<link rel="stylesheet" href="styles.f3b1fba60ec7970c.css">

Publication:
Development, characterization, and hematopoietic differentiation of Griscelli syndrome type 2 induced pluripotent stem cells

Loading...
Thumbnail Image

Departments

School / College / Institute

Item type:Organizational Unit,
GRADUATE SCHOOL OF HEALTH SCIENCES
Upper Org Unit
Item type:Organizational Unit,
Item type:Organizational Unit,
SCHOOL OF MEDICINE
Upper Org Unit

Program

Organization Authors

Co-Authors

Güney-Esken, Gülen

Erol, Özgür Doğuş

Pervin, Burcu

Korkusuz, Petek

Günel-Özcan, Ayşen

Uçkan-Çetinkaya, Duygu

Aerts-Kaya, Fatima

Date

Language

Embargo Status

NO

Journal Title

Journal ISSN

Volume Title

Alternative Title

Abstract

Background: Griscelli syndrome type 2 (GS-2) is a rare, autosomal recessive immune deficiency syndrome caused by a mutation in the RAB27A gene, which results in the absence of a protein involved in vesicle trafficking and consequent loss of function of in particular cytotoxic T and NK cells. Induced pluripotent stem cells (iPSC) express genes associated with pluripotency, have the capacity for infinite expansion, and can differentiate into cells from all three germ layers. They can be induced using integrative or non-integrative systems for transfer of the Oct4, Sox2, Klf4, and cMyc (OSKM) transcription factors. To better understand the pathophysiology of GS-2 and to test novel treatment options, there is a need for an in vitro model of GS-2. Methods: here, we generated iPSCs from 3 different GS-2 patients using lentiviral vectors. The iPSCs were characterized using flow cytometry and RT-PCR and tested for the expression of pluripotency markers. In vivo differentiation to cells from all three germlines was tested using a teratoma assay. In vitro differentiation of GS-2 iPSCs into hematopoietic stem and progenitor cells was done using Op9 feeder layers and specified media. Results: all GS-2 iPSC clones displayed a normal karyotype (46XX or 46XY) and were shown to express the same RAB27A gene mutation that was present in the original somatic donor cells. GS-2 iPSCs expressed SSEA1, SSEA4, TRA-1-60, TRA-1-81, and OCT4 proteins, and SOX2, NANOG, and OCT4 expression were confirmed by RT-PCR. Differentiation capacity into cells from all three germ layers was confirmed using the teratoma assay. GS-2 iPSCs showed the capacity to differentiate into cells of the hematopoietic lineage. Conclusions: using the lentiviral transfer of OSKM, we were able to generate different iPSC clones from 3 GS-2 patients. These cells can be used in future studies for the development of novel treatment options and to study the pathophysiology of GS-2 disease.

Source

Publisher

BioMed Central

Citation

item.page.haspartof

Source

Stem Cell Research _ Therapy

item.page.ispartofseries

item.page.edition

DOI

10.1186/s13287-021-02364-z

item.page.datauri

item.page.link

Rights

Copyrights Note

Endorsement

Review

Supplemented By

Referenced By

Related Patent

Related Goal

Item type:Goal, Access status: Open Access ,
03 - Good Health and Well-being
Over the last 15 years, the number of childhood deaths has been cut in half. This proves that it is possible to win the fight against almost every disease. Still, we are spending an astonishing amount of money and resources on treating illnesses that are surprisingly easy to prevent. The new goal for worldwide Good Health promotes healthy lifestyles, preventive measures and modern, efficient healthcare for everyone.
Google Scholar
Scholar'da Ara ↗
1
Görüntülenme
20
İndirme
Altmetric
Dimensions
PlumX Metrikleri
BIP! Indicators