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1.
J Forensic Sci ; 64(2): 651-653, 2019 Mar.
Article in English | MEDLINE | ID: mdl-30296335

ABSTRACT

Cocaine is an illicit drug frequently encountered by forensic practitioners in driving under the influence of drugs (DUID) casework. Whole blood collected from a suspected drugged driver was found to contain 3.000 mg/L cocaine, 1.600 mg/L benzoylecgonine, and 0.260 mg/L methamphetamine. The high concentration of cocaine, while common in overdose death investigations, is unusual for an impaired driving case. Information from the officer revealed that the motorist swallowed cocaine during the traffic stop. Although a cocaine DUID charge could not be pursued, the blood methamphetamine concentration exceeded the State of Nevada "per se" limit for operating a motor vehicle. The motorist was successfully prosecuted for DUID based on his admission of using methamphetamine prior to driving and the blood methamphetamine result. This case highlights the importance of considering case history when interpreting laboratory results and the application of jurisdictional statutes as an approach to prosecuting suspected drug-impaired drivers.


Subject(s)
Cocaine/blood , Driving Under the Influence , Illicit Drugs/blood , Humans , Male , Methamphetamine/blood , Substance Abuse Detection
2.
J Am Chem Soc ; 124(24): 6832-3, 2002 Jun 19.
Article in English | MEDLINE | ID: mdl-12059197

ABSTRACT

We report the solid-state 13C and 15N NMR of insoluble elastin which has been synthesized in vitro with isotopically enriched glycine. Most of the glycines reside in a domain with good cross-polarization (CP) efficiencies, although surprisingly, a portion resides in an environment that is not detectable using CP. Our data indicate that much of the 13C population resides in regions of significant conformational flexibility. To support these conclusions, we present 13C and 15N cross-polarization with magic-angle-spinning (CPMAS) data in conjunction with "direct-polarization", nonspinning CP, and T1 measurements.


Subject(s)
Elastin/chemistry , Glycine/chemistry , Animals , Carbon Isotopes , Cells, Cultured , Elastin/biosynthesis , Isotope Labeling , Muscle, Smooth/chemistry , Muscle, Smooth/metabolism , Nitrogen Isotopes , Nuclear Magnetic Resonance, Biomolecular , Rats , Rats, Sprague-Dawley
3.
Biophys J ; 82(2): 1086-95, 2002 Feb.
Article in English | MEDLINE | ID: mdl-11806948

ABSTRACT

Elastin is the principal protein component of the elastic fiber in vertebrate tissue. The waters of hydration in the elastic fiber are believed to play a critical role in the structure and function of this largely hydrophobic, amorphous protein. (13)C CPMAS NMR spectra are acquired for elastin samples with different hydration levels. The spectral intensities in the aliphatic region undergo significant changes as 70% of the water in hydrated elastin is removed. In addition, dramatic differences in the CPMAS spectra of hydrated, lyophilized, and partially dehydrated elastin samples over a relatively small temperature range (-20 degrees C to 37 degrees C) are observed. Results from other experiments, including (13)C T(1) and (1)H T(1 rho) measurements, direct polarization with magic-angle spinning, and static CP of the hydrated and lyophilized elastin preparations, also support the model that there is significant mobility in fully hydrated elastin. Our results support models in which water plays an integral role in the structure and proper function of elastin in vertebrate tissue.


Subject(s)
Elastin/chemistry , Magnetic Resonance Spectroscopy/methods , Water/chemistry , Biophysical Phenomena , Biophysics , Carbon/chemistry , Hydrogen/chemistry , Structure-Activity Relationship , Temperature , Time Factors , Water/metabolism
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