Citation: | TAN Feng-Xia, YANG Fang-Xing, WANG Wei-Min, WANG Min, LU Yuan-An. A NEW FISH CELL L INE OF FIN ESTABL ISHED FROM RAREM INNOW AS VERSATILE TOOL IN ECOTOXICOLOGY ASSESSM ENT OF CYTOTOXIC ITY OF HEAVY M ETALS[J]. ACTA HYDROBIOLOGICA SINICA, 2009, 33(4): 767-771. |
[1] |
Wang J W. Reproductive biology of Gobiocypris rarus [J]. Acta Hydrobioligica Sinica, 1992, 16 (2) : 165-174 [王剑伟. 稀有鮈鲫的繁殖生物学. 水生生物学报, 1992, 16(2) : 165-174]
|
[2] |
Wang J W. Acute effects of high concentration of dissolved free carbon dioxide and low dissolved oxygen in rare minnow [J]. Acta Hydrobioligica Sinica. 1995, 19 (1) : 84-88 [王剑伟. 稀有鮈鲫对高浓度二氧化碳和低溶氧的急性反应. 水生生物学报, 1995, 19 (1) : 84-88]
|
[3] |
WangJW. Study on the critical temperature of rareminnow [J].Sichuan Journal of Zoology, 1996, 15 (4) : 153-155 [王剑伟.稀有鮈鲫临界温度的研究. 四川动物, 1996, 15 (4) : 153-155]
|
[4] |
Boume EW, Jones R W. Effects of 7, 22dimethylbenz (A) anthracene (DMBA) in fish cells in vitro [J]. Transactions of the American M icroscopical Society, 1973, 92 (1) : 140-2
|
[5] |
Castan~o A, Gomez2Lechon M J. Comparison of basal cytotoxicity data between mammalian and fish cell lines: a literature survey [J]. Toxicology in Vitro, 2005, 19: 695-705
|
[6] |
Fent K. Fish cell lines as versatile tools in ecotoxicology: Assessment of cytochrome P4501A induction potential and estrogenic activity of chemicals and environmental samples [J]. Toxicology in Vitro, 2001, 15: 477-488
|
[7] |
Araujo C S, Marques SA, CarrondoM J, et al. In vitro response of the brown bulckhead catfish (BB) and rainbow trout (RTG22) cell line to benzo[α] pyrene [J]. Science of the Total Environment, 2000, 247 (2-3) : 127-135
|
[8] |
NíShúilleabháin S, Mothersill C, Sheehan D, et al. In vitro cytotoxicity testingof three zincmetal salts using established fish cell lines [J]. Toxicology in Vitro, 2004, 18: 365-376
|
[9] |
Davoren M, NíShúilleabháin S, HartlM G J, et al. Assessing the potential of fish cell lines as tools for the cytotoxicity testing of estuarine sediment aqueous elutriates [J]. Toxicology in Vitro, 2005, 19: 421-431
|
[10] |
Sánchez P, Llorente M T, Castar?no A. Flow cytometric detection ofmicronuclei and cell cycle alterations in fish-derived cells after exposure to three model genotoxic agents:mitomycin C, vincristine sulfate and benzo(α) pyrene [J]. Mutation Resarch, 2000, 465: 113-122
|
[11] |
Kammann U, Rigger J C, Theobald N, et al. Genotoxic potential ofmarine sediments from the North Sea [J]. M utation Research, 2000, 467: 161-168
|
[12] |
KammannU, BunkeM, SteinhartH, et al. A permanent fish cell line (EPC) for genotoxicity testing of marine sediments with the comet assay [J]. M utation Research, 2001, 498: 67-77
|
[13] |
Earley E M. Chromosome preparations from monolayer cell cultures [J]. TCA M annual, 1975, 1: 31-35
|
[14] |
Tan F X, WangM, WangW M. Optimization ofMTT assay for the determination of cytotoxicity of Cd2+and Cr6+ in kidney cell line of grass carp [J]. Acta Hydrobioligica Sinica, 2006, 30 (3) : 371-374 [谭凤霞,王敏,王卫民. 利用草鱼 CIK细胞和MTT法测定镉和铬毒性试验的优化. 水生生物学报, 2006, 30(3) : 371-374]
|
[15] |
Hong X J, WangM Q. Establishment and biological characteristics of a new fish cell line (SME-Ⅰ) from southern catfish (Silurus meriaionalis Chen) [J]. Journal of Southwest Agricultural University, 1995, 17 (5) : 419-422 [洪锡钧,王明权. 南方鲶SME2Ⅰ细胞系的建立及其生物学特性的研究. 西南农业大学学报, 1995, 17 (5) : 419-422]
|
[16] |
LakraW S, Bhonde R R, Sivakumar N, et al. A new fibroblast like cell line from the fry of golden mahseer Tor putitora (Ham) [J]. Aquaculture, 2006, 253: 238-243
|
[17] |
Qin Q W, Wu T H, Jia TL, et al. Development and characterization of a new tropical marine fish cell line from grouper, Epinephelus coioides susceptible to iridovirus and nodavirus [J]. Journal of Virological Methods, 2006, 131: 58-64
|
[18] |
Parameswaran V, Shukla R, Bhondeb R, et al. Establishment of embryonic cell line from sea bass (Lates calcarifer) for virus isolation [J]. Journal of Virological Methods, 2006a, 137: 309-316
|
[19] |
Parameswaran V, Shukla R, Bhonde R R, et al. Splenic cell line from sea bass, Lates calcarifer: Establishment and characterization [J]. Aquaculture, 2006b, 261: 43-53
|
[20] |
Sahul Hameed A S, Parameswaran V, Shukla R, et al. Establishment and characterization of India′s first marine fish cell line (SISK) from the kidney of sea bass (Lates calcarifer) [J]. Aquaculture, 2006, 257: 92-103
|
[21] |
Wharton J H, Ellender R D, Middlebmoks B L, et al. Fish cell culture: Characteristics of a cell line from the Silver Perch, Bairdiella Thrysura [J]. In Vitro Cellular & Developmental B iology, 1977, 13 (6) : 389-397
|
[22] |
Lu Y, Lannan C, Roveck J, et al. Fish cell lines: Establishment and characterization of three new cell lines from grass carp (Ctenopharyngodon idella) [J]. In Vitro Cellular & Developmental B iology, 1990, 26: 275-279
|
[23] |
Jia F J, Wei Y. A preliminary study of the karyotype of Gobiocypris rarus [J]. Acta Hydrobioligica Sinica, 2001, 25 (4) : 425-426 [贾方钧,魏芸.稀有鮈鲫的染色体核型初报. 水生生物学报, 2001, 25 (4) : 425-426]
|
[24] |
NíShúilleabháin S, Mothersill C, Sheehan D, et al. Cellular responses in primary epidermal cultures from rainbow trout exposed to zinc chloride [J]. Ecotoxicological Environmental Safety, 2006, 65: 332-341
|
[25] |
Mothersill C, Lyng F, LyonsM, et al. Growth and differentiation of epidermal cells from the rainbow trout established as explants and maintained in various media [J]. Journal of Fish B iology, 1995, 46: 1011-1025
|
[26] |
Lyons-AlcantaraM, MooneyR, Lyng F, et al. The effectsof cadmium exposure on the cytology and function of primary cultures from rainbow trout [J]. Cell B iochem istry and Function, 1998, 16: 1-13
|
[27] |
Tan F X, WangM, WangW M, et al. Comparative evaluativecytotoxicity of six fish cell lines to four heavymetals [J]. Toxicology in Vitro, 2008, 22 (1) : 164-170
|