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Key Documents

Ishikawa Cell Line human

99040201, human uterus, Epithelial-like

Synonyme(s) :

ISHI Cells, Ishikawa Cells

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About This Item

Code UNSPSC :
41106514

product name

Ishikawa Cell Line human, endometrial adenocarcinoma, 99040201

Source biologique

human uterus

Mode de croissance

Adherent

Caryotype

Not specified

Morphologie

Epithelial-like

Produits

Not specified

Récepteurs

Oestrogen, progesterone

Technique(s)

cell culture | mammalian: suitable

Maladie(s) pertinente(s)

cancer

Conditions d'expédition

dry ice

Température de stockage

−196°C

Origine de la lignée cellulaire

Human Asian endometrial adenocarcinoma

Description de la lignée cellulaire

The cell line Ishikawa was established from an endometrial adenocarcinoma from a 39 year old woman. The cells induced well differentiated adenocarcinoma in athymic nude mice. Estrogen and progesterone receptors were demonstrated both in cell culture and in induced tumours. Ishikawa has been reported to produce corticotropin-releasing hormone, placental alkaline phosphatase and chorionic gonadotrophin, and responded to steroid hormones. The cell line has been eradicated from mycoplasma at ECACC using BM-cyclin. Ishikawa was temporarily removed from the web site whilst an authentication issue was investigated. Following collaboration with key investigators in this field, ECACC is confident that this cell line is Ishikawa.

Application

Ishikawa Cell Line human has been used to study the effect of 1,25-Dihydroxy-Vitamin D3 (1,25(OH)2D3) on cytosolic pH regulation and glycolytic flux. It has also been used to study endometrial adenocarcinoma.

Profil d'ADN

STR-PCR Data: Amelogenin: X
CSF1PO: 11,12
D13S317: 9,12
D16S539: 9
D5S818: 10,11
D7S820: 9,10
THO1: 9,10
TPOX: 8
vWA: 14,17

Milieu de culture

MEM + 2mM Glutamine + 1% Non Essential Amino Acids (NEAA) + 5% Foetal Bovine Serum (FBS).

Procédure de repiquage

Split sub-confluent cultures (70-80%) 1:5 i.e. seeding at 2-4x10,000 cells/cm2 using 0.25% trypsin or trypsin/EDTA; 5% CO2; 37ºC; cells tend to pile up.

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