ANTIMICROBIAL, ANTITUMOR AND GASTROPROTECTIVE STUDIES OF SOME NEW WATER SOLUBLE ORGANIC DERIVATIVES OF BISMUTH

Tiwari V.K.1, Shukla S.K.2, Chauhan V.S.3, Ravi Kant4, Sushma Rani5, Tewari I.C.6
1Department of Chemistry, D.B.S.P.G. College, Kanpur
2Department of Chemistry, D.B.S.P.G. College, Kanpur
3Department of Chemistry, D.B.S.P.G. College, Kanpur
4Department of Medicinal Chemistry, Mahatma Gandhi Institute of Pharmacy, Lucknow
5Department of Chemistry, D.G.(P.G.) College, Kanpur
6Department of Chemistry, D.B.S.P.G. College, Kanpur

Received : -     Accepted : -     Published : 15-06-2010
Volume : 2     Issue : 1       Pages : 9 - 14
Int J Pharmaceut Anal 2.1 (2010):9-14
DOI : http://dx.doi.org/10.9735/0975-3079.2.1.9-14

Keywords : Antimicrobial, antitumor, gastro protective, triorganobismuth
Conflict of Interest : None declared

Cite - MLA : Tiwari V.K., et al "ANTIMICROBIAL, ANTITUMOR AND GASTROPROTECTIVE STUDIES OF SOME NEW WATER SOLUBLE ORGANIC DERIVATIVES OF BISMUTH." International Journal of Pharmaceuticals Analysis 2.1 (2010):9-14. http://dx.doi.org/10.9735/0975-3079.2.1.9-14

Cite - APA : Tiwari V.K., Shukla S.K., Chauhan V.S., Ravi Kant, Sushma Rani, Tewari I.C. (2010). ANTIMICROBIAL, ANTITUMOR AND GASTROPROTECTIVE STUDIES OF SOME NEW WATER SOLUBLE ORGANIC DERIVATIVES OF BISMUTH. International Journal of Pharmaceuticals Analysis, 2 (1), 9-14. http://dx.doi.org/10.9735/0975-3079.2.1.9-14

Cite - Chicago : Tiwari V.K., Shukla S.K., Chauhan V.S., Ravi Kant, Sushma Rani, and Tewari I.C. "ANTIMICROBIAL, ANTITUMOR AND GASTROPROTECTIVE STUDIES OF SOME NEW WATER SOLUBLE ORGANIC DERIVATIVES OF BISMUTH." International Journal of Pharmaceuticals Analysis 2, no. 1 (2010):9-14. http://dx.doi.org/10.9735/0975-3079.2.1.9-14

Copyright : © 2010, Tiwari V.K., et al, Published by Bioinfo Publications. This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution and reproduction in any medium, provided the original author and source are credited.

Abstract

Some triorganobismuth (V) amide, which are soluble in water, were synthesized by method reported earlier and characterized by their elemental and I.R. spectral analysis along with their antimicrobial, antitumor and gastro protective activity against different pathogenic microbial strains, human breast and mammary cancer cell line and gastric ulcer.

References

[1] Guo Z. and Sadler P.J. (2000) Adv. Inorg. Chem., 49, 183  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[2] Clarke M.J., Zhu F. and Frasca D.R. (1999) Chem. Rev, 99, 2511  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[3] Gielen M. Editor Metal Based Antitumor Drugs (1988) freund Publishing House Ltd. London  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[4] Sadler P.J., Li H. and Sun H. (1991) Coord Chem. Rev., (185-186), 689-709  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[5] Sun H., Li H. and Sadler P.J. (1997) Chem. Ber/Recucil, 130, 669-681.  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[6] Briand G.G. and Barford N. (1999) Chem. Rev., 99, 2601-2657  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[7] Bierer D.W. (1990) Rev. Infect. Dise., (12- 1), 53-58  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[8] Marshall B.J. (1991) Am. J. Gastroenterol, 86, 16-25  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[9] Rambert J.R. (1991) Rev. Infect. Dis., (13- 8), S 691-S695  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[10] Gorbach S.L. (1990) Gastroenterology, 99, 863-875.  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[11] Baxter G.F. (1992) Chem. Brit., 445-448  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[12] Veldhuyzen V.Z. and Sherman P.M. (1994) Can. Med. Asso. J., 150, 189-198  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[13] Veldhuyzen V.Z. and Sherman P.M.(1994) Can. Med. Asso. J., 150, 177-185.  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[14] DuPont H.L., Ericsson C.D., Johnson P.C. and Delacabada F.J. (1990) Rev. Infect. Dis., (12-1), S64-S67  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[15] Steffen R. (1990), Rev. Infect. Dis. (12-1) S80-S86  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[16] Brücher S., Avendano H.E, P., Ryan M. O. and Soriano H.A. (1990) Rev. Infect. Dis. (12-1), S51-S56  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[17] Gryboski J.D. and Kocoshis S. (1990) Rev. Infect. Dis., (12-1) S36-S40  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[18] Lambert J.R. and Midolo P. (1997) Aliment. Pharmacol. Ther. (11-1), 27-33  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[19] Chiba N.(2000) Can. J. Gastroenterol, 14, 885-889.  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[20] Dittes U., Vogel E. and Keppler B.K. (1997) Coord. Chem. Rev., 163, 345-364  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[21] Murafuji Toshihiro, Miyoshi Y., Ishibashi M., Mustafizur Rahman A.F.M., Sugihara Y., Miyakawa I. and Uno H.(2004) J. Inorg. Biochem., 98, 547-552  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[22] Dahlgren A., Glogard C., Gammelsacher M., Aasen A.J., Klevenss J., Bardal B.P. and Bergan T. (1999) Scand. J. Gastroenterol, 135-137  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[23] Hermann W.A., Herdtweek E. and Pajdla L. (1991) Inorg. Chem., 30, 2579-2581  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[24] Asato E., Kamamuta K., Akamine Y., Fukami T., Nukada R., Mikuriya M., Deguchi S. and Yoikata Y.(1997) Bull. Chem. Soc. Japan, 70, 639-648  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[25] Ghannoum M.A. and Rice L.B.(1999) Clin. Microbiol. Rev. 12, 501-517  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[26] Turel I., Golic L., Bukovec P. and Gubina M.( 1998) J. Inorg. Biochem., 71, 53-60  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[27] Dominico P., Salo R.J., Novick S.G., Schoch P.E., Horn K.V. and Cunha B.A.(1997) Antimicrobial agent Chemother, 41, 1697-1703  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[28] Stratton C.W., Warner R.R., Coudron P.E. and Lilly N.A.(1999) J. Antimicrobi. Agents Chemother, 43, 659-666.  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[29] Agoes L., Briand G.G., Burford N., Cameron T.S., Kwiatkowski W.W. and Robertson K.N. (1997) Inorg. Chem. 36, 2855- 2860  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[30] Agoes L., Buford N., Cameron T.S., Curtis J.M., Richardson J.F., Robertson K.M. and Yhard G.B. (1996) J. Am. Chem. Soc., 118, 3225-3232  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[31] Murafuji T., Nagasue M., Tashiro Y., Sugihara Y. and Azuma N.(2000) Organometallics, 19, 1003-1007.  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[32] Mahony D.E., Morrison S.L., Bryden L., Faulkner G., Hoffman P.S., Agoes L., Briand G.G., Burford N. and Maguire H.(1999) Antimicrobial Agents Chemother. 43(3), 582-588  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[33] Asato R., Kamamuta K., Akamine Y., Fukami T., Nukada R., Mikuriya M., Deguchi S. and Yokota Y.(1997) Bull. Chem. Soci. Japan, 70, 639-648  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[34] Diemer R., Keppler B.K., Dittes U., Nuber B., Seifried V. and Opferkuch W.(1995) Chem. Ber., 128, 335-342  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[35] Dittes U., Vogel E. and Keppler B.K. (1997) Coord. Chem. Rev., 163, 345-364  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[36] Pergo P., Jimenez G.S., Gatti L., Howell S.B. and Zunnino F. (2000) Pharmacol. Rev., 52, 477-491  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[37] Summers S.P., Abboud K.A., Farrah S.R. and Palinik G.J. (1994) Inorg. Chem., 33, 88-92.  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[38] Klapötke T. (1987) J. Organomet. Chem. 331, 299  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[39] Klapötke T. (1988) Monatsh Chem. 119, 1317.  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[40] Bieling H.J., Lützel G. and Reidus A. (1956) Chem. Ber. 89, 775.  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[41] Gowich P.and Klapötke T. (1987) Z. Natureforsch, 42b, 940.  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[42] Köpf-maier P.and Klapötke T.(1988) Inorg. Chem. Acta., 152, 49  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[43] Klapötke T. (1998) Biol. Metal., 1, 69-76.  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[44] Sadler P.J., Li H. and Sun H. (1999) Coord. Chem. Rev., 185-186, 689-709.  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[45] Hermann W.A., Herdtweek E.and Pajdla L. (1992) Z. Kristallografiya, 198, 257-264  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[46] Hermann W.A., Herdtweek E. and Pajdla L. (1991) Inorg. Chem., 30, 2579-2581  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[47] Asato E., Driessen W.L., Degraaff R.A.G, Hulsbergen F.B.and Reedejk J. (1991) Inorg. Chem., 30, 4210-4218.  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[48] Asato E., Katsura K., Mikuriya M., Fujii T.and Reedifik J.(1992) Chem. Lett. 1967-1970  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[49] Asato E., Katsura K., Mikuriya M., Turpeinen U., Mutjkainen I. and Rudijk J.(1995) Inorg. Chem., 34, 2447-2454  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[50] Kant R., Amresh G.,Chandrashekar K. and Anil.K.K.S.(2008) Phosphorus, Sulfur and Silicon, 183,1410-1419  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[51] Verma R.S. and Imam S.A. (1973) Ind. J. Microbial, 13, 45.  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[52] Mosmann T.(1983) J. Immunol. Methods, 65,55.  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus  

[53] Govindrajan R, Vijayakumar M, Singh M, Rao Ch.V, Shirwaikar A, Rawat A.K.S, Pushpangadan P, (2006) Jour.of Ethanopharmacology, 106, 57-61  
» CrossRef   » Google Scholar   » PubMed   » DOAJ   » CAS   » Scopus