TY - JOUR
T1 - Establishment of an organ culture system to induce Sertoli cell differentiation from undifferentiated mouse gonads
AU - Hasegawa, Chinatsu
AU - Yokoyama, Toshifumi
AU - Umemura, Yuria
AU - Kawanishi, Kohei
AU - Miura, Yuuka
AU - Takada, Nanako
AU - Ohno, Shuji
AU - Onaru, Kanoko
AU - Omotehara, Takuya
AU - Hirano, Tetsushi
AU - Mantani, Yohei
AU - Miki, Takanori
AU - Hoshi, Nobuhiko
N1 - Publisher Copyright:
© 2020 The Japanese Society of Veterinary Science.
PY - 2020
Y1 - 2020
N2 - Organ culture systems are useful for elucidating the process of testicular differentiation from mammalian undifferentiated genetically male gonads, as they permit various experiments, including experiments involving the control of gene expression. However, without addition of testicular differentiation-related factors, it is difficult to induce the formation of testis cord from immature gonads by a time point earlier 12 tail somites (ts) that corresponding to 11.0 days post coitum (dpc). In this study, we attempted to establish an organ culture system that induces testis formation from immature gonads (around 8 ts: 10.5 dpc) just before Sry (sexdetermining region of the Y chromosome) expression. A paired gonad-mesonephros complex of around 8 ts was placed in the groove of an agarose gel block and put the semi-cylindrical piece of agarose gel to maintain the gonad morphology. The gonads were cultured in the gas phase for 96 hr. As a result, testis cord-like structures appeared in many genetically male gonads. Cells expressing the Sertoli cell markers Sox9 (SRY-box 9) and Amh (anti-Müllerian hormone) were observed, while granulosa cell marker Foxl2 (forkhead box L2) was not detected. In addition, Sox9- and Amh-expressing cells were observed throughout the entire gonad in many individuals. Amh mRNA expression was also upregulated. Surprisingly, formation of a partial testicular structure was observed from more immature gonads (6 ts). These results show that our gonadal organ culture system is useful for elucidating the regulation mechanism of Sry expression in undifferentiated bipotential gonads.
AB - Organ culture systems are useful for elucidating the process of testicular differentiation from mammalian undifferentiated genetically male gonads, as they permit various experiments, including experiments involving the control of gene expression. However, without addition of testicular differentiation-related factors, it is difficult to induce the formation of testis cord from immature gonads by a time point earlier 12 tail somites (ts) that corresponding to 11.0 days post coitum (dpc). In this study, we attempted to establish an organ culture system that induces testis formation from immature gonads (around 8 ts: 10.5 dpc) just before Sry (sexdetermining region of the Y chromosome) expression. A paired gonad-mesonephros complex of around 8 ts was placed in the groove of an agarose gel block and put the semi-cylindrical piece of agarose gel to maintain the gonad morphology. The gonads were cultured in the gas phase for 96 hr. As a result, testis cord-like structures appeared in many genetically male gonads. Cells expressing the Sertoli cell markers Sox9 (SRY-box 9) and Amh (anti-Müllerian hormone) were observed, while granulosa cell marker Foxl2 (forkhead box L2) was not detected. In addition, Sox9- and Amh-expressing cells were observed throughout the entire gonad in many individuals. Amh mRNA expression was also upregulated. Surprisingly, formation of a partial testicular structure was observed from more immature gonads (6 ts). These results show that our gonadal organ culture system is useful for elucidating the regulation mechanism of Sry expression in undifferentiated bipotential gonads.
KW - Amh (anti-müllerian hormone)
KW - Organ culture
KW - Sertoli cell
KW - Testis differentiation
KW - Undifferentiated gonad
UR - http://www.scopus.com/inward/record.url?scp=85083074303&partnerID=8YFLogxK
U2 - 10.1292/jvms.20-0036
DO - 10.1292/jvms.20-0036
M3 - 学術論文
C2 - 32092744
AN - SCOPUS:85083074303
SN - 0916-7250
VL - 82
SP - 414
EP - 421
JO - Journal of Veterinary Medical Science
JF - Journal of Veterinary Medical Science
IS - 4
ER -