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121.
Elke Heremans Evelien Nackaerts Griet Vervoort Sanne Broeder Stephan P. Swinnen Alice Nieuwboer 《PloS one》2016,11(2)
Background
Patients with Parkinson’s disease (PD) and freezing of gait (FOG) suffer from more impaired motor and cognitive functioning than their non-freezing counterparts. This underlies an even higher need for targeted rehabilitation programs in this group. However, so far it is unclear whether FOG affects the ability for consolidation and generalization of motor learning and thus the efficacy of rehabilitation.Objective
To investigate the hallmarks of motor learning in people with FOG compared to those without by comparing the effects of an intensive motor learning program to improve handwriting.Methods
Thirty five patients with PD, including 19 without and 16 with FOG received six weeks of handwriting training consisting of exercises provided on paper and on a touch-sensitive writing tablet. Writing training was based on single- and dual-task writing and was supported by means of visual target zones. To investigate automatization, generalization and retention of learning, writing performance was assessed before and after training in the presence and absence of cues and dual tasking and after a six-week retention period. Writing amplitude was measured as primary outcome measure and variability of writing and dual-task accuracy as secondary outcomes.Results
Significant learning effects were present on all outcome measures in both groups, both for writing under single- and dual-task conditions. However, the gains in writing amplitude were not retained after a retention period of six weeks without training in the patient group without FOG. Furthermore, patients with FOG were highly dependent on the visual target zones, reflecting reduced generalization of learning in this group.Conclusions
Although short-term learning effects were present in both groups, generalization and retention of motor learning were specifically impaired in patients with PD and FOG. The results of this study underscore the importance of individualized rehabilitation protocols. 相似文献122.
Sylvester Elikana Anami Allan Jalemba Mgutu Catherine Taracha Griet Coussens Mansour Karimi Pierre Hilson Mieke Van Lijsebettens Jesse Machuka 《Plant Cell, Tissue and Organ Culture》2010,102(3):285-295
In Latin America and sub-Saharan Africa, tropical maize (Zea mays L.) is a major crop for human consumption. To cope with the increasing population and changing environment, there is a need
for improving tropical maize germplasm. As part of a biotechnological approach, efficient in vitro regeneration of two tropical
maize inbred lines (CML216 and CML244) was established. A number of parameters were optimized, such as age of the immature
embryos, plant media and growth regulator concentration. After 6 weeks of culture, somatic embryos that had already reached
the coleoptilar stage produced shoots after light induction and developed into fertile plants after acclimation in the soil.
The callus induction frequencies and somatic embryo-derived plantlet formation were higher when cultured with the Linsmaier
and Skoog medium than those with the Chu’s N6 basal medium. Regeneration of tropical maize shoots depended on the 2,4-dichlorophenoxyacetic
acid (2,4-D) concentration at the callus initiation stage from immature embryos. The recalcitrance of the tropical maize inbred
line TL26 to in vitro regeneration was overcome in a single-cross hybrid with the CML216 and CML244 genotypes. Remarkably,
tropical maize somatic embryos were formed at the abaxial side of the scutellum facing the medium, probably from the axis
of the immature embryos, as shown by histological sections. Upon co-cultivation, agrobacteria transiently expressed their
intronless β-glucuronidase-encoding gene at the embryogenic tissue, but not with an intron-containing gene, suggesting that
virulence genes are induced in Agrobacterium, but that subsequent steps in the T-DNA transfer are inhibited. 相似文献
123.
J. Boelaert R. t’Kindt E. Schepers L. Jorge G. Glorieux N. Neirynck F. Lynen P. Sandra R. Vanholder K. Sandra 《Metabolomics : Official journal of the Metabolomic Society》2014,10(3):425-442
Here we report a metabolomics discovery study conducted on blood serum samples of patients in different stages of chronic kidney disease (CKD). Metabolites were monitored on a quality controlled holistic platform combining reversed-phase liquid chromatography coupled to high-resolution quadrupole time-of-flight mass spectrometry in both negative and positive ionization mode and gas chromatography coupled to quadrupole mass spectrometry. A substantial portion of the serum metabolome was thereby covered. Eighty-five metabolites were shown to evolve with CKD progression of which 43 metabolites were a confirmation of earlier reported uremic retention solutes and/or uremic toxins. Thirty-one unique metabolites were revealed which were increasing significantly throughout CKD progression, by a factor surpassing the level observed for creatinine, the currently used biomarker for kidney function. Additionally, 11 unique metabolites showed a decreasing trend. 相似文献
124.
In vitro interactions between the two mitochondrial membrane proteins VDAC and cytochrome c oxidase 总被引:1,自引:0,他引:1
VDAC, a mitochondrial outer membrane channel, is involved in the control of aerobic metabolism and in apoptotic processes via numerous protein-protein interactions. To unveil those interactions, we screened a human liver cDNA library with the phage display methodology optimized to target VDAC reconstituted into a membrane environment. One positively selected clone yielded a sequence matching a part of the subunit I of human cytochrome c oxidase (COX), a mitochondrial inner membrane enzyme. Such putative interaction was never reported before. This interaction proved to be functional as evidenced by the effect of the human and yeast isoforms of VDAC on the oxidation of cytochrome c by the pure holoenzyme and by the effect of the COX epitope on VDAC permeability. Our results providing four independently obtained evidences of VDAC-COX interaction in vitro, would support a novel and potentially important level of mitochondrial regulation given the respective locations and functions of both proteins. 相似文献
125.
VDAC--a mitochondrial channel involved in the control of aerobic metabolism and apoptosis--interacts in vitro and in vivo with a wide repertoire of proteins including cytoskeletal elements. A functional interaction between actin and Neurospora crassa VDAC was reported, excluding other VDAC isoforms. From a recent genome-wide screen of the VDAC interactome, we found that human actin is a putative ligand of yeast VDAC. Since such interaction may have broader implications for various mitochondrial processes, we probed it with Surface Plasmon Resonance (SPR) technology using purified yeast VDAC (YVDAC) and rabbit muscle G-actin (RGA). We show that RGA binds to immobilized YVDAC in a reversible and dose-dependent manner with saturating kinetics and an apparent K(D) of 50 microg/ml (1.2 microM actin). BSA does not bind VDAC regardless of the concentrations. Alternatively, VDAC binds similarly to immobilized RGA but without saturating kinetics. VDAC being known to interact with itself, this latter interaction was directly measured to interpret the RGA signals. VDAC could bind to VDAC without saturating kinetics as expected if higher order binding occurred, and could account for maximally 66% of the non-saturating behavior of VDAC binding onto RGA. Hence, actin-VDAC interactions are not a species-specific oddity and may be a more general phenomenon, the role of which ought to be further investigated. 相似文献
126.
127.
Conformational alterations induced by streptomycin in the bacterial ribosome have been investigated using as probes, ethidium bromide, N-[14C]ethylmaleimide and a spin label nitroxide analog of N-ethylmaleimide. 1. The binding of the antibiotic to the ribosome does not affect the reactivity of sulfhydryl groups towards N-ethylmaleimide. 2. The motional freedom of spin labels bound to ribosomal proteins S1 and S18 is increased but it is hardly affected at other labeled sites. This observation suggests that the binding of streptomycin causes a local loosening of the ribosomal structure. 3. Ribosomes are found to bind less ethidium bromide in the presence of streptomycin, which suggests that the binding of streptomycin decreases the degree of organization of ribosomal RNA. 相似文献
128.
Hepatosplenomegaly, observed on routine physical examination of a 3-month-old French-Canadian infant, was the first evidence for the possibility of Niemann-Pick disease. Vacuolated foam cells filled with phospholipid material were found in liver and bone marrow biopsy material. The absence of sphingomyelinase activity in isolated peripheral leukocytes and cultured skin fibroblasts confirmed the diagnosis. The parents'' leukocytes displayed significantly less activity than was found in control cells. Exact and early confirmation of the diagnosis of Niemann-Pick disease is of prime importance for it allows the physician to offer a more specific prognosis, to provide more precise genetic counselling for the couple at risk and, finally, to offer the possibility of prenatal diagnosis. 相似文献
129.