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PMID: 8917363 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Relationship between ascorbyl radical intensity and apoptosis-inducing activity.

Anticancer research ·Vol. 16 ·No. 5A ·1996-00-00 ·Pages 2635-44

Sakagami H, Satoh K, Ohata H, Takahashi H, Yoshida H, Iida M, Kuribayashi N, Sakagami T, Momose K, Takeda M

Abstract

Ascorbic acid and its related compounds were compared for their ascorbyl radical intensity and apoptosis-inducing activity. Sodium L-ascorbate, L-ascorbic acid, D-isoascorbic acid, sodium 6-beta-O-galactosyl-L-ascorbate and sodium 5,6-benzylidene-L-ascorbate, at the concentration of 1-10 mM, induced apoptotic cell death characterized by cell shrinkage, nuclear fragmentation and internucleosomal DNA cleavage in human promyelocytic leukemic HL-60 cells. On the other hand, L-ascorbic acid-2-phosphate magnesium salt and L-ascorbic acid 2-sulfate did not induce any of these apoptosis-associated characteristics. ESR measurements revealed that all the active compounds were progressively degraded, producing the ascorbyl radical (g = 2.0064, hfc = 0.17 mT) in culture medium, whereas the inactive compounds were stable and did not produce the ascorbyl radical. Cytotoxicity began to appear when the radical intensity exceeded a certain threshold level. In the presence of N-acetyl-L-cysteine, both ascorbyl radical intensity and apoptosis-inducing activity were significantly reduced. These data suggest the possible involvement of the ascorbyl radical in apoptosis induction by ascorbic acid-related compounds. Exposure of HL-60 cells to ascorbic acid or its active derivatives resulted in the rapid elevation of intracellular Ca2+ concentration, which might serve as the initial signal leading to the cell death pathway.

MeSH Terms
Antineoplastic Agents/chemistry,pharmacology Ascorbic Acid/analogs & derivatives,chemistry,pharmacology Benzylidene Compounds/chemistry,pharmacology DNA Fragmentation DNA, Neoplasm/drug effects Drug Stability Free Radicals/chemistry,pharmacology HL-60 Cells/drug effects Humans Time Factors
Chemicals
Antineoplastic Agents Benzylidene Compounds DNA, Neoplasm Free Radicals Ascorbic Acid zilascorb
Authors & Affiliations
10 authors, click to expand affiliations / ORCID
Sakagami H
First Department of Biochemistry, School of Medicine, Showa University, Tokyo, Japan.
Satoh K
Ohata H
Takahashi H
Yoshida H
Iida M
Kuribayashi N
Sakagami T
Momose K
Takeda M
Article Info
Journal
Anticancer research
Abbr.
Anticancer Res
ISSN
0250-7005
Published
1996-00-00
Pages
2635-44
Language
English
Region
Greece
NLM ID
8102988
Subset
IM
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