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Understanding Lung Deposition of Alpha-1 Antitrypsin in Acute Experimental Mouse Lung Injury Model Using Fluorescence Microscopy.
Wang, Mengmeng; Zhan, Yutian; Chen, Jianqing; Rong, Haojing; O'Neil, Shawn P; Ghosh, Brahma; Nguyen, Vuong; Owens, Jane; Li, Xianfeng; O'Hara, Denise M.
Afiliação
  • Wang M; Pharmacokinetics, Dynamics and Metabolism, Pfizer Inc., Andover, MA, USA.
  • Zhan Y; Drug Safety R&D, Pfizer Inc., Andover, MA, USA.
  • Chen J; Clinical R&D, Pfizer Inc., Cambridge, MA, USA.
  • Rong H; Pharmacokinetics, Dynamics and Metabolism, Pfizer Inc., Andover, MA, USA.
  • O'Neil SP; Drug Safety R&D, Pfizer Inc., Andover, MA, USA.
  • Ghosh B; Molecular Imaging Laboratory, Pfizer Inc., Andover, MA, USA.
  • Nguyen V; Drug Safety R&D, Pfizer Inc., Andover, MA, USA.
  • Owens J; Rare Disease RU, Pfizer Inc., Cambridge, MA, USA.
  • Li X; Rare Disease RU, Pfizer Inc., Cambridge, MA, USA.
  • O'Hara DM; Pharmacokinetics, Dynamics and Metabolism, Pfizer Inc., Andover, MA, USA.
Int J Mol Imaging ; 2016: 5768312, 2016.
Article em En | MEDLINE | ID: mdl-28050284
ABSTRACT
Human plasma-derived α1-antitrypsin (AAT) delivered by intravenous infusion is used as augmentation therapy in patients with emphysema who have a genetic mutation resulting in deficiency of AAT. Inhalation is an alternative route of administration that can potentially increase the efficacy and convenience of treatment. This study was conducted to determine whether delivery to the lungs, initially via the intratracheal (IT) route of administration, would deliver efficacious levels of a recombinant AAT (rAAT) to the site of action in the lungs in mice. 125I-radiolabeled rAAT, fluorophore-conjugated rAAT (rAAT-Alexa488), and NE680 (neutrophil elastase 680, a silent fluorescent substrate of neutrophil elastase which fluoresces in the near-infrared range upon activation by neutrophil elastase) were used to characterize the pharmacokinetics and tissue distribution profile, distribution of rAAT within the lung, and efficacy of rAAT to inhibit neutrophil elastase at the site of action, respectively. The study has demonstrated that rAAT was able to gain access to locations where neutrophil elastase was localized. The histochemical quantification of rAAT activity relative to dose at the site of action provided here will improve confidence in predicting the human dose via the inhalation route.

Texto completo: 1 Base de dados: MEDLINE Tipo de estudo: Prognostic_studies Idioma: En Ano de publicação: 2016 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Tipo de estudo: Prognostic_studies Idioma: En Ano de publicação: 2016 Tipo de documento: Article