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human bladder tumor
An immunoassay using a human bladder tumor tissue culture cell line (J-82) as antigen and a modified avidin-biotin-complex (ABC) method were used to examine human serum samples.
      
Cytotoxic effects of alpha- and gamma-interferon and tumor necrosis factor in human bladder tumor cell lines
      
We investigated the activity of alpha-interferon (α-IFN), gamma-interferon (γ-IFN) and tumor necrosis factor-alpha (TNF-α) in a panel of ten human bladder tumor cell lines.
      
We conclude that α-IFN and TNF are active as single agents and synergistic when used together in vitro in human bladder tumor cell lines.
      
This model more closely resembled the characteristics of human bladder tumor when compared to other bladder cancer models.
      
Inhibition by Vitamin C of DNA adduct formation and arylamine N-acetyltransferase activity in human bladder tumor cells
      
This study reports on the effects of vitamin C on arylamineN-acetyltransferase (NAT) activity and DNA adduct formation in a human bladder tumor cell (T24) line.
      
A total of 45 human bladder tumor patients were analyzed.
      
Ellagica acid inhibits arylamine N-acetyltransferase activity and DNA adduct formation in human bladder tumor cell lines (T24 an
      
Our previous studies demonstrated that human bladder tumor cell line (T24) has N-acetyltransferase (NAT) activity in cytosols and intact cells.
      
The present studies examined the inhibition of arylamine NAT activity and carcinogen (2-aminofluorene)-DNA adduct formation by ellagic acid (EA) in human bladder tumor cell lines (T24 and TSGH 8301).
      
This report is the first to demonstrate that EA affects human bladder tumor cell NAT activity.
      
The aim of the present study was to determine whether sulindac affects arylamine N-acetyltransferase (NAT) activity and gene expression and DNA-2-aminofluorene adduct formation in the T24 human bladder tumor cell line.
      
Effects of N-trifluoroacetyladriamycin-14-valerate (AD-32) on human bladder tumor cell lines
      
We have compared the in vitro activity of N-trifluoroacetyladriamycin-14-valerate (AD-32) and doxorubicin hydrochloride (ADR) on the clonal growth of human bladder tumor cell lines (HBTCL).
      
Pretreatment with bismuth nitrate depressed the renal toxicity of CDDP without compromising its activity against a transplantable human bladder tumor.
      
In this study the antimicrotubular agents taxol, taxotere, and vinblastine were compared for their ability to inhibit the clonal growth of human bladder tumor cell lines using a soft-agar clonogenic assay.
      
This study was performed in human bladder tumor histocultures treated with several drugs (doxorubicin, mitomycin C, paclitaxel and 5-fluorouridine).
      
Membrane Potassium Channels and Human Bladder Tumor Cells.
      
Membrane Potassium Channels and Human Bladder Tumor Cells: II.
      
 

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