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Sökning: WFRF:(Hökfelt T.)

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  • Gilvesy, A., et al. (författare)
  • Spatiotemporal characterization of cellular tau pathology in the human locus coeruleus–pericoerulear complex by three-dimensional imaging
  • 2022
  • Ingår i: Acta Neuropathologica. - : Springer Nature. - 0001-6322 .- 1432-0533. ; 144:4, s. 651-676
  • Tidskriftsartikel (refereegranskat)abstract
    • Tau pathology of the noradrenergic locus coeruleus (LC) is a hallmark of several age-related neurodegenerative disorders, including Alzheimer’s disease. However, a comprehensive neuropathological examination of the LC is difficult due to its small size and rod-like shape. To investigate the LC cytoarchitecture and tau cytoskeletal pathology in relation to possible propagation patterns of disease-associated tau in an unprecedented large-scale three-dimensional view, we utilized volume immunostaining and optical clearing technology combined with light sheet fluorescence microscopy. We examined AT8+ pathological tau in the LC/pericoerulear region of 20 brains from Braak neurofibrillary tangle (NFT) stage 0–6. We demonstrate an intriguing morphological complexity and heterogeneity of AT8+ cellular structures in the LC, representing various intracellular stages of NFT maturation and their diverse transition forms. We describe novel morphologies of neuronal tau pathology such as AT8+ cells with fine filamentous somatic protrusions or with disintegrating soma. We show that gradual dendritic atrophy is the first morphological sign of the degeneration of tangle-bearing neurons, even preceding axonal lesions. Interestingly, irrespective of the Braak NFT stage, tau pathology is more advanced in the dorsal LC that preferentially projects to vulnerable forebrain regions in Alzheimer’s disease, like the hippocampus or neocortical areas, compared to the ventral LC projecting to the cerebellum and medulla. Moreover, already in the precortical Braak 0 stage, 3D analysis reveals clustering tendency and dendro-dendritic close appositions of AT8+ LC neurons, AT8+ long axons of NFT-bearing cells that join the ascending dorsal noradrenergic bundle after leaving the LC, as well as AT8+ processes of NFT-bearing LC neurons that target the 4th ventricle wall. Our study suggests that the unique cytoarchitecture, comprised of a densely packed and dendritically extensively interconnected neuronal network with long projections, makes the human LC to be an ideal anatomical template for early accumulation and trans-neuronal spreading of hyperphosphorylated tau. 
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3.
  • Holmberg, K, et al. (författare)
  • Generation and phenotypic characterization of a galanin overexpressing mouse
  • 2005
  • Ingår i: Neuroscience. - : Elsevier BV. - 0306-4522 .- 1873-7544. ; 133:1, s. 59-77
  • Tidskriftsartikel (refereegranskat)abstract
    • In most parts of the peripheral nervous system galanin is expressed at very low levels. To further understand the functional role of galanin, a mouse overexpressing galanin under the platelet-derived growth factor-B was generated, and high levels of galanin expression were observed in several peripheral tissues and spinal cord. Thus, a large proportion of neurons in autonomic and sensory ganglia were galanin-positive, as were most spinal motor neurons. Strong galanin-like immunoreactivity was also seen in nerve terminals in the corresponding target tissues, including skin, blood vessels, sweat and salivary glands, motor end-plates and the gray matter of the spinal cord. In transgenic superior cervical ganglia around half of all neuron profiles expressed galanin mRNA but axotomy did not cause a further increase, even if mRNA levels were increased in individual neurons. In transgenic dorsal root ganglia galanin mRNA was detected in around two thirds of all neuron profiles, including large ones, and after axotomy the percentage of galanin neuron profiles was similar in overexpressing and wild type mice. Axotomy reduced the total number of DRG neurons less in overexpressing than in wild type mice, indicating a modest rescue effect. Aging by itself increased galanin expression in the superior cervical ganglion in wild type and transgenic mice, and in the latter also in preganglionic cholinergic neurons projecting to the superior cervical ganglion. Galanin overexpressing mice showed an attenuated plasma extravasation, an increased pain response in the formalin test, and changes in muscle physiology, but did not differ from wild type mice in sudomotor function. These findings suggest that overexpressed galanin in some tissues of these mice can be released and via a receptor-mediated action influence pathophysiological processes. © 2005 Published by Elsevier Ltd on behalf of IBRO.
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  • Shi, T-J S, et al. (författare)
  • Deletion of the neuropeptide Y Y1 receptor affects pain sensitivity, neuropeptide transport and expression, and dorsal root ganglion neuron numbers.
  • 2006
  • Ingår i: Neuroscience. - : Elsevier BV. - 0306-4522 .- 1873-7544. ; 140:1, s. 293-304
  • Tidskriftsartikel (refereegranskat)abstract
    • Neuropeptide Y has been implicated in pain modulation and is substantially up-regulated in dorsal root ganglia after peripheral nerve injury. To identify the role of neuropeptide Y after axotomy, we investigated the behavioral and neurochemical phenotype of neuropeptide Y Y1 receptor knockout mice with focus on dorsal root ganglion neurons and spinal cord. Using a specific antibody Y1 receptor immunoreactivity was found in dorsal root ganglia and in dorsal horn neurons of wild-type, but not knockout mice. The Y1 receptor knockout mice exhibited a pronounced mechanical hypersensitivity. After sciatic nerve axotomy, the deletion of Y1 receptor protected knockout mice from the axotomy-induced loss of dorsal root ganglion neurons seen in wild-type mice. Lower levels of calcitonin gene-related peptide and substance P were identified by immunohistochemistry in dorsal root ganglia and dorsal horn of knockout mice, and the axotomy-induced down-regulation of both calcitonin gene-related peptide and substance P was accentuated in Y1 receptor knockout. However, the transcript levels for calcitonin gene-related peptide and substance P were significantly higher in knockout than in wild-type dorsal root ganglia ipsilateral to the axotomy, while more calcitonin gene-related peptide- and substance P-like immunoreactivity accumulated proximal and distal to a crush of the sciatic nerve. These results indicate that the deletion of the Y1 receptor causes increased release and compensatory increased synthesis of calcitonin gene-related peptide and substance P in dorsal root ganglion neurons. Together, these findings suggest that, after peripheral nerve injury, neuropeptide Y, via its Y1 receptor receptor, plays a key role in cell survival as well as in transport and synthesis of the excitatory dorsal horn messengers calcitonin gene-related peptide and substance P and thus may contribute to pain hypersensitivity.
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6.
  • Zhang, M. -D, et al. (författare)
  • Comparative anatomical distribution of neuronal calcium-binding protein (NECAB) 1 and -2 in rodent and human spinal cord
  • 2016
  • Ingår i: Brain Structure and Function. - : Springer. - 1863-2653 .- 1863-2661. ; , s. 1-21
  • Tidskriftsartikel (refereegranskat)abstract
    • Neuronal calcium-binding protein 1 and -2 (NECAB1/2) localize to multiple excitatory neuron populations in the mouse spinal cord. Here, we analyzed rat and human spinal cord, combining in situ hybridization and immunohistochemistry, complementing newly collated data on mouse spinal cord for direct comparisons. Necab1/2 mRNA transcripts showed complementary distribution in rodent’s spinal cord. Multiple-labeling fluorescence histochemistry with neuronal phenotypic markers localized NECAB1 to a dense fiber plexus in the dorsal horn, to neurons mainly in superficial layers and to commissural interneurons in both rodent species. NECAB1-positive (+) motor neurons were only found in mice. NECAB1 distribution in the human spinal cord was similar with the addition of NECAB1-like immunoreactivity surrounding myelinated axons. NECAB2 was mainly present in excitatory synaptic boutons in the dorsal horn of all three species, and often in calbindin-D28k+ neuronal somata. Rodent ependymal cells expressed calbindin-D28k. In humans, they instead were NECAB2+ and/or calretinin+. Our results reveal that the association of NECAB2 to excitatory neuronal circuits in the spinal cord is evolutionarily conserved across the mammalian species investigated so far. In contrast, NECAB1 expression is more heterogeneous. Thus, our study suggests that the phenotypic segregation of NECAB1 and -2 to respective excitatory and inhibitory spinal systems can underpin functional modalities in determining the fidelity of synaptic neurotransmission and neuronal responsiveness, and might bear translational relevance to humans.
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  • Freedman, J, et al. (författare)
  • Vasoconstrictor effects in spinal cord of the substance P antagonist [D-Arg, D-Trp7,9 Leu11]-substance P (Spantide) and somatostatin and interaction with thyrotropin releasing hormone
  • 1988
  • Ingår i: Neuroscience. - : Elsevier BV. - 1873-7544 .- 0306-4522. ; 27:1, s. 267-278
  • Tidskriftsartikel (refereegranskat)abstract
    • The present study was undertaken to investigate the possible effects of Spantide [D-Arg1, D-Trp7,9 Leu11]-substance P, a substance P antagonist, and of somatostatin on spinal cord blood flow. The experiments were performed with the laser-doppler technique on the L1 spinal cord segment exposed by laminectomy. The effect of Spantide was also studied in the rat with the [14C]iodoantipyrine technique. In addition, experiments were performed on rabbit skeletal muscle in vivo after administration of Spantide to the local vasculature. In the experiments on spinal cord, approximately the same doses were employed as those earlier shown to be "neurotoxic". When the vehicle alone (0.9% saline) was administered intrathecally, a slight decrease of brief duration was noted in the blood flow. Spantide, however, caused a dose-dependent decrease, where 2 micrograms caused an immediate drop of the blood flow to approx. 20% of its normal value. A total circulatory arrest was found in several animals. In most cases, the flow was gradually normalized, whereas the effect persisted for up to 60 min in others. Virtually the same effect was exerted by somatostatin. The experiments using the iodoantipyrine technique confirmed the effect of Spantide. Here, the high resolution of this method showed that the gray matter was affected preferentially, with a complete ischemic state or a drastically reduced flow in 4 out of 5 animals 10 min after 2 micrograms of Spantide; one animal was unaffected, and this animal did not show any signs of motor impairment. The vasoconstriction of Spantide was not affected by simultaneous injections with substance P. However, after i.v. pretreatment with thyrotropin-releasing hormone, at a dose that previously has been reported to be protective against the neurodegenerative effects of Spantide, blood flow was markedly increased as compared to Spantide alone. Results from the experiments using intravital microscopy flow studies in the rabbit tenuissimus muscle revealed that Spantide at the doses used had no vasoconstrictor effect in the skeletal muscle of this species. The results suggest that previous demonstrations of motor impairment and "neurotoxic" actions of intrathecally injected substance P antagonists and somatostatin may be related to a marked decrease in spinal cord blood flow. Counteraction of the effect of Spantide by thyrotropin-releasing hormone may be explained by its effect to increase blood flow.
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10.
  • Hökfelt, T, et al. (författare)
  • Galanin: a multitalented neuropeptide
  • 2010
  • Ingår i: Experientia supplementum (2012). - Basel : Springer Basel. - 1664-431X. ; 102, s. 1-5
  • Tidskriftsartikel (refereegranskat)
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