The Application of High-Throughput Approaches in Identifying Novel Therapeutic Targets and Agents to Treat Diabetes.
Siyi HeGareth E LimPublished in: Advanced biology (2022)
During the past decades, unprecedented progress in technologies has revolutionized traditional research methodologies. Among these, advances in high-throughput drug screening approaches have permitted the rapid identification of potential therapeutic agents from drug libraries that contain thousands or millions of molecules. Moreover, high-throughput-based therapeutic target discovery strategies can comprehensively interrogate relationships between biomolecules (e.g., gene, RNA, and protein) and diseases and significantly increase the authors' knowledge of disease mechanisms. Diabetes is a chronic disease primarily characterized by the incapacity of the body to maintain normoglycemia. The prevalence of diabetes in modern society has become a severe public health issue that threatens the well-being of millions of patients. Although a number of pharmacological treatments are available, there is no permanent cure for diabetes, and discovering novel therapeutic targets and agents continues to be an urgent need. The present review discusses the technical details of high-throughput screening approaches in drug discovery, followed by introducing the applications of such approaches to diabetes research. This review aims to provide an example of the applicability of high-throughput technologies in facilitating different aspects of disease research.
Keyphrases
- high throughput
- type diabetes
- cardiovascular disease
- glycemic control
- public health
- single cell
- drug discovery
- end stage renal disease
- chronic kidney disease
- newly diagnosed
- small molecule
- ejection fraction
- healthcare
- risk factors
- adipose tissue
- prognostic factors
- emergency department
- dna methylation
- skeletal muscle
- insulin resistance
- protein protein
- loop mediated isothermal amplification