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Yıl 2018, Cilt: 2 Sayı: 2, 44 - 52, 31.12.2018

Öz

Kaynakça

  • [1] Towns A. D. (1999). Developments in azo disperse dyes derived from heterocyclic diazo components Dyes Pigments, 42, 3-28.
  • [2] Zhang-Gao L., Jian-Ping X., Huo-Yu R., Min Y. (2006). One-pot synthesis of 2-aminobenzothiazoles using a new reagent of [bmim]br3 in [bmim]BF4 Journal of Heterocyclic Chemistry, 43, 1123–1124.
  • [3] Venkatesh P., Pandeya S. N. (2009). Synthesis, characterisation and anti-inflammatory Activity of some 2-amino benzothiazole derivatives International Journal of ChemTech Research, 1(4), 1354-1358.
  • [4] Chaitanya M. S., Nagendrappa G., Vaidya V. P. (2010). Synthesis, biological and pharmacological activities of 2-methyl-4Hpyrimido[2,1-b][1,3]benzothiazoles Journal of Chemical and Pharmaceutical Research, 2(3), 206-213.
  • [5] Himaja, M., Munirajasekhar, D., Mali, S.V. (2011). Synthesis and anthelmintic activity of 2-amino-6-substituted benzothiazoles. International Research J Pharmacy, 2(1), 114-117.
  • [6] Malik J. K , Manvi F. V., Nanjwade B. K., Singh S. (2009). Synthesis and screening of some new 2-amino substituted benzothiazole derivatives for antifungal activity Drug Invention Today, 1(1), 32-34.
  • [7] İlkimen, H. (2013) 2-Aminobenzotiyazol türevlerinin 2,6-pridindikarboksilik asit ile tuzlarının hazırlanması, bunların geçiş metal komplekslerinin sentezlenmesi, yapılarının aydınlatılması ve kullanım alanlarının araştırılması Doktora Tezi, Dumlupınar Üniversitesi, Kütahya, Türkiye,.
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  • [9] Fang G., Xu M., Zeng F., Wu S. (2010). β-Cyclodextrin as the vehicle for forming ratiometric mercury ion sensor usable in aqueous media, biological fluids and live cells Langmuir, 26, 17764-17771.
  • [10] Marin A. J., Yubero N., Esteso G., Moreno A., de las Mulas J. M., Morera L., Llanes D., Barbancho M., Garrido J. J. (2008). Molecular characterization and expression analysis of the gene coding for the porcine β3 integrin subunit (CD61) Gene, 408, 9-17.
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2-Aminobenzotiyazolün Metal Kompleksleri ve Biyolojik Özellikleri Hakkında Literatür Çalışması

Yıl 2018, Cilt: 2 Sayı: 2, 44 - 52, 31.12.2018

Öz

2-Aminobenzotiyazol
ve metal komplekslerinin
antibakteriyel,
antikanser, antifungal, anti-inflamatuar, antitümör ve karbonik
anhidraz inhibisyonu gibi biyolojik
özellikleri bilinmektedir. 2-Aminobenzotiyazollerin bazı
geçiş metalleri ile [MXn (M = Cr, Fe, Co, Ni, Cu, Zn, Cd, Hg, Ag,
Ru, Pd, Bi, Tl, Re, W, Pt, Sn, Nb ve Sb; X = Cl-, Br-, I-,
SCN-, NCO-, Ac-, CF3COO-,
BF4-, NO3-, SO42- ve ClO4-;
n = 1-5)] oluşturduğu komplekslerinin yapıları ve biyolojik özelliklerini anlatan
çalışmalar literatürde gözlenmiştir.

Kaynakça

  • [1] Towns A. D. (1999). Developments in azo disperse dyes derived from heterocyclic diazo components Dyes Pigments, 42, 3-28.
  • [2] Zhang-Gao L., Jian-Ping X., Huo-Yu R., Min Y. (2006). One-pot synthesis of 2-aminobenzothiazoles using a new reagent of [bmim]br3 in [bmim]BF4 Journal of Heterocyclic Chemistry, 43, 1123–1124.
  • [3] Venkatesh P., Pandeya S. N. (2009). Synthesis, characterisation and anti-inflammatory Activity of some 2-amino benzothiazole derivatives International Journal of ChemTech Research, 1(4), 1354-1358.
  • [4] Chaitanya M. S., Nagendrappa G., Vaidya V. P. (2010). Synthesis, biological and pharmacological activities of 2-methyl-4Hpyrimido[2,1-b][1,3]benzothiazoles Journal of Chemical and Pharmaceutical Research, 2(3), 206-213.
  • [5] Himaja, M., Munirajasekhar, D., Mali, S.V. (2011). Synthesis and anthelmintic activity of 2-amino-6-substituted benzothiazoles. International Research J Pharmacy, 2(1), 114-117.
  • [6] Malik J. K , Manvi F. V., Nanjwade B. K., Singh S. (2009). Synthesis and screening of some new 2-amino substituted benzothiazole derivatives for antifungal activity Drug Invention Today, 1(1), 32-34.
  • [7] İlkimen, H. (2013) 2-Aminobenzotiyazol türevlerinin 2,6-pridindikarboksilik asit ile tuzlarının hazırlanması, bunların geçiş metal komplekslerinin sentezlenmesi, yapılarının aydınlatılması ve kullanım alanlarının araştırılması Doktora Tezi, Dumlupınar Üniversitesi, Kütahya, Türkiye,.
  • [8] Chen, Z. F., Zhang, M., Shi, S. M., Huang, L., Liang, H., Xu, Q., Yu K. B.. (2005). Synthesis, crystal structure and antibacterial activity of 2-aminobenzotiazole silver(I) nitrate. Yingyong Huaxue, 22(7), 730-733.
  • [9] Fang G., Xu M., Zeng F., Wu S. (2010). β-Cyclodextrin as the vehicle for forming ratiometric mercury ion sensor usable in aqueous media, biological fluids and live cells Langmuir, 26, 17764-17771.
  • [10] Marin A. J., Yubero N., Esteso G., Moreno A., de las Mulas J. M., Morera L., Llanes D., Barbancho M., Garrido J. J. (2008). Molecular characterization and expression analysis of the gene coding for the porcine β3 integrin subunit (CD61) Gene, 408, 9-17.
  • [11] Song, S., Song, M., Zhang, H.., Yang, L.. (2010). Crystal structure and antibacterial activity of 2-aminobenzothiazole complexes. Huaxue Yanjiu, 21(6), 21-25.
  • [12] Zhao B., Duan L., Wen W., Zhao Y.Q., Bin-Sheng Y. (2011). Roles of Asp37 and Asp73 in the loop of N-terminal domain os ciliate uplotes octocarinatus centrin Wuji Huaxue Xuebao, 27, 245-250.
  • [13] Gandhi N., Diamond M. L., Meent V. D., Huijbregts M. A. J., Peijnenburg W. J. G. M., Guinee J. (2010). New method for calculating comparative toxicity potential of cationic metals in freshwater: application to copper, nickel, and zinc Environmental Science & Technology, 44(13), 5195-5201.
  • [14] Hadjikakou S. K., Kubicki M. (2000). Synthesis, characterisation and study of mercury(II) chloride complexes with triphenylphosphine and heterocyclic thiones. The crystal structures of [(benzothiazole-2-thionato)(benzothiazole-2-thione) (bis-triphenyl phosphine)chloromercury(II)] and [(μ2-dichloro){(bis-pyrimidine-2-thionato) mercury(II)}{(bis-triphenylphosphine) mercury(II)}] at 100 K Polyhedron, 19, 2231-2236.
  • [15] Chen X. Y., Femia F. J., Babich J. W., Zubieta J. (2001). Spectroscopic and structural studies of complexes of the fac-[Re(N∩N)(CO)3L]n+ type (N∩N= 2-(2-pyridyl)benzothiazole; L= Cl, Br, CF3SO3−, CH3CN) Inorganica Chimica Acta, 314, 91-96.
  • [16] Wang, E. C., Li, J., Li, Y. L., Yang, E. C., Zhao, X. J.. (2011). Three 2-Aminobenzothiazole-Based Mercury Complexes Tuned by Competitive Coordination Between the Coligands: Synthesis, Structures, and Fluorescent Properties. Synthesis and Reactivity in Inorganic, Metal-Organic, and Nano-Metal Chemistry, 41(7), 791-797.
  • [17] Hofmann A. W. (1887). Zur kenntniss des o-amidophenylmercaptans. Chemische Berichte, 20, 1788-1797.
  • [18] Hugerschoff H. (1901). Einwirkung von halogenen auf thioharnstoffe Chemische Berichte, 34, 3130-3135.
  • [19] Hugerschoff H. (1903). Einwirkung von brom auf aromatische thioharnstoffe Chemische Berichte, 36, 3121-3134.
  • [20] Campbell, M. J. M., Card, D. W., Grzeskowiak, R., (1969). Cobalt(II) and nickel(II) halide complexes of 2-aminobenzothiazole. Inorganic and Nuclear Chemistry Letters, 5(1), 39-43.
  • [21] Satyanarayana, D., Mohapatra, B. K., (1975). Complexes of copper(II) acetate with nitrogen donors. Indian Journal of Chemistry, 13(2), 185-186.
  • [22] Dash, R. N., Rao, D. V. R., (1974). Complexes of benzothiazole and 2-substituted benzothiazoles with silver(I). Coordination number 2 and 3. Journal of the Indian Chemical Society, 51(9), 787-789.
  • [23] Duff, E. J., Hughes, M. N., Rutt, K. J., (1969). Complexes of thiazoles. II. Complexes of 2-amino-, 2-chloro-, and 2-methylbenzothiazole with cobalt(II), nickel(II), copper(II), and zinc(II) salts. Journal of the Chemical Society [Section] A: Inorganic, Physical, Theoretical, 14, 2101-2105.
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  • [46] Kim, Y. I., (2012). Bis(2-amino-1,3-benzothiazole-κN)dichloridozinc(II) ethanol hemisolvate. Acta Crystallographica Section E: Structure Reports Online, 68(2), m178-m179.
  • [47] Malik, W. U., Sharma, K. D., Sharma, R. D., Upadhyaya, J. S., (1977). Complexes of cobalt(II), copper(II), cadmium(II) and mercury(II) with 2-amino-, 2-amino-4-chloro- and 2-amino-4-methylbenzothiazoles. Indian Journal of Chemistry, Section A: Inorganic, Physical, Theoretical & Analytical, 15(2), 152-153.
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  • [50] Campbell, M. J. M., Grzeskowiak, R., Juneja, G. S., (1978). Some iron(III) complexes of 2-aminobenzothiazole. Journal of Inorganic and Nuclear Chemistry, 40(6), 1247-1249.
  • [51] Singh, P. P., Pathak L. P., Srivastava, S. K., (1980). Application of quantitative values of softness on the elucidation of structure of bimetallic complexes. II. Journal of Inorganic and Nuclear Chemistry, 42(4), 533-539.
  • [52] Pelizzi, C., Pelizzi, G., Tarasconi, P., (1980). Synthesis and reactivity of organotin(IV) nitrates with heterocyclic systems. Inorganica Chimica Acta, 40(2), 183-186.
  • [53] Berdan, I., (1980). Complex combinations of thallium(III) with organic heterocyclic ligands. I. Synthesis and some properties. Buletinul Institutului Politehnic din Iasi, Sectia 2: Chimie si Inginerie Chimica, 26(3-4), 21-26.
  • [54] Aly, A. A. M., El-Meligy, M. S., Zidan, A. S., El-Shabasy, M., (1990). Thiazoles as complexing agents towards transition metal haloacetates: spectral, magnetic and thermal properties. Anales de Quimica, 86(1), 19-23.
  • [55] Tewari, S. P, Tripathi, P., Sinha, A. I. P., (1991). Silver(I) complexes of 2-thiazolamine and 2-benzothiazolamines. Asian Journal of Chemistry, 3(2), 124-127.
  • [56] Giusti, A., Peyronel, G., (1982). Zinc(II), cadmium(II), and mercury(II) complexes of 2-aminobenzothiazole. Spectrochimica Acta, Part A: Molecular and Biomolecular Spectroscopy, 38A(9), 975-979.
  • [57] Giusti, A., Giliberti, E., Peyronel, G., (1984). Chromium(III) complexes of 2-aminobenzothiazole. Spectrochimica Acta, Part A: Molecular and Biomolecular Spectroscopy, 40A(3), 275-277.
  • [58] Rossi, R., Duatti, A., Magon, L., Marchi, A., Medici, A., Fogagnolo, M., Casellato, U., Graziani, R., (1985). Synthesis, reactivity and x-ray crystal structures of mixed thiazolato- or carboxylatocarbonyl(phosphine)rhenium(I) complexes. Transition Metal Chemistry (Dordrecht, Netherlands), 10(11), 413-416.
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  • [61] Antolini, L., Benedetti, A., Fabretti, A. C., Giusti, A., (1988). Crystal structure and electronic and EPR spectra of a compound containing a symmetric square-planar tetrachlorocuprate(2-) ion. Inorganic Chemistry, 27(12), 2192-2194.
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  • [64] Maurya, R. C., Mishra, D. D., (1990). Synthesis and physicochemical studies of some mixed-ligand cyanonitrosyl {CrNO}5 hetero complexes of chromium(I) involving benzothiazole and related ligands. Synthesis and Reactivity in Inorganic and Metal-Organic Chemistry, 20(7), 865-874.
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  • [66] Maurya, R. C., Sharma, P., Sutradhar, D., (2003). Metal thiocyanato complexes: Synthesis, magnetic, and spectral studies of some mixed-ligand thiocyanato complexes of nickel(II) involving benzothiazole and benzimidazole derivatives. Synthesis and Reactivity in Inorganic and Metal-Organic Chemistry, 33(3), 387-401.
  • [67] Kadirova, S. A., Parpiev, N. A., Tashkhodzhaev, B., (2008). Synthesis and spectroscopic and x-ray diffraction studies of complexes of Co(II), Ni(II), Cu(II), and Zn(II) chlorides with benzothiazole derivatives. Ozbekiston Kimyo Jurnali, (1), 3-9.
  • [68] Jongh, L. A., Strasser, C. E., Raubenheimer, H. G., Cronje, S., (2009). Imine coordinated 2-aminoazole complexes of (CO)5Cr(0) and (CO)5W(0), verification by structural characterisation. Polyhedron, 28(16), 3635-3641.
  • [69] Abdel-Hady, A. E. M., (2014). Inner-sphere oxidation of 2-aminobenzothiazole chromium(III) complex by periodate. Evidence for the inhibiting effect of copper(II) and iron(II) ions. Industrial and Engineering Chemistry Research, 53(15), 6268-6273.
  • [70] Yan, X., Fan, Y., Bi, C., Zhang, X., Zuo, J., Zhang, P., Zhang, Z., (2014). Synthesis, crystal structure, and theoretical calculation of the Cd(II) complex with 2-aminobenzothiazole. Synthesis and Reactivity in Inorganic, Metal-Organic and Nano-Metal Chemistry, 44(4), 603-610.
  • [71] İlkimen, H., Yenikaya, C., Sarı, M., Bülbül, M., Tunca, E., Dal, H., (2014). Synthesis and characterization of a proton transfer salt between 2,6-pyridinedicarboxylic acid and 2-aminobenzothiazole, and its complexes and their inhibition studies on carbonic anhydrase isoenzymes. Journal of Enzyme Inhibition Medicinal Chemistry, 29(3), 353-361.
Toplam 71 adet kaynakça vardır.

Ayrıntılar

Bölüm Genel
Yazarlar

Halil İlkimen

Yayımlanma Tarihi 31 Aralık 2018
Yayımlandığı Sayı Yıl 2018 Cilt: 2 Sayı: 2

Kaynak Göster

APA İlkimen, H. (2018). 2-Aminobenzotiyazolün Metal Kompleksleri ve Biyolojik Özellikleri Hakkında Literatür Çalışması. Kilis 7 Aralık Üniversitesi Fen Ve Mühendislik Dergisi, 2(2), 44-52.
AMA İlkimen H. 2-Aminobenzotiyazolün Metal Kompleksleri ve Biyolojik Özellikleri Hakkında Literatür Çalışması. KİFMD. Aralık 2018;2(2):44-52.
Chicago İlkimen, Halil. “2-Aminobenzotiyazolün Metal Kompleksleri Ve Biyolojik Özellikleri Hakkında Literatür Çalışması”. Kilis 7 Aralık Üniversitesi Fen Ve Mühendislik Dergisi 2, sy. 2 (Aralık 2018): 44-52.
EndNote İlkimen H (01 Aralık 2018) 2-Aminobenzotiyazolün Metal Kompleksleri ve Biyolojik Özellikleri Hakkında Literatür Çalışması. Kilis 7 Aralık Üniversitesi Fen ve Mühendislik Dergisi 2 2 44–52.
IEEE H. İlkimen, “2-Aminobenzotiyazolün Metal Kompleksleri ve Biyolojik Özellikleri Hakkında Literatür Çalışması”, KİFMD, c. 2, sy. 2, ss. 44–52, 2018.
ISNAD İlkimen, Halil. “2-Aminobenzotiyazolün Metal Kompleksleri Ve Biyolojik Özellikleri Hakkında Literatür Çalışması”. Kilis 7 Aralık Üniversitesi Fen ve Mühendislik Dergisi 2/2 (Aralık 2018), 44-52.
JAMA İlkimen H. 2-Aminobenzotiyazolün Metal Kompleksleri ve Biyolojik Özellikleri Hakkında Literatür Çalışması. KİFMD. 2018;2:44–52.
MLA İlkimen, Halil. “2-Aminobenzotiyazolün Metal Kompleksleri Ve Biyolojik Özellikleri Hakkında Literatür Çalışması”. Kilis 7 Aralık Üniversitesi Fen Ve Mühendislik Dergisi, c. 2, sy. 2, 2018, ss. 44-52.
Vancouver İlkimen H. 2-Aminobenzotiyazolün Metal Kompleksleri ve Biyolojik Özellikleri Hakkında Literatür Çalışması. KİFMD. 2018;2(2):44-52.