4.7 Review

Assessing kidney development and disease using kidney organoids and CRISPR engineering

期刊

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fcell.2022.948395

关键词

pluripotent stem cells; CRISPR; nephrogenesis; kidney engineering; kidney organoids

资金

  1. Deutsche Forschungsgemeinschaft [DFG-SA 4062/1-1]
  2. European Research Council (ERC) under the European Union [CoG-2020_101002478_ENGINORG, GA-874827 BRAV3, GA-964342-ECABOX]
  3. Innovative Medicines Initiative 2 Joint Undertaking (JU) [101005026]
  4. European Union's Horizon 2020 research and innovation program
  5. EFPIA
  6. EIT Health [20366]
  7. MCIN/AEI [PID 2020-119929RB-I00]
  8. MCIN/European Union``Next Generation EU/PRTR'' [PLEC 2021-008127]
  9. Generalitat de Catalunya
  10. CERCA Programme
  11. IBEC Faster Future program (A por la COVID-19)
  12. Instituto de Salud Carlos III (ISCIII) through the Biobanks and Biomodels Platform
  13. European Union [PTC20/00013, PTC20/00130]
  14. Instituto de Salud Carlos III
  15. European Union-Next Generation EU, Plan de Recuperacion Transformacion y Resiliencia [TERAV/ISCIII RD21/0017/0018]
  16. Fundacion BBVA a Equipos de Investigacion Cientifica SARS-CoV-2 years COVID-19 through the project Identifying SARS-CoV-2-host cell interactions exploiting CRISPR-Cas9-engineered human organoids: through the development of specific therapies against COVID
  17. Fundacio' la Marato' de TV3 [201910-31, 202125-3]

向作者/读者索取更多资源

The differentiation of human pluripotent stem cells towards kidney organoids has advanced regenerative medicine significantly. Understanding the developmental pathways of nephrogenesis has enabled the in vitro recapitulation of kidney development. Genome editing approaches, such as CRISPR/Cas9 technology, have provided insights into specific gene functions during renal differentiation from hPSCs.
The differentiation of human pluripotent stem cells (hPSCs) towards organoids is one of the biggest scientific advances in regenerative medicine. Kidney organoids have not only laid the groundwork for various organ-like tissue systems but also provided insights into kidney embryonic development. Thus, several protocols for the differentiation of renal progenitors or mature cell types have been established. Insights into the interplay of developmental pathways in nephrogenesis and determination of different cell fates have enabled the in vitro recapitulation of nephrogenesis. Here we first provide an overview of kidney morphogenesis and patterning in the mouse model in order to dissect signalling pathways that are key to define culture conditions sustaining renal differentiation from hPSCs. Secondly, we also highlight how genome editing approaches have provided insights on the specific role of different genes and molecular pathways during renal differentiation from hPSCs. Based on this knowledge we further review how CRISPR/Cas9 technology has enabled the recapitulation and correction of cellular phenotypes associated with human renal disease. Last, we also revise how the field has positively benefited from emerging technologies as single cell RNA sequencing and discuss current limitations on kidney organoid technology that will take advantage from bioengineering solutions to help standardizing the use of this model systems to study kidney development and disease.

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