Abstract
The advent of “systems biology” has highlighted that any function of a biological system is rarely attributable to a single molecule or a single process. Hence, complex processes, such as apoptosis and survival, depend on the activity of an integrated network of genes and their encoded proteins, which almost never work alone but interact with each other in highly structured and incredibly complex ways. With the completion of genome sequencing in humans and model organisms, and the advent of DNA microarray technology, the transcriptional cascades and gene networks regulating neuronal apoptosis and survival are being elucidated providing new potential pharmacological targets. The emerging challenge is the effective selection of the myriad of targets to identify those with the most therapeutic utility. The present review will illustrate how the identification, prioritization and validation of preclinical therapeutics can be achieved through genomic analysis of critical pathways and networks in neuronal apoptosis and survival.
Keywords: Apoptosis, drug, neuronal, pharmacogenomics, programmed cell death, survival, systems biology, target
Current Pharmaceutical Design
Title: Systems Biology of Apoptosis and Survival: Implications for Drug Development
Volume: 17 Issue: 3
Author(s): Salvatore Pezzino, Sabrina Paratore and Sebastiano Cavallaro
Affiliation:
Keywords: Apoptosis, drug, neuronal, pharmacogenomics, programmed cell death, survival, systems biology, target
Abstract: The advent of “systems biology” has highlighted that any function of a biological system is rarely attributable to a single molecule or a single process. Hence, complex processes, such as apoptosis and survival, depend on the activity of an integrated network of genes and their encoded proteins, which almost never work alone but interact with each other in highly structured and incredibly complex ways. With the completion of genome sequencing in humans and model organisms, and the advent of DNA microarray technology, the transcriptional cascades and gene networks regulating neuronal apoptosis and survival are being elucidated providing new potential pharmacological targets. The emerging challenge is the effective selection of the myriad of targets to identify those with the most therapeutic utility. The present review will illustrate how the identification, prioritization and validation of preclinical therapeutics can be achieved through genomic analysis of critical pathways and networks in neuronal apoptosis and survival.
Export Options
About this article
Cite this article as:
Pezzino Salvatore, Paratore Sabrina and Cavallaro Sebastiano, Systems Biology of Apoptosis and Survival: Implications for Drug Development, Current Pharmaceutical Design 2011; 17 (3) . https://dx.doi.org/10.2174/138161211795049688
DOI https://dx.doi.org/10.2174/138161211795049688 |
Print ISSN 1381-6128 |
Publisher Name Bentham Science Publisher |
Online ISSN 1873-4286 |

- Author Guidelines
- Bentham Author Support Services (BASS)
- Graphical Abstracts
- Fabricating and Stating False Information
- Research Misconduct
- Post Publication Discussions and Corrections
- Publishing Ethics and Rectitude
- Increase Visibility of Your Article
- Archiving Policies
- Peer Review Workflow
- Order Your Article Before Print
- Promote Your Article
- Manuscript Transfer Facility
- Editorial Policies
- Allegations from Whistleblowers
- Announcements
Related Articles
-
Identification of Functional Peptides from Natural and Synthetic Products on Their Anticancer Activities by Tumor Targeting
Current Medicinal Chemistry Phosphoinositide 3-Kinases and Leukocyte Migration
Current Immunology Reviews (Discontinued) Cellular Functions of Vaults and their Involvement in Multidrug Resistance
Current Drug Targets Glycans in Magnetic Resonance Imaging: Determinants of Relaxivity to Smart Agents, and Potential Applications in Biomedicine
Current Medicinal Chemistry Radionuclide Antibody-Conjugates, a Targeted Therapy Towards Cancer
Current Radiopharmaceuticals Advances in Cancer Stem Cell Therapy: Targets and Treatments
Recent Patents on Regenerative Medicine Gynaecological Cancer Diagnostics: 99mTc-Cisplatin Complex as a Future Approach for Early, Prompt and Efficient Diagnosis of Gynaecological Cancer
Current Medical Imaging MicroRNAs as Potential Therapeutic Agents in the Treatment of Myocardial Infarction
Current Vascular Pharmacology Immunostimulatory Oligonucleotides
Recent Patents on Inflammation & Allergy Drug Discovery A Comparative Study Between the Leaf and Flowers of Some Asteraceae Plants With Respect to Their Antioxidant Activity Compounds
Current Nutrition & Food Science Lysosomal Storage Diseases and the Blood-Brain Barrier
Current Pharmaceutical Design Recent Advancements in Fuzzy C-means Based Techniques for Brain MRI Segmentation
Current Medical Imaging Cation-Responsive MRI Contrast Agents Based on Gadolinium(III)
Current Inorganic Chemistry (Discontinued) Improving Safety of Gene Therapy
Current Drug Safety Endogenous Events Modulating Myogenic Regulation of Cerebrovascular Function
Current Vascular Pharmacology Matrix Metalloproteinase Inhibitors as Prospective Agents for the Prevention and Treatment of Cardiovascular and Neoplastic Diseases
Current Topics in Medicinal Chemistry Editorial (Thematic Issue: Linkage of Neurodegenerative Disorders with Other Health Issues – Volume II)
CNS & Neurological Disorders - Drug Targets Targeting Myc in Pediatric Malignancies of the Central and Peripheral Nervous System
Current Cancer Drug Targets Nanofibers: An Effective Tool for Controlled and Sustained Drug Delivery
Current Drug Delivery Kinase Inhibitors Targeting Anti-angiogenesis as Anti-cancer Therapies
Current Angiogenesis (Discontinued)