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Published on: February 3, 2022
Clinical Updates and Surveillance Recommendations for DNA Replication Repair Deficiency Syndromes in Children and
Anirban Das1,2,3,4, Suzanne P MacFarland5, Julia Meade6
1Division of Haematology Oncology, The Hospital for Sick Children, Toronto, Ontario, Canada.
Abstract:
Replication repair deficiency (RRD) is a pan-cancer mechanism characterized by abnormalities in the DNA mismatch repair (MMR) system due to pathogenic variants in the PMS2, MSH6, MSH2, or MLH1 genes, and/or in the polymerase-proofreading genes POLE and POLD1. RRD predisposition syndromes (constitutional MMR deficiency, Lynch, and polymerase proofreading-associated polyposis) share overlapping phenotypic and biological characteristics. Moreover, cancers stemming from germline defects of one mechanism can acquire somatic defects in another, leading to complete RRD. Here we describe the recent advances in the diagnostics, surveillance, and clinical management for children with RRD syndromes. For patients with constitutional MMR deficiency, new data combining clinical insights and cancer genomics have revealed genotype-phenotype associations and helped in the development of novel functional assays, diagnostic guidelines, and surveillance recommendations. Recognition of non-gastrointestinal/genitourinary malignancies, particularly aggressive brain tumors, in select children with Lynch and polymerase proofreading-associated polyposis syndromes harboring an RRD biology have led to new management considerations. Additionally, universal hypermutation and microsatellite instability have allowed immunotherapy to be a paradigm shift in the treatment of RRD cancers independent of their germline etiology. These advances have also stimulated a need for expert recommendations about genetic counseling for these patients and their families. Future collaborative work will focus on newer technologies such as quantitative measurement of circulating tumor DNA and functional genomics to tailor surveillance and clinical care, improving immune surveillance; develop prevention strategies; and deliver these novel discoveries to resource-limited settings to maximize benefits for patients globally.
Insights
Replication repair deficiency (RRD) syndromes in children are increasingly understood, with advances in diagnostics, surveillance, and management. Immunotherapy shows promise for RRD cancers due to hypermutation and microsatellite instability.
Area of Science:
- Genetics and Oncology
- Cancer Genomics
- DNA Repair Mechanisms
Background:
- Replication repair deficiency (RRD) encompasses DNA mismatch repair (MMR) and polymerase proofreading defects.
- RRD predisposition syndromes share overlapping features and can progress to complete RRD through acquired somatic defects.
- Advances in understanding RRD are crucial for pediatric cancer management.
Purpose of the Study:
- To review recent advances in the diagnostics, surveillance, and clinical management of RRD syndromes in children.
- To highlight genotype-phenotype associations and novel functional assays for constitutional MMR deficiency.
- To discuss new management considerations for RRD-associated malignancies and the role of immunotherapy.
Main Methods:
- Review of recent clinical insights and cancer genomics data.
- Analysis of genotype-phenotype associations in constitutional MMR deficiency.
- Evaluation of immunotherapy's impact on RRD cancers with universal hypermutation and microsatellite instability.
Main Results:
- New diagnostic guidelines and surveillance recommendations for RRD syndromes have been developed.
- Recognition of non-gastrointestinal/genitourinary malignancies, including brain tumors, in Lynch and polymerase proofreading-associated polyposis syndromes.
- Immunotherapy is a paradigm shift in treating RRD cancers due to universal hypermutation and microsatellite instability.
Conclusions:
- Advances in RRD diagnostics and management are improving care for affected children.
- Genetic counseling recommendations are evolving alongside new discoveries.
- Future research will focus on advanced technologies for personalized surveillance and treatment strategies.
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