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Tetrahymena thermophila Nanney and McCoy

货号 TS189164
中文名称 null
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产品名称: Tetrahymena thermophila Nanney and McCoy
商品货号: TS189164
Strain Designations: WH-14 (WHII)
Application:
assay of protein quality of foodstuffs
Alternative to ocular irritation testing
Biosafety Level: 1

Biosafety classification is based on U.S. Public Health Service Guidelines, it is the responsibility of the customer to ensure that their facilities comply with biosafety regulations for their own country.

Isolation:
freshwater, Falmouth, MA, 1952
Product Format: test tube
Storage Conditions: Test Tube: See handling procedure
Axenic/Xenic: Axenic
Type Strain: yes
Comments:
II
Models for ocular irritation testing in rabbits
Identification of Tetrahymena species using PCR/RFLP analysis of rDNA
Cell volume distributions during the growth
comparison of methods of vitamin analysis
water-soluble vitamins in cells and spent culture supernatants
A biometric study
Medium: ATCC® Medium 357: Tetrahymena medium
ATCC® Medium 1034: Modified PYNFH medium (Available from ATCC as ATCC cat. no. 327-X)
ATCC® Medium 383: Haskins agar for Tetrahymena
Growth Conditions:
Temperature: 25°C
Cryopreservation:
  1. Transfer Tetrahymena from usual growth medium to ATCC Medium 1034 and allow to grow to near peak density.
  2. Harvest cells from a culture by centrifugation at 300 x g for 2 min.xa0xa0xa0xa0xa0xa0xa0xa0xa0xa0
  3. Adjust concentration of cells to 2 x 106/ml in fresh medium.
  4. While cells are centrifuging, prepare a 22% (v/v) sterile solution of sterile DMSO in fresh medium.
    1. Add 2.2 ml of DMSO to an ice cold 20 x 150 mm screw-capped test tube;
    2. Place the tube on ice and allow the DMSO to solidify (~5 min) and then add 7.8 ml of ice cold medium;
    3. Invert several times to dissolve the DMSO;
    4. Allow to warm to room temperature.
  5. Add a volume of the DMSO solution equal to the cell suspension volume but add in 3 equal aliquots at 2 min intervals. Thus, the final concentration of the preparation will equal 11% (v/v) DMSO and 106 cells/ml.
  6. Dispense in 0.5 ml aliquots into 1.0 - 2.0 ml sterile plastic screw-capped cryules (special plastic vials for cryopreservation).
  7. Place the ampules in a controlled rate freezing unit. The cooling cycle should be initiated no less than 15 min and no longer than 60 min after the addition of the DMSO to the cell preparation. From room temperature cool at -1°C/min to -40°C. If freezing unit can compensate for the heat of fusion, maintain rate at -1°C/min through heat of fusion. Atxa0 -50°C ampules are plunged into liquid nitrogen.
  8. Store in the vapor or liquid phase of a nitrogen refrigerator.
  9. To establish a culture from the frozen state aseptically add 0.5 ml of sterile modified PYNFH medium (ATCC Medium 1034) containing 8% (w/v) sucrose to the ampule.xa0 Immediately, place in a 35°C water bath, until thawed. Immerse the ampule just sufficient to cover the frozen material. Do not agitate the ampule.
  10. Immediately after thawing, aseptically remove the contents of the ampule and gently add the material to the edge of a 20 x 100 mm Petri plate containing ATCC Medium 919 (non-nutrient agar) and position on a 15 degree slant. xa0The cell suspension will pool at the edge of the plate.
  11. Continue to double the volume of the cell suspension at 10 minute intervals by adding ATCC medium 1034) containing 4% sucrose (w/v). xa0When the volume reaches 16.0 ml place the plate in horizontal position and incubate at 25°C.xa0
  12. On the following day, gently remove the cell suspension for the plate and transfer to a T-25 tissue culture flask. xa0Note the volume of the suspension and add a volume of fresh medium containing 4% sucrose equal to the volume of xa0the cell suspension. xa0Incubate the culture at 25°C.
  13. After culture has been established subculture into fresh normal medium without sucrose.xa0xa0
Name of Depositor: AM Elliott
Chain of Custody:
ATCC <-- AM Elliott <-- A. Elliott/D.F. Gruchy
Year of Origin: 1952
References:

Silverman J. Preliminary findings on the use of protozoa (Tetrahymena thermophila) as models for ocular irritation testing in rabbits. Lab. Anim. Sci. 33: 56-59, 1983. PubMed: 6834775

. . Annu. Rev. Microbiol. 13: 79-96, 1959.

Baker H, et al. Some actions of sulfonylureas charted with protozoan reagents. Nutr. Rep. Int. 32: 727-735, 1985.

Silverman J, Pennisi S. . J. Toxicol. Cutaneous Ocul. Toxicol. 6: 33-42, 1987.

Biol. Bull. 105: 269-284, 1953.

Jerome CA, Lynn DH. Identifying and distinguishing sibling species in the Tetrahymena pyriformis complex (Ciliophora, Oligohymenophora) using PCR/RFLP analysis of nuclear ribosomal DNA. J. Eukaryot. Microbiol. 43: 492-497, 1996. PubMed: 8976607

Gates MA, Berger J. Morphologic stability in Tetrahymena pyriformis. Trans. Am. Microsc. Soc. 95: 11-22, 1976. PubMed: 817430

Gates MA. Trajectories of cell volume distributions during the growth cycle of Tetrahymena. J. Gen. Microbiol. 129: 895-900, 1983.

Wang YY, et al. Tetrahymena thermophila as an organism for bioassay of protein quality. Nutr. Rep. Int. 21: 645-651, 1980.

Voight MN, et al. Comparison of Protozoan and conventional methods of Vitamin analysis. J. Food Sci. 44: 729-734, 1979.

Voigt MN, et al. Vitamin analysis by microbial and protozoan organisms: response to food preservatives and neutralization salts. J. Food Sci. 44: 724, 1979.

Baker ER, et al. Water-soluble vitamins in cells and spent culture supernatants of Poteriochronous stipitata, Euglena gracilis and Tetrahymena thermophila. Arch. Microbiol. 129: 310-313, 1981.

Gates MA, Berger J. A biometric study of three strains of Tetrahymena pyriformis (Ciliatea: Hymenostomatida). Can. J. Zool. 52: 1167-1183, 1974. PubMed: 4214189

Epstein SS, et al. Toxicity of antioxidants to Tetrahymena pyriformis. J. Protozool. 14: 238-244, 1967. PubMed: 6038033

Baker H, et al. Protein quality of foodstuffs determined with Tetrahymena thermophila and rat. Nutr. Rep. Int. 17: 525-536, 1978.

Nanney DL, McCoy JW. Characterization of the species of the Tetrahymena pyriformis complex. Trans. Am. Microsc. Soc. 95: 664-682, 1975.

type strain