Translational Neurodegeneration· 2026Q1· Derleme
TARDBP Mutasyonlu iPSC Kaynaklı Motor Nöronlardan ALS Patofizyolojisi Üzerine Öğrenimler: Sistematik Bir Derleme
What can we learn on ALS pathophysiology from iPSC-derived motor neurons harbouring TARBDP mutations: a systematic review
- 0atıf
- Q1SCImago
- 2026yıl
Kısa özet
TARDBP mutasyonlu ALS hastalarından elde edilen iPSC kaynaklı motor nöron modellerindeki tutarsızlıkları ortaya koyan sistematik bir derleme, bu modellerin hastalık modellemesi ve ilaç geliştirme için olan alaka düzeyini sorgulamaktadır.
Yapay zekâ ile başlık ve abstract'tan üretildi; tam metin okunmaz.
Ana noktalar
- 2012'den bu yana TARDBP mutasyonlu ALS hastalarından elde edilen iPSC kaynaklı motor nöronları 30'dan fazla çalışma ile araştırılmıştır.
- Bu çalışmalar arasında bildirilen hücresel ve alt hücresel fenotiplerde önemli tutarsızlıklar bulunmaktadır.
- Gözlemlenen fenotipik farklılıkları açıklayabilecek faktörler arasında farklılaştırma protokolleri, motor nöron saflığı ve nicelendirme yöntemlerindeki değişkenlikler yer almaktadır.
- Derleme, TDP-43 ve nörofilament agregasyonu, stres granül dinamiği ve hücreden bağımsız mekanizmaları analiz etmektedir.
Yapay zekâ ile başlık ve abstract'tan üretildi; tam metin okunmaz.
Özet (abstract)
The degenerating motor neurons of amyotrophic lateral sclerosis (ALS) patients are characterized by the accumulation of cytoplasmic aggregates, specifically enriched in ubiquitinated TDP-43. Expressed mainly in the nucleus and partially in the cytoplasm to execute its role in RNA metabolism, the exact mechanisms that bring TDP-43 to aggregate in disease have yet to be described. Unfolding these processes could bring us closer to effective drug development that is drastically lacking in the ALS research field. Induced pluripotent stem cells (iPSCs) offer a promising platform for studying ALS pathogenesis directly in the relevant human genetic backgrounds of ALS patients. Since 2012, more than 30 published studies have investigated altered cellular and subcellular features in iPSC-derived motor neurons from ALS patients harbouring mutations in the TARDBP gene (encoding for TDP-43 protein). However, there are discrepancies in the obtained results, which call into question the relevance of this model for ALS disease modelling and its use for drug development efforts. Thus, there is a need in the field for a clear and detailed layout and summary of all the published data on ALS modelling using TARDBP mutant iPSC-derived motor neurons. In this systematic review, we analyse all phenotypic assessments that have been done on iPSC-derived motor neurons derived from TARDBP ALS patients on the morphology, functionality and the viability of these cells. We also analyse if this model recapitulates ALS pathology in vitro by comparing studies that looked at TDP-43 and neurofilament aggregation, as well as stress granule dynamics. Importantly, we compare the technical details of all the discussed studies, such as differentiation protocol, age and purity of the used motor neurons and quantification method, in order to discuss how all of these parameters affect the observed phenotypes. Lastly, we also expand our review to all other different cell types that have been differentiated from TARDBP iPSCs, highlighting non-cell autonomous mechanisms of TDP-43-ALS pathophysiology. By integrating findings across studies, this review identifies commonalities and discrepancies, discusses methodological advancements and limitations, and highlights potential therapeutic targets revealed through TARDBP iPSC-derived models.
Yazarların özeti; kaynağından alınmıştır. Translational Neurodegeneration, 2026 · DOI ↗
Devamı Pofolia uygulamasında
Çıkarımlar ve makaleye soru sorma; ilgi alanına göre her gün yeni özetler. Ücretsiz.
Web'de giriş yaparak açAlan: Nöroloji (Tıp)
NeurologyMedicine