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Background
Although 5-HTTLPR has been shown to influence the risk of life stress-induced depression in the majority of studies, others have produced contradictory results, possibly due to weak effects and/or sample heterogeneity.
Methods
In the present study we investigated how age, type and intensity of life-stressors modulate the effect of 5-HTTLPR on depression and anxiety in a European population cohort of over 2300 subjects. Recent negative life events (RLE), childhood adversity (CHA), lifetime depression, Brief Symptoms Inventory (BSI) depression and anxiety scores were determined in each subject. Besides traditional statistical analysis we calculated Bayesian effect strength and relevance of 5-HTTLPR genotypes in specified models.
Results
The short (s) low expressing allele showed association with increased risk of depression related phenotypes, but all nominally significant effects would turn to non-significant after correction for multiple testing in the traditional analysis. Bayesian effect strength and relevance analysis, however, confirmed the role of 5-HTTLPR. Regarding current (BSI) and lifetime depression 5-HTTLPR-by-RLE interactions were confirmed. Main effect, with other words direct association, was supported with BSI anxiety. With more frequent RLE the prevalence or symptoms of depression increased in ss carriers. Although CHA failed to show an interaction with 5-HTTLPR, in young subjects CHA sensitized towards the depression promoting effect of even mild RLE. Furthermore, the direct association of anxiety with the s allele was driven by young (\(\leq\)30) individuals.
Limitations
Our study is cross-sectional and applies self-report questionnaires.
Conclusions
Albeit 5-HTTLPR has only weak/moderate effects, the s allele is directly associated with anxiety and modulates development of depression in homogeneous subgroups.
Das Nebennierenrindenkarzinom (NNR-Ca) gehört mit einer Inzidenz von 1-2/1000000 zu den seltenen malignen Neubildungen. Neben Sarkomen, Hirntumoren, Brustkrebs und Leukämie gehört das NNR-Ca zu den Kerntumoren, durch die das selten vorkommende autosomal dominante Tumor-Prädispositions Syndrom, das Li Fraumeni Syndrom (LFS) gekennzeichnet ist. Das LFS wird mit Keimbahnmutationen im Tumorsuppressor Gen TP53 in Verbindung gebracht. Die vorliegende Arbeit untersucht TP53 Keimbahnmutationen und -polymorphismen und ihre Auswirkung auf klinische Faktoren bei einem großen Kollektiv von erwachsenen NNR-Ca Patienten.
Es wurde DNS aus Blut und teilweise aus Tumorgewebe von Patienten aus dem Deutschen Nebennierenrindenkarzinom Register extrahiert und die Exons 2 bis 11 von TP53 sequenziert. Darüber hinaus wurde der Nachweis der Mutationen und eines Loss of Heterozgosity von TP53 im Tumorgewebe und die immunhistochemische Färbung von p53 vorgenommen. Die anschließende Auswertung der Daten erfolgte unter Einbeziehung des klinischen Verlaufs der Krankheit bei den Patienten.
In dieser Arbeit konnten vier NNR-Ca Patienten (3,9 %) mit mindestens einer Keimbahnmutation im TP53 identifiziert werden, bei den unter 40-jährigen entspricht dies einem Anteil von 13,0 %. Unter der Altersgrenze von 40 Jahren sollte daher ein TP53 Mutationsscreening erwogen werden.
Die Auswertung der Polymorphismen zeigte, dass diese einen Einfluss auf die Entstehung und den klinischen Verlauf des NNR-Cas zu haben scheinen, jedoch weitere Studien nötig sind.
The olfactory system of leafcutting ants: neuroanatomy and the correlation to social organization
(2009)
In leaf-cutting ants (genera Atta and Acromyrmex), the worker caste exhibits a pronounced size-polymorphism, and division of labor is largely dependent on worker size (alloethism). Behavioral studies have shown a rich diversity of olfactory-guided behaviors, and the olfactory system seems to be highly developed and very sensitive. To allow fine-tuned behavioral responses to different tasks, adaptations within the olfactory system of different sized workers are expected. In a recent study, two different phenotypes of the antennal lobe of Atta vollenweideri workers were found: MG- and RG-phenotype (with and without a macroglomerulus, MG). The existence of the macroglomerulus is correlated to the body size of workers, with small workers showing the RG-phenotype and large workers showing the MG-phenotype. In the MG, the information about the releaser component of the trail-pheromone is processed. In the first part of my PhD-project, I focus on quantifying behavioral differences between different sized workers in Atta vollenweideri. The study analyzes the trail following behavior; which can be generally performed by all workers. An artificial trail consisting of the releaser component of the trail-pheromone in decreasing concentration was used to test the trail-following performance of individual workers. The trail-following performance of the polymorphic workers is depended of the existence of the MG in the antennal lobe. Workers possessing the MG-phenotype were significantly better in following a decreasing trail then workers showing the RG-phenotype. In the second part I address the question if there are more structural differences, besides the MG, in the olfactory system of different sized workers. Therefore I analyze whether the glomerular numbers are related to worker size. The antennal lobes of small workers contain ~390 glomeruli (low-number; LN-phenotype), and in large workers I found a substantially higher number of ~440 glomeruli (high-number; HN-phenotype). All LN-phenotype workers and some of the small HN-phenotype workers do not possess an MG (LN-RG-phenotype and HN-RG-phenotype) at all, whereas the remaining majority of HN-phenotype workers do possess an MG (HN-MG-phenotype). Mass-stainings of antennal olfactory receptor neurons revealed that the sensory tracts divide the antennal lobe into six clusters of glomeruli (T1-T6). In the T4-cluster ~50 glomeruli are missing in the LN-phenotype workers. Selective staining of single sensilla and their associated receptor neurons showed that T4-glomeruli are innervated by receptor neurons from the main type of olfactory sensilla, the Sensilla trichodea curvata which are also projecting to glomeruli in all other clusters. The other type of olfactory sensilla, the Sensilla basiconica, exclusively innervates T6-glomeruli. Quantitative analyses revealed a correlation between the number of Sensilla basiconica and the volume of T6 glomeruli in different sized workers. The results of both behavioral and neuroanatomical studies in Atta vollenweideri suggest that developmental plasticity of antennal-lobe phenotypes promotes differences in olfactory-guided behavior which may underlie task specialization within ant colonies. The last part of my project focuses on the evolutionary origin of the macroglomerulus and the number of glomeruli in the antennal lobe. I compared the number, volumes and position of the glomeruli of the antennal lobe of 25 different species from all three major Attini groups (lower, higher and leaf-cutting Attini). The antennal lobes of all investigated Attini comprise a high number of glomeruli (257-630). The highest number was found in Apterostigma cf. mayri. This species is at a basal position within the Attini phylogeny, and a high number of glomeruli might have been advantageous in the evolution of the advanced olfactory systems of this Taxa. The macroglomerulus can be found in all investigated leaf-cutting Attini, but in none of the lower and higher Attini species. It is found only in large workers, and is located close to the entrance of the antennal nerve in all investigated species. The results indicate that the presence of a macroglomerulus in large workers of leaf-cutting Attini is a derived overexpression of a trait in the polymorphic leaf-cutting species. It presumably represents an olfactory adaptation to elaborate foraging and mass recruitment systems, and adds to the complexity of division of labor and social organization known for this group.
Sex-specific and caste-specific brain adaptations related to spatial orientation in Cataglyphis ants
(2021)
Cataglyphis desert ants are charismatic central place foragers. After long-ranging foraging trips, individual workers navigate back to their nest relying mostly on visual cues. The reproductive caste faces other orientation challenges, i.e. mate finding and colony foundation. Here we compare brain structures involved in spatial orientation of Cataglyphis nodus males, gynes, and foragers by quantifying relative neuropil volumes associated with two visual pathways, and numbers and volumes of antennal lobe (AL) olfactory glomeruli. Furthermore, we determined absolute numbers of synaptic complexes in visual and olfactory regions of the mushroom bodies (MB) and a major relay station of the sky-compass pathway to the central complex (CX). Both female castes possess enlarged brain centers for sensory integration, learning, and memory, reflected in voluminous MBs containing about twice the numbers of synaptic complexes compared with males. Overall, male brains are smaller compared with both female castes, but the relative volumes of the optic lobes and CX are enlarged indicating the importance of visual guidance during innate behaviors. Male ALs contain greatly enlarged glomeruli, presumably involved in sex-pheromone detection. Adaptations at both the neuropil and synaptic levels clearly reflect differences in sex-specific and caste-specific demands for sensory processing and behavioral plasticity underlying spatial orientation.
Many polymorphisms are linked to alternative reproductive strategies. In animals, this is particularly common in males. Ant queens are an important exception. The case of ant queen size dimorphisms has not been studied in sufficient detail, and thus this thesis aimed at elucidating causes and consequences of the different size of small (microgynous) and large (macrogynous)ant queens using the North American ant species Leptothorax rugatulus as a model system. Employing neutral genetic markers, no evidence for a taxonomically relevant separation of the gene pools of macrogynes and microgynes was found. Queens in polygynous colonies were highly related to each other, supporting the hypothesis that colonies with more than one queen commonly arise by secondary polygyny, i.e. by the adoption of daughter queens into their natal colonies. These results and conclusions are also true for the newly discovered queen size polymorphism in Leptothorax cf. andrei. Several lines of evidence favor the view that macrogynes predominantly found their colonies independently, while microgynes are specialized for dependent colony founding by readoption. Under natural conditions, mother and daughter size are highly correlated and this is also true for laboratory colonies. However, the size of developing queens is influenced by queens present in the colony. Comparing populations across the distribution range, it turns out that queen morphology (head width and ovariole number) is more differentiated among populations than worker morphology (coloration, multivariate size and shape), colony characteristics (queen and worker number per colony) or neutral genetic variation. Northern and southern populations differed consistently which indicates the possibility of two different species. The queen size dimorphism in L. rugatulus did neither influence the sex ratio produced by a colony, nor its ratio of workers to gynes. However, the sex ratio covaried strongly across populations with the average number of queens per colony in accordance with sex ratio theory. At the colony level, sex ratio could not be explained by current theory and a hypothesis at the colony-level was suggested. Furthermore, queen body size has no significant influence on the amount of reproductive skew among queens. Generally, the skew in L. rugatulus is low, and supports incomplete control models, rather than the classic skew models. In eight of fourteen mixed or microgynous colonies, the relative contributions of individual queens to workers, gynes and males were significantly different. This was mainly due to the fact that relative body size was negatively correlated with the ratio of gynes to workers produced. This supports the kin conflict over caste determination hypothesis which views microgyny as a selfish reproductive tactic.
Bei 63 Patienten mit DAT (entsprechend den NINCDS-ADRDA- und ICD 10-Kriterien) und 162 nicht-dementen psychiatrischen Patienten (insgesamt 143 Frauen und 82 Männern, also 225 Probanden) wurden die Gene für Apolipoprotein E (Apo E), Apolipoprotein CI (Apo CI), α1-Antichymtrypsin (ACT), Low-density Lipoprotein Rezeptor Exon 8 und 13 (8-LDL und 13-LDL) und die Lipoproteinlipase Intron 6 und 8 (PvuII-Lip und HindIII-Lip) nach PCR-Amplifikation, Enzymrestriktion und elektrophoretischer Auftrennung auf Restriktionsfragment-Längenpolymorphismen untersucht. Das Apo-E-Allel 4, mittlerweile als Risikofaktor für die DAT etabliert, und das Apo-CI-Allel A2 zeigten sich in der Indexgruppe signifikant erhöht. In Bezug auf den Polymorphismus im Exon 8 des LDL-Rezeptors (Alanin/Threonin) ergab sich ebenfalls der Trend einer Prädominanz des Thr-Allels in der Indexgruppe. Die Verteilung der Polymorphismen von ACT und Lipoproteinlipase war in beiden beobachteten Gruppen ähnlich. Aus den vorliegenden Daten geht hervor, dass der Polymorphismus des Apo E4 als Hauptrisikofaktor für die Entwicklung einer sporadischen DAT angesehen werden kann und auch Apo CI möglicherweise einen Suszeptibilitätsmarker darstellt, der in der Pathogenese der DAT durch die Verhinderung der Bindung von Apo E4 an das LDL-assoziierte Protein möglicherweise eine wichtige Rolle spielt. Darüber hinaus ergibt sich aus der vorliegenden Studie ein Hinweis auf eine mögliche Rolle des LDL-Rezeptorgens. Weiterführende Untersuchungen mit größeren Stichproben erscheinen jedoch dringend erforderlich. Insgesamt sprechen die Ergebnisse dafür, dass der Lipidstoffwechsel in der Pathogenese der sporadischen DAT von erheblicher Bedeutung ist.
A bis(squaraine) dye equipped with alkyl and oligoethyleneglycol chains was synthesized by connecting two dicyanomethylene substituted squaraine dyes with a phenylene spacer unit. The aggregation behavior of this bis(squaraine) was investigated in non-polar toluene/tetrachloroethane (98:2) solvent mixture, which revealed competing cooperative self-assembly pathways into two supramolecular polymorphs with entirely different packing structures and UV/Vis/NIR absorption properties. The self-assembly pathway can be controlled by the cooling rate from a heated solution of the monomers. For both polymorphs, quasi-equilibrium conditions between monomers and the respective aggregates can be established to derive thermodynamic parameters and insights into the self-assembly mechanisms. AFM measurements revealed a nanosheet structure with a height of 2 nm for the thermodynamically more stable polymorph and a tubular nanorod structure with a helical pitch of 13 nm and a diameter of 5 nm for the kinetically favored polymorph. Together with wide angle X-ray scattering measurements, packing models were derived: the thermodynamic polymorph consists of brick-work type nanosheets that exhibit red-shifted absorption bands as typical for J-aggregates, while the nanorod polymorph consists of eight supramolecular polymer strands of the bis(squaraine) intertwined to form a chimney-type tubular structure. The absorption of this aggregate covers a large spectral range from 550 to 875 nm, which cannot be rationalized by the conventional exciton theory. By applying the Essential States Model and considering intermolecular charge transfer, the aggregate spectrum was adequately reproduced, revealing that the broad absorption spectrum is due to pronounced donor-acceptor overlap within the bis(squaraine) nanorods. The latter is also responsible for the pronounced bathochromic shift observed for the nanosheet structure as a result of the slip-stacked arranged squaraine chromophores.
Background: IL-12p40 plays an important role in the activation of the T-cell lines like Th17 and Th1-cells. Theses cells are crucial in the pathogenesis of juvenile idiopathic arthritis. A polymorphism in its promoter region and the genotype IL12p40 pro1.1 leads to a higher production of IL-12p40. We studied whether there is a difference in the distribution of the genotype in patients with JIA and the healthy population.
Methods: In 883 patients and 321 healthy controls the IL-12p40 promoter genotype was identified by ARMS-PCR.
Results: There is no association of IL-12p40 pro polymorphism neither in patients with JIA compared to controls nor in subtypes of JIA compared to oligoarthritis. We found a non-significant tendency of a higher prevalence of the genotype pro1.1 in systemic arthritis (32.4 %) and in rheumatoid factor negative polyarthritis (30.5 %) and a lower pro1.1 genotype in persistent oligoarthritis (20.7 %) and in enthesitis-related arthritis (17 %). Likelihood of the occurrence of genotype IL12-p40 pro1.1 in patients with systemic arthritis (OR 1.722, CI 95 % 1.344-2.615, p 0.0129) and RF-negative polyarthritis (OR 1.576, CI 95 % 1.046-2.376, p 0.0367) compared to persistent oligoarthritis was significantly higher. This was also true for comparison of their homozygous genotypes IL-12p40 pro 1.1 and 2.2 in systemic arthritis (OR 1.779, CI 95 % 1.045-3.029, p 0.0338). However, in Bonferroni correction for multiple hypothesis this was not significant.
Conclusion: A tendency of a higher prevalence of the genotype IL-12p40 pro1.1 in systemic arthritis and in rheumatoid factor negative polyarthritis was observed but not significant. Further investigations should be done to clarify the role IL-12p40 in the different subtypes of JIA.
In mehreren klinischen und außerklinischen Populationen werden die allelischen Variationen der Monoaminoxidase-A mit aggressivem, ängstlichem und abhängigem Verhalten in Verbindung gebracht. In unserer Studie haben wir den Einfluss von Allelvariationen der Monoaminoxidase-A auf aggressivitätsassoziierte Persönlichkeitsmerkmale und die Erkrankungswahrscheinlichkeit für Probanden mit Persönlichkeitsstörungen untersucht. Die Hypothese ist, dass ein geschlechtsspezifischer Zusammenhang zwischen der Allelvariation mit konsekutiv geringerer Enzymaktivität und Cluster-B-Persönlichkeitsstörungen nach DSM-VI, antisozialen Persönlichkeitsstörungen, sowie den Persönlichkeitsmerkmalen „Suche nach neuen Erfahrungen“ (TPQ), Neurotizismus, Verträglichkeit und Gewissenhaftigkeit bestehen könnte (NEO-PI-R). Der Genotyp des MAOA-Polymorphismus MAO-LPR wurde an 566 Patienten mit Persönlichkeitsstörungen und an 281 Probanden einer gesunden Kontrollgruppe untersucht. Der MAOA-LPR-Genotyp zeigt eine signifikante Korrelation mit Cluster-B-Persönlichkeitsstörungen nach DSM-IV (chi2=7.77, p=0.005, df=1). Dabei sind 26% der Probanden mit einer Persönlichkeitsstörung aus dem B-Cluster homo- oder hemizygot für den MAOA-Genotyp, der zur Ausprägung einer Variante mit geringer Enzymaktivität führt. Im Vergleich weisen dagegen nur 16.4% der Probanden aus der Kontrollgruppe diesen Genotyp auf. Zusammenhänge zwischen Allelvariationen der MAOA-Aktivität und Persönlichkeitsmerkmalen, die mit impulsivem und aggressivem Verhalten in Verbindung gebracht werden, erweisen sich als unbeständig. Eine Korrelation mit Cluster-C-Persönlichkeitsstörungen kann nicht nachgewiesen werden. Unsere Ergebnisse zeigen einen Zusammenhang zwischen Hemi- und Homzygotität der MAOA-LPR-Variante mit konsekutiv geringer Enzymaktivität und Cluster-B-Persönlichkeitsstörungen. Für den Einfluss der mit geringerer MAOA-Aktivität einhergehenden Variationen des Genotyps auf Aggression, Impulsivität und gewalttätiges Verhalten beim Menschen gibt es Hinweise (Shih et al. 1999). Immer häufiger werden Beweise für ein Zusammenwirken von genetischen Determinanten und Umwelteinflüssen gefunden. Unsere Erkenntnisse unterstützen weiterhin die These, dass die genetische Determination der MAOA-Aktivität auch in bestimmtem Maße zur Ausprägung des Gleichgewichts zwischen hyper- (impulsiv-aggressiv) und hyporeaktivem (ängstlich-depressiv) Verhalten beiträgt.
Neuro-immune alterations in the peripheral and central nervous system play a role in the pathophysiology of chronic pain, and non-coding RNAs – and microRNAs (miRNAs) in particular – regulate both immune and neuronal processes. Specifically, miRNAs control macromolecular complexes in neurons, glia and immune cells and regulate signals used for neuro-immune communication in the pain pathway. Therefore, miRNAs may be hypothesized as critically important master switches modulating chronic pain. In particular, understanding the concerted function of miRNA in the regulation of nociception and endogenous analgesia and defining the importance of miRNAs in the circuitries and cognitive, emotional and behavioral components involved in pain is expected to shed new light on the enigmatic pathophysiology of neuropathic pain, migraine and complex regional pain syndrome. Specific miRNAs may evolve as new druggable molecular targets for pain prevention and relief. Furthermore, predisposing miRNA expression patterns and inter-individual variations and polymorphisms in miRNAs and/or their binding sites may serve as biomarkers for pain and help to predict individual risks for certain types of pain and responsiveness to analgesic drugs. miRNA-based diagnostics are expected to develop into hands-on tools that allow better patient stratification, improved mechanism-based treatment, and targeted prevention strategies for high risk individuals.