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Guidelines for the rehabilitation of the juveline who had committed a drug-related crimeNorrish, Maria Elizabeth 06 1900 (has links)
This study was designed to understand the meaning of the lived experiences of incarcerated male juveniles who had committed drug-related crimes and to suggest guidelines for their rehabilitation with specific reference to their health care needs. In order to achieve these objectives, the researcher used Parse’s (1998) Theory of Human Becoming as a theoretical framework for the study and Parse’s (1998, 2005) phenomenological-hermeneutic research method.
This study was restricted to three juvenile correctional centres in the Gauteng province, Republic of South Africa (RSA). A sample of 15 male juveniles (5 at each of the three juvenile correctional centres) was used for the purpose of individual dialogical engagements with the participants. Focus group interview sessions were held with two groups (5 members per group) at two identified juvenile correctional centres.
A qualitative content analysis according to methods recommended by Graneheim and Lundman (2004) was performed on the data that was collected from the individual dialogical-engagements and the focus group interviews. The researcher attempted to elucidate the meanings that the participants attached to their experiences of incarceration as narrated by them and analysed the data according to Parse’s (1998; 2005) phenomenological-hermeneutic method comprising of extraction-synthesis and heuristic interpretation. The findings of this research confirm that problems of drug abuse and criminal activity represent a multifaceted, complex and often intractable phenomenon. The research also confirmed that the participants suffer from a variety of emotional and psychological problems such as depression, anxiety, fear, guilt, remorse, regret and a craving for the drugs that they had abused before their incarceration. It appears that the participants find it extremely difficult to deal effectively with these disorders on their own and that they are generally averse to asking for professional help and assistance. Interventions to alleviate these problems are crucial for the
success of the current rehabilitation programmes being pursued in the correctional centres where the participants are accommodated. / Health Studies / D. Litt. et Phil. (Health Studies)
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Caractérisation de la pharmacocinétique de formulations sensibles au pH et de formulations destinées au traitement des intoxications médicamenteusesBertrand, Nicolas 04 1900 (has links)
La préparation de formulations à libération contrôlée est le domaine des sciences pharmaceutiques qui vise à modifier l’environnement immédiat des principes actifs pour en améliorer l’efficacité et l’innocuité. Cet objectif peut être atteint en modifiant la cinétique de circulation dans le sang ou la distribution dans l’organisme. Le but de ce projet de recherche était d’étudier le profil pharmacocinétique (PK) de différentes formulations liposomales. L’analyse PK, généralement employée pour représenter et prédire les concentrations plasmatiques des médicaments et de leurs métabolites, a été utilisée ici pour caractériser in vivo des formulations sensibles au pH servant à modifier la distribution intracellulaire de principes actifs ainsi que des liposomes destinés au traitement des intoxications médicamenteuses.
Dans un premier temps, la PK d’un copolymère sensible au pH, à base de N-isopropylacrylamide (NIPAM) et d’acide méthacrylique (MAA) a été étudiée. Ce dernier, le p(NIPAM-co-MAA) est utilisé dans notre laboratoire pour la fabrication de liposomes sensibles au pH. L’étude de PK conduite sur les profils de concentrations sanguines de différents polymères a défini les caractéristiques influençant la circulation des macromolécules dans l’organisme. La taille des molécules, leur point de trouble ainsi que la présence d’un segment hydrophobe à l’extrémité des chaînes se sont avérés déterminants. Le seuil de filtration glomérulaire du polymère a été évalué à 32 000 g/mol. Finalement, l’analyse PK a permis de s’assurer que les complexes formés par la fixation du polymère à la surface des liposomes restaient stables dans le sang, après injection par voie intraveineuse. Ces données ont établi qu’il était possible de synthétiser un polymère pouvant être adéquatement éliminé par filtration rénale et que les liposomes sensibles au pH préparés avec celui-ci demeuraient intacts dans l’organisme.
En second lieu, l’analyse PK a été utilisée dans le développement de liposomes possédant un gradient de pH transmembranaire pour le traitement des intoxications médicamenteuses. Une formulation a été développée et optimisée in vitro pour capturer un médicament modèle, le diltiazem (DTZ). La formulation liposomale s’est avérée 40 fois plus performante que les émulsions lipidiques utilisées en clinique. L’analyse PK des liposomes a permis de confirmer la stabilité de la formulation in vivo et d’analyser l’influence des liposomes sur la circulation plasmatique du DTZ et de son principal métabolite, le desacétyldiltiazem (DAD). Il a été démontré que les liposomes étaient capables de capturer et de séquestrer le principe actif dans la circulation sanguine lorsque celui-ci était administré, par la voie intraveineuse. L’injection des liposomes 2 minutes avant l’administration du DTZ augmentait significativement l’aire sous la courbe du DTZ et du DAD tout en diminuant leur clairance plasmatique et leur volume de distribution. L’effet de ces modifications PK sur l’activité pharmacologique du médicament a ensuite été évalué. Les liposomes ont diminué l’effet hypotenseur du principe actif administré en bolus ou en perfusion sur une période d’une heure. Au cours de ces travaux, l’analyse PK a servi à établir la preuve de concept que des liposomes possédant un gradient de pH transmembranaire pouvaient modifier la PK d’un médicament cardiovasculaire et en diminuer l’activité pharmacologique. Ces résultats serviront de base pour le développement de la formulation destinée au traitement des intoxications médicamenteuses.
Ce travail souligne la pertinence d’utiliser l’analyse PK dans la mise au point de vecteurs pharmaceutiques destinés à des applications variées. À ce stade de développement, l’aspect prédictif de l’analyse n’a pas été exploité, mais le côté descriptif a permis de comparer adéquatement diverses formulations et de tirer des conclusions pertinentes quant à leur devenir dans l’organisme. / Drug delivery is the field of pharmaceutical sciences which focuses on altering the immediate environment of drug molecules to improve their efficacy and safety. Drug delivery systems can potentiate the effect of active principles or alleviate their side effects by modifying their circulation profiles and/or biodistribution. The objective of this research project was to investigate the role of pharmacokinetic (PK) analysis in the development of novel drug delivery systems. PK analysis is generally applied to describe and predict the blood concentration profiles of low molecular weight drugs and their metabolites. Nevertheless, it is herein used to characterize the circulation of 2 liposomal formulations: pH-sensitive liposomes designed to alter the intracellular distribution of drugs and liposomes with transmembrane pH gradient for drug detoxification.
The first series of experiments were designed to study the circulation kinetics of a pH-sensitive polymer prepared with N-isopropylacrylamide (NIPAM) and methacrylic acid (MAA). The copolymer p(NIPAM-co-MAA) is used in our laboratory to prepare serum-stable, PEGylated, pH-sensitive liposomes. The circulation profiles of polymers with different characteristics were characterized. The parameters which impacted the fate of the macromolecules were the length of the polymer chain, its cloud point and the presence of a hydrophobic anchor at one extremity of the molecule. The glomerular filtration cut-off of the polymer was determined to be around 32,000 g/mol. PK analysis allowed to conclude that the complexes prepared by anchoring the polymer on the surface of the liposomes remained stable in the bloodstream. This data established that pH-sensitive vesicular formulations could be produced using a polymer which could be excreted through renal filtration. It also confirmed that the formulation remained intact in the bloodstream.
The second part of this work involved the development of liposomes with a transmembrane pH gradient designed to treat cardiovascular drug intoxications. Liposomes were designed and optimized in vitro to capture a model cardiovascular drug, diltiazem (DTZ). In vitro, the liposome uptake capacity was 40-fold higher than the lipid emulsion used in the clinic. PK analysis was used to verify the stability of the formulation in vivo, and to assess the impact of the liposomes on the plasma concentration of DTZ and its principal active metabolite, deacetyl-diltiazem (DAD). It was shown that the vesicles were able to capture and sequester DTZ and DAD. Injection of liposomes 2 min prior to administration of DTZ significantly increased the area under the plasma-concentration vs. time curve of both DTZ and DAD, while lowering their clearance and volume of distribution. The impact of the changes in PK on the pharmacological effect of the drug was also investigated. Liposomes tempered the hypotensive effect of the drug when the latter was administered via an intravenous bolus or a 1-h perfusion. Throughout this work, PK analysis proved to be an efficient tool to study the ability of transmembrane pH gradient liposomes to alter the blood circulation profiles of a cardiovascular drug, and to reduce its pharmacological effect. This proof of concept establishes firm ground for the further development of this colloidal formulation to treat drug intoxications.
This work pointed out the relevance of PK analysis for the development of multi-purpose, colloidal drug delivery systems. At this stage, the predictive nature of the analysis was not exploited, but its descriptive properties allowed objective comparison of the circulation profiles of distinct systems and pertinent conclusions concerning their fate in vivo.
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Physiological responses of Nile tilapia (Oreochromis niloticus) after exposure to diclofenac and metoprololKeitel-Gröner, Frederike 06 March 2017 (has links)
(Oberflächen-) Gewässer weltweit sind mit geringen Mengen (ng/L bis wenige µg/L) humaner Pharmazeutika belastet. Diclofenac (DCF; nicht-steroidal, entzündungshemmend) und Metoprolol (MTP; ß-Blocker) gehören entsprechend ihres hohen Verbrauchs zu den am häufigsten gefundenen Substanzen. Deren biologische Aktivität ist nicht auf den Menschen beschränkt. Gut konservierte Enzyme innerhalb der Vertebraten legen Auswirkungen auf Nicht-Zielorganismen wie Fische nahe, die bisher in Langzeituntersuchungen mit umweltrelevanten Konzentrationen unzureichend untersucht wurden. In der vorliegenden Arbeit wurden die physiologischen Effekte von DCF und MTP auf die Nil-Tilapie (Oreochromis niloticus), einem der wichtigsten Aquakulturfische weltweit, untersucht. In vitro konnte anhand primärer Hepatozyten gezeigt werden, dass bereits umweltrelevante Konzentrationen von DCF zu einer erhöhten Genexpression verschiedener Schlüsselenzyme der Detoxifizierung führten. Nach MTP-Exposition waren die Veränderungen weniger eindeutig. Beide Substanzen induzierten die Vitellogenin Genexpression, nur DCF jedoch bereits in umweltrelevanter Konzentration. In vivo wurden in zwei Langzeit-Expositionsversuchen die physiologischen Effekte vom befruchteten Ei bis 80 Tage nach Schlupf in O. niloticus untersucht. Beide Substanzen hatte keinen Einfluss auf Schlupferfolg und Überleben, das Wachstum war nach 80 Tagen nach Schlupf leicht reduziert. Die deutlichsten Auswirkungen waren histopathologische Veränderungen der Kiemen, veränderte Genexpressionen der Gonadotropine und eine erhöhte Expression von Vitellogenin. Die Ergebnisse legen eine stärkere östrogene Aktivität von DCF im Vergleich zu MTP nahe. Zusammenfassend sind die Bedenken gegenüber den Einzelsubstanzen eher gering, negative Auswirkungen auf die Reproduktion und sich verstärkende Effekte bei zeitgleicher Exposition gegenüber DCF und MTP lassen sich jedoch nicht ausschließen und sollten im Weiteren untersucht werden. / Surface waters worldwide are contaminated with low levels (ng/L up to few µg/L) of human pharmaceuticals. Diclofenac (DCF; non-steroidal, anti-inflammatory) and metoprolol (MTP; ß-blocker) are highly consumed and therefore commonly detected. Their biological activity is not restricted to humans. Well conserved enzymes within the vertebrates suggest effects on non-target organisms such as fish, poorly studied in long-term exposure experiments using environmentally relevant concentrations. In the presented work, physiological effects of DCF and MTP on the Nile tilapia (Oreochromis niloticus), an important aquaculture fish species, were studied. Using primary hepatocytes, it was shown in vitro that environmentally relevant concentrations of DCF increased the gene expression of different key enzymes of the detoxification, while MTP exposure had a less clear effect. Both substances induced vitellogenin gene expression, but only after DCF exposure this was significantly elevated already at the environmentally relevant concentration. In vivo, two long-term exposure studies on the physiological effects from the fertilized egg until 80 days post-hatch were evaluated. Both substances did not affect hatching success and survival, while growth was slightly reduced after 80 days post-hatch. Histopathological alterations of the gills, changed gene expression patterns of the gonadotropins and induced vitellogenin gene expression were the most dominant findings. The results indicate a stronger estrogenic mode of action of DCF compared to MTP. Overall, the risk due to a single substance exposure seems to be relatively low but adverse effects on reproduction and additive effects during simultaneous exposure to DCF and MTP cannot be excluded and should be investigated further.
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Caractérisation de la pharmacocinétique de formulations sensibles au pH et de formulations destinées au traitement des intoxications médicamenteusesBertrand, Nicolas 04 1900 (has links)
La préparation de formulations à libération contrôlée est le domaine des sciences pharmaceutiques qui vise à modifier l’environnement immédiat des principes actifs pour en améliorer l’efficacité et l’innocuité. Cet objectif peut être atteint en modifiant la cinétique de circulation dans le sang ou la distribution dans l’organisme. Le but de ce projet de recherche était d’étudier le profil pharmacocinétique (PK) de différentes formulations liposomales. L’analyse PK, généralement employée pour représenter et prédire les concentrations plasmatiques des médicaments et de leurs métabolites, a été utilisée ici pour caractériser in vivo des formulations sensibles au pH servant à modifier la distribution intracellulaire de principes actifs ainsi que des liposomes destinés au traitement des intoxications médicamenteuses.
Dans un premier temps, la PK d’un copolymère sensible au pH, à base de N-isopropylacrylamide (NIPAM) et d’acide méthacrylique (MAA) a été étudiée. Ce dernier, le p(NIPAM-co-MAA) est utilisé dans notre laboratoire pour la fabrication de liposomes sensibles au pH. L’étude de PK conduite sur les profils de concentrations sanguines de différents polymères a défini les caractéristiques influençant la circulation des macromolécules dans l’organisme. La taille des molécules, leur point de trouble ainsi que la présence d’un segment hydrophobe à l’extrémité des chaînes se sont avérés déterminants. Le seuil de filtration glomérulaire du polymère a été évalué à 32 000 g/mol. Finalement, l’analyse PK a permis de s’assurer que les complexes formés par la fixation du polymère à la surface des liposomes restaient stables dans le sang, après injection par voie intraveineuse. Ces données ont établi qu’il était possible de synthétiser un polymère pouvant être adéquatement éliminé par filtration rénale et que les liposomes sensibles au pH préparés avec celui-ci demeuraient intacts dans l’organisme.
En second lieu, l’analyse PK a été utilisée dans le développement de liposomes possédant un gradient de pH transmembranaire pour le traitement des intoxications médicamenteuses. Une formulation a été développée et optimisée in vitro pour capturer un médicament modèle, le diltiazem (DTZ). La formulation liposomale s’est avérée 40 fois plus performante que les émulsions lipidiques utilisées en clinique. L’analyse PK des liposomes a permis de confirmer la stabilité de la formulation in vivo et d’analyser l’influence des liposomes sur la circulation plasmatique du DTZ et de son principal métabolite, le desacétyldiltiazem (DAD). Il a été démontré que les liposomes étaient capables de capturer et de séquestrer le principe actif dans la circulation sanguine lorsque celui-ci était administré, par la voie intraveineuse. L’injection des liposomes 2 minutes avant l’administration du DTZ augmentait significativement l’aire sous la courbe du DTZ et du DAD tout en diminuant leur clairance plasmatique et leur volume de distribution. L’effet de ces modifications PK sur l’activité pharmacologique du médicament a ensuite été évalué. Les liposomes ont diminué l’effet hypotenseur du principe actif administré en bolus ou en perfusion sur une période d’une heure. Au cours de ces travaux, l’analyse PK a servi à établir la preuve de concept que des liposomes possédant un gradient de pH transmembranaire pouvaient modifier la PK d’un médicament cardiovasculaire et en diminuer l’activité pharmacologique. Ces résultats serviront de base pour le développement de la formulation destinée au traitement des intoxications médicamenteuses.
Ce travail souligne la pertinence d’utiliser l’analyse PK dans la mise au point de vecteurs pharmaceutiques destinés à des applications variées. À ce stade de développement, l’aspect prédictif de l’analyse n’a pas été exploité, mais le côté descriptif a permis de comparer adéquatement diverses formulations et de tirer des conclusions pertinentes quant à leur devenir dans l’organisme. / Drug delivery is the field of pharmaceutical sciences which focuses on altering the immediate environment of drug molecules to improve their efficacy and safety. Drug delivery systems can potentiate the effect of active principles or alleviate their side effects by modifying their circulation profiles and/or biodistribution. The objective of this research project was to investigate the role of pharmacokinetic (PK) analysis in the development of novel drug delivery systems. PK analysis is generally applied to describe and predict the blood concentration profiles of low molecular weight drugs and their metabolites. Nevertheless, it is herein used to characterize the circulation of 2 liposomal formulations: pH-sensitive liposomes designed to alter the intracellular distribution of drugs and liposomes with transmembrane pH gradient for drug detoxification.
The first series of experiments were designed to study the circulation kinetics of a pH-sensitive polymer prepared with N-isopropylacrylamide (NIPAM) and methacrylic acid (MAA). The copolymer p(NIPAM-co-MAA) is used in our laboratory to prepare serum-stable, PEGylated, pH-sensitive liposomes. The circulation profiles of polymers with different characteristics were characterized. The parameters which impacted the fate of the macromolecules were the length of the polymer chain, its cloud point and the presence of a hydrophobic anchor at one extremity of the molecule. The glomerular filtration cut-off of the polymer was determined to be around 32,000 g/mol. PK analysis allowed to conclude that the complexes prepared by anchoring the polymer on the surface of the liposomes remained stable in the bloodstream. This data established that pH-sensitive vesicular formulations could be produced using a polymer which could be excreted through renal filtration. It also confirmed that the formulation remained intact in the bloodstream.
The second part of this work involved the development of liposomes with a transmembrane pH gradient designed to treat cardiovascular drug intoxications. Liposomes were designed and optimized in vitro to capture a model cardiovascular drug, diltiazem (DTZ). In vitro, the liposome uptake capacity was 40-fold higher than the lipid emulsion used in the clinic. PK analysis was used to verify the stability of the formulation in vivo, and to assess the impact of the liposomes on the plasma concentration of DTZ and its principal active metabolite, deacetyl-diltiazem (DAD). It was shown that the vesicles were able to capture and sequester DTZ and DAD. Injection of liposomes 2 min prior to administration of DTZ significantly increased the area under the plasma-concentration vs. time curve of both DTZ and DAD, while lowering their clearance and volume of distribution. The impact of the changes in PK on the pharmacological effect of the drug was also investigated. Liposomes tempered the hypotensive effect of the drug when the latter was administered via an intravenous bolus or a 1-h perfusion. Throughout this work, PK analysis proved to be an efficient tool to study the ability of transmembrane pH gradient liposomes to alter the blood circulation profiles of a cardiovascular drug, and to reduce its pharmacological effect. This proof of concept establishes firm ground for the further development of this colloidal formulation to treat drug intoxications.
This work pointed out the relevance of PK analysis for the development of multi-purpose, colloidal drug delivery systems. At this stage, the predictive nature of the analysis was not exploited, but its descriptive properties allowed objective comparison of the circulation profiles of distinct systems and pertinent conclusions concerning their fate in vivo.
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Métabolisme du glucose et du glycérol dans la cellule pancréatique β et les hépatocytes et identification des voies de détoxification du glucoseMugabo, Yves 08 1900 (has links)
No description available.
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Guidelines for the rehabilitation of the juvenile who had committed a drug-related crimeNorrish, Maria Elizabeth 06 1900 (has links)
This study was designed to understand the meaning of the lived experiences of incarcerated male juveniles who had committed drug-related crimes and to suggest guidelines for their rehabilitation with specific reference to their health care needs. In order to achieve these objectives, the researcher used Parse’s (1998) Theory of Human Becoming as a theoretical framework for the study and Parse’s (1998, 2005) phenomenological-hermeneutic research method.
This study was restricted to three juvenile correctional centres in the Gauteng province, Republic of South Africa (RSA). A sample of 15 male juveniles (5 at each of the three juvenile correctional centres) was used for the purpose of individual dialogical engagements with the participants. Focus group interview sessions were held with two groups (5 members per group) at two identified juvenile correctional centres.
A qualitative content analysis according to methods recommended by Graneheim and Lundman (2004) was performed on the data that was collected from the individual dialogical-engagements and the focus group interviews. The researcher attempted to elucidate the meanings that the participants attached to their experiences of incarceration as narrated by them and analysed the data according to Parse’s (1998; 2005) phenomenological-hermeneutic method comprising of extraction-synthesis and heuristic interpretation. The findings of this research confirm that problems of drug abuse and criminal activity represent a multifaceted, complex and often intractable phenomenon. The research also confirmed that the participants suffer from a variety of emotional and psychological problems such as depression, anxiety, fear, guilt, remorse, regret and a craving for the drugs that they had abused before their incarceration. It appears that the participants find it extremely difficult to deal effectively with these disorders on their own and that they are generally averse to asking for professional help and assistance. Interventions to alleviate these problems are crucial for the
success of the current rehabilitation programmes being pursued in the correctional centres where the participants are accommodated. / Health Studies / D. Litt. et Phil. (Health Studies)
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Synergistes jonesii, gen. nov., sp.nov.: A Rumen Bacterium That Degrades Toxic PyridinediolsAllison, Milton J., Mayberry, Wiliam R., Mcsweeney, Christopher S., Stahl, David A. 01 January 1992 (has links)
This study was conducted to identify and characterize rumen bacteria that are able to degrade the toxic compound, 3-hydroxy-4(lH)-pyridone (3,4 DHP), that is produced in the rumen from mimosine. Mimosine is a non-protein amino acid that is found in leaves and seeds of Leucaena leucocephala, a leguminous tree used as a forage crop for ruminants in the tropics, and degradation of 3,4 DHP by ruminal microbes is critical for protection of animals from leucaena toxicity. Microbes with this capacity are, however, not ubiquitous and microbial populations in the rumens of animals in some parts of the world are unable to metabolize 3,4 DHP. Four strains of obligately anaerobic, gram-negative, rod-shaped bacteria that degrade 3,4 DHP were isolated from rumen contents from a goat in Hawaii. The isolates do not ferment carbohydrates, but are able to use both 3,4 DHP and its isomer, 3-hydroxy-2(lH)-pyridone (2,3 DHP), as well as arginine and histidine as substrates for growth. Comparisons of the 16S rRNA sequence from one of these isolates with sequences from a widely diverse group of bacteria agree with other information indicating that these isolates do not fit into any existing taxon. Thus, we are hereby proposing a new genus and species designation, Synergistes jonesii, for these organisms.
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