Skin too thin? The developing utility of zebrafish skin (neuro)pharmacology for CNS drug discovery research

被引:14
作者
Nguyen, Michael [1 ]
Poudel, Manoj K. [2 ,3 ]
Stewart, Adam Michael [2 ,3 ,4 ]
Kalueff, Allan V. [2 ,3 ]
机构
[1] Univ Virginia, Dept Biomed Engn, Charlottesville, VA 22908 USA
[2] ZNRC, Slidell, LA 70458 USA
[3] ZENEREI Inst, Slidell, LA 70458 USA
[4] Univ Pittsburgh, Dept Neurosci, Pittsburgh, PA 15260 USA
关键词
Melanophore; Skin; Coloration; Zebrafish; In vivo screens; Neuropharmacology; MELANIN-CONCENTRATING HORMONE; IN-VIVO SENSITIVITY; ADULT ZEBRAFISH; DANIO-RERIO; PIGMENT DISPERSION; COLOR-CHANGE; TELEOSTEAN MELANOPHORES; XENOPUS MELANOPHORES; FISH CHROMATOPHORES; LARVAL ZEBRAFISH;
D O I
10.1016/j.brainresbull.2013.08.004
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Skin coloration can be affected by many genetic, environmental and pharmacological factors. Zebrafish (Danio rerio) are a useful and versatile model organism in biomedical research due to their genetic tractability, physiological homology to mammals, low cost, reproducibility and high throughput. Zebrafish coloration is mediated by chromatophores - the skin Color pigment cells largely controlled by endocrine and neural mechanisms. The characteristic darkening of zebrafish skin is caused by the dispersion (and paling - by aggregation) of melanosomes (pigment-containing organelles), which show high homology to mammalian structures. Various pharmacological agents potently affect zebrafish coloration - the phenotype that often accompanies behavioral effects of the drugs, and may be used for drug discovery. Although zebrafish behavior and skin responses are usually not directly related, they share common regulatory (neural, endocrine) mechanisms, and therefore may be assessed in parallel during psychotropic drug screening. For example, some psychoactive drugs can potently affect zebrafish skin coloration. Can we use this knowledge to refine phenotype-driven psychotropic drug discovery? Here, we present current models using zebrafish skin coloration assays, and discuss how these models may be applied to enhance in vivo CNS drug discovery. (C) 2013 Elsevier Inc. All rights reserved.
引用
收藏
页码:145 / 154
页数:10
相关论文
共 150 条
[1]   LYSERGIC ACID DIETHYLAMIDE (LSD 25) .2. PSYCHOBIOLOGICAL EFFECTS ON THE SIAMESE FIGHTING FISH [J].
ABRAMSON, HA ;
EVANS, LT .
SCIENCE, 1954, 120 (3128) :990-991
[2]  
Acharya LSK, 2007, INDIAN J EXP BIOL, V45, P984
[3]   The zebrafish stress axis: Molecular fallout from the teleost-specific genome duplication event [J].
Alsop, Derek ;
Vijayan, Mathilakath .
GENERAL AND COMPARATIVE ENDOCRINOLOGY, 2009, 161 (01) :62-66
[4]   Melanin-concentrating hormone: A neuropeptide hormone affecting the relationship between photic environment and fish with special reference to background color and food intake regulation [J].
Amano, Masafumi ;
Takahashi, Akiyoshi .
PEPTIDES, 2009, 30 (11) :1979-1984
[5]   Chromatophores and color revelation in the blue variant of the Siamese fighting fish (Betta splendens) [J].
Amiri, M. H. ;
Shaheen, Huda M. .
MICRON, 2012, 43 (2-3) :159-169
[6]  
[Anonymous], 2007, PIGMENTARY SYSTEM PH
[8]   Localization and characterization of kal 1.a and kal 1.b in the brain of adult zebrafish (Danio rerio) [J].
Ayari, Besma ;
Landoulsi, Ahmed ;
Soussi-Yanicostas, Nadia .
BRAIN RESEARCH BULLETIN, 2012, 88 (04) :345-353
[9]   The melanosome as a model to study organelle motility in mammals [J].
Barral, DC ;
Seabra, MC .
PIGMENT CELL RESEARCH, 2004, 17 (02) :111-118
[10]   MELANIN-CONCENTRATING HORMONE (MCH) IMMUNOREACTIVE HYPOPHYSEAL NEUROSECRETORY-SYSTEM IN THE TELEOST POECILIA-LATIPINNA - LIGHT AND ELECTRON-MICROSCOPIC STUDY [J].
BATTEN, TFC ;
BAKER, BI .
GENERAL AND COMPARATIVE ENDOCRINOLOGY, 1988, 70 (02) :193-205