Araştırma Makalesi
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EROİN, MORFİN, KOKAİN VE MDMA’NIN YÜKSEK PERFORMANSLI İNCE TABAKA KROMATOGRAFİSİ İLE EŞZAMANLI TAYİNİ

Yıl 2008, Cilt: 22 Sayı: 1, 13 - 24, 30.04.2008
https://izlik.org/JA98SZ93SU

Öz

Gıda, çevre, ilaç, bitki ve metabolizma gibi pek çok alanda yaygın olarak kullanılan geleneksel İnce Tabaka Kromatografisi (İTK)’ nin standardize edilmesi çerçevesinde son yıllarda teknolojideki yeniliklerle
bütünleşerek Yüksek Performanslı İnce Tabaka Kromatografisi (YPİTK) sistemi geliştirilmiştir. Bu sistem, eş zamanlı olup aynı plakada ayırım sağlayarak, direkt densitometrik ölçümler ile miktar analizini mümkün kılmaktadır. Bu çalışma, ülkemizde sık rastlanan psikotrop maddelerin tanımlanması amacıyla
oluşturulmuş bir yöntem bildirilmekte olup uygulama birimi olarak CAMAG ATS4, geliştirme birimi olarak CAMAG ADC2 ve tarama birimi olarak CAMAG TLC Scanner3 ile gerçekleşmiştir. Eroin, morfin, kokain, ve metilendioksimetamfetamin (MDMA)’in Rf değerleri Toluen: Aseton: Etanol: NH3(25%) (67:25:5:3) mobil sisteminde sırasıyla 0.41, 0.18, 0.66, 0.33 bulunmuştur. Standart maddelerin metanol içinde belirleme limiti (LOD) değerleri sırasıyla 6, 8, 0.1, 1.6 ng/µL ve ölçüm limiti (LOQ) değerleri sırasıyla 18, 24, 0.3, 4.8 ng/µL olarak hesaplanmıştır. Bu çalışma, YPİTK metodunun, psikotrop maddeler için, basit, hassas, kesin ve doğru miktar analizi sağladığını göstermiştir. Her birinin bileşiminin belirlenmesi yoluyla orijin tespitinde de kullanılabileceği hassaslıktaki bu yöntem ile kriminal vakalarda ele geçen psikotrop maddelerin, madde ile kirletildiği şüphesindeki yüzey ve materyallerin analizlerinin incelenebileceği düşünülmektedir

Kaynakça

  • Choma I, Grenda D, Malinowska I, Suprynowicz Z. Determination of flumequine and doxycycline in milk by a simple thin layer chromatographic method. J. Chromatog. B Biomed. Science Appl, 1999; 734, 7-14.
  • Liu X, Bi X, Mai B, Sheng G, Fu J. Separation of PAHs in aerosol by thin layer chromatography for compound-specific stable carbon isotope analysis. Talanta, 2005; 66: 487-494.
  • Ismaiel SA, Yassa DA. Determination of thiamine in pharmaceutical preparations by thin-layer chromatography. Analyst, 1973; 98: 5-8.
  • Topcu G, Turkmen Z, Ulubelen A, Kingston DGI. Highly hydroxylated triterpenes from Salvia kronenburgii. J Nat. Prod, 2004; 67: 118-121.
  • Mohri K, Okada K, Benet LZ. Stereoselective metabolism of benoxaprofen in rats. Biliary excretion of benoxaprofen taurine conjugate and glucuronide. Drug Metabolism and Disposition, 1998; 24: 332-337.
  • Gubitz G, Wintersteiger R. Identification of drugs of abuse by high-performance thin layer chromatography. J. Anal. Toxicol, 1980; 4: 141-4.
  • Haefelfinger P. Determination of bromazepam in plasma by quantitative thin-layer chromatography. Chromatographia. 1978; 11: 10-3.
  • Fenimore DC, Davis CM. High performance thin-layer chromatography. Analytical Chemistry, 1981; 53: 252A-266A.
  • Della Casa E, Martone GA. Quantitative densitometric determination of heroin and cocaine samples by high-performance thin-layer chromatography. For. Sci. Int, 1986; 32: 117-20. Pothier J, Galand N. Automated multiple development thin-layer chromatography for separation of opiate alkaloids and derivatives, Journal of Chromatography A, 2005; 1080: 186-191.
  • Knödler S, Seitz W, Schulz W, Weber WH. Characterisation of natural waters using HPTLC and toxicity-directed analysis, International Symposium for HPTLC, 9-11 October, 2006, Berlin.
  • Skarkova J, Ostry V, Prochazkova I. Development of HPTLC method for determination of patulin in apple juice. International Symposium for HPTLC, 9-11 October, 2006, Berlin.
  • Pohjola-Sintonen S, Kari TK, Erkki V, Outi L, Eero T, Pertti JN. Identification of drugs ingested in acute poisoning: correlation of patient history with drug analyses. Therapeutic Drug Monitoring, 2000; 22: 749-752.
  • Sherma J, Fried B. (Derleme) Thin layer chromatographic analysis of biological samples. Journal of Liquid Chromatography & Related Technologies, 2005; 28: 2297-2314.
  • Bladek J, Neffe S. Application of Thin-Layer Chromatography in clinical chemistry. Separation and Purification Reviews, 2003; 32: 61–120.
  • Tyrpien K, Bodzek P, Manka G. Application of planar chromatography to the determination of cotinine in urine of active and passive smoking pregnant women. Biomedical Chromatography, 2001; 15: 50–55.
  • Chepurwar SB, Shirkhedkar AA, Bari SB, Fursule RA, Surana SJ. Validated HPTLC method for simultaneous estimation of levofloxacin hemihydrate and ornidazole in pharmaceutical dosage form. J Chromatography Sci, 2007; 45: 531-53
  • Yonamine M, Sampaio MC. A high-performance thin-layer chromatographic technique to screen cocaine in urine samples. Legal Medicine, 2006; 8: 184-187.
  • Wendelgard P, Kovar KA, Ensslin H. High-performance thin-layer chromatographic determination of Nethyl- 3,4 methylenedioxyamphetamine and its major metabolites in urine and comparison with high-performance liquid chromatography. J Chrom B, 1997; 688: 63-69.
  • Drummer OH. Chromatographic screening techniques in systematic toxicological analysis. Journal of Chromatography B, 1999; 733: 27–45.
  • Spangenberg B, Ahrens B, Klein KF. TLC-analysis in forensic sciences using a diode-array detector. Chromatographia, 2001; 53: S438-S441.
  • Turkmen Z, Mercan S, Tutanc L, Cengiz S. Simultaneous high performance thin layer chromatographic determination of heroine, morphine, cocaine and MDMA. American Academy of Forensic Sciences, 2008 Annual Meeting, Washington DC, USA.
  • Weyermann C. (Tez) Mass spectrometric investigation of the aging processes of ballpoint ink for the examination of questioned documents, Giessen, 23 Eylül 2005.
  • McIntyre JA, Armandi AE, Risen LP, Ling W, Haberfelde GC. Thin-layer chromatography and enzyme immunoassay of L alpha-acetyl methadol and methadone metabolites in urine. Clinical Chemistry, 1975; 21: 109-112.
  • Antonilli L, Suriano C, Grassi MC, Nencini P. Analysis of cocaethylene, benzoylecgonine and cocaine in humanurine by high-performance thin-layer chromatography with ultraviolet detection: a comparison with high-performance liquid chromatography. Journal of Chromatography B, 2001; 751: 19–27.
  • Davidow B, Petri NI, Quame B. A thin-layer chromatographic screening procedure for detecting drug abuse. American Journal of Chemical Pathology, 1968; 50: 714-719.
  • Zeeuw RA. (Ed), Thin-layer chromatographic RF values of toxicologically relevant substances on standardized systems. Weinheim, VCH, 1992.
  • Schmitz G, Assmann G, Bowyer DE. A quantitative densitometric method for the rapid separation and quantitation of the major tissue and lipoprotein lipids by high-performance thin-layer chromatography. J Chromatogr, 1984; 307: 65-79.
  • Franke JP, Schepers P, Bosman J, De Zeeuw RA. Optimization of thin layer chromatography for toxicological screening: applicability of shorter development distances. J Anal Toxicol, 1982; 6: 131-4.
  • Ojanpera I. Thin–layer chromatography in forensic toxicology, in: Fried B, Sherma J. (Eds.) Practical thin-layer chromatography. A Multidisciplinary Approach, Boca Raton, CRC Press, 1995; 193-230.

Yıl 2008, Cilt: 22 Sayı: 1, 13 - 24, 30.04.2008
https://izlik.org/JA98SZ93SU

Öz

Kaynakça

  • Choma I, Grenda D, Malinowska I, Suprynowicz Z. Determination of flumequine and doxycycline in milk by a simple thin layer chromatographic method. J. Chromatog. B Biomed. Science Appl, 1999; 734, 7-14.
  • Liu X, Bi X, Mai B, Sheng G, Fu J. Separation of PAHs in aerosol by thin layer chromatography for compound-specific stable carbon isotope analysis. Talanta, 2005; 66: 487-494.
  • Ismaiel SA, Yassa DA. Determination of thiamine in pharmaceutical preparations by thin-layer chromatography. Analyst, 1973; 98: 5-8.
  • Topcu G, Turkmen Z, Ulubelen A, Kingston DGI. Highly hydroxylated triterpenes from Salvia kronenburgii. J Nat. Prod, 2004; 67: 118-121.
  • Mohri K, Okada K, Benet LZ. Stereoselective metabolism of benoxaprofen in rats. Biliary excretion of benoxaprofen taurine conjugate and glucuronide. Drug Metabolism and Disposition, 1998; 24: 332-337.
  • Gubitz G, Wintersteiger R. Identification of drugs of abuse by high-performance thin layer chromatography. J. Anal. Toxicol, 1980; 4: 141-4.
  • Haefelfinger P. Determination of bromazepam in plasma by quantitative thin-layer chromatography. Chromatographia. 1978; 11: 10-3.
  • Fenimore DC, Davis CM. High performance thin-layer chromatography. Analytical Chemistry, 1981; 53: 252A-266A.
  • Della Casa E, Martone GA. Quantitative densitometric determination of heroin and cocaine samples by high-performance thin-layer chromatography. For. Sci. Int, 1986; 32: 117-20. Pothier J, Galand N. Automated multiple development thin-layer chromatography for separation of opiate alkaloids and derivatives, Journal of Chromatography A, 2005; 1080: 186-191.
  • Knödler S, Seitz W, Schulz W, Weber WH. Characterisation of natural waters using HPTLC and toxicity-directed analysis, International Symposium for HPTLC, 9-11 October, 2006, Berlin.
  • Skarkova J, Ostry V, Prochazkova I. Development of HPTLC method for determination of patulin in apple juice. International Symposium for HPTLC, 9-11 October, 2006, Berlin.
  • Pohjola-Sintonen S, Kari TK, Erkki V, Outi L, Eero T, Pertti JN. Identification of drugs ingested in acute poisoning: correlation of patient history with drug analyses. Therapeutic Drug Monitoring, 2000; 22: 749-752.
  • Sherma J, Fried B. (Derleme) Thin layer chromatographic analysis of biological samples. Journal of Liquid Chromatography & Related Technologies, 2005; 28: 2297-2314.
  • Bladek J, Neffe S. Application of Thin-Layer Chromatography in clinical chemistry. Separation and Purification Reviews, 2003; 32: 61–120.
  • Tyrpien K, Bodzek P, Manka G. Application of planar chromatography to the determination of cotinine in urine of active and passive smoking pregnant women. Biomedical Chromatography, 2001; 15: 50–55.
  • Chepurwar SB, Shirkhedkar AA, Bari SB, Fursule RA, Surana SJ. Validated HPTLC method for simultaneous estimation of levofloxacin hemihydrate and ornidazole in pharmaceutical dosage form. J Chromatography Sci, 2007; 45: 531-53
  • Yonamine M, Sampaio MC. A high-performance thin-layer chromatographic technique to screen cocaine in urine samples. Legal Medicine, 2006; 8: 184-187.
  • Wendelgard P, Kovar KA, Ensslin H. High-performance thin-layer chromatographic determination of Nethyl- 3,4 methylenedioxyamphetamine and its major metabolites in urine and comparison with high-performance liquid chromatography. J Chrom B, 1997; 688: 63-69.
  • Drummer OH. Chromatographic screening techniques in systematic toxicological analysis. Journal of Chromatography B, 1999; 733: 27–45.
  • Spangenberg B, Ahrens B, Klein KF. TLC-analysis in forensic sciences using a diode-array detector. Chromatographia, 2001; 53: S438-S441.
  • Turkmen Z, Mercan S, Tutanc L, Cengiz S. Simultaneous high performance thin layer chromatographic determination of heroine, morphine, cocaine and MDMA. American Academy of Forensic Sciences, 2008 Annual Meeting, Washington DC, USA.
  • Weyermann C. (Tez) Mass spectrometric investigation of the aging processes of ballpoint ink for the examination of questioned documents, Giessen, 23 Eylül 2005.
  • McIntyre JA, Armandi AE, Risen LP, Ling W, Haberfelde GC. Thin-layer chromatography and enzyme immunoassay of L alpha-acetyl methadol and methadone metabolites in urine. Clinical Chemistry, 1975; 21: 109-112.
  • Antonilli L, Suriano C, Grassi MC, Nencini P. Analysis of cocaethylene, benzoylecgonine and cocaine in humanurine by high-performance thin-layer chromatography with ultraviolet detection: a comparison with high-performance liquid chromatography. Journal of Chromatography B, 2001; 751: 19–27.
  • Davidow B, Petri NI, Quame B. A thin-layer chromatographic screening procedure for detecting drug abuse. American Journal of Chemical Pathology, 1968; 50: 714-719.
  • Zeeuw RA. (Ed), Thin-layer chromatographic RF values of toxicologically relevant substances on standardized systems. Weinheim, VCH, 1992.
  • Schmitz G, Assmann G, Bowyer DE. A quantitative densitometric method for the rapid separation and quantitation of the major tissue and lipoprotein lipids by high-performance thin-layer chromatography. J Chromatogr, 1984; 307: 65-79.
  • Franke JP, Schepers P, Bosman J, De Zeeuw RA. Optimization of thin layer chromatography for toxicological screening: applicability of shorter development distances. J Anal Toxicol, 1982; 6: 131-4.
  • Ojanpera I. Thin–layer chromatography in forensic toxicology, in: Fried B, Sherma J. (Eds.) Practical thin-layer chromatography. A Multidisciplinary Approach, Boca Raton, CRC Press, 1995; 193-230.
Toplam 29 adet kaynakça vardır.

Ayrıntılar

Birincil Dil Türkçe
Konular Adli Biyoloji
Bölüm Araştırma Makalesi
Yazarlar

Zeynep Türkmen Bu kişi benim

Selda Mercan Bu kişi benim

Salih Cengiz Bu kişi benim

Gönderilme Tarihi 1 Ocak 2008
Yayımlanma Tarihi 30 Nisan 2008
IZ https://izlik.org/JA98SZ93SU
Yayımlandığı Sayı Yıl 2008 Cilt: 22 Sayı: 1

Kaynak Göster

Vancouver 1.Zeynep Türkmen, Selda Mercan, Salih Cengiz. EROİN, MORFİN, KOKAİN VE MDMA’NIN YÜKSEK PERFORMANSLI İNCE TABAKA KROMATOGRAFİSİ İLE EŞZAMANLI TAYİNİ. ATD [Internet]. 01 Nisan 2008;22(1):13-24. Erişim adresi: https://izlik.org/JA98SZ93SU

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