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Detection and Monitoring of Tumor Associated Circulating DNA in Patient Biofluids
Published on: June 8, 2019
DNA mutilation: A telltale sign of cancer inception
A Anuradha1, Suresh Babu Undavalli2, A Jagadeesh Kumar1
1Department of Oral and Maxillofacial Pathology, St Joseph Dental College and Hospital, Duggirala, Eluru, Andhra Pradesh, India.
Abstract:
DNA damage is a discrepancy in its chemical structure precipitated by a multitude of factors. Most DNA damages can be repaired efficiently through diverse restorative mechanisms subjective to the type of damage. DNA-damaging agents elicit a medley of cellular retorts like cell cycle arrest, followed by DNA repair mechanisms or apoptosis. An unrepaired DNA damage in a nonreplicating cell does not generally engender mutations but a similar scenario in replicating cell routes to permanent modification of genetic material shrugging to carcinogenesis. DNA mutilation can be allied to disarray in bases, debasement of backbone, or crosslinks. Base damages or backbone damages like single-strand and double-strand DNA breaks are usually produced by reactive oxygen species and ionizing radiation. This substantial DNA damage has broadly been considered to be caused by various exogenous and endogenous agents with variable rates of causality and decrees of risk, sourcing toward cancer or other diseases, necessitating furtherance in diagnostics at sequential points. The purpose of this article is to review in detail the various types of DNA damages, their contributory factors, and recent developments in their identification.
Insights
DNA damage, a chemical alteration in DNA structure, can arise from various factors. Efficient repair mechanisms exist, but unrepaired damage during replication can lead to mutations and cancer.
Area of Science:
- Molecular Biology
- Genetics
- Biochemistry
Background:
- DNA damage represents alterations in the chemical structure of DNA.
- Numerous endogenous and exogenous agents can precipitate DNA damage.
- Cellular responses include cell cycle arrest, DNA repair, or apoptosis.
Purpose of the Study:
- To review the diverse types of DNA damage.
- To explore factors contributing to DNA damage.
- To discuss recent advancements in DNA damage identification.
Main Methods:
- Literature review of DNA damage mechanisms.
- Analysis of cellular responses to DNA-damaging agents.
- Examination of diagnostic advancements.
Main Results:
- DNA damage manifests as base or backbone alterations, including single-strand and double-strand breaks.
- Reactive oxygen species and ionizing radiation are common causes of DNA damage.
- Unrepaired DNA damage during replication can cause mutations and potentially lead to carcinogenesis.
Conclusions:
- Understanding DNA damage is crucial for diagnostics and disease prevention.
- Continued research into DNA repair and damage identification is necessary.
- The study highlights the link between DNA damage, mutations, and diseases like cancer.
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