scispace - formally typeset
Search or ask a question
Institution

University of Manchester

EducationManchester, Manchester, United Kingdom
About: University of Manchester is a education organization based out in Manchester, Manchester, United Kingdom. It is known for research contribution in the topics: Population & Context (language use). The organization has 72133 authors who have published 168091 publications receiving 6421267 citations. The organization is also known as: Manchester University & University of Manchester Institute of Science and Technology.


Papers
More filters
Journal ArticleDOI
TL;DR: There is now extensive evidence to support the direct involvement of interleukin-1 in the neuronal injury that occurs in both acute and chronic neurodegenerative disorders, and a rationale for targeting the interleuko-1 system as a therapeutic strategy is provided.
Abstract: Interleukin-1 is a pro-inflammatory cytokine that has numerous biological effects, including activation of many inflammatory processes (through activation of T cells, for example), induction of expression of acute-phase proteins, an important function in neuroimmune responses and direct effects on the brain itself. There is now extensive evidence to support the direct involvement of interleukin-1 in the neuronal injury that occurs in both acute and chronic neurodegenerative disorders. This article discusses the key evidence of a role for interleukin-1 in acute neurodegeneration - for example, stroke and brain trauma - and provides a rationale for targeting the interleukin-1 system as a therapeutic strategy.

917 citations

Journal ArticleDOI
TL;DR: The actions, mechanisms of action and potential strategies for modifying cytokines in the nervous system will be considered in this review, which continues the discussion of cytokine expression and recognition published in the February issue of TINS.

917 citations

Journal ArticleDOI
TL;DR: The authors' finding of isolated nerve fibres that express substance P deep within diseased intervertebral discs and their association with pain suggests an important role for nerve growth into the interverTEbral disc in the pathogenesis of chronic low back pain.

917 citations

Journal ArticleDOI
TL;DR: The abundance and diversity of CaCA genes throughout all branches of life indicates the importance of this class of cation transporter, and that many transporters with novel functions are waiting to be discovered.
Abstract: Cation transport is a critical process in all organisms and is essential for mineral nutrition, ion stress tolerance, and signal transduction. Transporters that are members of the Ca(2+)/cation antiporter (CaCA) superfamily are involved in the transport of Ca(2+) and/or other cations using the counter exchange of another ion such as H(+) or Na(+). The CaCA superfamily has been previously divided into five transporter families: the YRBG, Na(+)/Ca(2+) exchanger (NCX), Na(+)/Ca(2+), K(+) exchanger (NCKX), H(+)/cation exchanger (CAX), and cation/Ca(2+) exchanger (CCX) families, which include the well-characterized NCX and CAX transporters. To examine the evolution of CaCA transporters within higher plants and the green plant lineage, CaCA genes were identified from the genomes of sequenced flowering plants, a bryophyte, lycophyte, and freshwater and marine algae, and compared with those from non-plant species. We found evidence of the expansion and increased diversity of flowering plant genes within the CAX and CCX families. Genes related to the NCX family are present in land plant though they encode distinct MHX homologs which probably have an altered transport function. In contrast, the NCX and NCKX genes which are absent in land plants have been retained in many species of algae, especially the marine algae, indicating that these organisms may share "animal-like" characteristics of Ca(2+) homeostasis and signaling. A group of genes encoding novel CAX-like proteins containing an EF-hand domain were identified from plants and selected algae but appeared to be lacking in any other species. Lack of functional data for most of the CaCA proteins make it impossible to reliably predict substrate specificity and function for many of the groups or individual proteins. The abundance and diversity of CaCA genes throughout all branches of life indicates the importance of this class of cation transporter, and that many transporters with novel functions are waiting to be discovered.

915 citations

Journal ArticleDOI
TL;DR: The resulting discrete Boltzmann models are based on a kinetic representation of the fluid dynamics, hence the drawbacks in conventional higher-order hydrodynamic formulations can be avoided.
Abstract: We present in detail a theoretical framework for representing hydrodynamic systems through a systematic discretization of the Boltzmann kinetic equation. The work is an extension of a previously proposed formulation. Conventional lattice Boltzmann models can be shown to be directly derivable from this systematic approach. Furthermore, we provide here a clear and rigorous procedure for obtaining higher-order approximations to the continuum Boltzmann equation. The resulting macroscopic moment equations at each level of the systematic discretization give rise to the Navier–Stokes hydrodynamics and those beyond. In addition, theoretical indications to the order of accuracy requirements are given for each discrete approximation, for thermohydrodynamic systems, and for fluid systems involving long-range interactions. All these are important for complex and micro-scale flows and are missing in the conventional Navier–Stokes order descriptions. The resulting discrete Boltzmann models are based on a kinetic representation of the fluid dynamics, hence the drawbacks in conventional higher-order hydrodynamic formulations can be avoided.

914 citations


Authors

Showing all 72887 results

NameH-indexPapersCitations
Cyrus Cooper2041869206782
Michael Rutter188676151592
Julie E. Buring186950132967
John C. Morris1831441168413
David R. Williams1782034138789
Bradley Cox1692150156200
Michael Kramer1671713127224
Marc Weber1672716153502
Salvador Moncada164495138030
Peter A. R. Ade1621387138051
Daniel J. Jacob16265676530
David W. Johnson1602714140778
Anders M. Dale156823133891
John E. Morley154137797021
Bengt Winblad1531240101064
Network Information
Related Institutions (5)
University College London
210.6K papers, 9.8M citations

97% related

University of Cambridge
282.2K papers, 14.4M citations

96% related

University of Oxford
258.1K papers, 12.9M citations

96% related

Imperial College London
209.1K papers, 9.3M citations

96% related

University of Bristol
113.1K papers, 4.9M citations

96% related

Performance
Metrics
No. of papers from the Institution in previous years
YearPapers
20241
2023295
20221,168
20218,593
20208,313
20197,406