scholarly journals Effets of Leukemia Inhibitory Factor, Stem Cell Factor, and Basic Fibroblast Growth Factor on the Proliferation of Bovine ICM Cells In Vitro.

1998 ◽  
Vol 15 (3) ◽  
pp. 132-138
Author(s):  
Rangsun Parnpai ◽  
Masanori Fujikawa ◽  
Naojiro Minami ◽  
Masayasu Yamada ◽  
Kyozo Utsumi
Reproduction ◽  
2010 ◽  
Vol 139 (6) ◽  
pp. 1039-1046 ◽  
Author(s):  
Jiang Wen ◽  
Juan Liu ◽  
Guangqi Song ◽  
Limei Liu ◽  
Bo Tang ◽  
...  

6-Bromoindirubin-3′-oxime (BIO), which is one of the glycogen synthase kinase 3 inhibitors and a key regulator of numerous signaling pathways, was reported to be capable of maintaining the pluripotency of human and mouse embryonic stem cells. Presently, it is unknown whether BIO can influence the derivation of porcine embryonic germ (EG) cells. In this study, porcine primordial germ cells (PGCs) were isolated from gonads of 24- and 28-day embryos, and were then treated with BIO either individually or in combination with other cytokines (stem cell factor (SCF), leukemia inhibitory factor (LIF), and fibroblast growth factor (FGF); abbreviated as ‘3F’), and the effects of the treatment on the proliferation ability of porcine PGCs at early stage were examined using 5-bromo-2-deoxyuridine (Brdu) immunostaining assay. After continuous culture, the effects on the efficiency of porcine undifferentiated EG cells in the third passage and differentiated EG cells from embryoid bodies were examined as well. The results obtained through the observation of the Brdu-labeled PGCs indicated that BIO in combination with 3F resulted in a significant increase in the mitosis index, and also indicated that the BIO in combination with 3F had a higher efficiency in promoting the formation of porcine EG colony derived from porcine day 24 PGCs than BIO used either individually or in combination with LIF. In addition, BIO in combination with 3F exhibited the apparent anti-differentiation activity by reversing the differentiated EG cells to the undifferentiated status. Our results demonstrate that BIO in combination with SCF, LIF, and FGF could significantly contribute to the establishment of a porcine EG cell colony and maintain the undifferentiated status.


2017 ◽  
Vol 25 (2) ◽  
pp. 101
Author(s):  
Yurika Sandra

<p><strong>Pendahuluan</strong></p><p>Fibroblas adalah sel utama sebagai penentu keberhasilan penyembuhan luka. Untuk mempercepat penyembuhan luka, diperlukan molekul untuk meningkatkan kemampuan proliferasi dan migrasi fibroblas. bFGF merupakan faktor pertumbuhan yang biasa digunakan sebagai suplemen dalam kultur sel dalam rangka meningkatkan kemampuan proliferasi dan mempertahankan <em>stemness </em>sel. Diduga selain berperan dalam proliferasi sel, bFGF juga berperan meningkatkan kemampuan migrasi fibroblas. Studi ini bertujuan untuk verifikasi peningkatan kemampuan migrasi fibroblas oleh bFGF.</p><p><strong>Metode</strong></p><p>Studi ini menggunakan desain eksperimental. Fibroblas diperoleh dari Laboratorium <em>Stem Cell</em> Universitas YARSI. Studi ini menggunakan 4 kelompok kultur fibroblas yaitu, kontrol tanpa perlakuan, DMSO 2%, bFGF 8ng/ml, DMSO 2%+bFGF 8ng/ml. Perlukaan dilakukan menggunakan tip 10ul. Kemampuan migrasi dinilai 4 jam dan 24 jam pasca perlukaan dengan <em>software</em> mikrofotografi nikon. Analisis data dilakukan menggunakan <em>paired student t-test</em>.</p><p><strong>Hasil</strong></p><p>Pada 4 jam pasca luka, belum terlihat perbedaan yang bermakna pada semua kelompok. Pada 24 jam pasca luka, kemampuan migrasi fibroblas dengan bFGF meningkat 40% dibandingkan kontrol (p&lt;0,05). Pada sel yang diberi DMSO 2% sebagai inhibitor migrasi, kemampuan migrasi turun hingga 40,83% dibandingkan kontrol (p&lt;0,05). Sel yang diberi DMSO2%+bFGF 8ng/ml menunjukkan kemampuan migrasi yang hampir sama dengan kontrol.</p><p><strong>Kesimpulan</strong></p>bFGF terbukti mampu meningkatkan kecepatan migrasi fibroblas sehingga berpotensi sebagai alternatif terapi luka. Perlu studi lanjut tentang mekanisme peningkatan kecepatan migrasi fibroblas oleh bFGF.


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