55
Views
9
CrossRef citations to date
0
Altmetric
Original Research

A nanoporous surface is essential for glomerular podocyte differentiation in three-dimensional culture

, , , , , , , , & show all
Pages 4957-4973 | Published online: 30 Sep 2016

References

  • MendesPMCellular nanotechnology: making biological interfaces smarterChem Soc Rev201342249207921824097313
  • LimJYDreissADZhouZThe regulation of integrin-mediated osteoblast focal adhesion and focal adhesion kinase expression by nanoscale topographyBiomaterials200728101787179717218005
  • MiglioriniEGrenciGBanJAcceleration of neuronal precursors differentiation induced by substrate nanotopographyBiotechnol Bioeng2011108112736274621656711
  • FabbroABosiSBalleriniLPratoMCarbon nanotubes: artificial nanomaterials to engineer single neurons and neuronal networksACS Chem Neurosci20123861161822896805
  • YimEKPangSWLeongKWSynthetic nanostructures inducing differentiation of human mesenchymal stem cells into neuronal lineageExp Cell Res200731391820182917428465
  • BrunettiVMaioranoGRizzelloLNeurons sense nanoscale roughness with nanometer sensitivityProc Natl Acad Sci U S A2010107146264626920308580
  • KrizWShiratoINagataMLeHirMLemleyKVThe podocyte’s response to stress: the enigma of foot process effacementAm J Phys Renal Physiol20133044F333F347
  • LennonRRandlesMJHumphriesMJThe importance of podocyte adhesion for a healthy glomerulusFront Endocrinol (Lausanne)2014516025352829
  • KrizWLemleyKVA potential role for mechanical forces in the detachment of podocytes and the progression of CKDJ Am Soc Nephrol201526225826925060060
  • KobayashiNGaoSYChenJProcess formation of the renal glomerular podocyte: is there common molecular machinery for processes of podocytes and neurons?Anat Sci Int2004791110
  • KobayashiNMechanism of the process formation; podocytes vs. neuronsMicrosc Res Tech200257421722312012387
  • SmoyerWEMundelPRegulation of podocyte structure during the development of nephrotic syndromeJ Mol Med1998763–41721839535550
  • SuleimanHZhangLRothRNanoscale protein architecture of the kidney glomerular basement membraneElife20132e0114924137544
  • BakeineGJBertolottiALatinaMSurface properties and implantation site affect the capsular fibrotic overgrowthJ Biomed Mater Res A200783496596917580325
  • BakeineGJBertolottiAZennaroCDesign and fabrication of large area nano-structured substrates for use in pancreatic beta-cell engineeringMicroelectron Eng2009864–614681472
  • TimplRMacromolecular organization of basement membranesCurr Opin Cell Biol1996856186248939648
  • RajnicekAMcCaigCGuidance of CNS growth cones by substratum grooves and ridges: effects of inhibitors of the cytoskeleton, calcium channels and signal transduction pathwaysJ Cell Sci1997110Pt 23291529249359874
  • Dowell-MesfinNMAbdul-KarimMATurnerAMTopographically modified surfaces affect orientation and growth of hippocampal neuronsJ Neural Eng200412789015876626
  • ChristophersonGTSongHMaoHQThe influence of fiber diameter of electrospun substrates on neural stem cell differentiation and proliferationBiomaterials200930455656418977025
  • LeeDAKnightMMCampbellJJBaderDLStem cell mechanobiologyJ Cell Biochem201111211920626029
  • MarkertLDLovmandJFossMIdentification of distinct topographical surface microstructures favoring either undifferentiated expansion or differentiation of murine embryonic stem cellsStem Cells Dev20091891331134219508153
  • ParkJBauerSvon der MarkKSchmukiPNanosize and vitality: TiO2 nanotube diameter directs cell fateNano Lett2007761686169117503870
  • MeinelAJKubowKEKlotzschEOptimization strategies for electrospun silk fibroin tissue engineering scaffoldsBiomaterials200930173058306719233463
  • WangGAoQGongKThe effect of topology of chitosan biomaterials on the differentiation and proliferation of neural stem cellsActa Biomater2010693630363920371303
  • JeonHSimonCGJrKimGA mini-review: cell response to microscale, nanoscale, and hierarchical patterning of surface structureJ Biomed Mater Res B Appl Biomater201410271580159424678035
  • HironakaKMakinoHYamasakiYOtaZRenal basement membranes by ultrahigh resolution scanning electron microscopyKidney Int19934323343458441229
  • RosenfeldGMorgensternKEsserMComsaGDynamics and stability of nanostructures on metal surfacesAppl Phys A Mater1999695489496
  • ConstantinescuRConstantinescuATReichmannHJanetzkyBNeuronal differentiation and long-term culture of the human neuroblastoma line SH-SY5YJ Neural Transm Suppl200772172817982873
  • DoublierSMusanteLLupiaEDirect effect of plasma permeability factors from patients with idiopatic FSGS on nephrin and podocin expression in human podocytesInt J Mol Med2005161495815942677
  • EdsjoAHolmquistLPahlmanSNeuroblastoma as an experimental model for neuronal differentiation and hypoxia-induced tumor cell dedifferentiationSemin Cancer Biol200717324825616828305
  • VesanenMSalminenMWessmanMLankinenHSistonenPVaheriAMorphological differentiation of human SH-SY5Y neuroblastoma cells inhibits human immunodeficiency virus type 1 infectionJ Gen Virol199475Pt 12012068113728
  • WerthDGrassiGKonjerNProliferation of human primary vascular smooth muscle cells depends on serum response factorEur J Cell Biol2010892–321622420096952
  • ZennaroCRastaldiMPPascoloLPodocyte expression of membrane transporters involved in puromycin aminonucleoside-mediated injuryPLoS One201386e6615923840417
  • QiLLiNHuangRThe effects of topographical patterns and sizes on neural stem cell behaviorPLoS One201383e5902223527077
  • KoreckaJAvan KesterenREBlaasEPhenotypic characterization of retinoic acid differentiated SH-SY5Y cells by transcriptional profilingPLoS One201385e6386223724009
  • LopesFMSchroderRda FrotaMLJrComparison between proliferative and neuron-like SH-SY5Y cells as an in vitro model for Parkinson disease studiesBrain Res20101337859420380819
  • ShanklandSJThe podocyte’s response to injury: role in proteinuria and glomerulosclerosisKidney Int200669122131214716688120
  • RastaldiMPArmelloniSBerraSGlomerular podocytes contain neuron-like functional synaptic vesiclesFASEB J200620797697816585060
  • DaleyWPPetersSBLarsenMExtracellular matrix dynamics in development and regenerative medicineJ Cell Sci2008121Pt 325526418216330
  • ShuklaASlaterJHCulverJCDickinsonMEWestJLBiomimetic surface patterning promotes mesenchymal stem cell differentiationACS Appl Mater Interfaces Epub20151217
  • DadoDSagiMLevenbergSZemelAMechanical control of stem cell differentiationRegen Med20127110111622168501
  • TeixeiraAIAbramsGABerticsPJMurphyCJNealeyPFEpithelial contact guidance on well-defined micro- and nanostructured substratesJ Cell Sci2003116Pt 101881189212692189
  • Cavalcanti-AdamEAAydinDHirschfeld-WarnekenVCSpatzJPCell adhesion and response to synthetic nanopatterned environments by steering receptor clustering and spatial locationHFSP J20082527628519404439
  • ButtiglioneMVitielloFSardellaEBehaviour of SH-SY5Y neuroblastoma cell line grown in different media and on different chemically modified substratesBiomaterials200728192932294517391751
  • LinnalaALehtoVPVirtanenINeuronal differentiation in SH-SY5Y human neuroblastoma cells induces synthesis and secretion of tenascin and upregulation of alpha(v) integrin receptorsJ Neurosci Res199749153639211989
  • YuJGonzalezSMartinezLDiez-PardoJATovarJAEffects of retinoic acid on the neural crest-controlled organs of fetal ratsPediatr Surg Int200319535535812898162
  • HamiltonDWChehroudiBBrunetteDMComparative response of epithelial cells and osteoblasts to microfabricated tapered pit topographies in vitro and in vivoBiomaterials200728142281229317303236
  • BaharlooBTextorMBrunetteDMSubstratum roughness alters the growth, area, and focal adhesions of epithelial cells, and their proximity to titanium surfacesJ Biomed Mater Res A2005741122215924301
  • LeongMFChianKSMhaisalkarPSOngWFRatnerBDEffect of electrospun poly(D,L-lactide) fibrous scaffold with nanoporous surface on attachment of porcine esophageal epithelial cells and protein adsorptionJ Biomed Mater Res A20098941040104818478557
  • KubosawaHKondoYQuick-freeze, deep-etch studies of renal basement membranesMicrosc Res Tech19942812128061355
  • ShiratoITominoYKoideHSakaiTFine structure of the glomerular basement membrane of the rat kidney visualized by high-resolution scanning electron microscopyCell Tissue Res199126611101747907
  • TakamiHNaramotoAShigematsuHOhnoSUltrastructure of glomerular basement membrane by quick-freeze and deep-etch methodsKidney Int19913946596642051723
  • RealeELucianoLKuhnKWStolteHMorphological and functional aspects of the glomerular basement membraneBasic Appl Histochem197923Suppl51195429
  • WheelerEEHerdsonPBFreeze fracturing and freeze drying of renal tissue for scanning electron microscopyAm J Clin Pathol19736022292334578468
  • FaulCAsanumaKYanagida-AsanumaEKimKMundelPActin up: regulation of podocyte structure and function by components of the actin cytoskeletonTrends Cell Biol200717942843717804239
  • HumphriesJDWangPStreuliCGeigerBHumphriesMJBallestremCVinculin controls focal adhesion formation by direct interactions with talin and actinJ Cell Biol200717951043105718056416
  • LiMArmelloniSZennaroCBDNF repairs podocyte damage by microRNA-mediated increase of actin polymerizationJ Pathol2015235573174425408545
  • SanchezCDiaz-NidoJAvilaJPhosphorylation of microtubule- associated protein 2 (MAP2) and its relevance for the regulation of the neuronal cytoskeleton functionProg Neurobiol200061213316810704996
  • LiMCorbelliAWatanabeSThree-dimensional podocyte-endothelial cell co-cultures: assembly, validation, and application to drug testing and intercellular signaling studiesEur J Pharm Sci20168611226924225