Reprogramming of Fibroblasts From Older Women With Pelvic Floor Disorders Alters Cellular Behavior Associated With Donor Age

Author:

Wen Yan1,Wani Prachi2,Zhou Lu13,Baer Tom4,Phadnis Smruti Madan2,Reijo Pera Renee A.12,Chen Bertha1

Affiliation:

1. Department of Obstetrics/Gynecology, Stanford University School of Medicine, Stanford University, Stanford, California, USA

2. Institute for Stem Cell Biology & Regenerative Medicine, Stanford University School of Medicine, Stanford University, Stanford, California, USA

3. Stanford Photonics Research Center, Stanford University, Stanford, California, USA

4. Maternal and Children's Hospital of Shenzhen, Shenzhen, China

Abstract

Abstract We aimed to derive induced pluripotent stem cell (iPSC) lines from vaginal fibroblasts from older women with pelvic organ prolapse. We examined the effect of donor age on iPSCs and on the cells redifferentiated from these iPSCs. Vaginal fibroblasts were isolated from younger and older subjects for reprogramming. iPSCs were generated simultaneously using an excisable polycistronic lentiviral vector expressing Oct4, Klf4, Sox2, and cMyc. The pluripotent markers of iPSCs were confirmed by immunocytochemistry and quantitative reverse transcription-polymerase chain reaction (qRT-PCR). Spectral karyotyping was performed. The ability of the iPSCs to differentiate into three germ layers was confirmed by embryoid body and teratoma formation. Senescence marker (p21, p53, and Bax) expressions were determined by qRT-PCR and Western blot. The iPSCs were redifferentiated to fibroblasts and were evaluated with senescence-associated β-galactosidase (SA) activity and mitotic index using time-lapse dark-field microscopy. iPSCs derived from both the younger and older subjects expressed pluripotency markers and showed normal karyotype and positive teratoma assays. There was no significant difference in expression of senescence and apoptosis markers (p21, p53, and Bax) in iPSCs derived from the younger subject compared with the older subject. Furthermore, fibroblasts redifferentiated from these iPSCs did not differ in SA activity or mitotic index. We report successful derivation of iPSCs from women with pelvic organ prolapse. Older age did not interfere with successful reprogramming. Donor age differences were not observed in these iPSCs using standard senescence markers, and donor age did not appear to affect cell mitotic activity in fibroblasts redifferentiated from iPSCs.

Funder

California Institute for Regenerative Medicine

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Developmental Biology,General Medicine

Reference43 articles.

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2. Epidemiology of surgically managed pelvic organ prolapse and urinary incontinence;Olsen;Obstet Gynecol,1997

3. Stem cell therapy: A future treatment of stress urinary incontinence;Nikolavasky;Semin Reprod Med,2011

4. Stem cells for the treatment of urinary incontinence;Staack;Curr Urol Rep,2011

5. Autologous muscle-derived cells as therapy for stress urinary incontinence: A randomized blinded trial;Herschom;Neurourol Urodyn,2010

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