Diabetic nephropathy model:animal model,two-dimensional cell simulation and three-dimensional organoid model
BACKGROUND:In recent years,human pluripotent stem cell derived kidney organoids and rodent models of diabetic kidney disease have also made some progress.However,because the pathogenesis of diabetic kidney disease is affected by environmental factors and genetic factors,the pathogenesis is complex,and the clinical treatment for diabetic kidney disease patients needs to vary from person to person.Therefore,more flexible and integrated approaches need to be developed,leading to the discovery of strong preclinical evidence to support more targeted interventions in patients with diabetic kidney disease.OBJECTIVE:To reviewthe research progress of diabetic kidney disease model from the aspects of diabetic kidney disease animal model,two-dimensional cell culture simulation diabetic kidney disease model,and three-dimensional organoid diabetic kidney disease model,to provide clues and ideas for further research.METHODS:China National Knowledge Network and PubMed databases were searched with"diabetes,diabetic nephropathy,diabetic kidney diseases,diabetic nephropathy models,diabetic nephropathy animal models,organoids,diabetic and organoids,diabetic and kidney organoids,kidney organoids,diabetic nephropathy cell models,diabetic nephropathy syndrome combined animal models"as Chinese and English search terms.Totally 101 articles were finally included for review and analysis.RESULTS AND CONCLUSION:Both in vivo and in vitro models of diabetic kidney disease are powerful tools to further study the pathogenesis of diabetic kidney disease.The interactions between multiple systems can be observed in animal models.Two-dimensional cell culture is easy to operate and low cost.The emerging kidney organoids fill the gap between two-dimensional and global levels,without species differences,and simulate the complexity of human kidney to a certain extent.With the continuous development of organoid technology,kidney organoids are expected to provide a new perspective for exploring the pathogenesis,pathophysiology,and drug screening of diabetic kidney disease.
Diabetic kidney diseasekidney organoidsdiabetic nephropathy organoid modelcell modelsanimal modelsTCM syndrome combined with diabetic nephropathy modelengineered tissue construction