Pieve, Dalton Trans. (2005) 1637.
[70] A. Herbert, A. Rich, J. Biol. Chem. 271 (1996) 11595.
[71] J.G. Liu, B.H. Ye, H. Li, L.N. Ji, R.H. Li, J.Y. Zhou. J. Inorg. Biochem. 73 (1999)
117.
[72] S.R. Rajski, R.M. William, Chem. Rev. 98 (1998) 2723.
[73] I.W. Hamley, V. Castellato, Angew. Chem. Int. Ed. 46 (2007) 4442.
[74] H.M. Harreis, A.A. Kornyshev, C.N. Likos, H. Lowen, G. Sutmann, Phys. Rev. Lett.
89 (2002) 018303-1.
[75] A.A. Kornyshev, S. Leikin J. Phys. Rev. Lett. 82 (1999) 4138.
[76] V. A. Bloomfield, Curr. Opin. Struct. Biol. 6 (1996) 334.
[77] F. Livolant, A.Leforestier, Prog. Polym. Sci. 21 (1996) 1115.
[78] V. Vijayanathan, T. Thomas, T.J. Thomas, Biochemistry 41(2002) 14085.
[79] Y. Liu, D. Berti, A. Faraone, W.R. Chen, A. Alatas, H. Sinn, E. Alp, A. Said, P.
Baglioni, S.H. Chen. Phys. Chem. Chem. Phys. 6 (2004) 1499.
[80] D. Matulis, I. Rouzina, V. A. Bloomfield, J. Mol. Biol. 296 (2000) 1053.
[81] X. Meng, L. Liu, C. Zhou, L. Wang, C. Liu. Inorg. Chem. 47 (2008) 6572.
[82] J. Widom, R. L. Baldwin, Biopolymers 22 (1983) 1595.
172
[83] T.J. Thomas, V.A. Bloomfield, Biochemistry 24 (1985) 713.
[84] P.G. Arscott, C. Ma, J. Wenner, V.A. Bloomfield, Biopolymers 36 (1995) 345.
[85] B. Sun, J.X. Guan, L. Xu, B.L.Yu, L. Jiang, J.F. Kou, L.Wang, X.D. Ding, H. Chao,
L.N. Ji, Inorg. Chem. 48 (2009) 4637.
[86] J.G. Segura, M.J. Prieto, M.F. Bardia, X. Solans, V. Moreno. Inorg. Chem. 45
(2006) 10031.
[87] M. Saminathan, T. Thomas, A. Shirahata, C. K. S. Pillai, T. J. Thomas, Nucleic
Acids Res. 30 (2002) 3722.
[88] D. Jayaraju, A.K. Kondapi, Curr. Sci. 81 (2001) 787.
[89] T. Biver, F. Secco, M.R. Tine, M. Venturini, J. Inorg. Biochem. 98 (2004) 33.
[90] A.R. Chakravarty, P. Reddy, B.K. Santra, A.M. Thomas, Proc. Indian Acad. Sci.
114 (2002) 391.
[91] N.K. Singh, S.B. Singh, N. Singh, A. Shriviastav, Biometals 16 (2003) 471.
[92] Z.S. Yang, Y.L. Wang, Y.C. Liu, G.C. Zhao, Anal. Sci. 21 (2005) 1355.
[93] C. Sissi, F. Mancin, M. Gatos, M. Palumbo, P. Tecilla, U. Tonellato, Inorg. Chem.
44 (2005) 2310.
[94] R. Cejudo, G. Alzuet, M.G. Alvarez, J.L.G. Gimenez, J. Borras, M.L. Gonzalez, J.
Inorg. Biochem. 100 (2006) 70.
[95] A. Hangan, A. Bodoki, L. Oprean, G. Alzuet, M. L. Gonzalez, J. Borras, Polyhedron
29 (2010) 1305.
[96] D.D. Li, F.P. Huang, G.J. Chen, C.Y. Gao, J.L. Tian, W. Gu, X. Liu, S.P. Yan, J.
Inorg. Biochem. 104 (2010) 431.
173
[97] H.L. Seng, K.W. Tan, M.J. Maah, W.T. Tan, H. Hamada, M. Chikira, C. H. Ng,
Polyhedron 28 (2009) 2219.
[98] C.H. Ng, H.K. A. Ong, C.W. Kong, K.W. Tan, R.N.Z.R.A. Rahman, B.M. Yamin,
S.W. Ng, Polyhedron 25 (2006) 3118.
[99] V. Uma, M. Kanthimathi, T. Weyhermuller, B.U. Nair, J. Inorg. Biochem. 99 (2005)
2299.
[100] T. Kobayashi, T. Okuno, T. Suzuki, M. Kunita, S. Ohba, Y. Nishida, Polyhedron
17 (1998) 1553.
[101] A. Nakajima, Y. Ueda, World. J. Microbiol. Biotechnol. 24 (2008) 1253.
[102] J.L.G. Gimenez, M.G. Alvarez, M.L.Gonzalez, B. Macias, J. Borras, G. Alzuet J.
Inorg. Biochem. 103 (2009) 923.
[103] B.C. Baguley, M.L. Bret, Biochemistry 23 (1984) 937.
[104] B. Selvakumar, V. Rajendiran, P.U. Maheswari, H.S. Evans, M. Palaniandavar, J.
Inorg. Biochem. 100 (2006) 316.
[105] M. Baldini, M.B. Ferrari, F. Bisceglie, P.P.D. Aglio, G. Pelosi, S. Pinelli, P.
Tarasconi, Inorg. Chem. 43 (2004) 7170.
[106] J.P. Klinman, Chem. Rev. 96 (1996) 2541.
[107] N.J. Blackburn, F.C. Rhames, M. Ralle, S. Jaron, J. Biol. Inorg. Chem. 5 (2000)
341.
174
[108] S.T. Prigge, R.E. Mains, B.A. Eiper, L.M. Amzel, Cell Mol. Life Sci. 57 (2000)
1236.
[109] T. Pivetta, M.D. Cannas, F. Demartin, C. Castellano, S. Vascellari, G. Verani, F.
Isaia, J. Inorg. Biochem. 105 (2011) 211.
[110] M. Pitie, A. Croisy, D. Carrez, C. Boldron, B. Meunier, ChemBioChem 6 (2005)
686.
[111] M.E.B. Gomez, J.C.G. Ramos, I.G. Mora, L.R. Azuara, J. Inorg. Biochem. 103
(2009) 299.
[112] B. Trzaskowski, L. Adamowicz , P.A. Deymier, J. Biol. Inorg. Chem. 13 (2008)
133.
[113] G.J. Chen, X. Qiao P.Q. Qiao, G.J. Xu, J.Y. Xu, J.L. Tian, W. Gu, X. Liu S.P.
Yan, J. Inorg. Biochem. 105 (2011) 119.
[114] J. Rammo, H.J. Schneider. Inorg. Chim. Acta. 251 (1996) 125.
[115] P.U. Maheswari, K. Lappalainen, M. Sfregola, S. Barends, P. Gamez, U.
Turpeinen, I. Mutikainen, G.P.V. Wezel, J. Reedijk, Dalton Trans. (2007) 3676.
[116] L. Zhu, O.D. Santos, C.W. Koo, M. Rybstein, L.Pape, J.W. Canary. Inorg. Chem.
42 (2003) 7912.
[117] T. Itoh, H. Hisada, T. Sumiya, M. Hosono, Y. Usui, Y. Fujii, Chem. Commun.
(1997) 677.
175
[118] B.Z. Zhu, L. Mao, R.M. Fan, J.G. Zhu, Y.N. Zhang, J Wang, B. Kalyanaraman, B.
Frei, Chem. Res. Toxicol. 24 (2011) 30.
[119] R. Hettich, H.J. Schneider, J. Am. Chem. Soc. 119 (1997) 5638.
[120] C. Liu, M. Wang, T. Zhang, H. Sun. Coord. Chem. Rev. 248 (2004) 147.
[121] D. Kong, A.E. Martell, J. Reibenspies, Inorg. Chim. Acta 333 (2002) 7.
[122] J.H. Li, J.T Wang, Z.W. Mao, L.N. Ji. Inorg.Chem.Commun. 11 (2008) 865.
[123] J. K. Barton, J.J. Dannenberg, A.L. Raphael, J. Am. Chem. Soc. 104 (1982) 4967.
[124] E.L. Hegg, J.N. Burstyn, Coord. Chem. Rev. 173 (1998) 133.
[125] A. Schiller, R. Scopelliti, K. Severin, Dalton Trans. (2006) 3858.
[126] Y. An, Y.Y. Lin, H. Wang, H.Z. Sun, M.L. Tong, L.N. Ji, Z.W. Mao, Dalton
Trans. (2007) 1250.
[127] M. Hernick, C.A. Fierke, Arch. Biochem. and Biophy. 433 (2005) 71.
[128] J.H. Li, J.T. Wang, Z.W. Mao, L.N. Ji, Inorg. Chem. Commun. 11 (2008) 865.
[129] E.C. Long, J.K. Barton, Acc. Chem. Res. 23 (1990) 271.
[130] J. Jiang, X. Tang, W. Dou, H. Zhang, W. Liu , C. Wang, J. Zheng, J. Inorg.
Biochem. 104 (2010) 583.
[131] R.B. Nair, E.S. Teng, S.L. Kirkland, C.J. Murphy, Inorg. Chem. 37 (1998) 139.
[132] Y.B. Zeng, N. Yang, W.S. Liu, N. Tang, J. Inorg. Biochem. 97 (2003) 258.
176
[133] O.Oberschmidt, A.R. Hanauske, C. Pampillon, N. Sweeney, K. Strohfeldt, M.
Tacke, Anti-Cancer Drugs 18 (2007) 317.
[134] R. Cini, G. Tamasi, S. Defazio, M.Corsini, P. Zanello, L.Messori, G. Marcon,
F.Piccioli, P. Orioli, Inorg.Chem. 42 (2003) 8038.
[135] A. Dorcier, W.H. Ang, S. Bolano, L. Gonsalvi, L.J. Jeannerat, G. Laurenczy,
M.Peruzzini, A.D. Phillips, F. Zanobini, P.J. Dyson, Organometallics 25 (2006) 4090.
[136] M. Devereux, D.O. Shea, A. Kellett, M. McCann, M. Walsh, D. Egan, C. Deegan,
K. Kedziora, G. Rosair, H.M. Bunz, J. Inorg. Biochem.101 (2007) 881.
[137] P.J. Bernard, S.J.B. Price, Coord. Chem. Rev. 251 (2007) 1889.
[138] A.J. Crowe, Drugs, Fut. 12 (1987) 1255.
[139] M. Gielen, Ed.: Tin Based Antitumor drugs, Springer-Verlag, Berlin, (1990).
[140] W.A. Collier, Z. Hyg. Infektionskr. 110 (1929) 169.
[141] T.S.B. Baul, C. Masharing, S.Basu, E. Rivarola, M. Holcapek, R. Jirasko, A. Lycka
D.D. Vos, A. Linden, J. Organomet. Chem. 691 (2006) 952.
[142] G. Barot, K. R. Shahi, M. R. Roner, C. E. C. Jr, J. Inorg. Organomet. Polym. 17
(2007) 595.
[143] C. Pellerito, P.D. Agati, T. Fiore, C. Mansueto, V. Mansueto, G. Stocco, L. Nagy
L. Pellerito, J. Inorg. Biochem. 99 (2005) 1294.
[144] L. Nagy, A. Szorcsik, J. Inorg. Biochem. 89 (2002) 1.
[145] M. Gielen, M. Biesemans, D.D. Vos, R. Willem, J. Inorg. Biochem. 79 (2000) 139.
177
[146] M. X. Li, D. Zhang, L.Z. Zhang, J.Y. Niu, B.S. Ji, J. Organomet. Chem. 696
(2011) 852.
[147] K. Krishnan, K. Prathiba, V. Jayaprakash, A. Basu, N. Mishra, B. Zhou, S. Hu,
Y. Yen, Bioorg. Med. Chem. Lett. 18 (2008) 6248
[148] A.P. Rebolledo, M. Vieites, D. Gambino, O.E. Piro, E. E. Castellano, C. L. Zani, E.
M.S. Fagundes, L.R. Teixeira, A. A. Batista, H. Beraldo, J. Inorg. Biochem. 99 (2005)
698.
[149] J. Wiecek, V. Dokorou, Z. Ciunik, D.K. Demertzi, Polyhedron 28 (2009) 3298.
[150] B. Gleeson, J. Claffey, D. Ertler, M. Hogan, H.M. Bunz, F. Paradisi, D. Wallis, M.
Tacke, Polyhedron 27 (2008) 3619.
[151] A. Sen, T.K. Chaudhuri, Exp. Oncol. 31 (2009) 22.
[152] G.N. Kaluderovic, H. Kommera, E.H. Hawkins, R. Paschke, S.G. Ruiz,
Metallomics (2010) 419.
[153] S. Tushar, B. Baul, S. Basu, D.D. Vos, A. Linden, Invest. New Drugs 27 (2009)
419.
[154] Z. Shi, S. Tabassum, W. Jiang, J. Zhang, S. Mathur, J. Wu, Y. Shi, ChemBioChem,
8 (2007) 2092.
[155] M. Gielen, Appl. Organomet. Chem. 16 (2002) 481.
[156] M. Gielen, Coord. Chem. Rev. 151 (1996) 41.
178
[157] M. Gielen, Metal-Based Drugs 1(1994) 213.
[158] P.J. Blower, Annu. Rep. Prog. Chem. Sect. A 100 (2004) 633.
[159] F. Marchetti, C. Pettinari, A. Cingolani, R. Pettinari, M. Rossi, F. Caruso, J.
Organomet. Chem. 645 (2002) 134.
[160] X. Song, A. Zapata, G. Eng, J. Organomet. Chem. 691 (2006) 1756.
[161] J.S. Casas, E.E. Castellano, M.D. Couce, J. Ellena, A. Sanchez, J.L. Sanchez, J.
Sordo, C. Taboada, Inorg. Chem. 43 (2004) 1957.
[162] M. Hanif, M. Hussain, S. Ali, M.H. Bhatti, M.S. Ahmed, B. Mirza, H.S. Evans,
Polyhedron, 29 (2010) 613.
[163] K. Nakamoto, “Infrared and Raman Spectra of Inorganic and Coordination
Compounds” Wiley, New York, (1986).
[164] B.E. Douglas, D.H. McDaniel, J.J. Alexander, “Concept and Models of Inorganic
Chemistry” J. Wiley and Sons, Inc., New York, (1993).
[165] R.S. Drago, “Physical Methods in Inorganic Chemistry,” Reinhold Publishing
Corporation, New York, (1968).
[166] R.M. Silverstein, G.C. Bassler, “Spectroscopic identification of organic
compounds”, John Wiley and sons, Inc. New York. London (1964)
[167] B.J. Hathway, D.G. Holah, J.D. Postlethwaite, J. Chem. Soc. (1961) 3215.
[168] W.J. Geary, Coord. Chem. Rev. 7 (1971) 81.
179
[169] TEM, Hyperlink; http://www.wikipedia.com.
[170] J. Marmur, J. Mol. Biol. 3 (1961) 208.
[171] M.E. Reichmann, S.A. Rice, C.A. Thomas, P. Doty, J. Am. Chem. Soc. 76 (1954)
3047.
[172] K. J. Laidler, “Chemical Kinetics” Tata McGraw Hill Inc., New York, (1973)
[173] A. Wolfe, G.H. Shimer, T. Meehan, Biochemistry 26 (1987) 6392.
[174] D.E.V. Schmechel, D.M. Crothers, Biopolymers 10 (1971) 465.
[175] J.R. Lakowicz, G. Webber, Biochemistry 12 (1973) 4171.
[176] G.D. Liu, J.P. Liao, Y.Z. Fang, S.S. Huang, G.L. Sheng, R.Q. Yu, Ana. Sci. 18
(2002) 391.
[177] G.D. Liu, J.P. Liao, S.S. Huang, G.L. Shen, R.Q. Yu, Anal. Sci. 17 (2001) 1031.
[178] A.J. Bard, L.R. Faulkner, “Electrochemical Methods”, Wiley, New York, (1980)
219.
[179] A. Kornberg, T. A. Baker “DNA replication” second edition university Science
Book, United States of America.
[180] R.E. Farell Jr. RNA Methodologies, A laboratory guide for isolation and
characterization. Third edition Elsevier Academic press United States of America.
[181] G. Cohen, H. Eisenberg, Biopolymers 8 (1969) 45.
180
[182] M. Eriksson, M. Leijon, C. Hiort, B. Norden, A. Graslund, Biochemistry 33 (1994)
5031.
[183] D. Mustard, D.W. Ritchie, Proteins 60 (2005) 269.
[184] Z. Li, H. Wan, Y. Shi, P Ouyang, J. chem. Inf. Comput. Sci. 44 (2004) 1886.
[185] N.M. O’Boyle, C. Morley, G. R. Hutchison, Chem. Cent. J. 2 (2008) 5.
[186] www.pdb.org.
[187] D.M. Greenblatt, E.C. Meng, T.C. Ferrin. J. Comput. Chem. 25 (2004) 1605.
[188] U. Casellato, R. Graziani, V. Peruzzo, G. Plazzogna, J. Organomet. Chem. 486
(1995) 105.
[189] Y. Xie, W. Bu, A.S.C. Chan, X. Xu, Q. Liu, Z. Zhang, J. Yu, Y. Fan, Inorg. Chim.
Acta 310 (2000) 257.
[190](a) K. Majumdar, R.J. Butcher, S. Bhattacharya, Inorg.Chem. 41 (2002) 4605. (b)
M. M.A. Jinnah, M. Umadevi, B. Ravikumar, V. Ramakrishnan, Spectrochim. Acta. Part
A 60 (2004) 2977.
[191] S. Mataka, T. Mimura, S.T. Lee, H. Kobayashi, K. Takahashi, M. Tashiro, J. Org.
Chem. 54 (1989) 5237.
[192] M. Vaidyanathan, R. Balamurugan, U. Sivagnanam, M. Palaniandavar, J. Chem.
Soc. Dalton Trans. (2001) 3498.
[193] M.L. Cole, C. Jones, P.C. Junk J. Chem.Soc. Dalton Trans. (2002) 896.
181
[194] L. Tei, A.J. Blake, A. Bencini, B. Valtancoli, C. Wilson, M. Schroder, Dalton
Trans. (2000) 4122.
[195] R.J.P. Corriu, D. Leclercq, P.H. Mutin, L. Sarlin, A. Vioux, J .Mater. Chem. 8
(1998) 1827.
[196] S. Ramakrishnan, V. Rajendiran, M. Palaniandavar, V.S. Periasamy, B.S. Srinag,
H. Krishnamurthy, M.A. Akbarsha, Inorg. Chem. 48 (2009) 1309.
[197] A.M. Herrera, R.J. Staples, S.V. Kryotov, A.Y. Nazarenko, E.V.R. Akimova
Dalton Trans. (2003) 846.
[198] S. Srinivasan, P. Athappan, Transition Met. Chem. 26 (2001) 588.
[199] B. Cervera, J.L. Sanz, M.J. Ibanez, G. Vila, F. LLloret, M. Julve, R. Ruiz, X.
Ottenwaelder, A. Aukauloo, S. Poussereau, Y. Journaux, M.C. Munoz, Dalton Trans.
(1998) 781.
[200] F. Arjmand, M. Chauhan, Helv. Chim. Acta. 88 (2005) 2413.
[201] J.R. Anacona, V.E. Marquez, Transition Met. Chem. 33 (2008) 579.
[202] S.V. Kryatov, B. S. Mohanraj, V.V. Tarasov, O.P. Kryatova, E.V. R. Akimova,
Inorg. Chem. 41 (2002) 923.
[203] Z. Li, X. Tao, Y. Cheng, Z. Wu, Z. Zhang, H. Dang, Ultrason. Sonochem. 14
(2007) 89.
[204] Y. Zhao, Z. Zhang, H. Dang, Mat. Sci. Engg. A 359 (2003) 405.
182
[205] H.T. Zhu, C.Y. Zhang, Y.S. Yin, J. Cryst. Growth. 270 (2004) 722.
[200] Q. Li, P. Yang, H. Wang, M. Guo, J. Inorg. Biochem. 64 (1996) 181.
[207] J. Liu, H. Zhang, C. Chen, H. Deng, T. Lu, L. Ji, Dalton Trans. (2003) 114.
[208] S. Shi, J. Liu, J. Li, K.C. Zheng, X.M. Huang, C.P. Tan, L.M. Chen, L.N. Ji, J.
Inorg. Biochem. 100 (2006) 385.
[209] Y. Dong, G.A. Lawrance, L.F. Lindoy, P. Turner, Dalton Trans. (2003) 1567.
[210] S. Kashanian, M.B. Gholivand, F. Ahmadi, A. Taravati, A.H. Colagar,
Spectrochim. Acta part A 67 (2007) 472.
[211] L.F. Tan, H. Chao, K.C. Zhen, J.J. Fei, F. Wang, Y.F. Zhou, L.N. Ji, Polyhedron 26
(2007) 5458.
[212] H. Xu, K.C. Zheng, H. Deng, L.J. Lin, Q.L, Zhang, L.N. Ji, New J. Chem. 27
(2003) 1255.
[213] D. Lawrence, V.G. Vaidyanathan, B.U. Nair, J. Inorg. Biochem. 100 (2006) 1244.
[214] M.T. Carter, A.J. Bard, J. Am.Chem. Soc. 109 (1987) 7528.
[215] M.S. Melvin, J.T. Tomlinson, G.R. Saluta, G.L. Kucera, N. Lindquist, R.A.
Manderville, J. Am. Chem. Soc. 122 (2000) 6333.
[216] V. Chandrasekhar, R. Azhakar, T. Senapati, P. Thilagar, S. Ghosh, S. Verma, R.
Bhoomishankar, A. Steiner, P. Kogerler J. Chem. Soc. Dalton Trans. (2008) 1150.
183
[217] M.E. Cerritelli, N. Cheng, A.H. Rosenberg, C.E. McPherson, F.P. Booy, A.C.
Steven, Cell 91 (1997) 271.
[218] E.G. Martinez, A.S. Gonzalez, A. Macias , M.V. Castano, J.S. Casas, J. Sordo, J.
Organomet. Chem. 385 (1990) 329.
[219] S. Tabassum, G.C. Sharma, F. Arjmand, A. Azam, Nanotech. 21 (2010) 195102.
[220] M. Saeed Arayne, N. Sultana, A. Z. Mirza, J. Mol. Struct. 927 (2009) 54.
[221] W. Kemp, Organic Spectroscopy, 3rd ed.; W.H. Freeman: New York, 1991.
[222] M. Nath, P. K. Saini, Dalton Trans. (2011) DOI: 10.1039/c0dt01426e.
[223] Y. Mikata, S. Fujii, M. Naemura, K. Takahashi, Y. Noguchi, Dalton Trans. (2009)
10305.
[224] Y. Dong, L.F Lindoy, P. Turner, G. Wei, Dalton Trans. (2004) 1264.
[225] M. Nath, Sulaxna, X. Song, G. Eng, J. Organomet. Chem. 691 (2006) 1649.
[226] S. Ramakrishnan, E. Suresh, A. Riyasdeen, M. A. Akbarsha, M. Palaniandavar,
Dalton Trans. (2011) 3245.
[227] A. M. Donia, T.Y.A. Ansi, M.Q. Othman, J. Therm. Anal. 50 (1997) 857.
[228] L.F. Chin, S.M. Kong, H.L. Seng, K.S. Khoo, R. Vikneswaran, S.G. Teoh, M.
Ahmad, S.B.A. Khoo, M. J. Maah, C.H. Ng, J. Inorg. Biochem. 105 (2011) 221.
[229] Y.H. Du, J. Huang, X.C. Weng, X. Zhou, Curr. Med. Chem. 17 (2010) 173.
184
[230] J.K. Barton, A.T. Danishefsky, J.M. Goldberg, J. Am. Chem. Soc. 106 (1984) 2172.
[231] F. Arjmand, F. Sayeed, J.Mol.Struct. 965 (2010) 14.
[232] F.Y. Wu, F.Y. Xie, Y.M. Wu, J.I. Hong, J. Fluores. 18 (2008) 175.
[233] J.B. Lepecq, C. Paoletti, J. Mol. Biol. 27 (1967) 87.
[234] M.T. Carter, M. Rodriguez, A.J. Bard, J. Am. Chem. Soc. 111 (1989) 8901.
[235] V. A. Kawade, A. A. Kumbhar,A. S. Kumbhar, C. Nather, A. Erxleben, U.B.
Sonawane, Rajendra R. Joshi, Dalton Trans. 40 (2011) 63.
[236] E. Trotta, N.D. Grosso, M. Erba, M. Paci, Biochemistry 39 (2000) 6799.
[237] P. Wittung, P. Nielsen, B. Norden, J.Am. Chem. Soc. 118 (1996) 7049.
[238] C.A. Detmer III, F.V. Pamatong, J.R. Bocarsly, Inorg Chem. 36 (1997) 3676.
[239] S. Thyagarajan, N.N. Murthy, A.A.N. Sarjeant, K.D. Karlin, S.E. Rokita, J. Am.
Chem. Soc. 128 (2006) 7003.
[240] M.S. Melvin, M.W. Calcutt, R.E. Noftle, R.A. Manderville, Chem. Res. Toxicol. 15
(2002) 742.
[241] I.W. Hamley, V. Castelletto, Angew. Chem. 46 (2007) 4442.
[242] R.W. Wilson, V.A. Bloomfield, Biochemistry. 18 (1979) 2192.
[243] E.M. Proudfoot, J.P. Mackay, P. Karuso, Biochemistry 40 (2001) 4867.
[244] J. Tan, B. Wang, L. Zhu, Bioorg. and Med.Chem. 17 (2009) 614.
185
[245] Y. Harinath, D.H.K. Reddy, B.N. Kumar, K. Lakshmi, K. Seshaiah, J. Chem.
Pharm. Res. 3 (2011) 698.
[246] M. Casadesus, M.P. Coogan, E. Davies, L.L. Ooi, Inorg. Chimica. Acta. 361
(2008) 63.
[247] K. Isele, V. Broughton, C.J. Mathews, A.F. Williams, G. Bernardinelli, P. Franz,
S. Decurtins, Dalton Trans. (2002) 3899.
[248] M. Chauhan, K. Banerjee, F. Arjmand, Inorg. Chem. 46 (2007) 3072.
[249] M. Du, Y.M. Guo, X.H. Bu, J. Ribas, M. Monfort, New J.Chem. 26 (2002) 939.
[250]
S. Youngme, J. Phatchimkun, N. Wannarit, N. Chaichit, S. Meejoo, G.A.V.
Albada, J. Reedijk, Polyhedron 27 (2008) 304.
[251] S. Youngme, P. Phuengphai, N. Chaichit, G.A.van Albada, S. Tanase, J. Reedijk,
Inog. Chim. Acta 358 (2005) 3267.
[252] F. R. Louka , M. L. Spell, J. Grebowicz, J. H. Albering, F. A. Mautner, S.S.
Massoud, J. Mol. Struct. (2011) doi:10.1016/j.molstruc.2011.03.066.
[253] M.D. Santana, G. Garcia, A. Rufete, M.C.R.D. Arellano, G. Lopez, Dalton Trans.
(2000) 619.
[254] F. Arjmand, M. Aziz, Eur. J. Med. Chem. 44 (2009) 834.
[255] Z.H. Xu, F.J. Chen, P.X. Xi, X.H. Liu, Z.Z. Zeng, J. Photochem. Photobiol. A 196
(2008) 77.
186
[256] J.K. Barton, L.A. Basile, A. Danishefsky, A. Alexandrescu, Proc. Natl. Acad. Sci.
USA 81 (1984) 1961.
[257] V.A. Sorokin, V.A. Valeev, G.O. Gladchenko, I.V. Sysa,Y. P. Blagoi, I.V.
Volchok, J. Inorg. Biochem. 63 (1996) 79.
[258] M.J. Han, Y.M. Chen, K.Z. Wang, New J. Chem. 32 (2008) 970.
[259] B. L. H. Jr, W.J. Dressick, S. L. Buell, J. N. Demas, B. A. DeGraff, J. Am. Chem. Soc.
105 (1983) 4251.
[260] F. Arjmand, M. Muddassir, Chirality 23 (2010) 250.
[261] P.U. Maheswari, M. Palaniandavar, Inorg. Chimica. Acta. 357 (2004) 901.
[262] P.T. Selvi, M. Palaniandavar, Inorg. Chimica. Acta. 337 (2002) 420.
[263] A.M. Polyanichko, E.V. Chikhirzhina, V.V. Andrushchenko, V.I. Vorobev, H.
Wieser, Biopolymers 83 (2006) 182.
[264] K. Karidi, A. Garoufis, A. Tsipis, N. Hadjiliadis, H.D. Dulk, J. Reedijik, Dalton
Trans. (2005) 1176.
[265] R. Indumathy, T. Weyhermuller, B.U. Nair, Dalton Trans. 39 (2010) 2087.
[266] A. Mazumder, C.L. Sutton, D.S. Sigman, Inorg. Chem. 32 (1993) 3516.
[267] F. Arjmand, M. Muddassir, J Photochem. Photobiol. B 101 (2010) 37.
[268] J. Chen, X. Wang,Y. Shao, J. Zhu, Y. Zhu, Y. Li, Q. Xu, Z. Guo, Inorg. Chem. 46
(2007) 3306.
187
[269] M.P. Lee, M. Sander, T.S. Hsieh, J. Biol. Chem. 264 (1989) 13510.
[270] Y.N.V. Gopal, A.K. Kondapi, J. Biosci. 26 (2001) 271.
[271] E. Kilinc, A. Cetin, M. Togrul, H. Hosgoren, Anal. Sci. 24 (2008) 763.
[272] D. Stoilova, V. Kolev, Spectrochim. Acta Part A 57 (2001) 2629.
[273] I. Ucar, E. Bozkurt, C. Kazak, A. Bulut, Spectrochim. Acta Part A 72 (2009) 11.
[274] F. Arjmand, M. Muddassir, R. H. Khan, Eur. J. Med. Chem. (2010) 3549.
[275] M. Chauhan, F. Arjmand, Chem. and Biod. 3 (2006) 660.
[276] A. Motta, M. Antonietta, C. Morelli, N. Goud, A.P. Temussi, Biochemistry 28
(1989) 7996.
[277] C. Pettinari, F. Caruso, N. Zaffaroni, R. Villa, F. Marchetti, R. Pettinari, C. Phillips,
J. Tanski, M. Rossi, J. Inorg. Biochem. 100 (2006) 58.
[278] U. Chaveerach , A. Meenongwa, Y. Trongpanich , C. Soikum, P. Chaveerach,
Polyhedron 29 (2010) 731.
[279] S. Mathur, S. Tabassum, Cent. Eur. J. Chem.4 (2006) 502.
[280] C. Liu, J. Zhou, H. Xu, J. Inorg. Biochem. 71 (1998) 1.
[281] K.R. Rupesh, S. Deepalatha, M. Krishnaveni, R. Venkatesan, S. Jayachandran,
Eur. J. Med. Chem. 41 (2000) 1494.
[282] C.V. Kumar, J.K. Barton, N.J. Turro, J. Am. Chem. Soc. 107 (1985) 5518.
188
[283] P. U. Maheswari, M. Palaniandavar, J. Inorg. Biochem. 98 (2004) 219.
[284] V.I. Ivanov, L.E. Minchenkova, A.K. Schyolkina, A.I. Poletayev, Biopolymers 12
(1973) 89.
[285] P.U. Maheswari, V. Rajendiran, M. Palaniandavar, R. Thomas, G.U. Kulkarni,
Inorg. Chim. Acta. 359 (2006) 4601.
[286] P. Zhao, L.C. Xu, J.W. Huang, J. Liu, H.C.Yu, K.C. Zheng, L.N. Ji. Spectrochim.
Acta Part A 71 (2008) 1216.
[287] R. Rao, A.K. Patra, P.R. Chetana, Polyhedron 26 (2007) 5331.
[288] F. Liang, P. Wang, X. Zhou, T. Li, Z. Li, H. Lin, D. Gao, C. Zheng, C. Wu,
Bioorg. Med. Chem. Lett. 14 (2004) 1901.
[289] X. Dong, X. Wang, M. Lin, H. Sun, X. Yang, Z. Guo, Inorg. Chem. 49 (2010)
2541.
[290] S.H. Chiou, N. Ohtsu, K.G. Bensch, in: D. Karlin, J. Zubieta (Eds.), Biological and
Inorganic Copper Chemistry, Adenine Press, New York, (1985) 119.
[291] L.A. Basile, A.L. Raphael, J.K. Barton, J. Am. Chem. Soc. 109 (1987) 7550.
[292] M. Nath and S. Goyal, Met. Based Drugs, 2 (1995) 297.
[293] S.Q. Bai, E.Q. Gao, Z. He, C.J. Fang, C.H. Yan, New J. Chem. 29 (2005) 935.
[294] R. Rao, A. K. Patra, P.R. Chetana, Polyhedron 26 (2007) 5331.
189
[295] S. Kashanian, N. Shahabadi, H. Roshanfekr, K. Shalmashi, K. Omidfar, Biochemistry
(moscow) 73 (2008) 929.
[296] A. Jansco, L. Nagy, E. Moldrheim, E. Sletten, Dalton Trans. (1999) 1587.
[297] H.L. Huang, Y.J. Liu, C.H. Zeng, J.H. Yao, Z.H. Liang, Z.Z. Li, F.H. Wu,
J. Mol. Struct. 966 (2010) 136.
[298] J.Z. Wu, H. Li, J.G. Zhang, J.H. Xu, Inorg. Chem. Commun. 5 (2002) 71.
[299] C.V. Kumar, E. H. A. Punzalan, Tetrahedron 56 (2000) 7027.
[300] K. Dhara, J. Ratha, M. Manassero, X.Y. Wang,S. Gao, P. Banerjee, J. Inorg. Biochem.
101 (2007) 95.
190
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