Literature DB >> 12023514

Positron emission tomography shows that intrathecal leptin reaches the hypothalamus in baboons.

T J McCarthy1, W A Banks, C L Farrell, S Adamu, C P Derdeyn, A Z Snyder, R Laforest, D C Litzinger, D Martin, C P LeBel, M J Welch.   

Abstract

Human obesity may be caused by a resistance to circulating leptin. Evidence from rodents and humans suggests that a major component of this resistance is an impairment in the ability of the blood-brain barrier (BBB) to transport leptin from the blood to the brain. One potential way to bypass the BBB is by administering leptin into the intrathecal (i.t.) space. To be effective, i.t. leptin would have to move caudally from the site of injection, enter the cranium, and reach the hypothalamic arcuate nucleus at the base of the pituitary fossa. However, many substances, especially small, lipid-soluble molecules, do not diffuse far from the site of i.t. injection but are resorbed back into blood. To determine whether i.t. leptin can move caudally, we injected leptin conjugated to diethylenetriaminepentaacetic acid (DTPA) and labeled with (68)Ga (G-Ob) into the lumbar space of three baboons. We also studied unconjugated DTPA labeled with (68)Ga, which did not move up the spinal cord but rapidly appeared in blood after i.t. injection. In contrast, G-Ob steadily moved toward the cranium and had reached the hypothalamus 91 and 139 min after i.t. injection in two baboons. We estimated the concentration of leptin in the hypothalamic region to be at least 8 ng/ml, which is about 40 times higher than cerebrospinal fluid levels in normal weight humans and about 4 times higher than the highest level ever recorded after the peripheral administration of leptin. In a third baboon, the leptin neither moved caudally nor appeared in the blood. We conclude that leptin administered i.t. can reach the hypothalamus in therapeutic concentrations, although there is considerable individual variation.

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Year:  2002        PMID: 12023514     DOI: 10.1124/jpet.301.3.878

Source DB:  PubMed          Journal:  J Pharmacol Exp Ther        ISSN: 0022-3565            Impact factor:   4.030


  6 in total

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2.  Life in the fat lane: seasonal regulation of insulin sensitivity, food intake, and adipose biology in brown bears.

Authors:  K S Rigano; J L Gehring; B D Evans Hutzenbiler; A V Chen; O L Nelson; C A Vella; C T Robbins; H T Jansen
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3.  A Safe and Reliable Technique for CNS Delivery of AAV Vectors in the Cisterna Magna.

Authors:  Toloo Taghian; Miklos G Marosfoi; Ajit S Puri; Oguz I Cataltepe; Robert M King; Elise B Diffie; Anne S Maguire; Douglas R Martin; Deborah Fernau; Ana Rita Batista; Tim Kuchel; Chris Christou; Raj Perumal; Sundeep Chandra; Paul D Gamlin; Stephanie G Bertrand; Terence R Flotte; Diane McKenna-Yasek; Phillip W L Tai; Neil Aronin; Matthew J Gounis; Miguel Sena-Esteves; Heather L Gray-Edwards
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4.  Increased hypothalamic signal transducer and activator of transcription 3 phosphorylation after hindbrain leptin injection.

Authors:  Marieke Ruiter; Patricia Duffy; Steven Simasko; Robert C Ritter
Journal:  Endocrinology       Date:  2010-02-25       Impact factor: 4.736

5.  PET imaging of leptin biodistribution and metabolism in rodents and primates.

Authors:  Giovanni Ceccarini; Robert R Flavell; Eduardo R Butelman; Michael Synan; Thomas E Willnow; Maya Bar-Dagan; Stanley J Goldsmith; Mary J Kreek; Paresh Kothari; Shankar Vallabhajosula; Tom W Muir; Jeffrey M Friedman
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Review 6.  Characteristics of compounds that cross the blood-brain barrier.

Authors:  William A Banks
Journal:  BMC Neurol       Date:  2009-06-12       Impact factor: 2.474

  6 in total

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