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DIALOG File 154: MEDLINE _ 85-92/FEB (9202) chang d In various brain regions. It is concluded that this Investigation failed to reveal overt toluene-Induced CNS-neurotox1c1ty, however, certain Irreversible effects were found which further add to the accumulating evidence of the chronic CNS-neurotoxlefty of toluene.
07912002 92050002
Neurotoxicity of ammonia and fatty acids: differential
Inhibition of mitochondrial dehydrogenases by ammonia and
fatty acyl coenzyme A derivatives.
Lai JC: Cooper AJ
Department of Biochemistry, Cornell University Medical
Coll g . New York, NY 10021.
N urochern Res (UNITED STATES) Jul 1991, 16 (7) p795-803,
ISSN 0364-3190 Journal Code: NX9
Contract/Grant No.: NS 24592; DK 16739
Languages: ENGLISH
Document type: JOURNAL ARTICLE
In several metabolic encephalopathies, hyperammonemia and
rganlc acfdemla are consistently found. Ammonia and fatty
acids (FAs) are neurotoxic: previous workers have shown that
mmonla and FAs can act singly.
In combination, or
synerglstlcalty. In Inducing coma In experimental animals.
Howev r,
the
biochemical
mechanisms underlying
the
neurotoxicity of ammonia and FAs have not been fully
elucidated. FAs are normally converted to their corresponding
CoA derivatives (CoAs) once they enter cells and it is known
th t these fatty acyl CoAs can alter Intermediary metabolism.
Th pres nt study was initiated to determine the effects of
ammonia
and fatty
acyl
CoAs on brain mitochondrial
d hydrogenases. At a pathophysiological level (2 mM), ammonia
is
a potent
Inhibitor
of
brain
mitochondrial
alpha-ketoglutarate dehydrogenase complex (KGDHC). Only at
toxicological levels (10-20 mM) does ammonia Inhibit brain
mttochondrlal NAD(+>- and NADP(+)-
linked Isocitrate
d hydrog nase (NAO-ICOH. NADP-ICDH), and NAD(+)-linked malate
dehydrogenase (MDH) and liver mitochondrial NAO-ICDH. Butyryl-
(BCoA), octanoyl- (OCoA), and palmitoyl (PCoA) CoA were potent
inhibitors
f brain mitochondrial KGDHC. with IC50 values of
11, 20, and 25 mlcroM, respectively; moreover, the Inhibitory
eff ct of fatty acyl CoAs and ammonia were additive. At levels
of 250 mlcroM or higher, both OCoA (IC50 * 1.15 mM) and PCoA
(IC50 * 470 mlcroM) Inhibit brain mitochondrial NADP-ICDH;
only at higher levels (0.5-1 mM) does BCoA Inhibit this enzyme
(by 30-45)4). Much less sensitive than KGDHC and NADP-ICDH,
brain mitochondrial NAD-ICDH Is only Inhibited by 1 mM BCoA,
OCoA, and PCoA by 22%, 35%, and 44%, respectIvely.(ABSTRACT
TRUNCATED AT 250 WORDS)
ASI 00005024
07911433 92049433
The Influence of solvent stress on MMS-Induced genetic
change In Saccharomyces cerevlslae. Zlmmermann FK; Rohtfs A
Instftut
fur
Darmstadt, F.R.G.
Mtkrobfologle.
Technlsche Hochschule,
023082
Mutat Res (NETHERLANDS)
Sep-Oct 1991,
ISSN 0027-5107
Journal Code: NNA
Languages: ENGLISH
250 (1-2) p239-49,
Document type: JOURNAL ARTICLE MMS Induced mitotic recombination but not mttotlc chromosome loss when tested In pure form In strain D61.M of Saccharomyces
cerevlslae, confirming previous results of Albertinl (1991), whereas In Aspergillus nldulans It also Induced chromosomal malsegregation In addition to mitotic recombination (Kafer, 1988). However, Induction of mitotic chromosome loss was
observed In combination with strong Inducers of chromosom
loss such as the aprotlc polar solvents ethyl acetate and to a
lesser
extent
methyl
ethyl
ketone but
not with
gamma-valerolactone and proplonttrlie. In addition to this, 4
solvents, dimethyl formamlde, dimethyl sulfoxide, dioxane and
pyridine, enhanced the MMS-Induced mttotlc recombination In
strain D61.M.
An enhancement of MMS-Induced mitotic
recombination and reverse mutation could be demonstrated for ethyl acetate and gamma-valerolactone In yeast strain D7.
(7sr-- o t - v-
07910879 92048879 [Vinyl chloride end hastanglosarcoma of the liver]
Vlnylchlorld und Hamangtosarkom der Leber.
von Schonfeld J; Breuer N
Abtel lung
fur
Gastroenterologle,
Med1z1n1schen
Unlversltatsklinlk Essen.
Med Klin (GERMANY) Sep 15 1991, 86 (9) p482-4, ISSN
0723-5003 Journal Code: M9K
Languages: GERMAN
Document type: JOURNAL ARTICLE: REVIEW; REVIEW, TUTORIAL (28 Refs.)
07910172 92048172 Inhibition of acetaminophen activation by ethanol and
acetaldehyde In liver mlcrosomes.
Sato C; Liu J; Mlyakawa H; Nouchi T; Tanaka Y; Uchthara M;
Marumo F
Division of Health Science. School of Allied Health
Sciences, Tokyo Medical and Dental University, Japan.
Life Scl (ENGLAND) 1991, 49 (24) p1787-91, ISSN 0024-3205
Journal Code: L62
Languages: ENGLISH
Document type: JOURNAL ARTICLE
Mechanisms of
the
inhibitory effect of ethanol on
acetaminophen hepatotoxlclty are controversial. We studi d the
effects of ethanol and acetaldehyde, an oxidative m tabol1te
of ethanol, on NADPH-dependent acetaminophen-glutathione
conjugate production In liver mlcrosomes. Ethanol at
concentrations as
low as 2mM prevented the conjugate
production noncompetIttvely.
Acetaldehyde elso inhibited
acetaminophen-glutathione
c njugate
production
at
concentrations as 1 w as 0.1mM that Is comparable with thos
observ d In vivo after social drinking. Acetaldehyde may be
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