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Implications of DNA damage response and immunotherapy in tumor therapy
Wenqing Li1, Binghang Li1, Chang Cai1
1Department of Radiation Oncology, The First Affiliated Hospital of Soochow University, Suzhou, 215006, China.
Abstract:
Tumorigenesis is closely related to defects in DNA damage response (DDR), which plays an important role in maintaining genomic integrity. The DDR process includes DNA damage recognition, cell cycle checkpoint pathway activation, and DNA damage repair. On the one hand, defects in DDR increase the instability of the cellular genome, which ultimately leads to tumorigenesis. On the other hand, tumor therapy can take advantage of DDR defects to induce apoptosis by causing damage to tumor cells, thus achieving therapeutic goals. Tumor immunotherapy is an emerging method of tumor treatment that attacks and kills cancer cells by inhibiting negative regulatory factors, enhancing the ability of immune cells to recognize antigens on the surface of tumor cells and activating the patient's own immune system. Recent research evidence suggests that DDR inhibition enhances antitumor immune responses and acts in synergy with immunotherapy. This review describes the different categories of DNA damage, their corresponding DNA damage repair pathways, the antitumor mechanisms of action targeting DDR inhibition, and the prominent contributions of these mechanisms to the immunotherapeutic response. By exploring recent advances in the interactions between targeted DDR and immunotherapy, this review provides novel therapeutic insights into the treatment of DNA damage-associated cancers as well as the development of combination immunotherapy.
Insights
Defects in DNA damage response (DDR) are linked to cancer. Inhibiting DDR can enhance cancer immunotherapy by boosting the immune system
Area of Science:
- Oncology
- Immunology
- Genetics
Background:
- Genomic integrity is maintained by the DNA damage response (DDR).
- Defects in DDR contribute to tumorigenesis and can be exploited for cancer therapy.
- Tumor immunotherapy activates the patient's immune system to fight cancer.
Purpose of the Study:
- To review DNA damage types, repair pathways, and DDR inhibition's antitumor mechanisms.
- To explore the synergy between DDR inhibition and immunotherapy.
- To provide insights into treating DNA damage-associated cancers with combination immunotherapy.
Main Methods:
- Literature review of DNA damage response pathways.
- Analysis of DDR inhibition strategies in cancer therapy.
- Examination of the interplay between DDR and immunotherapy.
Main Results:
- DDR defects increase genomic instability, promoting cancer development.
- Targeting DDR can induce tumor cell apoptosis, aiding therapeutic goals.
- DDR inhibition enhances antitumor immunity and synergizes with immunotherapy.
Conclusions:
- DDR inhibition offers a promising strategy to augment cancer immunotherapy.
- Combination therapies targeting DDR and the immune system show therapeutic potential.
- Further research into DDR-targeted treatments can advance cancer care for DNA damage-associated malignancies.
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