New secondary metabolites of phenylbutyrate in humans and rats

被引:39
作者
Kasumov, T
Brunengraber, LL
Comte, B
Puchowicz, MA
Jobbins, K
Thomas, K
David, F
Kinman, R
Wehrli, S
Dahms, W
Kerr, D
Nissim, I
Brunengraber, H
机构
[1] Case Western Reserve Univ, Dept Nutr, Cleveland, OH 44106 USA
[2] Case Western Reserve Univ, Dept Pediat, Cleveland, OH 44106 USA
[3] Univ Penn, Childrens Hosp, Philadelphia, PA 19104 USA
[4] Univ Penn, Dept Pediat, Philadelphia, PA 19104 USA
关键词
D O I
10.1124/dmd.32.1.10
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Phenylbutyrate is used to treat inborn errors of ureagenesis, malignancies, cystic fibrosis, and thalassemia. High-dose phenylbutyrate therapy results in toxicity, the mechanism of which is unexplained. The known metabolites of phenylbutyrate are phenylacetate, phenylacetylglutamine, and phenylbutyrylglutamine. These are excreted in urine, accounting for a variable fraction of the dose. We identified new metabolites of phenylbutyrate in urine of normal humans and in perfused rat livers. These metabolites result from interference between the metabolism of phenylbutyrate and that of carbohydrates and lipids. The new metabolites fall into two categories, glucuronides and phenylbutyrate beta-oxidation side products. Two questions are raised by these data. First, is the nitrogen-excreting potential of phenylbutyrate diminished by ingestion of carbohydrates or lipids? Second, does competition between the metabolism of phenylbutyrate, carbohydrates, and lipids alter the profile of phenylbutyrate metabolites? Finally, we synthesized glycerol esters of phenylbutyrate. These are partially bioavailable in rats and could be used to administer large doses of phenylbutyrate in a sodium-free, noncaustic form.
引用
收藏
页码:10 / 19
页数:10
相关论文
共 34 条
[1]  
Ambrose AM, 1933, J BIOL CHEM, V101, P669
[2]   Alternative pathway therapy for urea cycle disorders: Twenty years later [J].
Batshaw, ML ;
MacArthur, RB ;
Tuchman, M .
JOURNAL OF PEDIATRICS, 2001, 138 (01) :S46-S54
[3]  
BATSHAW ML, 1981, PEDIATRICS, V68, P290
[4]   FATTY-ACID, 3-BETA-HYDROXYSTEROL, AND KETONE SYNTHESIS IN PERFUSED RAT-LIVER - EFFECTS OF (-)-HYDROXYCITRATE AND OLEATE [J].
BRUNENGRABER, H ;
BOUTRY, M ;
LOWENSTEIN, JM .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1978, 82 (02) :373-384
[5]  
Brunengraber H, 1975, Methods Enzymol, V35, P597, DOI 10.1016/0076-6879(75)35187-2
[6]   PHENYLACETYLGLUTAMINE MAY REPLACE UREA AS A VEHICLE FOR WASTE NITROGEN-EXCRETION [J].
BRUSILOW, SW .
PEDIATRIC RESEARCH, 1991, 29 (02) :147-150
[7]   A PROTOCOL FOR THE EFFICIENT SYNTHESIS OF ENANTIOPURE BETA-SUBSTITUTED BETA-LACTONES [J].
CAPOZZI, G ;
ROELENS, S ;
TALAMI, S .
JOURNAL OF ORGANIC CHEMISTRY, 1993, 58 (27) :7932-7936
[8]  
Carducci MA, 2001, CLIN CANCER RES, V7, P3047
[9]   Identification of phenylbutyrylglutamine, a new metabolite of phenylbutyrate metabolism in humans [J].
Comte, B ;
Kasumov, T ;
Pierce, BA ;
Puchowicz, MA ;
Scott, ME ;
Dahms, W ;
Kerr, D ;
Nissim, I ;
Brunengraber, H .
JOURNAL OF MASS SPECTROMETRY, 2002, 37 (06) :581-590
[10]   THE EFFECTS OF COFACTOR AND SPECIES-DIFFERENCES ON THE INVITRO METABOLISM OF PROPIOPHENONE AND PHENYLACETONE [J].
COUTTS, RT ;
PRELUSKY, DB ;
JONES, GR .
CANADIAN JOURNAL OF PHYSIOLOGY AND PHARMACOLOGY, 1981, 59 (02) :195-201