1
|
Ding DC, Shyu WC and Lin SZ: Mesenchymal
stem cells. Cell Transplant. 20:5–14. 2011. View Article : Google Scholar : PubMed/NCBI
|
2
|
Wagner W, Wein F, Seckinger A, Frankhauser
M, Wirkner U, Krause U, Blake J, Schwager C, Eckstein V, Ansorge W
and Ho AD: Comparative characteristics of mesenchymal stem cells
from human bone marrow, adipose tissue, and umbilical cord blood.
Exp Hematol. 33:1402–1416. 2005. View Article : Google Scholar : PubMed/NCBI
|
3
|
Horwitz EM, Le Blanc K, Dominici M,
Mueller I, Slaper-Cortenbach I, Marini FC, Deans RJ, Krause DS and
Keating A: International Society for Cellular Therapy:
Clarification of the nomenclature for MSC: The international
society for cellular therapy position statement. Cytotherapy.
7:393–395. 2005. View Article : Google Scholar : PubMed/NCBI
|
4
|
Wong-You-Cheong JJ, Woodward PJ, Manning
MA and Sesterhenn IA: From the archives of the AFIP: Neoplasms of
the urinary bladder: Radiologic-pathologic correlation.
Radiographics. 26:553–580. 2006. View Article : Google Scholar : PubMed/NCBI
|
5
|
Cheng L, Montironi R, Davidson DD and
Lopez-Beltran A: Staging and reporting of urothelial carcinoma of
the urinary bladder. Mod Pathol. 22 Suppl 2:S70–S95. 2009.
View Article : Google Scholar : PubMed/NCBI
|
6
|
Desai S, Lim SD, Jimenez RE, Chun T, Keane
TE, McKenney JK, Zavala-Pompa A, Cohen C, Young RH and Amin MB:
Relationship of cytokeratin 20 and CD44 protein expression with
WHO/ISUP grade in pTa and pT1 papillary urothelial neoplasia. Mod
Pathol. 13:1315–1323. 2000. View Article : Google Scholar : PubMed/NCBI
|
7
|
Zöller M: CD44: Can a cancer-initiating
cell profit from an abundantly expressed molecule? Nat Rev Cancer.
11:254–267. 2011. View
Article : Google Scholar : PubMed/NCBI
|
8
|
Zhu H, Mitsuhashi N, Klein A, Barsky LW,
Weinberg K, Barr ML, Demetriou A and Wu GD: The role of the
hyaluronan receptor CD44 in mesenchymal stem cell migration in the
extracellular matrix. Stem Cells. 24:928–935. 2006. View Article : Google Scholar : PubMed/NCBI
|
9
|
Bian XH, Zhou GY, Wang LN, Ma JF, Fan QL,
Liu N, Bai Y, Guo W, Wang YQ, Sun GP, et al: The role of
CD44-hyaluronic acid interaction in exogenous mesenchymal stem
cells homing to rat remnant kidney. Kidney Blood Press Res.
38:11–20. 2013. View Article : Google Scholar : PubMed/NCBI
|
10
|
Ma F, Chen D, Chen F, Chi Y and Han Z,
Feng X, Li X and Han Z: Human umbilical cord mesenchymal stem cells
promote breast cancer metastasis by interleukin-8- and
interleukin-6-dependent induction of CD44(+)/CD24(−) cells. Cell
Transplant. 24:2585–2599. 2015. View Article : Google Scholar : PubMed/NCBI
|
11
|
Becker C and Jakse G: Stem cells for
regeneration of urological structures. Eur Urol. 51:1217–1228.
2007. View Article : Google Scholar : PubMed/NCBI
|
12
|
Akram KM, Samad S, Spiteri MA and Forsyth
NR: Mesenchymal stem cells promote alveolar epithelial cell wound
repair in vitro through distinct migratory and paracrine
mechanisms. Respir Res. 14:92013. View Article : Google Scholar : PubMed/NCBI
|
13
|
Lu J, Wang Q, Huang L, Dong H, Lin L, Lin
N, Zheng F and Tan J: Palmitate causes endoplasmic reticulum stress
and apoptosis in human mesenchymal stem cells: Prevention by AMPK
activator. Endocrinology. 153:5275–5284. 2012. View Article : Google Scholar : PubMed/NCBI
|
14
|
Tan J, Wu W, Xu X, Liao L, Zheng F,
Messinger S, Sun X, Chen J, Yang S, Cai J, et al: Induction therapy
with autologous mesenchymal stem cells in living-related kidney
transplants: A randomized controlled trial. JAMA. 307:1169–1177.
2012. View Article : Google Scholar : PubMed/NCBI
|
15
|
Oikonomopoulos A, van Deen WK, Manansala
AR, Lacey PN, Tomakili TA, Ziman A and Hommes DW: Optimization of
human mesenchymal stem cell manufacturing: The effects of
animal/xeno-free media. Sci Rep. 5:165702015. View Article : Google Scholar : PubMed/NCBI
|
16
|
Gregory CA, Gunn WG, Peister A and Prockop
DJ: An Alizarin red-based assay of mineralization by adherent cells
in culture: Comparison with cetylpyridinium chloride extraction.
Anal Biochem. 329:77–84. 2004. View Article : Google Scholar : PubMed/NCBI
|
17
|
Swioklo S, Constantinescu A and Connon CJ:
Alginate-encapsulation for the improved hypothermic preservation of
human adipose-derived stem cells. Stem Cells Transl Med. 5:339–349.
2016. View Article : Google Scholar : PubMed/NCBI
|
18
|
Ramirez-Zacarias JL, Castro-Muñozledo F
and Kuri-Harcuch W: Quantitation of adipose conversion and
triglycerides by staining intracytoplasmic lipids with oil red O.
Histochemistry. 97:493–497. 1992. View Article : Google Scholar : PubMed/NCBI
|
19
|
Wang W, Nyman JS, Ono K, Stevenson DA,
Yang X and Elefteriou F: Mice lacking Nf1 in osteochondroprogenitor
cells display skeletal dysplasia similar to patients with
neurofibromatosis type I. Hum Mol Genet. 20:3910–3924. 2011.
View Article : Google Scholar : PubMed/NCBI
|
20
|
Ogawa R, Mizuno H, Hyakusoku H, Watanabe
A, Migita M and Shimada T: Chondrogenic and osteogenic
differentiation of adipose-derived stem cells isolated from GFP
transgenic mice. J Nippon Med Sch. 71:240–241. 2004. View Article : Google Scholar : PubMed/NCBI
|
21
|
Itoh M, Kiuru M, Cairo MS and Christiano
AM: Generation of keratinocytes from normal and recessive
dystrophic epidermolysis bullosa-induced pluripotent stem cells.
Proc Natl Acad Sci USA. 108:8797–8802. 2011. View Article : Google Scholar : PubMed/NCBI
|
22
|
Bharadwaj S, Liu G, Shi Y, Wu R, Yang B,
He T, Fan Y, Lu X, Zhou X, Liu H, et al: Multipotential
differentiation of human urine-derived stem cells: Potential for
therapeutic applications in urology. Stem Cells. 31:1840–1856.
2013. View Article : Google Scholar : PubMed/NCBI
|
23
|
Livak KJ and Schmittgen TD: Analysis of
relative gene expression data using real-time quantitative PCR and
the 2(-Delta Delta C(T)) method. Methods. 25:402–408. 2001.
View Article : Google Scholar : PubMed/NCBI
|
24
|
Bodnar AG, Ouellette M, Frolkis M, Holt
SE, Chiu CP, Morin GB, Harley CB, Shay JW, Lichtsteiner S and
Wright WE: Extension of life-span by introduction of telomerase
into normal human cells. Science. 279:349–352. 1998. View Article : Google Scholar : PubMed/NCBI
|
25
|
Vidal MA, Walker NJ, Napoli E and
Borjesson DL: Evaluation of senescence in mesenchymal stem cells
isolated from equine bone marrow, adipose tissue, and umbilical
cord tissue. Stem Cells Dev. 21:273–283. 2012. View Article : Google Scholar : PubMed/NCBI
|
26
|
Bajada S, Mazakova I, Richardson JB and
Ashammakhi N: Updates on stem cells and their applications in
regenerative medicine. J Tissue Eng Regen Med. 2:169–183. 2008.
View Article : Google Scholar : PubMed/NCBI
|
27
|
Kim A, Yu HY, Heo J, Song M, Shin JH, Lim
J, Yoon SJ, Kim Y, Lee S, Kim SW, et al: Mesenchymal stem cells
protect against the tissue fibrosis of ketamine-induced cystitis in
rat bladder. Sci Rep. 6:308812016. View Article : Google Scholar : PubMed/NCBI
|
28
|
Corona BT, Ward CL, Baker HB, Walters TJ
and Christ GJ: Implantation of in vitro tissue engineered muscle
repair constructs and bladder acellular matrices partially restore
in vivo skeletal muscle function in a rat model of volumetric
muscle loss injury. Tissue Eng Part A. 20:705–715. 2014.PubMed/NCBI
|
29
|
Sakuma T, Matsumoto T, Kano K, Fukuda N,
Obinata D, Yamaguchi K, Yoshida T, Takahashi S and Mugishima H:
Mature, adipocyte derived, dedifferentiated fat cells can
differentiate into smooth muscle-like cells and contribute to
bladder tissue regeneration. J Urol. 182:355–365. 2009. View Article : Google Scholar : PubMed/NCBI
|
30
|
Hou X, Shi C, Chen W, Chen B, Jia W, Guo
Y, Ma C, Ye G, Kang J and Dai J: Transplantation of human
adipose-derived mesenchymal stem cells on a bladder acellular
matrix for bladder regeneration in a canine model. Biomed Mater.
11:0310012016. View Article : Google Scholar : PubMed/NCBI
|
31
|
Qiu X, Zhang S, Zhao X, Fu K and Guo H:
The therapeutic effect of adipose-derived mesenchymal stem cells
for radiation-induced bladder injury. Stem Cells Int.
2016:36790472016. View Article : Google Scholar : PubMed/NCBI
|
32
|
Crisan M, Yap S, Casteilla L, Chen CW,
Corselli M, Park TS, Andriolo G, Sun B, Zheng B, Zhang L, et al: A
perivascular origin for mesenchymal stem cells in multiple human
organs. Cell Stem Cell. 3:301–313. 2008. View Article : Google Scholar : PubMed/NCBI
|
33
|
Wu S, Liu Y, Bharadwaj S, Atala A and
Zhang Y: Human urine-derived stem cells seeded in a modified 3D
porous small intestinal submucosa scaffold for urethral tissue
engineering. Biomaterials. 32:1317–1326. 2011. View Article : Google Scholar : PubMed/NCBI
|