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Baicalin Affects Glial Cell Line-derived Neurotrophic Factor(GDNF) and Stem Cell Factor (SCF) Expression in Heat-stressed Calf (Bos taurus) Sertoli Cells |
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Abstract Baicalin has many beneficial effects clinically such as heat-clearing bacteriostasis and anti-inflammatory. Its effects on improving the heat resistance of bovine(Bos taurus) sertoli cells(SCs) were studied by measuring expressions of glial cell line-derived neurotrophic factor(GDNF) and stem cell factor(SCF) of SCs treated with different concentrations of baicalin. Collagenase and typsin were sequentially used to separate SCs from calf testis, and then the differential adhesion method was used to purify the SCs(4 h). The obtained SCs were cultured in vitro and their GDNF and SCF mRNA expressions and satellite karyosomes were identified by RT-PCR and Feulgen staining, respectively. The SCs of logarithmic phase growth were selected and divided into different groups including control group(37 ℃), 42 ℃ heat stress group and 42 ℃ heat stress plus baicalin(0.1, 1, 10 and 20 μg/mL) treated group. The cell survival rate was observed with methyl thiazoletetrazolium(MTT) assay. The Real-time quantitative(qRT-PCR) and enzyme linked immunosorbent assay(ELISA) results showed that both marker genes of GDNF and SCF and special satellite karyosomes in SCs were all detected. The cell survival rate(P<0.01) and the expressions of GDNF and SCF mRNA(P<0.01) and protein(P<0.05) reduced in the SCs in 42 ℃ heat stress group compared with the control group(37 ℃). However, compared with 42 ℃ heat stress group, the cell survival rates in the heat stress group treated with 1 μg/mL(P<0.05) and 10 μg/mL(P<0.01) of baicalin increased; the expressions of GDNF and SCF mRNA in the 42 ℃ heat group treated with 0.1~20 μg/mL baicalin very significantly(P<0.01) increased, and so did the protein expressions of SCF(P<0.01) and GDNF(P<0.05) with 1 μg/mL baicalin, respectively. The results indicated that baicalin increased SCs survival rate under heat stress and improved mRNA and protein expressions of both SCF and GDNF. The present research revealed some heat-resistance mechanism of baicalin on SCs under heat stress, which provides theoretical basis for improving the cell resistance to heat shock in practice.
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Received: 04 November 2014
Published: 01 March 2015
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