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Methodology

Autologous Induced Pluripotent Stem Cell-Derived Four-Organ-Chip

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Article: FSO413 | Received 06 Jun 2019, Accepted 16 Jul 2019, Published online: 10 Sep 2019

References

  • SungJH , WangY , SriramNNet al.Recent advances in body-on-a-chip systems. Anal. Chem.91(1), 330–351 (2019).
  • DehneE-M , HickmanJJ , Shulerml. Biologically-inspired microphysiological systems. In: The History of Alternative Test Methods in Toxicology.BallsM, CombesR, WorthA ( Eds). Elsevier, London, UK, 279–284 (2019).
  • MarxU , AnderssonTB , BahinskiAet al.Biology-inspired microphysiological system approaches to solve the prediction dilemma of substance testing. ALTEX33(3), 272–321 (2016).
  • ZhangB , RadisicM. Organ-on-a-chip devices advance to market. Lab Chip17(14), 2395–2420 (2017).
  • ZhangJ , WeiX , ZengR , XuF , LiX. Stem cell culture and differentiation in microfluidic devices toward organ-on-a-chip. Future Sci. OA3(2), FSO187 (2017).
  • ErtlP , StickerD , CharwatV , KasperC , LepperdingerG. Lab-on-a-chip technologies for stem cell analysis. Trends Biotechnol.32(5), 245–253 (2014).
  • DrewM. Titmarsh , HuayingChen , NickR. Glass JJC-W. Concise Review: microfluidic technology platforms: poised to accelerate development and translation of stem cell-derived therapies. Stem Cells Transl Med.156–164 (2014).
  • ZhangQ , AustinRH. Applications of microfluidics in stem cell biology. Bionanoscience2(4), 277–286 (2012).
  • GerailiA , JafariP , HassaniMSet al.Controlling differentiation of stem cells for developing personalized organ-on-chip platforms. Adv. Healthc. Mater.7(2) Doi: 10.1002/adhm.201700426 (2018).
  • ParkD , LimJ , ParkJY , LeeS-H. Concise review: stem cell microenvironment on a chip: current technologies for tissue engineering and stem cell biology. Stem Cells Transl. Med.4(11), 1352–1368 (2015).
  • GiobbeGG , MichielinF , LuniCet al.Functional differentiation of human pluripotent stem cells on a chip. Nat. Methods12(7), 637–640 (2015).
  • WangY , WangL , GuoY , ZhuY , QinJ. Engineering stem cell-derived 3D brain organoids in a perfusable organ-on-a-chip system. RSC Adv.8(3), 1677–1685 (2018).
  • MaschmeyerI , LorenzAK , SchimekKet al.A four-organ-chip for interconnected long-term co-culture of human intestine, liver, skin and kidney equivalents. Lab Chip15(12), 2688–2699 (2015).
  • WagnerI , MaterneE-M , BrinckerSet al.A dynamic multi-organ-chip for long-term cultivation and substance testing proven by 3D human liver and skin tissue co-culture. Lab Chip13(18), 3538–3547 (2013).
  • MaterneE-MM , RammeAP , TerrassoAPet al.A multi-organ chip co-culture of neurospheres and liver equivalents for long-term substance testing. J. Biotechnol.205, 36–46 (2015).
  • EssigM , FriedlanderG. Tubular shear stress and phenotype of renal proximal tubular cells. J. Am. Soc. Nephrol.14(Suppl. 1), S33–S35 (2003).
  • SchimekK , BusekM , BrinckerSet al.Integrating biological vasculature into a multi-organ-chip microsystem. Lab Chip13(18), 3588 (2013).
  • HasenbergT , MühlederS , DotzlerAet al.Emulating human microcapillaries in a multi-organ-chip platform. J. Biotechnol.216, 1–10 (2015).
  • MarxU , WallesH , HoffmannSet al.“Human-on-a-chip” developments: a translational cuttingedge alternative to systemic safety assessment and efficiency evaluation of substances in laboratory animals and man?ATLA Altern. to Lab. Anim.40(5), 235–257 (2012).
  • KurtzA , PapeH-C , SilbernaglSet al.Physiologie. 8. Georg Thieme Verlag, Stuttgart (2018). www.thieme.de/shop/Physiologie/Pape-Kurtz-Silbernagl-Physiologie-9783137960072/p/000000000210930107
  • EllisEN , SteffesMW , GoetzFC , SutherlandDER , MauerSM. Glomerular filtration surface in type I diabetes mellitus. Kidney Int.29(4), 889–894 (1986).
  • OsterbyR , ParvingHH , NybergGet al.A strong correlation between glomerular filtration rate and filtration surface in diabetic nephropathy. Diabetologia31(5), 265–270 (1988).
  • DenicA , LieskeJC , ChakkeraHAet al.The substantial loss of nephrons in healthy human kidneys with aging. J. Am. Soc. Nephrol.28(1), 313–320 (2017).
  • DuanY , GotohN , YanQet al.Shear-induced reorganization of renal proximal tubule cell actin cytoskeleton and apical junctional complexes. Proc. Natl Acad. Sci. USA105(32), 11418–11423 (2008).
  • KoenigL , RammeA , FaustD , LausterR , MarxU. Production of human induced pluripotent stem cell-derived cortical neurospheres in the DASbox® mini bioreactor system. Appl. Note.364, 1–12 (2018).
  • GenuthS , AlbertiKGMM , BennettPet al.Follow-up report on the diagnosis of diabetes mellitus. Diabetes Care26(11), 3160–3167 (2003). www.ncbi.nlm.nih.gov/pubmed/14578255
  • SchersténB. Subnormal levels of glucose in urine. JAMA201(12), 949 (1967). https://doi.org/10.1001/jama.1967.03130120057014
  • LopesS , RoostM. Keygenes. 1–8 (2018). www.keygenes.nl/key/about/
  • TakasatoM , ErPX , ChiuHSet al.Kidney organoids from human iPS cells contain multiple lineages and model human nephrogenesis. Nature.526(7574), 564–568 (2015).
  • ZouL , LuoY , ChenMet al.A simple method for deriving functional MSCs and applied for osteogenesis in 3D scaffolds. Sci. Rep.3(1), 2243 (2013).
  • SzkolnickaD , FarnworthSL , Lucendo-VillarinB , HayDC. Deriving functional hepatocytes from pluripotent stem cells. Curr. Protoc. Stem Cell Biol.2014(August), 1g.5.1–1g.5.12 (2014).
  • KauffmanAL , EkertJE , GyurdievaAV , RycyzynMA , HornbyPJ. Directed differentiation protocols for successful human intestinal organoids derived from multiple induced pluripotent stem cell lines. Stem Cell Biol. Res.2(1), 1 (2015).
  • MorizaneR , BonventreJV. Generation of nephron progenitor cells and kidney organoids from human pluripotent stem cells. Nat. Protoc.12(1), 195–207 (2016).
  • RigamontiA , RepettiGG , SunCet al.Large-scale production of mature neurons from human pluripotent stem cells in a three-dimensional suspension culture system. Stem Cell Rep.6(6), 993–1008 (2016). https://doi.org/10.1016/j.stemcr.2016.05.010.
  • SloanSA , AndersenJ , PaşcaAM , BireyF , PaşcaSP. Generation and assembly of human brain region–specific three-dimensional cultures. Nat. Protoc.13(9), 2062–2085 (2018).
  • LippmannES , AzarinSM , KayJEet al.Derivation of blood-brain barrier endothelial cells from human pluripotent stem cells. Nat. Biotechnol.30(8), 783–791 (2012).
  • TiengV , StoppiniL , VillyS , FathiM , Dubois-DauphinM , KrauseK-H. Engineering of midbrain organoids containing long-lived dopaminergic neurons. Stem Cells Dev.23(13), 1535–1547 (2014).
  • GenuthS , AlbertiKGMM , BennettPet al.Follow-up report on the diagnosis of diabetes mellitus. Diabetes Care26(11), 3160–3167 (2003).
  • SchersténB , FritzH. Subnormal levels of glucose in urine: a sign of urinary tract infection. JAMA J. Am. Med. Assoc.201(12), 949–952 (1967).