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BIOTRANSFORMATION OF 6PPD-QUINONE IN VIVO, EX SITU, IN SILICO, AND IN VITRO: A POTENTIAL TOXICOKINETIC EXPLANATION FOR DIFFERENCES IN SPECIES SENSTIVITY

2024· dissertation· en· W7064228226 sur OpenAlexfundno aff

Notice bibliographique

RevueUniversity Library (University of Saskatchewan) · 2024
Typedissertation
Langueen
DomainePhysics and Astronomy
ThématiqueMagnetic confinement fusion research
Établissements canadiensnon disponible
Organismes subventionnairesFisheries and Oceans CanadaWestern Economic Diversification CanadaNatural Sciences and Engineering Research Council of Canada
Mots-clésToxicodynamicsToxicokineticsInvertebrateBiotransformationPersistence (discontinuity)Interspecific competitionTurtle (robot)Toxicity
DOInon disponible

Résumé

récupéré en direct d'OpenAlex

The ubiquitous toxicant, 6PPD-Quinone (6PPD-Q), originates from the environmental oxidation of 6PPD, an antioxidant found in rubber tires and other rubber products. 6PPD-Q is dispersed from roadways during rain events to nearby waterways such as rivers, creeks, streams, and lakes. Subsequently, species living in these environments are exposed to 6PPD-Q, which causes acute lethality in select species of fishes. While 6PPD-Q was determined as non-toxic to invertebrates such as rotifers or cladocerans, some species of fishes, including coho salmon, rainbow trout, and brook trout, display symptoms of urban runoff mortality syndrome (URMS) with a specifically rapid onset of mortality (4 hours for coho salmon). Peak concentrations of 6PPD-Q causing URMS are relatively short-lived due to the rapid degradation of 6PPD-Q in water. It is important to note that 6PPD-Q degradation may play a major role in determining if a species will have mass die-offs in the environment, although it is not the scope of this research. While the abovementioned species of fishes are sensitive to 6PPD-Q, other fishes appear to be insensitive at relatively high concentrations that are past currently measured environmental concentrations. While the reasons for these marked interspecies differences in sensitivity are presently unknown, it has been hypothesized that metabolic differences among fish species are responsible, i.e., their differential ability to biotransform 6PPD-Q and influence the amount of 6PPD-Q reaching the gills in recirculation of blood.\nThe objectives of this thesis aimed to explain interspecific sensitivity to 6PPD-Q via quantifying toxicokinetic (TK) parameters. Assessments measured ex situ hepatic clearance and extraction fraction (in rainbow trout), in vivo biliary metabolite identification and abundance (in various fishes) in addition to in vitro intrinsic clearance (in rainbow trout and Arctic char). Lastly, ex situ hepatic transport, and cytochrome P450 identification (assessed in vitro) were also assessed.\nSemi-quantification of biliary metabolites after in vivo exposure pointed toward a possible TK explanation for the interspecies differences in sensitivity to 6PPD-Q, i.e., sensitive species exhibited a decreased ability to detoxify 6PPD-Q compared to insensitive species. Ex situ perfused liver experiments suggested that rainbow trout are moderate to rapid metabolizers of 6PPD-Q, suggesting even rapidly biotransformed 6PPD-Q may be insufficient to prevent the acute responses observed in vitro with gill cells, potentially leading to lethality in vivo at environmentally relevant concentrations. Results from in vitro experiments with fish hepatocytes were inconclusive due to low basal metabolic activity. Further studies are necessary to optimize the in vitro assays for the assessment of interspecies differences in biotransformation rates and activities of common cytochrome P450s.\nIn summary, this thesis provided important insights into interspecies differences in 6PPD-Q detoxification. Phase I and II metabolite abundance were correlated with sensitivity or exposure concentration, indicating these compounds might be useful in predicting toxic responses in fishes and might be assessed as a potential biomarker of exposure. Furthermore, ex situ results indicate that rainbow trout, a species known to be sensitive to 6PPD-Q exposure, is a moderate to rapid detoxifier, which might be inconsistent with the in vivo results that suggest rainbow trout have a relatively low capacity to detoxify 6PPD-Q. Bile metabolite levels are a crude measurement of overall systemic detoxification, tissue-specific biotransformation rates might be another important driver of 6PPD-Q toxicity. Future studies should aim to explain the discrepancy between ex situ and in vivo results and other studies should include detoxification of 6PPD-Q as an included component of their studies if interspecific differences in sensitivity are of interest. Further assessment in vitro is necessary to develop assays which could significantly reduce animal use in the future.

Récupéré en direct depuis OpenAlex et désinversé. Les résumés ne sont pas conservés dans cette base de données : les index inversés représentent 8,6 Go des 9,3 Go de texte de la base, et le serveur dispose de 13 Go libres.

Comment cette classification a été obtenuedéplier

Prédiction machine sur la base complète

Imitation des enseignants

Ni prévalence calibrée, ni vérité terrain. Validation humaine à venir. Le volet Gemma est une étiquette directe du modèle pour chaque travail de la base, lue sur la notice réduite au titre. Le volet Codex est un classifieur appris des 10 348 étiquettes directes de Codex et calibré sur les taux pondérés de l'échantillon; les champs sans appui suffisant ne portent aucun appel Codex. Le mode candidate est l'union des deux volets; le consensus est leur intersection. Ces sorties portent le statut machine_predicted_unvalidated et ne sont pas des étiquettes humaines.

score de la tête « metaresearch » (Codex)0,001
score de la tête « metaresearch » (Gemma)0,001
Version: metacan-v3-hybrid-931329e0061cStatut de validation: machine_predicted_unvalidated
Catégories candidatesaucune
Catégories consensuellesaucune
DomaineSignal candidat: aucune · Signal consensuel: aucune
Devis d'étudeSignal candidat: Expérimental (laboratoire) · Signal consensuel: Expérimental (laboratoire)
GenreSignal candidat: Empirique · Signal consensuel: Empirique
Score de désaccord entre enseignants0,001
Score d'incertitude au seuil0,004

Scores du classifieur distillé par catégorie (deux têtes)

CatégorieCodexGemma
Métarecherche0,0010,001
Méta-épidémiologie (sens strict)0,0000,000
Méta-épidémiologie (sens large)0,0000,000
Bibliométrie0,0000,000
Études des sciences et des technologies0,0000,000
Communication savante0,0000,000
Science ouverte0,0000,000
Intégrité de la recherche0,0000,000
Charge utile insuffisante (le modèle a refusé de juger)0,0010,000

Scores machine (provisoires)

Les deux têtes enseignantes du modèle étudiant, lues sur ce travail. Un score ordonne la base pour la relecture; il n'affirme jamais une catégorie, et le statut de validation accompagne chaque rangée tel quel.

Scores de référence d'un modèle non mature (critères de maturité non atteints, 7 itérations). Un score ordonne; il n'affirme jamais une catégorie.

Tête enseignante Opus0,007
Tête enseignante GPT0,181
Écart entre enseignants0,175 · la distance entre les deux têtes enseignantes sur ce seul travail
Statut de validationscore_only:v0-immature-baseline · tel quel depuis la passe de notation : score_only signifie que le nombre peut ordonner les travaux, et qu'aucune étiquette de catégorie n'en découle

Classification

machine, non validée

Prédiction automatique; un appel candidat d’une seule source (Gemma direct ou Codex distillé), pas un consensus.

Les modèles n’ont appliqué aucune catégorie : rien dans la taxonomie ne correspondait à ce travail.
Devis d'étudeExpérimental (laboratoire)
Domainenon disponible
GenreEmpirique

Le détail, modèle par modèle et score par score, se trouve en fin de page sous « Comment cette classification a été obtenue ».

En bref

Citations0
Publié2024
Routes d'admission1
Résumé présentoui

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