Literature DB >> 24292217

Inhibition of tumour cell growth by carnosine: some possible mechanisms.

Alan R Hipkiss1, Frank Gaunitz.   

Abstract

The naturally occurring dipeptide carnosine (β-alanyl-L-histidine) has been shown to inhibit, selectively, growth of transformed cells mediated, at least in part, by depleting glycolytic ATP levels. The mechanism(s) responsible has/have yet to be determined. Here, we discuss a number of probable and/or possible processes which could, theoretically, suppress glycolytic activity which would decrease ATP supply and generation of metabolic intermediates required for continued cell reproduction. Possibilities include effects on (i) glycolytic enzymes, (ii) metabolic regulatory activities, (iii) redox biology, (iv) protein glycation, (v) glyoxalase activity, (vi) apoptosis, (vii) gene expression and (viii) metastasis. It is possible, by acting at various sites that this pluripotent dipeptide may be an example of an endogenous "smart drug".

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Year:  2013        PMID: 24292217     DOI: 10.1007/s00726-013-1627-5

Source DB:  PubMed          Journal:  Amino Acids        ISSN: 0939-4451            Impact factor:   3.520


  20 in total

1.  Profiling and targeting of cellular mitochondrial bioenergetics: inhibition of human gastric cancer cell growth by carnosine.

Authors:  Jiao-Yan Cheng; Jian-Bo Yang; Yuan Liu; Min Xu; Yu-Yan Huang; Jing-Jing Zhang; Pei Cao; Jian-Xin Lyu; Yao Shen
Journal:  Acta Pharmacol Sin       Date:  2018-12-18       Impact factor: 6.150

2.  Carnosine suppresses oxygen-glucose deprivation/recovery-induced proliferation and migration of reactive astrocytes of rats in vitro.

Authors:  Li Ou-Yang; Yuan Liu; Bing-Yu Wang; Pei Cao; Jing-Jing Zhang; Yu-Yan Huang; Yao Shen; Jian-Xin Lyu
Journal:  Acta Pharmacol Sin       Date:  2017-09-21       Impact factor: 6.150

Review 3.  Use of Carnosine for Oxidative Stress Reduction in Different Pathologies.

Authors:  V D Prokopieva; E G Yarygina; N A Bokhan; S A Ivanova
Journal:  Oxid Med Cell Longev       Date:  2016-01-24       Impact factor: 6.543

4.  Preventive Effects of Carnosine on Lipopolysaccharide-induced Lung Injury.

Authors:  Ken-Ichiro Tanaka; Toshifumi Sugizaki; Yuki Kanda; Fumiya Tamura; Tomomi Niino; Masahiro Kawahara
Journal:  Sci Rep       Date:  2017-02-16       Impact factor: 4.379

5.  Pyruvate attenuates the anti-neoplastic effect of carnosine independently from oxidative phosphorylation.

Authors:  Henry Oppermann; Lutz Schnabel; Jürgen Meixensberger; Frank Gaunitz
Journal:  Oncotarget       Date:  2016-12-27

6.  Carnosine Inhibits the Proliferation of Human Cervical Gland Carcinoma Cells Through Inhibiting Both Mitochondrial Bioenergetics and Glycolysis Pathways and Retarding Cell Cycle Progression.

Authors:  Yun Bao; Saidan Ding; Jiaoyan Cheng; Yuan Liu; Bingyu Wang; Huijuan Xu; Yao Shen; Jianxin Lyu
Journal:  Integr Cancer Ther       Date:  2016-12-23       Impact factor: 3.279

7.  Carnosine selectively inhibits migration of IDH-wildtype glioblastoma cells in a co-culture model with fibroblasts.

Authors:  Henry Oppermann; Johannes Dietterle; Katharina Purcz; Markus Morawski; Christian Eisenlöffel; Wolf Müller; Jürgen Meixensberger; Frank Gaunitz
Journal:  Cancer Cell Int       Date:  2018-08-13       Impact factor: 5.722

8.  Glycyl-alanyl-histidine protects PC12 cells against hydrogen peroxide toxicity.

Authors:  Hideki Shimura; Ryota Tanaka; Yoshiaki Shimada; Kazuo Yamashiro; Nobutaka Hattori; Takao Urabe
Journal:  BMC Biochem       Date:  2017-11-22       Impact factor: 4.059

9.  The toxicity study of synthesized inverse carnosine peptide analogues on HepG2 and HT-29 cells.

Authors:  Mohammad Hassan Houshdar Tehrani; Abdolhamid Bamoniri; Mohammadreza Gholibeikian
Journal:  Iran J Basic Med Sci       Date:  2018-01       Impact factor: 2.699

Review 10.  Important roles of dietary taurine, creatine, carnosine, anserine and 4-hydroxyproline in human nutrition and health.

Authors:  Guoyao Wu
Journal:  Amino Acids       Date:  2020-02-18       Impact factor: 3.789

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