TY - JOUR
T1 - In vivo dynamics of GFRα1-positive spermatogonia stimulated by GDNF signals using a bead transplantation assay
AU - Uchida, Aya
AU - Kishi, Kasane
AU - Aiyama, Yoshimi
AU - Miura, Kento
AU - Takase, Hinako M.
AU - Suzuki, Hitomi
AU - Kanai-Azuma, Masami
AU - Iwamori, Tokuko
AU - Kurohmaru, Masamichi
AU - Tsunekawa, Naoki
AU - Kanai, Yoshiakira
N1 - Publisher Copyright:
© 2016 Elsevier Inc.
PY - 2016/8/5
Y1 - 2016/8/5
N2 - In mouse testes, spermatogonial stem cells (SSCs), a subpopulation of GFRα1 (GDNF family receptor-α1)-positive spermatogonia, are widely distributed along the convoluted seminiferous tubules. The proliferation and differentiation of the SSCs are regulated in part by local expression of GDNF (glial cell-derived neurotorphic factor), one of major niche factors for SSCs. However, the in vivo dynamics of the GDNF-stimulated GFRα1-positive spermatogonia remains unclear. Here, we developed a simple method for transplanting DiI-labeled and GDNF-soaked beads into the mouse testicular interstitium. By using this method, we examined the dynamics of GFRα1-positive spermatogonia in the tubular walls close to the transplanted GDNF-soaked beads. The bead-derived GDNF signals were able to induce the stratified aggregate formation of GFRα1-positive undifferentiated spermatogonia by day 3 post-transplantation. Each aggregate consisted of tightly compacted Asingle and marginal Apaired–Aaligned GFRα1-positive spermatogonia and was surrounded by Aaligned GFRα1-negative spermatogonia at more advanced stages. These data not only provide in vivo evidence for the inductive roles of GDNF in forming a rapid aggregation of GFRα1-positive spermatogonia but also indicate the usefulness of this in vivo assay system of various growth factors for the stem/progenitor spermatogonia in mammalian spermatogenesis.
AB - In mouse testes, spermatogonial stem cells (SSCs), a subpopulation of GFRα1 (GDNF family receptor-α1)-positive spermatogonia, are widely distributed along the convoluted seminiferous tubules. The proliferation and differentiation of the SSCs are regulated in part by local expression of GDNF (glial cell-derived neurotorphic factor), one of major niche factors for SSCs. However, the in vivo dynamics of the GDNF-stimulated GFRα1-positive spermatogonia remains unclear. Here, we developed a simple method for transplanting DiI-labeled and GDNF-soaked beads into the mouse testicular interstitium. By using this method, we examined the dynamics of GFRα1-positive spermatogonia in the tubular walls close to the transplanted GDNF-soaked beads. The bead-derived GDNF signals were able to induce the stratified aggregate formation of GFRα1-positive undifferentiated spermatogonia by day 3 post-transplantation. Each aggregate consisted of tightly compacted Asingle and marginal Apaired–Aaligned GFRα1-positive spermatogonia and was surrounded by Aaligned GFRα1-negative spermatogonia at more advanced stages. These data not only provide in vivo evidence for the inductive roles of GDNF in forming a rapid aggregation of GFRα1-positive spermatogonia but also indicate the usefulness of this in vivo assay system of various growth factors for the stem/progenitor spermatogonia in mammalian spermatogenesis.
KW - Bead transplantation
KW - GDNF
KW - Spermatogenesis
KW - Spermatogonial stem cell
KW - Testis
UR - https://www.scopus.com/pages/publications/84971673746
UR - https://www.scopus.com/pages/publications/84971673746#tab=citedBy
U2 - 10.1016/j.bbrc.2016.05.160
DO - 10.1016/j.bbrc.2016.05.160
M3 - Article
C2 - 27255992
AN - SCOPUS:84971673746
SN - 0006-291X
VL - 476
SP - 546
EP - 552
JO - Biochemical and Biophysical Research Communications
JF - Biochemical and Biophysical Research Communications
IS - 4
ER -