von Schledorn, L.; Puertollano MartÃn, D.; Cleve, N.; Zöllner, J.; Roth, D.; Staar, B.O.; Hegermann, J.; Ringshausen, F.C.; Nawroth, J.; Martin, U.;
et al. Primary Ciliary Dyskinesia Patient-Specific hiPSC-Derived Airway Epithelium in Air-Liquid Interface Culture Recapitulates Disease Specific Phenotypes In Vitro. Cells 2023, 12, 1467.
https://doi.org/10.3390/cells12111467
AMA Style
von Schledorn L, Puertollano MartÃn D, Cleve N, Zöllner J, Roth D, Staar BO, Hegermann J, Ringshausen FC, Nawroth J, Martin U,
et al. Primary Ciliary Dyskinesia Patient-Specific hiPSC-Derived Airway Epithelium in Air-Liquid Interface Culture Recapitulates Disease Specific Phenotypes In Vitro. Cells. 2023; 12(11):1467.
https://doi.org/10.3390/cells12111467
Chicago/Turabian Style
von Schledorn, Laura, David Puertollano MartÃn, Nicole Cleve, Janina Zöllner, Doris Roth, Ben Ole Staar, Jan Hegermann, Felix C. Ringshausen, Janna Nawroth, Ulrich Martin,
and et al. 2023. "Primary Ciliary Dyskinesia Patient-Specific hiPSC-Derived Airway Epithelium in Air-Liquid Interface Culture Recapitulates Disease Specific Phenotypes In Vitro" Cells 12, no. 11: 1467.
https://doi.org/10.3390/cells12111467
APA Style
von Schledorn, L., Puertollano MartÃn, D., Cleve, N., Zöllner, J., Roth, D., Staar, B. O., Hegermann, J., Ringshausen, F. C., Nawroth, J., Martin, U., & Olmer, R.
(2023). Primary Ciliary Dyskinesia Patient-Specific hiPSC-Derived Airway Epithelium in Air-Liquid Interface Culture Recapitulates Disease Specific Phenotypes In Vitro. Cells, 12(11), 1467.
https://doi.org/10.3390/cells12111467