PubMed HealthSearch

SEARCH · PubMed Health

Results for “Acrylamides”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 37 records · Page 2Linked to original sources

Studies on drug-induced neuropathies. III. Motor nerve deficit in cats with experimental acrylamide neuropathy.

To assess motor nerve and motor nerve terminal function in acrylamide neuropathy, cats were given i.m. injections of acrylamide (15 mg/kg) daily for 10 days to induce a peripheral neuropathy. Tests of function were performed on the day of the 10th injection (day 0) and 7, 21 and 35 days thereafter. In untreated animals tetanic conditioning evoked stimulus-bound repetition (SBR) in 85% of soleus alpha-motoneurones. Following administration of acrylamide, the percent of axons elaborating SBR were: day 0 -- 79%, day 7 -- 71%, day 21 -- 31%, day 35 -- 22%. The response of soleus muscle to SBR is normally a post-tetanic potentiation (PTP) of contractile tension which is proportional to the tetanic conditioning frequency; during the development of the neuropathy, PTP in response to all tetanic frequencies progressively declined, concomitant with and as a result of the declining incidence of SBR. These data indicate that initial functional alterations in motor nerves during acrylamide neuropathy occurs at the level of the nerve terminal, preceding alterations in conduction velocities in the axons. However, the motor nerve deficit is not adequate, in either time to onset or severity, to account for the clinical manifestations of the neuropathy. The possible contribution to clinical signs of the neuropathy made by lesions to other peripheral nerves is discussed.

Acrylamides

Chromosome aberrations induced by monomeric acrylamide in bone marrow and germ cells of mice.

Acrylamide induces chromatid exchanges and breaks with considerable frequency in spermatogonia of mice with long-term administration (3 weeks), though not, remarkably, with short-term administration (1--2 weeks. At 12 and 24 h after single injections with 50, 100 and 150 mg/kg acrylamide, evaluation of the cytogenetic effect is difficult in the spermatogonia because of an extreme reduction of mitotic cells. Aneuploid and polyploid cells increase with time after treatment in both marrow and spermatogonial cells, while the aberration frequency shows no increase in marrow after both oral-administration and injection. Evidently the spermatogonia are thus rather more sensitive to acrylamide than marrow cells. On the other hand, the SCE frequency is at the control level in treated subjects in marrow and spermatogonia. Acrylamide induces chain quadrivalents, ring quadrivalents, fragments and univalents which are particularly evident in primary spermatocytes in both oral administration and injection, though it is questionable whether these structural changes deal with spermatogonia, or otherwise with the S-phase primary spermatocytes. There is a possibility that the aberrant cells thus produced can develop into spermatozoa carrying a certain type of reciprocal translocation which leads to semi-sterile progeny. In relation to the above problem detailed investigations into this type of rearrangement in primary spermatocytes are needed.

Acrylamides

Position sensitivity of de-efferented muscle spindles in experimental acrylamide neuropathy.

An experimental neuropathy was induced in cats by injections of acrylamide (7.5, 15 or 30 mg/kg/day) for 2 to 10 days. The responses of primary and secondary endings of soleus muscle spindles to stretch were evaluated and correlated with the appearance of ataxia and incoordinated motor movements. Animals that received 15 or 30 mg/kg/day became ataxic and demonstrated poor motor coordination on the 7th or 4th day, respectively. At these times, both primary and secondary endings of muscle spindles had elevated thresholds and diminished discharge frequencies. Continued acrylamide administration resulted in exacerbation of the clinical symptoms and further attenuation of spindle responses. The discontinuation of acrylamide was followed by slow recovery. Only those cats which received a total dose of 75 mg/kg or less remained asymptomatic and had normal spindle function. The coincidence of onset of motor coordination deficits and spindle dysfunction, coupled with a lack of demonstrable motor defect at the same time, suggests that the initial clinical features of acrylamide neuropathy may be partly the consequence of impaired spindle function.

Acrylamides

Polyneuropathies and CNS protein metabolism. III. Changes in protein synthesis rate induced by acrylamide intoxication.

A defect in neuronal protein metabolism has been proposed as one of the primary, molecular events underlying the development of polyneuropathies of the dying back type. Using acrylamide-intoxication as an experimental model to study these polyneuropathies, changes in leucine-incorporation into proteins disability. Proteinsynthesis rates were determined in vivo using flooding concentrations of [1-14C]valine as the precusor. Under conditions of acute and of chronic intoxication, a decrease in synthesis rate was measured preceding the loss of functional ability. Similar changes in protein synthesis rate were observed in peripheral tissues such as heart muscle and liver showing the general toxicity of acrylamide. Methylene bisacrylamide, that was used to discriminate between the neurotoxic action of acrylamide and its systemic effects, interfered with protein synthesis rates in a comparable way. No change in protein synthesis rate was observed under in vitro conditions suggesting that the interference of acrylamide with the synthetic machinery for protein synthesis in vivo is mediated by one or more as yet unknown indirect factors.

Acrylamides

Acrylamide exposure preferentially impairs axonal transport of glycoproteins in myelinated axons.

The right L5 dorsal root ganglion of adult rats exposed to acrylamide (40 mg/kg body weight/day for nine consecutive days) was injected with either [3H]methionine or [3H]glucosamine. After allowing incorporation into macromolecules and axonal transport to proceed for 5 hr, the distribution of radioactivity in cross sections and longitudinal sections of sciatic nerve was determined by autoradiography. Control and treated animals showed no difference in distribution of label within the sciatic nerve with respect to rapidly transported proteins labelled with [3H]methionine. In control animals the distribution of rapidly transported glycoproteins labelled with [3H]glucosamine was similar to that found for [3H]methionine-labelled proteins. In contrast, acrylamide-exposed rats had a very different distribution of labelled glycoproteins; there was a marked paucity of label in the myelinated axons. We interpret this result as indicating that acrylamide preferentially inhibits glycosylation or axonal transport of glycoproteins in neurons bearing myelinated axons.

Acrylamide

Brain energy metabolites in mice intoxicated with acrylamide: effects of ischemia.

Concentrations of phosphocreatine, creatine, ATP, ADP, AMP, glucose and lactate in the whole brain did not differ between the mice intoxicated with acrylamide and the controls. When the brain was made ischemic, these concentrations changed to the same extent in both groups. The only difference was the lower pyruvate in acrylamide-intoxicated mice under the ischemia. Thus, as far as the whole brain is concerned, acrylamide does not cause gross alterations of energy metabolites, even under ischemia.

Acrylamide

Comparative studies on the neuro- and reproductive toxicity of acrylamide and its epoxide metabolite glycidamide in the rat.

The neurotoxicity of acrylamide (AA) has been the subject of extensive studies at the morphological and functional levels in both animals and man. The concern for human exposure to monomeric AA derives partly from its extensive use in molecular biology laboratories where, in the United States alone, 100,000-200,000 persons are potentially exposed. Initial work in this laboratory aiming at the development of techniques for using hemoglobin adducts as biomarkers for human exposure to AA, revealed the formation of glycidamide as a reactive epoxide metabolite of acrylamide in the rat (Chem. Res. Toxicol. 3, 406, 1990). In rats treated with 0-100 mg/kg of AA significant dose-rate effects were observed on adduct formation by both AA and glycidamide. The high rate of formation of the metabolite, especially at low doses where approximately 60% of AA was converted to glycidamide in vivo, prompted us to investigate its potential role in the induction of neurotoxic and reproductive effects attributed to AA exposure. In initial neurotoxicological experiments, the effects of the parent compound (8-14 days, 25 and 50 mg/kg/day) and the metabolite (8-14 days, 50 and 100 mg/kg/day) were compared. While at the higher dose both compounds affected the rats' performance on the rotarod, only acrylamide had a significant effect in the hindlimb splay test, which is considered a more sensitive indicator of peripheral neuropathy. On the other hand, a stronger effect was seen for glycidamide than for AA on the male reproductive system, especially on sperm cell viability.(ABSTRACT TRUNCATED AT 250 WORDS)

Acrylamide

Furanic compounds in different coffee extraction systems: Analysis of the main influencing factors and correlation with acrylamide.

This study investigates how different coffee types representative of distinct roast profiles and brewing methods jointly affect the occurrence of furanic compounds and acrylamide in brewed coffee. Coffees were prepared using eight extraction methods (AeroPress, Clever, Chemex, French Press, Moka, Pure Brew, Turkish and V60). Five furanic compounds (furfural, furfuryl acetate, 5-methylfurfural, furfuryl alcohol and 5-hydroxymethylfurfural) were quantified in coffee powders and brews by HS-SPME-GC-MS, while acrylamide was determined by UHPLC-MS/MS. Moka and Turkish brews consistently exhibited the highest concentrations of furanic compounds, whereas paper-filtered pour-over methods (V60 and Chemex) showed the lowest levels. Pearson correlation analysis revealed coffee-dependent relationships between furanic compounds, acrylamide and extraction parameters with the strongest associations observed in dark-roasted coffee, reflecting advanced Maillard reaction chemistry. Overall, these results demonstrate that contaminant levels arise from the combined effects of intrinsic coffee chemistry and brewing mechanics and support targeted mitigation strategies: such as roast selection and brewing method optimization.

Acrylamide

Advanced mitigation strategies for acrylamide formation in foods: Mechanistic insights, emerging innovations, and future perspectives.

Acrylamide is a heat-induced contaminant formed predominantly in carbohydrate-rich foods during high-temperature processing, posing significant concerns due to its potential carcinogenic, neurotoxic, and genotoxic effects. This review critically examines the mechanisms of acrylamide formation, emphasizing the role of the Maillard reaction and key precursors such as asparagine and reducing sugars, along with the influence of processing conditions including temperature, time, pH, and moisture. Various mitigation strategies are comprehensively discussed, ranging from raw material selection and genetic approaches to enzymatic treatments such as asparaginase and the application of natural and chemical inhibitors. Advances in processing technologies, including optimization of conventional thermal methods and emerging non-thermal techniques such as cold plasma and ultrasound, are evaluated for their effectiveness. The review also highlights the role of food additives, functional ingredients, and fermentation in reducing acrylamide formation. Furthermore, recent developments in analytical techniques, including chromatographic methods, biosensors, and artificial intelligence-based predictive models, are explored for improved detection and control. Risk assessment, toxicological implications, and global regulatory frameworks are also examined. Finally, future perspectives focusing on genetic engineering, personalized nutrition, and digital technologies such as AI and blockchain are discussed to support sustainable and industry-applicable mitigation strategies.

Acrylamide

Physiological studies of the dying-back phenomenon. Muscle stretch afferents in acrylamide neuropathy.

(1) The responses of 1,001 medial gastrocnemius afferents with conduction velocities of 24-126 m/sec have been studied in cats with experimental acrylamide neuropathy. (2) Many units which conducted at velocities indicating that they innervated muscle stretch receptors failed to discharge during muscle stretch or contraction. In animals with mild neuropathy 10 per cent of 366 units were non-responsive. In animals with moderate or severe neuropathy the proportion of non-responsive units was 68 per cent of 315 fibres and 89 per cent of 320 fibres respectively. Group I fibres were involved to a greater extent than Group II fibres. (3) The distributions of identified functioning units with respect to conduction velocity were normal, indicating that acrylamide did not produce conduction slowing before failure of function. (4) Electrophysiological and histological findings indicate that acrylamide initially produces failure of impluse conduction and subsequent fibre breakdown in the terminal axon while normal impulse conduction is preserved more proximally.

Acrylamides

Electrophoretic characterization of the nonspecific esterases of the mosquito, Culex tarsalis: conventional and isoelectric focused acrylamide gels.

1. The nonspecific esterases of the mosquito, Culex tarsalis, were examined through conventional and isoelectric focusing acrylamide gel electrophoresis. 2. Conventional acrylamide gel electrophoresis resolved five components. These were characterized as: three carboxylesterases, one acetylcholinesterase and one acetylesterase. 3. Isoelectric focusing resolved 18 components. These were characterized as: 14 carboxylesterases, two acetylcholinesterases, one acetylesterase and one arylesterase. 4. The reproducibility and reliability of isoelectric focusing is discussed and compared to conventional acrylamide gel electrophoresis for the examination of multi-component isozyme systems such as non-specific esterases.

Animals

Kinetochore-staining of spermatid micronuclei: studies of mice treated with X-radiation or acrylamide.

The rodent spermatid micronucleus (MN) assay was used in conjunction with immunofluorescent techniques to distinguish kinetochores in MN following exposure of mice to X-radiation or acrylamide. After either treatment, modest increases in kinetochore-positive MN were observed. Spermatids which had been exposed during meiotic prophase to X-rays (400 cGy) had approximately 10-fold increases in MN compared to controls; up to 15% of the MN observed were kinetochore-positive. Following acrylamide treatment of meiotic prophase cells, there was a doubling of spermatid MN over baseline levels, approximately one-third of which were kinetochore-positive.

Acrylamide

Enzymatic synthesis of acrylamide: a success story not yet over.

The application of enzymatic transformations is attracting increasing attention. Until recently, such an approach has generally been confined to producing fine chemicals difficult to obtain through conventional chemical methods. Microbial nitrile hydratase (NHase) has now been applied to the industrial, kiloton-scale production of the important chemical commodity acrylamide. Recent progress in understanding microbial nitrile metabolism at both the gene and protein levels is permitting improvement of the acrylamide production process.

Acrylamide

Synthesis of allyl 6-O-(3-deoxy-alpha- and -beta-D-manno-oct-2- ulopyranosylonic acid)-(1----6)-2-deoxy-2-[(3R)-3-hydroxytetradecanamido]- beta-D-glucopyranoside 4-phosphate and of the copolymer of the alpha anomer with acrylamide.

The title disaccharides were synthesized by mercuric cyanide-catalyzed condensation of methyl (4,5,7,8-tetra-O-acetyl-3-deoxy-alpha-D-manno-oct-2-ulopyranosyl bromide)onate and allyl 2-[(3R)-3-acetoxy-tetradecanamido]-3-O-benzyl-2-deoxy-beta-D- glucopyranoside, followed by phosphorylation of the alcoholic function of the amino sugar. The phosphorylated anomers were separated by chromatography and deprotected by conventional methods. Polymeric material was obtained by copolymerisation, catalyzed by peroxosulphate and N,N,N',N'-tetramethylethylenediamine, of the alpha anomer with acrylamide; it contained ca. one disaccharide unit for 18 acrylamide residues.

Acrylamide

Inactivation of placental factor XIIIa by acrylamide.

Acrylamide rapidly and irreversibly inactivates thrombin activated Factor XIIIa, without affecting neither the intact zymogen nor its proteolytic activation. The inactivation is strictly dependent on the presence of calcium ions and is accompanied by a decrease in the number of free and total thiol residues, suggesting that cysteine residue(s), whose reactivity is modulated by calcium, is (are) probably responsible for the acrylamide-directed inactivation.

Acrylamide

Studies on biochemical mechanism of neurotoxicity induced by acrylamide in rats.

The effects of acrylamide on calmodulin (CaM), cAMP, cGMP, Ca2+, Mg(2+)-ATPase and 45Ca2+ uptake in nervous system were determined in Wistar rats (ip, 10 or 50 mg.kg-1 for 12 d). The results indicate that acrylamide caused an alteration in calcium homeostasis in rat brain by decreasing the Ca(2+)-sequestering capacity of microsomes, and this may occur due to an efflux of calcium secondary to a microsomal structure damage. The changes of CaM in nervous system coupled with potential alteration in the intracellular Ca2+ concentration could affect many CaM-dependent enzymes (i.e. Ca2+, Mg(2+)-ATPase) and cyclic AMP system, and CaM or cAMP is known to be "toxicological second messenger" that could initiate neurotoxicity, though more work is needed to elucidate the details of the mechanism.

Acrylamide

Oxygen consumption by acrylamide polymerization: a method for rapid screening of anticancer agents.

We have developed a rapid and sensitive method to measure oxygen consumption of tumor cells by acrylamide polymerization. This method could be used as an in vitro screen for potential chemotherapeutic agents. Previous techniques have lacked either the sensitivity or the speed required for use as an effective clinical tool. This method was modified from a technique previously developed in our laboratory for measuring oxygen in blood. Standard anticancer agents were tested against Walker 256 ascites tumor. Ascites was harvested from 20 rats on each of 50 days, incubated briefly with drugs, and acrylamide polymerization time was measured hourly. Individual controls were established for each drug-treated group, and oxygen uptake measured after one hour of incubation. Actinomycin, cyclohexamide, and cytosine arabinoside inhibited tumor cell oxygen consumption by 80%, 40%, and 30%, respectively. These results correlated with the known in vivo effects of these drugs on Walker carcinosarcoma. Therefore, this sensitive method could potentially be used directly on tumor cells removed from biopsy material so that the testing of anticancer drugs could be completed on the day of biopsy.

Acrylamides

Unmyelinated nerve fibres in feline acrylamide neuropathy.

Electronmicroscope studies have been performed on the greater splanchnic nerve and the nerve to the medial head of gastrocnemius muscle of control and acrylamide poisoned cats. Degeneration of unmyelinated as well as of myelinated fibres was observed in both nerves. In cats severely poisoned with acrylamide, some very large unmyelinated axons undergoing early degeneration were seen in the splanchnic nerve. In the nerve to medial head of gastrocnemius, there was a decrease in the proportion of large diameter unmyelinated axons.

Acrylamides