Javascript must be enabled to continue!
Modeling early human neural development using iPS cells
View through CrossRef
<p dir="ltr">Human induced Pluripotent Stem Cells (iPSCs) have long been known for their great potential in disease and development modeling as well as their possible use for cell transplantations. This thesis investigates the advantages and limitations of human iPSCs. We investigated the fundamentals of neural lineage specifications during neural induction. In addition to modeling human neural development, we assessed the therapeutic efficiency of iPSCs derived neural epithelial stem (NES) cell doses in a pre-clinical study of spinal cord injury (SCI). Modeling development and the generation of cells for transplantations is dependent on the generation of standardized and trustable cells. NES cells are a great tool for both fields. They provide unlimited supply of neural progenitor cells and are able to generate into all major neural lineages. This thesis consists of one protocol for the standardized generation of NES cells, two studies using these cells for pre-clinical cell transplantation studies, and one paper to investigate the role of an adhesion molecule during early neural development. All included papers provide deeper insights into development in health and disease.</p><p dir="ltr">In paper I we develop a protocol for the standardized and robust generation of NES cells. This neural induction protocol can be used to generate cells relevant for transplantations and for modeling human development in 2D.</p><p dir="ltr">In paper II we prove that the generation of big batches of transplantable cells is possible and has many advantages. The cells have robust viability and keep differentiation potential even after prolonged periods of freezing. The quality of the cells can be assed prior to transplantation.</p><p dir="ltr">In paper III off-the-shelf NES cell doses were transplanted into a rat SCI model. The cells were able to survive and differentiate into relevant neural cell types. Transplantation showed positive effects regarding regeneration tissue integrity.</p><p dir="ltr">In paper IV we identified changes in relevant signaling pathways and early development in cells with bi-allelic NRXNla deletion. We thereby identified a possible mechanism of action for this adhesion molecule early in development. Developmental changes included change in regionalization, switch in cell fate, further progression in EMT, and higher levels of TGFB and BMP signaling.</p><p dir="ltr">In total, this thesis provides methods and protocols for generation of possible cell transplantation products in the future. We also show that these cells can be used in disease modeling in 2D and to identify new roles of proteins beyond their known function.</p><h3>List of scientific papers</h3><p dir="ltr">I. Protocol for the derivation, culturing and differentiation of human iPS-cell-derived neuroepithelial stem cells to study neural differentiation in vitro. Javier Calvo-Garrido, <b>Dania Winn</b>, Camilla Maffezzini, Anna Wedell, Christoph Freyer, Anna Falk, Anna Wredenberg. STAR Protocols. (2021). <a href="https://doi.org/10.1016/j.xpro.2021.100528" rel="noreferrer" target="_blank">https://doi.org/10.1016/j.xpro.2021.100528</a></p><p dir="ltr">II. Pre-clinical evaluation of clinically relevant iPSC derived neuroepithelial stem cells as an off-the-shelf cell therapy for spinal cord injury.<b> </b><b>Dania Winn</b>, Elias Uhlin, Malin Kele, Ilse Eidhof, Anna Falk Frontiers. Pharmacology. (2024). <a href="https://doi.org/10.3389/fphar.2024.1390058" rel="noreferrer" target="_blank">https://doi.org/10.3389/fphar.2024.1390058</a></p><p dir="ltr">III. Multiple therapeutic effects of human neural stem cells derived from induced pluripotent stem cells in a rat model of post-traumatic syringomyelia. Tingting Xu, Xiaofei Li, Yuxi Guo, Elias Uhlin, Lena Holmberg, Sumonto Mitra, <b>Dania Winn</b>, Anna Falk, Eriks Sundström. eBioMedicine. (2022). <a href="https://doi.org/10.1016/j.ebiom.2022.103882" rel="noreferrer" target="_blank">https://doi.org/10.1016/j.ebiom.2022.103882</a></p><p dir="ltr">IV. Multi-Omic Profiling reveals the Impact of NRXNa Deletion on early Neural Development in an iPSC Model. <b>Dania Winn</b>, Alireza Ghahramani, Sarfraz Shafiq, Yan Jiang, Ilse Eidhof, Nathalie Bérubé, Anna Falk. [Manuscript]</p>
Title: Modeling early human neural development using iPS cells
Description:
<p dir="ltr">Human induced Pluripotent Stem Cells (iPSCs) have long been known for their great potential in disease and development modeling as well as their possible use for cell transplantations.
This thesis investigates the advantages and limitations of human iPSCs.
We investigated the fundamentals of neural lineage specifications during neural induction.
In addition to modeling human neural development, we assessed the therapeutic efficiency of iPSCs derived neural epithelial stem (NES) cell doses in a pre-clinical study of spinal cord injury (SCI).
Modeling development and the generation of cells for transplantations is dependent on the generation of standardized and trustable cells.
NES cells are a great tool for both fields.
They provide unlimited supply of neural progenitor cells and are able to generate into all major neural lineages.
This thesis consists of one protocol for the standardized generation of NES cells, two studies using these cells for pre-clinical cell transplantation studies, and one paper to investigate the role of an adhesion molecule during early neural development.
All included papers provide deeper insights into development in health and disease.
</p><p dir="ltr">In paper I we develop a protocol for the standardized and robust generation of NES cells.
This neural induction protocol can be used to generate cells relevant for transplantations and for modeling human development in 2D.
</p><p dir="ltr">In paper II we prove that the generation of big batches of transplantable cells is possible and has many advantages.
The cells have robust viability and keep differentiation potential even after prolonged periods of freezing.
The quality of the cells can be assed prior to transplantation.
</p><p dir="ltr">In paper III off-the-shelf NES cell doses were transplanted into a rat SCI model.
The cells were able to survive and differentiate into relevant neural cell types.
Transplantation showed positive effects regarding regeneration tissue integrity.
</p><p dir="ltr">In paper IV we identified changes in relevant signaling pathways and early development in cells with bi-allelic NRXNla deletion.
We thereby identified a possible mechanism of action for this adhesion molecule early in development.
Developmental changes included change in regionalization, switch in cell fate, further progression in EMT, and higher levels of TGFB and BMP signaling.
</p><p dir="ltr">In total, this thesis provides methods and protocols for generation of possible cell transplantation products in the future.
We also show that these cells can be used in disease modeling in 2D and to identify new roles of proteins beyond their known function.
</p><h3>List of scientific papers</h3><p dir="ltr">I.
Protocol for the derivation, culturing and differentiation of human iPS-cell-derived neuroepithelial stem cells to study neural differentiation in vitro.
Javier Calvo-Garrido, <b>Dania Winn</b>, Camilla Maffezzini, Anna Wedell, Christoph Freyer, Anna Falk, Anna Wredenberg.
STAR Protocols.
(2021).
<a href="https://doi.
org/10.
1016/j.
xpro.
2021.
100528" rel="noreferrer" target="_blank">https://doi.
org/10.
1016/j.
xpro.
2021.
100528</a></p><p dir="ltr">II.
Pre-clinical evaluation of clinically relevant iPSC derived neuroepithelial stem cells as an off-the-shelf cell therapy for spinal cord injury.
<b> </b><b>Dania Winn</b>, Elias Uhlin, Malin Kele, Ilse Eidhof, Anna Falk Frontiers.
Pharmacology.
(2024).
<a href="https://doi.
org/10.
3389/fphar.
2024.
1390058" rel="noreferrer" target="_blank">https://doi.
org/10.
3389/fphar.
2024.
1390058</a></p><p dir="ltr">III.
Multiple therapeutic effects of human neural stem cells derived from induced pluripotent stem cells in a rat model of post-traumatic syringomyelia.
Tingting Xu, Xiaofei Li, Yuxi Guo, Elias Uhlin, Lena Holmberg, Sumonto Mitra, <b>Dania Winn</b>, Anna Falk, Eriks Sundström.
eBioMedicine.
(2022).
<a href="https://doi.
org/10.
1016/j.
ebiom.
2022.
103882" rel="noreferrer" target="_blank">https://doi.
org/10.
1016/j.
ebiom.
2022.
103882</a></p><p dir="ltr">IV.
Multi-Omic Profiling reveals the Impact of NRXNa Deletion on early Neural Development in an iPSC Model.
<b>Dania Winn</b>, Alireza Ghahramani, Sarfraz Shafiq, Yan Jiang, Ilse Eidhof, Nathalie Bérubé, Anna Falk.
[Manuscript]</p>.
Related Results
PEMANFAATAN LABORATORIUM IPS SMP
PEMANFAATAN LABORATORIUM IPS SMP
Penelitian ini bertujuan mengetahui pemanfaatan laboratorium IPS di SMP. Pemanfaatan laboratorium dalam penelitian ini ditinjau dari; 1) kondisi laboratorium IPS di SMP, 2) manajem...
Evaluation of Effects of Different Core & Veneer Thickness Combination on Translucency of Two All Ceramic System: An in Vitro Study"
Evaluation of Effects of Different Core & Veneer Thickness Combination on Translucency of Two All Ceramic System: An in Vitro Study"
Objectives: The study aimed to evaluate the effect of change in thickness of core or veneer ceramic on translucency of two types of Lithium Di Silicate Glass Ceramic IPS e-max PRES...
Modeling early human neural development using iPS cells
Modeling early human neural development using iPS cells
<p dir="ltr">Human induced Pluripotent Stem Cells (iPSCs) have long been known for their great potential in disease and development modeling as well as their possible use for...
UPAYA PEMBAHARUAN PENDIDIKAN IPS DI INDONESIA
UPAYA PEMBAHARUAN PENDIDIKAN IPS DI INDONESIA
Tujuan penulisan artikel ini adalah untuk memberikan pemahaman lebih lanjut untuk dilakukan upayah pembaharuan pendidikan IPS di Indonesia. Ini didasarkan karena pendidikan IPS di ...
Research Progress and Application Prospect of IPS Cells
Research Progress and Application Prospect of IPS Cells
Differentiated somatic cells can be reprogrammed into induced pluripotent stem cells (iPS cells) by introducingspecific transcription factors. This technique avoids immune rejectio...
186 Improving Success Rate of Establishment and Maintenance of Porcine Induced Pluripotent Stem Cells by Investigation of Colony Morphology
186 Improving Success Rate of Establishment and Maintenance of Porcine Induced Pluripotent Stem Cells by Investigation of Colony Morphology
Induced pluripotent stem cells (iPS cells) are generated by reprogramming of somatic cells using ectopic introduction of 4 transcription factors, including OCT4, SOX2, KLF4, and c-...
The Establishment of In-Vitro Human Induced Pluripotent Stem Cell-Derived Neurons
The Establishment of In-Vitro Human Induced Pluripotent Stem Cell-Derived Neurons
Various methods have been developed to generate and differentiate induced pluripotent stem (iPS) cells using different reprogramming strategies. Lentiviruses remain a strategic met...
Petrosal sinus sampling for diagnosis of Cushing's disease: evidence of false negative results
Petrosal sinus sampling for diagnosis of Cushing's disease: evidence of false negative results
OBJECTIVE While inferior petrosal sinus (IPS) sampling correctly diagnoses pituitary‐dependent Cushing's syndrome if a significant ratio of plasma ACTH between the IPS and the peri...

