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Optimisation of electroporation and lipofection protocols to derive the black tiger shrimp cell line (Penaeus monodon)

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dc.contributor.author Thansa K.
dc.contributor.author Rungsiwiwut R.
dc.contributor.author Kitiyanant N.
dc.contributor.author Taengchaiyaphum S.
dc.date.accessioned 2021-04-05T03:05:32Z
dc.date.available 2021-04-05T03:05:32Z
dc.date.issued 2018
dc.identifier.issn 10504648
dc.identifier.other 2-s2.0-85049844332
dc.identifier.uri https://ir.swu.ac.th/jspui/handle/123456789/12749
dc.identifier.uri https://www.scopus.com/inward/record.uri?eid=2-s2.0-85049844332&doi=10.1016%2fj.fsi.2018.07.030&partnerID=40&md5=d69f508c481d14082a7c525f4db3bc64
dc.description.abstract To achieve in creating permanent shrimp cell lines, cellular arrest of primary cells in the culture is needed to be firstly solved. Considering the insertion of some markers affecting cellular proliferation into primary haemocytes in order to produce the black tiger shrimp cell line and the very low percent of transduced cells previously reported in penaeid shrimps, these paved us the way to set up suitable gene delivery protocols to increase percent of transduced cells in the shrimp as our primary aim. In this study, electroporation and lipofection were used to transfer construct plasmids (pLL3.7 plasmids containing CMV promoters and pGL-IE1-126(A)-EGFP plasmids carrying WSSV IE1 promoters) into primary haemocytes. As it was difficult to distinguish between cells expressing EGFP signal and auto-fluorescence of many dead cells occurred by electroporation during the first 72 h of experiment; so, only lipofection was managed to deliver plasmids into primary cells. Surprisingly, numbers of suspected proliferative cells were derived after electroporation with no insertion of immortalising markers. These cells survived in vitro for up to 45 days with high rate of cell viability, but the number of viable cells decreased throughout the experiment. In addition, these cells expressed genes and proteins closely related to hyaline cells determined using RT-PCR and western blot. For the lipofection experiment, no green fluorescence signal was detected in any primary cell introduced with these plasmids, suggesting that plasmids were not successfully inserted into cells. Also, a number of primary haemocytes had the apoptotic cell death characteristic within 5 days after lipofection. These possibly result from using inappropriate lipofection protocol and chemical substances. In summary, finding out suitable protocols to elevate the percent of transduced cells is still necessary. Additionally, continuous shrimp cell lines would be possibly established by transforming suspected proliferative cells derived from electroporation in this study. © 2018 Elsevier Ltd
dc.subject biological marker
dc.subject chemical compound
dc.subject enhanced green fluorescent protein
dc.subject hyalin
dc.subject plasmid DNA
dc.subject protein
dc.subject complementary DNA
dc.subject enhanced green fluorescent protein
dc.subject green fluorescent protein
dc.subject animal cell
dc.subject animal experiment
dc.subject Article
dc.subject autofluorescence
dc.subject blood cell
dc.subject cell count
dc.subject cell death
dc.subject cell immortalization
dc.subject cell line
dc.subject cell proliferation
dc.subject cell viability
dc.subject controlled study
dc.subject Cytomegalovirus
dc.subject electroporation
dc.subject female
dc.subject gene construct
dc.subject gene expression
dc.subject genetic transfection
dc.subject in vitro study
dc.subject in vivo study
dc.subject lipofection
dc.subject male
dc.subject nonhuman
dc.subject nonviral gene delivery system
dc.subject Penaeus monodon
dc.subject plasmid
dc.subject primary cell
dc.subject priority journal
dc.subject process optimization
dc.subject promoter region
dc.subject protein expression
dc.subject reverse transcription polymerase chain reaction
dc.subject signal transduction
dc.subject Western blotting
dc.subject White spot syndrome virus
dc.subject animal
dc.subject blood cell
dc.subject electroporation
dc.subject gene transfer
dc.subject genetics
dc.subject HEK293 cell line
dc.subject human
dc.subject immediate early gene
dc.subject Penaeidae
dc.subject virus gene
dc.subject Animals
dc.subject Cell Line
dc.subject Cytomegalovirus
dc.subject DNA, Complementary
dc.subject Electroporation
dc.subject Female
dc.subject Gene Transfer Techniques
dc.subject Genes, Immediate-Early
dc.subject Genes, Viral
dc.subject Green Fluorescent Proteins
dc.subject HEK293 Cells
dc.subject Hemocytes
dc.subject Humans
dc.subject Male
dc.subject Penaeidae
dc.subject Plasmids
dc.subject Promoter Regions, Genetic
dc.title Optimisation of electroporation and lipofection protocols to derive the black tiger shrimp cell line (Penaeus monodon)
dc.type Article
dc.rights.holder Scopus
dc.identifier.bibliograpycitation Fish and Shellfish Immunology. Vol 81, No. (2018), p.204-213
dc.identifier.doi 10.1016/j.fsi.2018.07.030


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