409 research outputs found

    Combining ecological research with environmental education

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    The relationship between ecological research and environmental education prograllllleS at the Hazeva Field Study Centre in Israel is described. Mutual benefits to both researchers and students are discussed and the benefits to the environment outlined

    Impact of alcoholism on oral health: a narrative review

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    O alcoolismo, como muitos outros vícios, é uma condição na qual uma pessoa, de um ponto de vista mental e físico, necessita de consumir álcool, apesar dos efeitos prejudiciais que causa na sua vida. Os níveis de consumo de álcool, os padrões e o alcance das questões relacionadas com a ingestão do mesmo na comunidade são influenciados por variáveis diversas, tanto no âmbito individual, quanto social. A quantidade total de álcool ingerido e os hábitos de bebida, particularmente aqueles ligados a episódios de consumo excessivo, têm um papel significativo nas condições crónicas e agudas da saúde, nomeadamente na saúde oral. Os efeitos do alcoolismo na saúde oral são discutidos nesta tese. São descritos quatro “tópicos” principais, nomeadamente erosão dentária, doenças periodontais, cancro oral e atendimento odontológico, os quais refletem os efeitos imediatos de tal problema na saúde oral. Para isso, efetuou-se uma revisão de literatura, realizada através de uma pesquisa de artigos científicos publicados no PubMed e b-on, e com a qual se pretendeu analisar as etapas, causas e consequências de cada um dos “tópicos” supracitados.Alcoholism, like many other addictions, is a condition in which a person, from a mental and physical point of view, needs to consume alcohol despite the detrimental effects it has on their life. Levels of alcohol consumption, patterns and the scope of issues related to alcohol ingestion in the community are influenced by different variables, both at the individual and social levels. The overall amount of alcohol drank and drinking habits, particularly those habits linked to bouts of heavy drinking, have a significant role in how alcohol intake affects chronic and acute health conditions, namely on oral health. The worldwide effects of alcoholism on oral health are discussed in this thesis. Four main “topics” are described, namely dental erosion, periodontal diseases, oral cancer and dental management, which reflect the immediate effects of such a problem on oral health. For that, a literature review was carried out through a search of scientific articles published in PubMed and b-on, and with which it was intended to analyse the stages, causes and consequences for each of the aforementioned “topics”

    The Endocannabinoid System in the Vervet Monkey Retina

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    The main active compound found in the marijuana plant, tetrahydrocannabinol, is responsible for its psychotropic effects but also for its numerous beneficial actions such as appetite stimulation, nausea reduction, analgesia, and muscle spasm suppressor. Although cannabis consumption leads to some visual disturbances, the exact role of the endocannabinoid system (ECS) in normal vision is still unknown. Many studies have looked into the localization of this complex system (receptors, ligands, and enzymes) throughout the various components of the visual system of different animal models in order to obtain clues about its role. In fact, the retina, optic nerve, dorsal lateral geniculate nucleus, and visual cortices all express parts of the ECS. Manipulating this system pharmacologically or genetically has also an impact on visual function. In this book chapter, we provide the current understanding of how the ECS is involved in the functioning of the visual system and special emphasis is put on data obtained in monkeys, representing the most relevant animal model for visual neuroscience research. The mechanisms that control endocannabinoid (eCB) release and activation of cannabinoid receptors are discussed. We also propose a model highlighting the mechanisms involved in the regulation of photopic and scotopic vision taking advantage of the spatial specificity of the eCB signaling system and its physiological activation conditions

    Le système endocannabinoïde dans la rétine du singe : expression, localisation et fonctions

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    Le cannabis produit de nombreux effets psychologiques et physiologiques sur le corps humain. Les molécules contenues dans cette plante, désignées comme « phytocannabinoïdes », activent un système endogène qu’on appelle le système endocannabinoïde (eCB). Les effets de la consommation de cannabis sur la vision ont déjà été décrits sans cependant de formulation sur les mécanismes sous-jacents. Ces résultats comportementaux suggèrent, malgré tout, la présence de ce système eCB dans le système visuel, et particulièrement dans la rétine. Cette thèse vise donc à caractériser l’expression, la localisation et le rôle du système eCB dans la rétine du singe vervet, une espèce animale ayant un système visuel semblable à celui de l’humain. Nous avons mis au point un protocole expérimental d’immunohistochimie décrit dans l’article apparaissant dans l’Annexe I que nous avons utilisé pour répondre à notre objectif principal. Dans une première série de quatre articles, nous avons ainsi caractérisé l’expression et la localisation de deux récepteurs eCBs reconnus, les récepteurs cannabinoïdes de type 1 (CB1R) et de type 2 (CB2R), et d’un 3e présumé récepteur aux cannabinoïdes, le récepteur GPR55. Dans l’article 1, nous avons démontré que CB1R et une enzyme clé de ce système, la fatty acid amide hydrolase (FAAH), sont exprimés dans les parties centrale et périphérique de la rétine, et abondamment présents dans la fovéa, une région où l’acuité visuelle est maximale. Dans l’article 2, nous avons localisé le CB2R dans des cellules gliales de la rétine : les cellules de Müller et nous avons proposé un modèle sur l’action de cette protéine dans la fonction rétinienne faisant appel à une cascade chimique impliquant les canaux potassiques. Dans l’article 3, nous avons observé le GPR55 exclusivement dans les bâtonnets qui sont responsables de la vision scotopique et nous avons soumis un deuxième modèle de fonctionnement de ce récepteur par le biais d'une modulation des canaux calciques et sodiques des bâtonnets. Vu que ces 3 récepteurs se retrouvent dans des cellules distinctes, nous avons suggéré leur rôle primordial dans l’analyse de l’information visuelle au niveau rétinien. Dans l’article 4, nous avons effectué une analyse comparative de l’expression du système eCB dans la rétine de souris, de toupayes (petits mammifères insectivores qui sont sont considérés comme l’étape intermédiaire entre les rongeurs et les primates) et de deux espèces de singe (le vervet et le rhésus). Ces résultats nous ont menés à présenter une hypothèse évolutionniste quant à l’apparition et à la fonction précise de ces récepteurs. Dans les articles subséquents, nous avons confirmé notre hypothèse sur le rôle spécifique de ces trois récepteurs par l’utilisation de l’électrorétinographie (ERG) après injection intravitréenne d’agonistes et d’antagonistes de ces récepteurs. Nous avons conclu sur leur influence indéniable dans le processus visuel rétinien chez le primate. Dans l’article 5, nous avons établi le protocole d’enregistrement ERG normalisé sur le singe vervet, et nous avons produit un atlas d’ondes ERG spécifique à cette espèce, selon les règles de l’International Society for Clinical Electrophysiology of Vision (ISCEV). Les patrons électrorétinographiques se sont avérés semblables à ceux de l’humain et ont confirmé la similarité entre ces deux espèces. Dans l’article 6, nous avons démontré que le blocage de CB1R ou CB2R entraine une modification de l’électrorétinogramme, tant au niveau photopique que scotopique, ce qui supporte l’implication de ces récepteurs dans la modulation des ondes de l’ERG. Finalement, dans l’article 7, nous avons confirmé le modèle neurochimique proposé dans l’article 3 pour expliquer le rôle fonctionnel de GPR55, en montrant que l’activation ou le blocage de ce récepteur, respectivement par un agoniste (lysophosphatidylglucoside, LPG) ou un antagoniste (CID16020046), entraine soit une augmentation ou une baisse significative de l’ERG scotopique seulement. Ces données, prises ensemble, démontrent que les récepteurs CB1R, CB2R et GPR55 sont exprimés dans des types cellulaires bien distincts de la rétine du singe et ont chacun un rôle spécifique. L’importance de notre travail se manifeste aussi par des applications cliniques en permettant le développement de cibles pharmacologiques potentielles dans le traitement des maladies de la rétine.Cannabis produces a range of psychological and physiological effects on the human body. Cannabinoids are the chemical compounds found in cannabis that activate an endogenous system, termed the endocannabinoid (eCB) system. Reports made in the 1970s have noted that cannabis consumption affects vision. It is therefore suggested that the eCB system is present in the visual system, particularly in the retina. This thesis aims at characterizing the expression, localization, and role of the eCB system in the vervet monkey retina. This animal model has a similar visual system as humans. Using immunohistochemistry methods presented in the article of Annexe I, we have established an experimental protocol to answer our goal. In the first series of four articles, we have characterized the expression and localization of the cannabinoid receptor 1 (CB1R), cannabinoid receptor 2 (CB2R), and the putative cannabinoid receptor GPR55. In Article 1, we have demonstrated that CB1R and a key enzyme of this system, FAAH (fatty acid amide hydrolase), are expressed in the central and peripheral retina, but heavily present in the fovea, the retinal region responsible for high acuity vision. In Article 2, we have localized CB2R in the glial Müller cells and hypothesized a possible mechanism of action of CB2R involving potassium buffering. In Article 3, we found that GPR55 is exclusively expressed in rods and have proposed its role through the modulation of calcium and sodium channels in rods. Given that these three receptors are segregated in the vervet monkey retina, we suggested that they might have distinct roles in retinal physiology. In Article 4, we reported a comparative analysis of the expression of the eCB system components in the retina of rodents, tree shrews (small mammals considered as early primates), and monkeys. This paper provides evidence that the eCB system is differently expressed in the retina of these mammals and suggests a distinctive role of eCBs in visual processing. In the subsequent series of three articles, we confirmed their suggested roles in the retina by using electroretinography (ERG) and intravitreal injections of agonist and antagonist of these receptors. We concluded that they indeed play important roles in the retina. In Article 5, we developed a standard protocol for ERG testing in our animal model and have published an ERG atlas with normalized amplitudes and latency values similar to that of humans, following the guidelines of the International Society for Clinical Electrophysiology of Vision. In Article 6, we showed that blockade of CB1R or CB2R with specific antagonists modifies the ERG, both in photopic and scotopic conditions, which confirms the implication of these receptors in normal retinal function. Finally, in Article 7 (expression of GPR55 in rods only), we confirmed the suggest role of GPR55 in rods by showing that activation or blockade of GPR55 with a specific agonist (lysophosphatidylglucoside) or antagonist (CID16020046) increases or decreases the amplitude of the scotopic ERG waveforms. Taken together, these articles demonstrate that CB1R, CB2R, and GPR55 are differentially expressed in the vervet monkey retina and have distinct roles. This work has also clinical relevance in the way that we have discovered new pharmacological targets that can be used for treatment of many retinal diseases

    Expression et localisation du système endocannabinoïde dans la rétine du singe

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    Les effets de la marijuana, un médicament utilisé par l’homme depuis des millénaires, sur le système visuel sont peu connus. Une meilleure connaissance de la distribution du système endocannabinoïde (eCB) de la rétine pourrait expliquer comment cette drogue affecte la vision. Cette étude vise à caractériser la distribution du récepteur cannabinoïde CB1 (CB1R) et de l’enzyme de dégradation FAAH (“fatty acid amide hydrolase”) des ligands du CB1R dans la rétine du singe Vert (Chlorocebus sabaeus). De plus, elle vise à déterminer quelles sous-populations cellulaires de la rétine expriment ces composantes. La plupart des études à ce jour ont été conduites surtout sur les rongeurs et peu de travaux ont été réalisés chez le singe. Notre étude vient donc combler cette carence. Par le biais de méthodes immunohistochimiques, nous avons investigué la localisation du CB1R et de l’enzyme FAAH à différentes excentricités rétiniennes, de la fovéa centralis vers la périphérie. Nos résultats, en accord avec notre hypothèse de travail, démontrent que CB1R et FAAH sont exprimés à travers toute la rétine mais avec, cependant, des différences notoires. Au niveau de la couche des photorécepteurs, CB1R est exprimé préférentiellement dans les cônes et ce patron d’expression suit la distribution des photorécepteurs centre-périphérie. De plus, CB1R se retrouve surtout dans les pédicules des cônes de la couche plexiforme externe. CB1R et FAAH sont abondants dans les cellules bipolaires tant au centre qu’en périphérie. Le soma et l’axone des cellules ganglionnaires expriment aussi CB1R et FAAH. Ces données suggèrent que le système eCB est présent à travers toute la rétine du primate et pourrait expliquer les perturbations visuelles entrainées par la marijuana, telles la photosensibilité et la vision des couleurs.The effects of marijuana, a drug that has been used by men for millennia, on the visual system are poorly understood. A better understanding of the distribution of the endocannabinoid system in the retina will help us explain how this drug affects vision. This study aims at characterizing the distribution of the endocannabinoid receptor CB1 (CB1R) and the enzyme degrading CB1R ligands, fatty acid amide hydrolase (FAAH) throughout the Green monkey retina (Chlorocebus sabaeus). In addition, it seeks to determine which sub-population of neurons expresses CB1R and the degrading enzyme FAAH. Most data on the endocannabinoid system have been acquired in rodents and studies on monkeys are rather scarce. We attempted to fill this void by using immunohistochemical methods to locate CB1R and FAAH at various eccentricities of the monkey retina, from the center to the far periphery. Our results, in agreement with our hypothesis, demonstrate that CB1R and FAAH are expressed throughout the retina. At the level of the photoreceptors, CB1R is expressed preferentially in cones rather than in rods, and this expression pattern follows the photoreceptors distribution. In the outer plexiform layer, CB1R immunoreactivity is predominantly concentrated in the cone pedicles. Although foveal cones are the main expressers of both CB1R and FAAH, these are also found in rod bipolar cells. The ganglion cell axons strongly express the CB1 receptor and the enzyme FAAH. These data suggest that the presence of CB1R throughout the retina may be responsible for the visual effects commonly reported by cannabis users, such as the increase in photosensitivity and alterations in color discrimination

    The Gateway to the Brain: Dissecting the Primate Eye

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    The visual system in humans is considered the gateway to the world and plays a principal role in the plethora of sensory, perceptual and cognitive processes. It is therefore not surprising that quality of vision is tied to quality of life . Despite widespread clinical and basic research surrounding the causes of visual disorders, many forms of visual impairments, such as retinitis pigmentosa and macular degeneration, lack effective treatments. Non-human primates have the closest general features of eye development to that of humans. Not only do they have a similar vascular anatomy, but amongst other mammals, primates have the unique characteristic of having a region in the temporal retina specialized for high visual acuity, the fovea1. Here we describe a general technique for dissecting the primate retina to provide tissue for retinal histology, immunohistochemistry, laser capture microdissection, as well as light and electron microscopy. With the extended use of the non-human primate as a translational model, our hope is that improved understanding of the retina will provide insights into effective approaches towards attenuating or reversing the negative impact of visual disorders on the quality of life of affected individuals

    A Comparative Analysis of the Endocannabinoid System in the Retina of Mice, Tree Shrews, and Monkeys

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    The endocannabinoid (eCB) system is widely expressed in various parts of the central nervous system, including the retina. The localization of the key eCB receptors, particularly CB1R and CB2R, has been recently reported in rodent and primate retinas with striking interspecies differences. Little is known about the distribution of the enzymes involved in the synthesis and degradation of these eCBs. We therefore examined the expression and localization of the main components of the eCB system in the retina of mice, tree shrews, and monkeys. We found that CB1R and FAAH distributions are well-preserved among these species. However, expression of NAPE-PLD is circumscribed to the photoreceptor layer only in monkeys. In contrast, CB2R expression is variable across these species; in mice, CB2R is found in retinal neurons but not in glial cells; in tree shrews, CB2R is expressed in Müller cell processes of the outer retina and in retinal neurons of the inner retina; in monkeys, CB2R is restricted to Müller cells. Finally, the expression patterns of MAGL and DAGLα are differently expressed across species. Overall, these results provide evidence that the eCB system is differently expressed in the retina of these mammals and suggest a distinctive role of eCBs in visual processing

    Mitochondrial Involvement in Vertebrate Speciation? The Case of Mito-nuclear Genetic Divergence in Chameleons

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    Compatibility between the nuclear (nDNA) and mitochondrial (mtDNA) genomes is important for organismal health. However, its significance for major evolutionary processes such as speciation is unclear, especially in vertebrates. We previously identified a sharp mtDNA-specific sequence divergence between morphologically indistinguishable chameleon populations (Chamaeleo chamaeleon recticrista) across an ancient Israeli marine barrier (Jezreel Valley). Because mtDNA introgression and gender-based dispersal were ruled out, we hypothesized that mtDNA spatial division was maintained by mito-nuclear functional compensation. Here, we studied RNA-seq generated from each of ten chameleons representing the north and south populations and identified candidate nonsynonymous substitutions (NSSs) matching the mtDNA spatial distribution. The most prominent NSS occurred in 14 nDNA-encoded mitochondrial proteins. Increased chameleon sample size (N = 70) confirmed the geographic differentiation in POLRMT, NDUFA5, ACO1, LYRM4, MARS2, and ACAD9. Structural and functionality evaluation of these NSSs revealed high functionality. Mathematical modeling suggested that this mito-nuclear spatial divergence is consistent with hybrid breakdown. We conclude that our presented evidence and mathematical model underline mito-nuclear interactions as a likely role player in incipient speciation in vertebrates

    Cannabinoid Receptors CB1 and CB2 Modulate the Electroretinographic Waves in Vervet Monkeys

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    The expression patterns of the cannabinoid receptor type 1 (CB1R) and the cannabinoid receptor type 2 (CB2R) are well documented in rodents and primates. In vervet monkeys, CB1R is present in the retinal neurons (photoreceptors, horizontal cells, bipolar cells, amacrine cells, and ganglion cells) and CB2R is exclusively found in the retinal glia (MĂĽller cells). However, the role of these cannabinoid receptors in normal primate retinal function remains elusive. Using full-field electroretinography in adult vervet monkeys, we recorded changes in neural activity following the blockade of CB1R and CB2R by the intravitreal administration of their antagonists (AM251 and AM630, resp.) in photopic and scotopic conditions. Our results show that AM251 increases the photopic a-wave amplitude at high flash intensities, whereas AM630 increases the amplitude of both the photopic a- and b-waves. In scotopic conditions, both blockers increased the b-wave amplitude but did not change the a-wave amplitude. These findings suggest an important role of CB1R and CB2R in primate retinal function
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