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Obtaining sufficient numbers of functional natural killer (NK) cells is crucial for the success of NK-cell-based adoptive immunotherapies. While expansion from peripheral blood (PB) is the current method of choice, ex vivo generation of NK cells from hematopoietic stem and progenitor cells (HSCs) may constitute an attractive alternative. Thereby, HSCs mobilized into peripheral blood (PB-CD34+) represent a valuable starting material, but the rather poor and donor-dependent differentiation of isolated PB-CD34+ cells into NK cells observed in earlier studies still represents a major hurdle. Here, we report a refined approach based on ex vivo culture of PB-CD34+ cells with optimized cytokine cocktails that reliably generates functionally mature NK cells, as assessed by analyzing NK-cell-associated surface markers and cytotoxicity. To further enhance NK cell expansion, we generated K562 feeder cells co-expressing 4-1BB ligand and membrane-anchored IL-15 and IL-21. Co-culture of PB-derived NK cells and NK cells that were ex-vivo-differentiated from HSCs with these feeder cells dramatically improved NK cell expansion, and fully compensated for donor-to-donor variability observed during only cytokine-based propagation. Our findings suggest mobilized PB-CD34+ cells expanded and differentiated according to this two-step protocol as a promising source for the generation of allogeneic NK cells for adoptive cancer immunotherapy.
Natural killer (NK) cells are highly specialized effectors of the innate immune system that hold promise for adoptive cancer immunotherapy. Their cell killing activity is primarily mediated by the pro-apoptotic serine protease granzyme B (GrB), which enters targets cells with the help of the pore-forming protein perforin. We investigated expression of a chimeric GrB fusion protein in NK cells as a means to augment their antitumoral activity. For selective targeting to tumor cells, we fused the epidermal growth factor receptor (EGFR) peptide ligand transforming growth factor α (TGFα) to human pre-pro-GrB. Established human NKL natural killer cells transduced with a lentiviral vector expressed this GrB-TGFα (GrB-T) molecule in amounts comparable to endogenous wildtype GrB. Activation of the genetically modified NK cells by cognate target cells resulted in the release of GrB-T together with endogenous granzymes and perforin, which augmented the effector cells' natural cytotoxicity against NK-sensitive tumor cells. Likewise, GrB-T was released into the extracellular space upon induction of degranulation with PMA and ionomycin. Secreted GrB-T fusion protein displayed specific binding to EGFR-overexpressing tumor cells, enzymatic activity, and selective target cell killing in the presence of an endosomolytic activity. Our data demonstrate that ectopic expression of a targeted GrB fusion protein in NK cells is feasible and can enhance antitumoral activity of the effector cells.
Paricalcitol is approved for prevention and therapy of secondary hyperparathyroidism (sHPT) in patients with chronic kidney disease (CKD), with only short-term data in clinical routine settings. A 12-month observational study was conducted in Germany and Austria (90 centers, 761 patients) from 2008 to 2013. Laboratory values, demographical, and clinical data were documented in 629 dialysis patients and 119 predialysis patients. In predialysis patients, median intact parathormone (iPTH) was 180.0 pg/mL (n = 105) at the start of the study, 115.7 pg/mL (n = 105) at last documentation, and 151.8 pg/mL (n = 50) at month 12, with 32.4% of the last documented iPTH values in the KDOQI (Kidney Disease Outcomes Quality Initiative) target range. In dialysis patients, median iPTH was 425.5 pg/mL (n = 569) at study start, 262.3 pg/mL (n = 569) at last documentation, and 266.1 pg/mL (n = 318) at month 12, with 36.5% of dialysis patients in the KDOQI target range. Intravenous paricalcitol showed more homogenous iPTH control than oral treatment. Combined analysis of all dialysis patients indicated comparable and stable mean serum calcium and phosphate levels throughout the study. Clinical symptoms, such as itching, bone pain, and fatigue, were improved compared with study entry. The spectrum and frequency of adverse events mirrored the known pattern for patients on dialysis. Paricalcitol is efficacious and has a consistent safety profile in sHPT over 12 months.
Metrical patterning and rhyme are frequently employed in poetry but also in infant-directed speech, play, rites, and festive events. Drawing on four line-stanzas from nineteenth and twentieth German poetry that feature end rhyme and regular meter, the present study tested the hypothesis that meter and rhyme have an impact on aesthetic liking, emotional involvement, and affective valence attributions. Hypotheses that postulate such effects have been advocated ever since ancient rhetoric and poetics, yet they have barely been empirically tested. More recently, in the field of cognitive poetics, these traditional assumptions have been readopted into a general cognitive framework. In the present experiment, we tested the influence of meter and rhyme as well as their interaction with lexicality in the aesthetic and emotional perception of poetry. Participants listened to stanzas that were systematically modified with regard to meter and rhyme and rated them. Both rhyme and regular meter led to enhanced aesthetic appreciation, higher intensity in processing, and more positively perceived and felt emotions, with the latter finding being mediated by lexicality. Together these findings clearly show that both features significantly contribute to the aesthetic and emotional perception of poetry and thus confirm assumptions about their impact put forward by cognitive poetics. The present results are explained within the theoretical framework of cognitive fluency, which links structural features of poetry with aesthetic and emotional appraisal.
Die Gegenübertragung hat sich mittlerweile zu einem der wichtigsten Instrumente der stationären psychosomatischen Therapie entwickelt. Ihr kommt in der psychodynamischen Psychotherapie für das Verständnis der unbewussten Konflikte und für den damit zusammenhängenden Behandlungserfolg eine zentrale Funktion zu. Dies gilt für die Einzeltherapie, aber auch für die integrative stationäre psychodynamische Therapie und deren „Herzstück“ (Janssen 2004) - das multiprofessionelle Team. Die Ziele der Arbeit bestehen - abgesehen von der Beschreibung der Faktorenstruktur und Reliabilität des Gegenübertragungsfragebogens - darin, herauszufinden, ob sich a) die Gegenübertragung in unterschiedlichen Therapieverfahren unterscheidet, b) in welcher Weise die Gegenübertragung mit dem Beziehungserleben und der Beziehungsgestaltung des Patienten zusammenhängt, c) ob die Gegenübertragung mit der Belastung des Patienten zusammenhängt und d) ob sich die Gegenübertragung abhängig von der Diagnose unterscheidet.
Methode: Dazu wurde mithilfe des Gegenübertragungsfragebogens (CTQ-D)
die Gegenübertragung von 137 Patienten durch mehrere Therapeuten (Ärzte, Psychologen und Pflegekräfte) aus zwei psychosomatischen Kliniken zu Therapiebeginn und zum Therapieende erhoben. Insgesamt flossen 1131 Fragebögen in die Auswertung mit ein. Die Faktorenanalyse des CTQ-D ergab eine Lösung mit sieben statistisch und klinisch kohärenten Faktoren: 1) aggressiv-resignative GÜ, 2) positiv-zugeneigte GÜ, 3) überwältigt-verängstigte GÜ, 4) protektiv-elterliche GÜ, 5) desinteressierte GÜ, 6) verstrickte GÜ und 7) sexualisierte GÜ. Die Patienten füllten die Symptomcheckliste (SCL-90R), den Helping Alliance Questionaire (HAQ), das Inventar zur Erfassung interpersonaler Probleme (IIP) und den Fragebogen zur Erhebung von Persönlichkeitsstörungen (ADP-IV) zu Beginn und zum Ende der Therapie aus. Ergebnisse: Es konnten einige spezifische und signifikante Zusammenhänge zwischen der Gegenübertragung der Therapeuten und den Selbstbeurteilungsinstrumenten der Patienten nachgewiesen werden: a) Konfliktorientierte Therapieverfahren (Gesprächstherapien) erzeugen bei den Therapeuten höhere aggressiv-resignative Gegenübertragung, erlebnisorientierte Therapieverfahren (Körpertherapie und Gestaltungstherapie) rufen höhere positiv-zugeneigte, protektiv-elterliche und verstrickte Gegenübertragung hervor. b) Die Beziehungszufriedenheit der Patienten ist
umso größer, je geringer die aggressiv-resignative Gegenübertragung von den Therapeuten wahrgenommen wird und die Therapiezufriedenheit ist umso größer, je geringer die aggressiv-resignative, überwältigt-verängstigte und protektiv-elterliche Gegenübertragung ausgeprägt ist. Ein hoher IIP-Wert bei den Patienten hängt mit dem Erleben von überwältigt-verängstigter Gegenübertragung zusammen. c) Patienten mit hohem GSI rufen bei den Therapeuten hohe aggressiv-resignative, überwältigt-verängstigte, desinteressierte und geringe positiv-zugeneigte Gegenübertragung hervor. Verstrickte, positiv-zugeneigte und sexualisierte Gegenübertragung hängen mit einem guten Therapieverlauf zusammen, aggressiv-resignative und desinteressierte Gegenübertragung deuten auf eine schlechte Entwicklung im Verlauf hin. d) Die höchsten Werte der aggressiv-resignativen, überwältigtverängstigten und protektiv-elterlichen GÜ und die geringste positiv-zugeneigte GÜ wird bei der Gruppe der Persönlichkeitsstörungen wahrgenommen. Den höchsten Wert der positiv-zugeneigten und der verstrickten GÜ erreicht die Gruppe der Essstörungen. Somatoforme Störungen rufen in den Therapeuten ein hohes Maß an Desinteresse hervor. Die Gruppe der affektiven Störungen erzeugt bei den Therapeuten in allen Dimensionen geringe Gegenübertragungsgefühle. Folgerung: Die Ergebnisse verdeutlichen, dass die Gegenübertragung ein aussagekräftiges Instrument zur Beurteilung der Beziehungsgestaltung, der Belastung und der Verlaufsbeurteilung der Patienten auf einer psychosomatischen Station darstellt. Sie betonen auch die Bedeutung der Auflösung negativer Gegenübertragungskonstellationen durch Supervisionen und Teambesprechungen im stationären Alltag. Dabei bedürfen schwierige Patienten, beispielsweise mit somatoformer Störung oder Persönlichkeitsstörung besonderer Aufmerksamkeit. Dem CTQ-D kann neben dem Einsatz als wissenschaftlichem Instrument im Rahmen der Ausbildung und im klinischen Alltag zur Vorhersage des Therapieverlaufs umfassende Bedeutung zukommen.
Acute myeloid leukemia (AML) is characterized by an aberrant self-renewal of hematopoietic stem cells (HSC) and a block in differentiation. The major therapeutic challenge is the characterization of the leukemic stem cell as a target for the eradication of the disease. Until now the biology of AML-associated fusion proteins (AAFPs), such as the t(15;17)-PML/RARα, t(8;21)-RUNX1/RUNX1T1 and t(6;9)-DEK/NUP214, all able to induce AML in mice, was investigated in different models and genetic backgrounds, not directly comparable to each other. To avoid the bias of different techniques and models we expressed these three AML-inducing oncogenes in an identical genetic background and compared their influence on the HSC compartment in vitro and in vivo.
These AAFPs exerted differential effects on HSCs and PML/RARα, similar to DEK/NUP214, induced a leukemic phenotype from a small subpopulation of HSCs with a surface marker pattern of long-term HSC and characterized by activated STAT3 and 5. In contrast the established AML occurred from mature populations in the bone marrow. The activation of STAT5 by PML/RARα and DEK/NUP214 was confirmed in t(15;17)(PML/RARα) and t(6;9)(DEK/NUP214)-positive patients as compared to normal CD34+ cells. The activation of STAT5 was reduced upon the exposure to Arsenic which was accompanied by apoptosis in both PML/RARα- and DEK/NUP214-positive leukemic cells. These findings indicate that in AML the activation of STATs plays a decisive role in the biology of the leukemic stem cell. Furthermore we establish exposure to arsenic as a novel concept for the treatment of this high risk t(6;9)-positive AML.
The E4 allele of the ApoE gene has consistently been shown to be related to an increased risk of Alzheimer's disease (AD). The E4 allele is also associated with functional and structural grey matter (GM) changes in healthy young, middle-aged and older subjects. Here, we assess volumes of deep grey matter structures of 22 healthy younger ApoE4 carriers and 22 non-carriers (20–38 years). Volumes of the nucleus accumbens, amygdala, caudate nucleus, hippocampus, pallidum, putamen, thalamus and brain stem were calculated by FMRIB's Integrated Registration and Segmentation Tool (FIRST) algorithm. A significant drop in volume was found in the right hippocampus of ApoE4 carriers (ApoE4+) relative to non-carriers (ApoE4−), while there was a borderline significant decrease in the volume of the left hippocampus of ApoE4 carriers. The volumes of no other structures were found to be significantly affected by genotype. Atrophy has been found to be a sensitive marker of neurodegenerative changes, and our results show that within a healthy young population, the presence of the ApoE4+ carrier gene leads to volume reduction in a structure that is vitally important for memory formation. Our results suggest that the hippocampus may be particularly vulnerable to further degeneration in ApoE4 carriers as they enter middle and old age. Although volume reductions were noted bilaterally in the hippocampus, atrophy was more pronounced in the right hippocampus. This finding relates to previous work which has noted a compensatory increase in right hemisphere activity in ApoE4 carriers in response to preclinical declines in memory function. Possession of the ApoE4 allele may lead to greater predilection for right hemisphere atrophy even in healthy young subjects in their twenties.
The apolipoprotein E4 (ApoE4) is an established risk factor for Alzheimer's disease (AD). Previous work has shown that this allele is associated with functional (fMRI) changes as well structural grey matter (GM) changes in healthy young, middle-aged and older subjects. Here, we assess the diffusion characteristics and the white matter (WM) tracts of healthy young (20-38 years) ApoE4 carriers and non-carriers. No significant differences in diffusion indices were found between young carriers (ApoE4+) and non-carriers (ApoE4-). There were also no significant differences between the groups in terms of normalised GM or WM volume. A feature selection algorithm (ReliefF) was used to select the most salient voxels from the diffusion data for subsequent classification with support vector machines (SVMs). SVMs were capable of classifying ApoE4 carrier and non-carrier groups with an extremely high level of accuracy. The top 500 voxels selected by ReliefF were then used as seeds for tractography which identified a WM network that included regions of the parietal lobe, the cingulum bundle and the dorsolateral frontal lobe. There was a non-significant decrease in volume of this WM network in the ApoE4 carrier group. Our results indicate that there are subtle WM differences between healthy young ApoE4 carriers and non-carriers and that the WM network identified may be particularly vulnerable to further degeneration in ApoE4 carriers as they enter middle and old age.
The study of multiple indices of diffusion, including axial (DA), radial (DR) and mean diffusion (MD), as well as fractional anisotropy (FA), enables WM damage in Alzheimer's disease (AD) to be assessed in detail. Here, tract-based spatial statistics (TBSS) were performed on scans of 40 healthy elders, 19 non-amnestic MCI (MCIna) subjects, 14 amnestic MCI (MCIa) subjects and 9 AD patients. Significantly higher DA was found in MCIna subjects compared to healthy elders in the right posterior cingulum/precuneus. Significantly higher DA was also found in MCIa subjects compared to healthy elders in the left prefrontal cortex, particularly in the forceps minor and uncinate fasciculus. In the MCIa versus MCIna comparison, significantly higher DA was found in large areas of the left prefrontal cortex. For AD patients, the overlap of FA and DR changes and the overlap of FA and MD changes were seen in temporal, parietal and frontal lobes, as well as the corpus callosum and fornix. Analysis of differences between the AD versus MCIna, and AD versus MCIa contrasts, highlighted regions that are increasingly compromised in more severe disease stages. Microstructural damage independent of gross tissue loss was widespread in later disease stages. Our findings suggest a scheme where WM damage begins in the core memory network of the temporal lobe, cingulum and prefrontal regions, and spreads beyond these regions in later stages. DA and MD indices were most sensitive at detecting early changes in MCIa.
Research over the past few years has provided fascinating results indicating that biglycan, besides being a ubiquitous structural component of the extracellular matrix (ECM), may act as a signaling molecule. Proteolytically released from the ECM, biglycan acts as a danger signal signifying tissue stress or injury. As a ligand of innate immunity receptors and activator of the inflammasome, biglycan stimulates multifunctional proinflammatory signaling linking the innate to the adaptive immune response. By clustering several types of receptors on the cell surface and orchestrating their downstream signaling events, biglycan is capable to autonomously trigger sterile inflammation and to potentiate the inflammatory response to microbial invasion. Besides operating in a broad biological context, biglycan also displays tissue-specific affinities to certain receptors and structural components, thereby playing a crucial role in bone formation, muscle integrity, and synapse stability at the neuromuscular junction. This review attempts to provide a concise summary of recent data regarding the involvement of biglycan in the regulation of inflammation and the musculoskeletal system, pointing out both a signaling and a structural role for this proteoglycan. The potential of biglycan as a novel therapeutic target or agent for the treatment of inflammatory diseases and skeletal muscular dystrophies is also addressed.