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Caspase-Independent Pathways of Programmed Cell Death: The Unraveling of New Targets of Cancer Therapy?

Authors :
Constantinou, Constantina
Papas, Konstantinos A.
Constantinou, Andreas I.
Constantinou, Andreas I. [0000-0003-0365-1821]
Source :
Current Cancer Drug Targets, Curr.Cancer Drug Targets
Publication Year :
2009
Publisher :
Bentham Science Publishers Ltd., 2009.

Abstract

In the past few years, accumulating evidence in the literature supports the existence of pathways of caspase-independent programmed cell death (CI-PCD). These pathways are likely to be acting as 'death backup systems' that ensure effective removal of defective cells from the organism. Similar to classical apoptosis i.e. caspase-dependent programmed cell death (CD-PCD), the mitochondrion is the main organelle orchestrating the series of events which are required for the induction of CI-PCD. In addition, the pro-apoptotic proteins Bax and Bid are also key participants in CI-PCD. However, contrary to CD-PCD, CI-PCD involves executioners other than the caspases which include the cathepsins, the calpains and serine proteases. The protein AIF may also play an important role in the induction of CI-PCD. In this review we report current knowledge on CI-PCD and provide evidence for its regulation by chemotherapeutic agents currently used in the clinic and under investigation in clinical trials. Lastly, we discuss how the study of natural and synthetic agents triggering CI-PCD may help in the pharmacological design of a new generation of more effective chemotherapeutic drugs. The use of such drugs activating both CD-PCD and CI-PCD pathways should achieve a more successful eradication of carcinogenic cells and the attainment of lower levels of tumor resistance. © 2009 Bentham Science Publishers Ltd. 9 717 728 Tradenames: azaspirane bzl 101 chm 1 cy 103 rb 110 rb 49 xyotax Cited By :47

Subjects

Subjects :
carcinoid
chm 1
cell organelle
vitamin D
Apoptosis
quinolone derivative
serine proteinase
Drug Discovery
advanced cancer
mitochondrion
Programmed cell death
Drug discovery
leukemia
clinical trial
Calpain
Cell biology
myeloma
Oncology
Caspases
calpain
signal transduction
protein Bax
receptor down regulation
Proteases
drug design
phenol derivative
caspase
2' fluoro 6,7 methylenedioxy 2 phenyl 4 quinolone
Antineoplastic Agents
Necrosis
estradiol
unindexed drug
otorhinolaryngologic diseases
Humans
cathepsin
human
protein Bid
drug inhibition
apoptosis inducing factor
Pharmacology
drug targeting
rb 49
tumor resistance
protein phosphorylation
respiratory tract diseases
drug efficacy
herbaceous agent
paclitaxel poliglumex
flavopiridol
monoclonal antibody
molecular interaction
n methylpiperidinyl chlorophenyl flavone
solid tumor
benzyloxycarbonylvalylalanylaspartyl fluoromethyl ketone
mediator
Apoptosis Regulatory Proteins
Cancer Research
atiprimod
Mitochondrion
protein induction
AIF
Drug Delivery Systems
Caspase-independent cell death
oxidative stress
flavone derivative
bzl 101
receptor upregulation
antineoplastic agent
Caspase
AIF inhibitor
apoptosis inhibitor
Clinical Trials as Topic
biology
lung non small cell cancer
prostate cancer
unclassified drug
Mitochondria
cell death
cytotoxicity
rb 110
drug potency
Signal Transduction
liver cell carcinoma
animal structures
colecalciferol
regulatory mechanism
chromatin condensation
review
antineoplastic activity
tumor cell
Models, Biological
breast cancer
azaspirane
drug mechanism
Chemotherapy
Cathepsin
carcinogenic activity
nonhuman
2,4,6 triiodophenol
cy 103
caspase inhibitor
gene expression
biology.protein
Cancer research
bobel 24
neoplasm
Peptide Hydrolases

Details

ISSN :
15680096
Volume :
9
Database :
OpenAIRE
Journal :
Current Cancer Drug Targets
Accession number :
edsair.doi.dedup.....9f95f44db4484ec1851baf66add766d4
Full Text :
https://doi.org/10.2174/156800909789271512