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81.
A panel of 120 HLA-A, -B, -C and -DR typed Austrians has been typed for HLA-D by the use of 26 Homozygous Typing Cells (HTC). The new Austrian HTC, partly defined by the 9th International Histocompatibility Workshop (9WS), partly by a checkerboard experiment with internationally well defined reference HTC, type for HLA-Dw1 to -Dw7 and an obviously new, so far unknown HLA-DR2 related HLA-D determinant. Associations of HLA-DR and HLA-D antigens in Austria and their frequencies are determined. Antigen frequencies in Austria are compared to frequencies in other Caucasoid populations. 相似文献
82.
Aline Bamia Maha Sinane Rima Naït-Saïdi Jamila Dhiab Marc Keruzor Phu Hai Nguyen Agathe Bertho Flavie Soubigou Sophie Halliez Marc Blondel Capucine Trollet Martine Simonelig Gaëlle Friocourt Vincent Bringue Frdric Bihel Ccile Voisset 《Neurotherapeutics》2021,18(2):1137
Prion diseases are caused by the propagation of PrPSc, the pathological conformation of the PrPC prion protein. The molecular mechanisms underlying PrPSc propagation are still unsolved and no therapeutic solution is currently available. We thus sought to identify new anti-prion molecules and found that flunarizine inhibited PrPSc propagation in cell culture and significantly prolonged survival of prion-infected mice. Using an in silico therapeutic repositioning approach based on similarities with flunarizine chemical structure, we tested azelastine, duloxetine, ebastine, loperamide and metixene and showed that they all have an anti-prion activity. Like flunarizine, these marketed drugs reduced PrPSc propagation in cell culture and in mouse cerebellum organotypic slice culture, and inhibited the protein folding activity of the ribosome (PFAR). Strikingly, some of these drugs were also able to alleviate phenotypes due to PABPN1 nuclear aggregation in cell and Drosophila models of oculopharyngeal muscular dystrophy (OPMD). These data emphasize the therapeutic potential of anti-PFAR drugs for neurodegenerative and neuromuscular proteinopathies.Supplementary InformationThe online version contains supplementary material available at 10.1007/s13311-020-00992-6.Key Words: Prions, PrPSc, drug repositioning, PFAR, OPMD, PABPN1 相似文献
83.
Biallelic AOPEP Loss-of-Function Variants Cause Progressive Dystonia with Prominent Limb Involvement
Michael Zech MD Kishore R. Kumar MBBS PhD FRACP Sophie Reining MD Janine Reunert PhD Michel Tchan MBBS PhD FRACP Lisa G. Riley PhD Alexander P. Drew PhD Robert J. Adam MA MBBS PhD FRACP FRCP Riccardo Berutti PhD Saskia Biskup MD Nicolas Derive PhD Somayeh Bakhtiari PhD Sheng Chih Jin PhD Michael C. Kruer MD Tanya Bardakjian MS Pedro Gonzalez-Alegre MD PhD Ignacio J. Keller Sarmiento MD Niccolo E. Mencacci MD PhD Steven J. Lubbe PhD Manju A. Kurian PhD Fabienne Clot PhD Aurélie Méneret MD PhD Jean-Madeleine de Sainte Agathe MD Victor S.C. Fung MBBS PhD FRACP Marie Vidailhet MD Matthias Baumann MD Thorsten Marquardt MD Juliane Winkelmann MD Sylvia Boesch MD 《Movement disorders》2022,37(1):137-147
84.
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86.
Intelligence quotient improves after antiepileptic drug withdrawal following pediatric epilepsy surgery 下载免费PDF全文
Kim Boshuisen MD Monique M. J. van Schooneveld MSc Cuno S. P. M. Uiterwaal MD PhD J. Helen Cross MD PhD Sue Harrison MSc Tilman Polster MD Marion Daehn MSc Sarina Djimjadi MSc Dilek Yalnizoglu MD Guzide Turanli MD Robert Sassen MD Christian Hoppe MSc PhD Stefan Kuczaty MD Carmen Barba MD PhD Philippe Kahane MD PhD Susanne Schubert‐Bast MD Gitta Reuner MSc PhD Thomas Bast MD PhD Karl Strobl MD Hans Mayer PhD Anne de Saint‐Martin MD Caroline Seegmuller MD Agathe Laurent MSc Alexis Arzimanoglou MD PhD Kees P. J. Braun MD PhD for the TimeToStop cognitive outcome study group 《Annals of neurology》2015,78(1):104-114
87.
Functional connectivity and information flow of the respiratory neural network in chronic obstructive pulmonary disease 下载免费PDF全文
Lianchun Yu Marine De Mazancourt Agathe Hess Fakhrul R. Ashadi Isabelle Klein Hervé Mal Maurice Courbage Laurence Mangin 《Human brain mapping》2016,37(8):2736-2754
Breathing involves a complex interplay between the brainstem automatic network and cortical voluntary command. How these brain regions communicate at rest or during inspiratory loading is unknown. This issue is crucial for several reasons: (i) increased respiratory loading is a major feature of several respiratory diseases, (ii) failure of the voluntary motor and cortical sensory processing drives is among the mechanisms that precede acute respiratory failure, (iii) several cerebral structures involved in responding to inspiratory loading participate in the perception of dyspnea, a distressing symptom in many disease. We studied functional connectivity and Granger causality of the respiratory network in controls and patients with chronic obstructive pulmonary disease (COPD), at rest and during inspiratory loading. Compared with those of controls, the motor cortex area of patients exhibited decreased connectivity with their contralateral counterparts and no connectivity with the brainstem. In the patients, the information flow was reversed at rest with the source of the network shifted from the medulla towards the motor cortex. During inspiratory loading, the system was overwhelmed and the motor cortex became the sink of the network. This major finding may help to understand why some patients with COPD are prone to acute respiratory failure. Network connectivity and causality were related to lung function and illness severity. We validated our connectivity and causality results with a mathematical model of neural network. Our findings suggest a new therapeutic strategy involving the modulation of brain activity to increase motor cortex functional connectivity and improve respiratory muscles performance in patients. Hum Brain Mapp 37:2736–2754, 2016. © 2016 The Authors Human Brain Mapping Published by Wiley Periodicals, Inc. 相似文献
88.
Tracheal Replacement With Cryopreserved, Decellularized, or Glutaraldehyde-Treated Aortic Allografts
89.
Neuroprotective functions of prion protein 总被引:6,自引:0,他引:6
The normal function of prion protein (PrP) is usually disregarded at the expense of the more fascinating role of PrP in transmissible prion diseases. However, the normal PrP may play an important role in cellular function in the central nervous system, since PrP is highly expressed in neurons and motifs in the sequence of PrP are conserved in evolution. The finding that prion null mice do not have a significant overt phenotype suggests that the normal function of PrP is of minor importance. However, the absence of PrP in cells or in vivo contributes to an increased susceptibility to oxidative stress or apoptosis-inducing insults. An alternative explanation is that the PrP normal function is so important that it is redundant. Probing into the characteristics of PrP has revealed a number of features that could mediate important cellular functions. The neuroprotective actions so far identified with PrP are initiated through cell surface signaling, antioxidant activity, or anti-Bax function. Here, we review the characteristics of the PrP and the evidence that PrP protects against neurodegeneration and neuronal cell death. 相似文献
90.
Bruban J Maoui A Chalour N An N Jonet L Feumi C Tréton J Sennlaub F Behar-Cohen F Mascarelli F Dinet V 《Neurobiology of disease》2011,42(1):55-72
Age-related macular degeneration is characterized by the formation of drusen containing amyloid-β (Aβ) and the degeneration of photoreceptors. To explore the largely unknown role of Aβ in the retina, we investigated the effects on photoreceptors of the oligomeric form of Aβ(1-42). Subretinal injection of the Aβ peptide induced misplaced expression of recoverin and synaptophysin in the photoreceptors, oxidative stress in their inner and outer segments, and finally apoptosis. Aβ did not induce cell death in purified photoreceptor cell cultures, but did so in retinal cell cultures, thereby suggesting that the cellular environment plays a role in Aβ-induced photoreceptor apoptosis. Subretinal injection of Aβ was followed by activation and migration of microglial cells and then by photoreceptor apoptosis. Microglial cells phagocytosed rhodopsin-containing debris and Aβ in the subretinal space. Quantitative RT-PCR allowed us to identify a specific gene expression profile associated with the Aβ-induced progression of retinal degeneration and consistent with oxidative stress, inflammation, and an apoptotic program. The gene most highly upregulated in Aβ-injected retinas was that for the chemokine CCL2, and its absence or that of its cognate receptor CCR2 greatly reduced migration of activated microglial cells to the site of retinal injury and profoundly worsened photoreceptor degeneration and disorganization of the retinal pigment epithelium in Aβ-injected retinas. Our study pinpoints the roles of Aβ and of CCL2/CCR2 axis-dependent inflammation in photoreceptor apoptosis. 相似文献