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Fine Mapping the Spatial Distribution and Concentration of Unlabeled Drugs within Tissue Micro-Compartments Using Imaging Mass Spectrometry

Nilsson, Anna (author)
Uppsala universitet,Institutionen för farmaceutisk biovetenskap,Medical Mass Spectrometry
Fehniger, Thomas E. (author)
Gustavsson, Lena (author)
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Andersson, Malin (author)
Uppsala universitet,Institutionen för farmaceutisk biovetenskap,Neurotoxicity/Drug Safety and Toxicity
Kenne, Kerstin (author)
Marko-Varga, György (author)
Lund University,Lunds universitet,Avdelningen för Biomedicinsk teknik,Institutionen för biomedicinsk teknik,Institutioner vid LTH,Lunds Tekniska Högskola,Department of Biomedical Engineering,Departments at LTH,Faculty of Engineering, LTH
Andrén, Per E. (author)
Uppsala universitet,Institutionen för farmaceutisk biovetenskap,Medical Mass Spectrometry
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 (creator_code:org_t)
2010-07-14
2010
English.
In: PloS one. - : Public Library of Science (PLoS). - 1932-6203. ; 5:7, s. e11411-
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • Readouts that define the physiological distributions of drugs in tissues are an unmet challenge and at best imprecise, but are needed in order to understand both the pharmacokinetic and pharmacodynamic properties associated with efficacy. Here we demonstrate that it is feasible to follow the in vivo transport of unlabeled drugs within specific organ and tissue compartments on a platform that applies MALDI imaging mass spectrometry to tissue sections characterized with high definition histology. We have tracked and quantified the distribution of an inhaled reference compound, tiotropium, within the lungs of dosed rats, using systematic point by point MS and MS/MS sampling at 200 mu m intervals. By comparing drug ion distribution patterns in adjacent tissue sections, we observed that within 15 min following exposure, tiotropium parent MS ions (mass-to-charge; m/z 392.1) and fragmented daughter MS/MS ions (m/z 170.1 and 152.1) were dispersed in a concentration gradient (80 fmol-5 pmol) away from the central airways into the lung parenchyma and pleura. These drug levels agreed well with amounts detected in lung compartments by chemical extraction. Moreover, the simultaneous global definition of molecular ion signatures localized within 2-D tissue space provides accurate assignment of ion identities within histological landmarks, providing context to dynamic biological processes occurring at sites of drug presence. Our results highlight an important emerging technology allowing specific high resolution identification of unlabeled drugs at sites of in vivo uptake and retention.

Subject headings

MEDICIN OCH HÄLSOVETENSKAP  -- Medicinska och farmaceutiska grundvetenskaper -- Farmaceutiska vetenskaper (hsv//swe)
MEDICAL AND HEALTH SCIENCES  -- Basic Medicine -- Pharmaceutical Sciences (hsv//eng)
TEKNIK OCH TEKNOLOGIER  -- Medicinteknik (hsv//swe)
ENGINEERING AND TECHNOLOGY  -- Medical Engineering (hsv//eng)

Keyword

PHARMACY
FARMACI
MEDICINE
MEDICIN
TECHNOLOGY
TEKNIKVETENSKAP

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ref (subject category)
art (subject category)

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