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PMID: 17638323 Published · ppublish English Comparative Study Journal Article

ADME investigations of unnatural peptides: distribution of a 14C-labeled beta 3-octaarginine in rats.

Chemistry & biodiversity ·Vol. 4 ·No. 7 ·2007-07-00 ·Pages 1413-37

Weiss HM, Wirz B, Schweitzer A, Amstutz R, Rodriguez Perez MI, Andres H, Metz Y, Gardiner J, Seebach D

Abstract

The highly positively charged, cell-penetrating beta3-octaarginine has been prepared with a radioactive label by acetylation at the N-terminus with a doubly (14)C-labeled acetyl group ((14)CH3-(14)CO). With the radioactive compound, an ADME study (Absorption, Distribution, Metabolism, Excretion) was performed in male rats following an intravenous or oral dose of 1 mg/kg. Sampling was carried out after periods ranging from 5 min to 4 d or 7 d for blood/excretia and quantitative whole-body autoradioluminography (QWBA), respectively. After p.o. dosing, no systemic exposure to peptide-related radioactivity was observed, and the dose was completely excreted in the feces within 24 h suggesting the absence of relevant absorption; less than 3% of the i.v. dose was excreted from the animals within 4 d. Blood levels, after i.v. dosing, dropped within 4 d to less than 2% of Cmax and decreased afterwards only very slowly. No metabolites were observed in the systemic circulation. QWBA Data indicated that the distribution of the acetyl-beta-octaarginine-related radioactivity in the organs and tissues shifted over time. Notably, after 7 d, the highest concentration was measured in the lymph nodes, and the largest amount was found in the liver. A comparison with the results of two previous ADME investigations of beta-peptides (cf. Table 1) reveals that the distribution of the compounds within the animals is structure-dependent, and that there is a full range from oral availability with rather rapid excretion (of a tetrapeptide) to essentially complete lack of both oral absorption and excretion after i.v. administration (of a highly charged octapeptide). A discussion is presented about the in vivo stability and 'drug-ability' of peptides. In general, beta-peptides bearing proteinogenic side chains are compared with peptides consisting entirely of D-alpha-amino acid residues (the enantiomers of the 'natural' building blocks), and suggestions are made regarding a possible focus of future biomedical investigations with beta-peptides.

MeSH Terms
Absorption/drug effects,physiology Administration, Oral Animals Carbon Radioisotopes/administration & dosage,metabolism Injections, Intravenous Male Metabolic Networks and Pathways/drug effects,physiology Oligopeptides/administration & dosage,chemistry,metabolism Rats Rats, Wistar
Chemicals
Carbon Radioisotopes Oligopeptides octaarginine
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Weiss H Markus
Drug Metabolism and Pharmacokinetics, Novartis Pharma AG, Postfach, CH-4002 Basel.
Wirz Bernard
Schweitzer Alain
Amstutz René
Rodriguez Perez Maria I
Andres Hendrik
Metz Yves
Gardiner James
Seebach Dieter
Article Info
Journal
Chemistry & biodiversity
Abbr.
Chem Biodivers
ISSN
1612-1880
Published
2007-07-00
Pages
1413-37
Language
English
Region
Switzerland
NLM ID
101197449
Subset
IM
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