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Selective inhibition of spontaneous pulmonary metastasis of lewis lung carcinoma by 5′-deoxy-5-fluorouridine

✍ Scribed by Tohru Ishikawa; Masako Ura; Taeko Yamamoto; Yutaka Tanaka; Hideo Ishitsuka


Publisher
John Wiley and Sons
Year
1995
Tongue
French
Weight
754 KB
Volume
61
Category
Article
ISSN
0020-7136

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✦ Synopsis


5'-deoxy-5-fluorouridine (5'-FUdR) is a cytostatic that is biotransformed to 5-fluorouracil(5-FUra) by pyrimidine nucleoside phosphorylase (PyNPase), the expression of which is up-regulated by tumor necrosis factor QL (TNFa), interleukin-I a (ILla) and interferon 'y (IFNy). In Lewis lung carcinoma (LLC) cell cultures, these inflammatory cytokines up-regulated the expression of type-IV collagenase, a metastatic factor, as well as PyNPase and consequently enhanced the antiproliferative activity of 5'-FUdR. However, the activity of 5-FUra was not enhanced. It appears that 5'-FUdR selectively kills highly metastatic cells which are exposed to these intrinsic cytokines in tumor tissues. because of their high PyNPase activity. In fact, 5'-FUdR inhibited the spontaneous metastasis of LLC from the S.C. inoculation site to the lung. When 5'-FUdR was given during the process of metastasis, it greatly reduced the number of tumor nodules in the lung even at doses 46 times lower than those inhibiting the primary tumor growth. In addition, 5'-FUdR, but not 5-FUra, lowered type-lV collagenase levels in the tumors at the low dose showing only anti-metastatic activity. On the other hand, 5-FUra showed anti-metastatic activity at doses similar to or only several times lower than those inhibiting the primary tumor growth.


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Inhibition of metastasis of lewis lung c
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A purified human urinary trypsin inhibitor (UTI) and its related synthetic peptides were examined to determine whether they could inhibit production of experimental and spontaneous lung metastases by murine Lewis lung carcinoma (3LL) cells. Three peptides, peptide I, peptide 2 and peptide 3, represe