New technologies - new insights into the pathogenesis of hepatic encephalopathy

被引:11
作者
Baker, Luisa [1 ]
Lanz, Bernard [2 ,3 ]
Andreola, Fausto [4 ]
Ampuero, Javier [5 ,6 ]
Wijeyesekera, Anisha [7 ]
Holmes, Elaine [7 ]
Deutz, Nicolaas [8 ]
机构
[1] Royal Vet Coll, Dept Clin Sci & Serv, Hatfield, Herts, England
[2] Ecole Polytech Fed Lausanne, Lab Funct & Metab Imaging, Lausanne, Switzerland
[3] Univ Nottingham, Sch Phys & Astron, Sir Peter Mansfield Imaging Ctr, Univ Pk, Nottingham NG7 2RD, England
[4] Royal Free Hosp, UCL Med Sch, UCL Inst Liver & Digest Hlth, Liver Failure Grp, London, England
[5] Virgen Macarena Virgen del Rocio Univ Hosp, Interctr Unit Digest Dis, Seville, Spain
[6] Inst Biomed Sevilla, Seville, Spain
[7] Imperial Coll London, Div Computat & Syst Med, Dept Surg & Canc, Fac Med, London SW7 2AZ, England
[8] Texas A&M Univ, Dept Hlth & Kinesiol, College Stn, TX USA
关键词
Hepatic encephalopathy; Genomics; Nuclear magnetic resonance spectroscopy; MicroRNA; Metabonomics; Targeted fluxomics; CRITICAL FLICKER FREQUENCY; ACUTE LIVER-FAILURE; C-13; NMR-SPECTROSCOPY; IN-VIVO; NITRIC-OXIDE; BRAIN; METABOLISM; CIRRHOSIS; MICRORNAS; INFUSION;
D O I
10.1007/s11011-016-9906-y
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Hepatic encephalopathy (HE) is a neuropsychiatric syndrome which frequently accompanies acute or chronic liver disease. It is characterized by a variety of symptoms of different severity such as cognitive deficits and impaired motor functions. Currently, HE is seen as a consequence of a low grade cerebral oedema associated with the formation of cerebral oxidative stress and deranged cerebral oscillatory networks. However, the pathogenesis of HE is still incompletely understood as liver dysfunction triggers exceptionally complex metabolic derangements in the body which need to be investigated by appropriate technologies. This review summarizes technological approaches presented at the ISHEN conference 2014 in London which may help to gain new insights into the pathogenesis of HE. Dynamic in vivo C-13 nuclear magnetic resonance spectroscopy was performed to analyse effects of chronic liver failure in rats on brain energy metabolism. By using a genomics approach, microRNA expression changes were identified in plasma of animals with acute liver failure which may be involved in interorgan interactions and which may serve as organ-specific biomarkers for tissue damage during acute liver failure. Genomics were also applied to analyse glutaminase gene polymorphisms in patients with liver cirrhosis indicating that haplotype-dependent glutaminase activity is an important pathogenic factor in HE. Metabonomics represents a promising approach to better understand HE, by capturing the systems level metabolic changes associated with disease in individuals, and enabling monitoring of metabolic phenotypes in real time, over a time course and in response to treatment, to better inform clinical decision making. Targeted fluxomics allow the determination of metabolic reaction rates thereby discriminating metabolite level changes in HE in terms of production, consumption and clearance.
引用
收藏
页码:1259 / 1267
页数:9
相关论文
共 47 条
[11]   Decreased plasma and tissue isoleucine levels after simulated gastrointestinal bleeding by blood gavages in chronic portacaval shunted rats [J].
Damink, SWMO ;
Dejong, CHC ;
Deutz, NEP ;
Soeters, PB .
GUT, 1997, 40 (03) :418-424
[12]   In vivo 1H-[13C]-NMR spectroscopy of cerebral metabolism [J].
de Graaf, RA ;
Mason, GF ;
Patel, AB ;
Behar, KL ;
Rothman, DL .
NMR IN BIOMEDICINE, 2003, 16 (6-7) :339-357
[13]   New stable isotope method to measure protein digestibility and response to pancreatic enzyme intake in cystic fibrosis [J].
Engelen, M. P. K. J. ;
Com, G. ;
Anderson, P. J. ;
Deutz, N. E. P. .
CLINICAL NUTRITION, 2014, 33 (06) :1024-1032
[14]   Hyperspectral Visualization of Mass Spectrometry Imaging Data [J].
Fonville, Judith M. ;
Carter, Claire L. ;
Pizarro, Luis ;
Steven, Rory T. ;
Palmer, Andrew D. ;
Griffiths, Rian L. ;
Lalor, Patricia F. ;
Lindon, John C. ;
Nicholson, Jeremy K. ;
Holmes, Elaine ;
Bunch, Josephine .
ANALYTICAL CHEMISTRY, 2013, 85 (03) :1415-1423
[15]   In vivo 13C NMR studies of compartmentalized cerebral carbohydrate metabolism [J].
Gruetter, R .
NEUROCHEMISTRY INTERNATIONAL, 2002, 41 (2-3) :143-154
[16]  
Gruetter R, 2000, MAGNET RESON MED, V43, P319, DOI 10.1002/(SICI)1522-2594(200002)43:2<319::AID-MRM22>3.0.CO
[17]  
2-1
[18]   A mathematical model of compartmentalized neurotransmitter metabolism in the human brain [J].
Gruetter, R ;
Seaquist, ER ;
Ugrubil, K .
AMERICAN JOURNAL OF PHYSIOLOGY-ENDOCRINOLOGY AND METABOLISM, 2001, 281 (01) :E100-E112
[19]   In vivo 13C NMR spectroscopy and metabolic modeling in the brain:: a practical perspective [J].
Henry, PG ;
Adriany, G ;
Deelchand, D ;
Gruetter, R ;
Marjanska, M ;
Öz, G ;
Seaquist, ER ;
Shestov, A ;
Ugurbil, K .
MAGNETIC RESONANCE IMAGING, 2006, 24 (04) :527-539
[20]   1H-localized broadband 13C NMR spectroscopy of the rat brain in vivo at 9.4 T [J].
Henry, PG ;
Tkác, I ;
Gruetter, R .
MAGNETIC RESONANCE IN MEDICINE, 2003, 50 (04) :684-692