Literature DB >> 19002200

Isolation of peptide transport system-6 from brain endothelial cells: therapeutic effects with antisense inhibition in Alzheimer and stroke models.

Dilek Dogrukol-Ak1, Vijaya B Kumar, Jan S Ryerse, Susan A Farr, Sulekha Verma, Naoko Nonaka, Tomoya Nakamachi, Hirokazu Ohtaki, Michael L Niehoff, John C Edwards, Seiji Shioda, John E Morley, William A Banks.   

Abstract

By isolating for the first time ever a peptide transporter from the blood-brain barrier (BBB) and developing an antisense that selectively targets the brain-to-blood efflux component, we were able to deliver a therapeutic concentration of the neurotrophic peptide pituitary adenylate cyclase-activating polypeptide (PACAP) 27 to brain in animal models of Alzheimer's and stroke. Efflux pumps at the BBB are major causes of BBB impermeability to peptides. PACAP is neuroprotective in vitro in femtomole amounts, but brain uptake of PACAP27 is limited by an efflux component of peptide transport system-6 (PTS-6). Here, we characterized, isolated, and sequenced this component of PTS-6, identifying it as beta-F1 ATPase, and colocalized it with PACAP27 on BBB endothelial cells. Antisenses targeting the BBB inhibited PACAP27 efflux, thus increasing brain uptake of PACAP27. Treatment with antisense+PACAP27 improved cognition in a mouse model of Alzheimer's disease and reduced infarct size after cerebral ischemia. This represents the first isolation from BBB tissue of a peptide transporter and shows that inhibition of peptide efflux pumps is a potential strategy for drug delivery to brain.

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Year:  2008        PMID: 19002200     DOI: 10.1038/jcbfm.2008.131

Source DB:  PubMed          Journal:  J Cereb Blood Flow Metab        ISSN: 0271-678X            Impact factor:   6.200


  39 in total

Review 1.  Neurovascular pathways to neurodegeneration in Alzheimer's disease and other disorders.

Authors:  Berislav V Zlokovic
Journal:  Nat Rev Neurosci       Date:  2011-11-03       Impact factor: 34.870

Review 2.  Targeting blood-brain barrier changes during inflammatory pain: an opportunity for optimizing CNS drug delivery.

Authors:  Patrick T Ronaldson; Thomas P Davis
Journal:  Ther Deliv       Date:  2011-08

3.  Intranasal administration of PACAP: uptake by brain and regional brain targeting with cyclodextrins.

Authors:  Naoko Nonaka; Susan A Farr; Tomoya Nakamachi; John E Morley; Masanori Nakamura; Seiji Shioda; William A Banks
Journal:  Peptides       Date:  2012-06-09       Impact factor: 3.750

Review 4.  From blood-brain barrier to blood-brain interface: new opportunities for CNS drug delivery.

Authors:  William A Banks
Journal:  Nat Rev Drug Discov       Date:  2016-01-22       Impact factor: 84.694

5.  Systemic combinatorial peptide selection yields a non-canonical iron-mimicry mechanism for targeting tumors in a mouse model of human glioblastoma.

Authors:  Fernanda I Staquicini; Michael G Ozawa; Catherine A Moya; Wouter H P Driessen; E Magda Barbu; Hiroyuki Nishimori; Suren Soghomonyan; Leo G Flores; Xiaowen Liang; Vincenzo Paolillo; Mian M Alauddin; James P Basilion; Frank B Furnari; Oliver Bogler; Frederick F Lang; Kenneth D Aldape; Gregory N Fuller; Magnus Höök; Juri G Gelovani; Richard L Sidman; Webster K Cavenee; Renata Pasqualini; Wadih Arap
Journal:  J Clin Invest       Date:  2010-12-22       Impact factor: 14.808

Review 6.  Blood-brain barrier integrity and glial support: mechanisms that can be targeted for novel therapeutic approaches in stroke.

Authors:  Patrick T Ronaldson; Thomas P Davis
Journal:  Curr Pharm Des       Date:  2012       Impact factor: 3.116

Review 7.  The blood-brain barrier.

Authors:  Felix Dyrna; Sophie Hanske; Martin Krueger; Ingo Bechmann
Journal:  J Neuroimmune Pharmacol       Date:  2013-06-06       Impact factor: 4.147

Review 8.  Transporters at CNS barrier sites: obstacles or opportunities for drug delivery?

Authors:  Lucy Sanchez-Covarrubias; Lauren M Slosky; Brandon J Thompson; Thomas P Davis; Patrick T Ronaldson
Journal:  Curr Pharm Des       Date:  2014       Impact factor: 3.116

Review 9.  Mouse models of neurological disorders: a view from the blood-brain barrier.

Authors:  William A Banks
Journal:  Biochim Biophys Acta       Date:  2009-10-29

10.  Pituitary adenylate cyclase-activating polypeptide (PACAP) protects against mitoxantrone-induced cardiac injury in mice.

Authors:  Venkat Subramaniam; Gin Chuang; Huijing Xia; Brendan Burn; Jessica Bradley; Jerome L Maderdrut; David H Coy; Kurt J Varner
Journal:  Peptides       Date:  2017-07-15       Impact factor: 3.750

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