Transcriptional Evaluation of Neuropeptides, Hormones, and Tissue Repair Modulators in the Skin of Gilthead Sea Bream ( Sparus aurata L.) Subjected to Mechanical Damage.
Rocío Piñera-MorenoFelipe E Reyes-LópezMerari GoldsteinMaría Jesús Santillán-AranedaBárbara Robles-PlanellsCamila Arancibia-CarvalloEva Vallejos-VidalAlberto CuestaMaría Ángeles Esteban AbadLluis TortPublished in: Animals : an open access journal from MDPI (2024)
The skin of bony fish is the first physical barrier and is responsible for maintaining the integrity of the fish. Lesions make the skin vulnerable to potential infection by pathogens present in the aquatic environment. In this way, wound repair has barely been studied in gilthead sea bream. Thus, this study investigated the modulation of peripheral neuro-endocrine and tissue repair markers at the transcriptional level in the skin of teleost fish subjected to mechanical damage above or below the lateral line (dorsal and ventral lesions, respectively). Samples were evaluated using RT-qPCR at 2-, 4-, and 20-days post-injury. Fish with a ventral lesion presented a trend of progressive increase in the expressions of corticotropin-releasing hormone ( crh ), pro-opiomelanocortin-A ( pomca ), proenkephalin-B ( penkb ), cholecystokinin ( cck ), oxytocin ( oxt ), angiotensinogen ( agt ), and (less pronounced) somatostatin-1B ( sst1b ). By contrast, fish with a dorsal lesion registered no significant increase or biological trend for the genes evaluated at the different sampling times. Collectively, the results show a rapid and more robust response of neuro-endocrine and tissue repair markers in the injuries below than above the lateral line, which could be attributable to their proximity to vital organs.
Keyphrases
- spinal cord
- wound healing
- soft tissue
- gene expression
- oxidative stress
- neuropathic pain
- minimally invasive
- risk assessment
- magnetic resonance
- transcription factor
- deep brain stimulation
- mental health
- magnetic resonance imaging
- physical activity
- genome wide
- spinal cord injury
- computed tomography
- high resolution
- atomic force microscopy
- mass spectrometry
- human health
- heat shock
- heat stress
- anti inflammatory
- single molecule