Literature DB >> 18375847

A comparative analysis of putative oxygen-sensing cells in the fish gill.

Emily H Coolidge1, Cosima S Ciuhandu, William K Milsom.   

Abstract

We investigated the distribution of serotonin (5-HT)-containing neuroepithelial cells (NECs), the putative O(2) sensing cells, in the gills of four species of fish: trout (Oncorhynchus mykiss), goldfish (Carassius auratus), trairão (Hoplias lacerdae) and traira (Hoplias malabaricus) using immunohistochemical markers for 5-HT, synaptic vesicles and neural innervation. We found that all fish had a cluster of innervated, serotonergic NECs at the filament tips, but there were species-specific distributions of serotonin-containing NECs within the primary gill filaments. Trout gill filaments had a greater number of serotonin-containing NECs than both trairão and traira, whereas goldfish primary filaments had none. Serotonin-containing NECs in the secondary lamellae were most numerous in goldfish, present in trairão and traira, but absent in trout. Those found in the primary filament were generally associated with the efferent filamental artery. Innervated, serotonin-containing cells (NECs or Merkel-like cells) were also found in the gill rakers of trout and goldfish although vesicular serotonin was only found in the gill rakers of goldfish. These differences in serotonergic NEC distribution appear to reflect paracrine versus chemoreceptive roles related to hypoxia tolerance in the different fish species.

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Year:  2008        PMID: 18375847     DOI: 10.1242/jeb.015248

Source DB:  PubMed          Journal:  J Exp Biol        ISSN: 0022-0949            Impact factor:   3.312


  6 in total

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2.  Hypoxic cardiorespiratory reflexes in the facultative air-breathing fish jeju (Hoplerythrinus unitaeniatus): role of branchial O2 chemoreceptors.

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Review 4.  Time domains of the hypoxic ventilatory response in ectothermic vertebrates.

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Review 5.  An emerging role for gasotransmitters in the control of breathing and ionic regulation in fish.

Authors:  Steve Perry; Y Kumai; C S Porteus; V Tzaneva; R W M Kwong
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6.  Treatment with the selective serotonin reuptake inhibitor, fluoxetine, attenuates the fish hypoxia response.

Authors:  Jennifer M Panlilio; Sara Marin; Marissa B Lobl; M Danielle McDonald
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  6 in total

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