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Distribution of11 C–labelled morphine and pethidine after spinal administration to Rhesus monkey
Author(s) -
GUSTAFSSON L. L.,
HARTVIG P.,
BERGSTRÖM K.,
LUNDQVIST H.,
LINDBERG B. S.,
LÅNGSTRÖM B.,
SVÄRD H.,
RANE H.,
TAMSEN A.
Publication year - 1989
Publication title -
acta anaesthesiologica scandinavica
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.738
H-Index - 107
eISSN - 1399-6576
pISSN - 0001-5172
DOI - 10.1111/j.1399-6576.1989.tb02870.x
Subject(s) - pethidine , medicine , morphine , lumbar , distribution (mathematics) , pharmacokinetics , anesthesia , intrathecal , route of administration , spinal canal , pharmacology , nuclear medicine , spinal cord , anatomy , analgesic , psychiatry , mathematical analysis , mathematics
The kinetics of “C–labelled morphine and pethidine were studied by positron emission tomography (PET) at different levels of the spinal canal (C4, T4, T5, T6, LI and L6). Studies were performed in the Rhesus monkey after intrathecal and extradural administration of the drugs at the lumbar level (L3–L4 or L4–L5, seven experiments). Radioactivity 100–300 times higher than with even distribution in the body was measured initially near the site of injection for both morphine and pethidine, irrespective of the route of administration. After injection of pethidine, high activity was observed at the L6 and LI levels, whilst the radioactive uptake was lower at T6 (10–20% of those at lumbar level). Morphine–derived 11–radioactivity showed more constant levels along the spinal canal, except at C4 where radioactivity was low. In CSF taken from the cervical level the peaks of radioactivity of the two drugs appeared 80–170 min after injection. The importance of different distribution routes was quantified in a pharmacokinetic compartment model, using the above results. The systemic distribution was extensive, irrespective of drug or route of administration. From the site of injection the systemic distribution was at least 60 times larger than the rostral distribution within the spinal canal.