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Published on: July 14, 2016
Prospects and Challenges in Identifying Genetic Determinants of Age-Related Cerebral Small Vessel Disease
Polina S Shlapakova1, Larisa A Dobrynina1, Elena V Gnedovskaya1
1Third Neurological Department, Russian Center of Neurology and Neurosciences, Moscow 125367, Russia.
Insights
Cerebral small vessel disease (CSVD) research is advancing with new genetic discoveries. Molecular genetics and multi-omics studies are identifying genetic factors for CSVD, paving the way for potential new treatments.
Area of Science:
- Neurology
- Genetics
- Vascular Biology
Background:
- Cerebral small vessel disease (CSVD) is a major cause of cognitive impairment and stroke.
- Current treatments targeting vascular risk factors are insufficient for CSVD.
- Aging and unknown factors contribute to increasing CSVD prevalence, necessitating new research.
Purpose of the Study:
- To review recent molecular genetic research in CSVD.
- To highlight advancements in identifying genetic determinants of CSVD.
- To discuss the potential for novel therapeutic targets.
Main Methods:
- Utilized high-throughput technologies like next-generation sequencing (NGS) and tandem mass spectrometry (MS/MS).
- Employed meta-analytical approaches integrating data from large, multi-ethnic cohorts.
- Leveraged advances in MRI for CSVD diagnosis.
Main Results:
- Identified the first reproducible genetic determinants for CSVD MRI markers.
- Characterized cell-type-specific expression patterns and molecular roles of these determinants.
- Highlighted challenges in identifying therapeutic targets due to study design limitations.
Conclusions:
- Large-scale genetic and multi-omics research offers promising avenues for CSVD treatment.
- Further research is needed to translate genetic findings into effective therapies.
- Understanding genetic underpinnings is crucial for future CSVD management.
Abstract:
Cerebral small vessel disease (CSVD), which is linked to age and vascular risk factors, is a prominent cause of vascular cognitive impairment and an important contributor to stroke incidence. The therapeutic management of vascular risk factors has failed to reduce the incidence of CSVD, and a trend toward an increasing prevalence of CSVD forms accompanied by neurodegeneration has been observed. These changes, driven primarily by aging and other poorly understood risk factors, coupled with the lack of pathogenetic therapy and specific biomarkers for disease progression, underscore the need for further molecular genetic research into CSVD. Advances in MRI-based CSVD diagnosis have enhanced the translational potential of such studies. The use of high-throughput technologies, such as next-generation sequencing (NGS) and tandem mass spectrometry (MS/MS), combined with meta-analytical approaches that integrate data from large, multi-ethnic cohorts, has enabled the identification of the first reproducible genetic determinants underlying various CSVD MRI markers, as well as their cell-type-specific expression patterns and roles in molecular processes. However, the identification of candidate therapeutic targets remains challenging, largely due to a lack of standardized experimental design for population-based studies. This review highlights key findings from large-scale population-based and multi-omics genetic research that hold promise for significant advancements in CSVD treatment.
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