Biometals and Ligands for Anti Cancer Drug Design: Molecular Mechanisms of Superoxide Dimutase Models Antitumer Effects

The main drawback of anti-tumor therapy is its low selectivity. One of the main reasons for this is that cytotoxic agents prevail among anti-tumor drugs. This ground-breaking book reviews one of the most promising approaches to new anti-tumor drugs - superoxide dismutase (SOD) models, and thoroughly delineates their use in combined tumor therapy.

1111907521
Biometals and Ligands for Anti Cancer Drug Design: Molecular Mechanisms of Superoxide Dimutase Models Antitumer Effects

The main drawback of anti-tumor therapy is its low selectivity. One of the main reasons for this is that cytotoxic agents prevail among anti-tumor drugs. This ground-breaking book reviews one of the most promising approaches to new anti-tumor drugs - superoxide dismutase (SOD) models, and thoroughly delineates their use in combined tumor therapy.

145.0 In Stock
Biometals and Ligands for Anti Cancer Drug Design: Molecular Mechanisms of Superoxide Dimutase Models Antitumer Effects

Biometals and Ligands for Anti Cancer Drug Design: Molecular Mechanisms of Superoxide Dimutase Models Antitumer Effects

Biometals and Ligands for Anti Cancer Drug Design: Molecular Mechanisms of Superoxide Dimutase Models Antitumer Effects

Biometals and Ligands for Anti Cancer Drug Design: Molecular Mechanisms of Superoxide Dimutase Models Antitumer Effects

Hardcover

$145.00 
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Overview

The main drawback of anti-tumor therapy is its low selectivity. One of the main reasons for this is that cytotoxic agents prevail among anti-tumor drugs. This ground-breaking book reviews one of the most promising approaches to new anti-tumor drugs - superoxide dismutase (SOD) models, and thoroughly delineates their use in combined tumor therapy.


Product Details

ISBN-13: 9781560725428
Publisher: Nova Science Publishers, Incorporated
Publication date: 11/28/1998
Pages: 380
Product dimensions: 6.64(w) x 9.72(h) x 0.94(d)
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