Javascript must be enabled to continue!
Regeneration of Leydig cells in ectopically autografted adult mouse testes
View through CrossRef
Abstract
Ectopic autografting of testis tissue is a promising approach for studying testicular development, male germline preservation and restoration of male fertility. In this study, we examined the fate of various testicular cells in adult mouse testes following ectopic autografting at 1, 2, 4 and 8 weeks post grafting. Histological examination showed no evidence of re-establishment of spermatogenesis in autografts, and progressive degeneration of seminiferous tubules was detected. Expression of germ cell-specific proteins such as POU5F1, DAZL, TNP1, TNP2, PRM1 and PRM2 revealed that, although proliferating and differentiating spermatogenic germ cells such as spermatogonia, spermatocytes and spermatids could survive in autografts until 4 weeks, only terminally differentiated germ cells such as sperm persisted in autografts until 8 weeks. The presence of Sertoli and peritubular myoid cells, as indicated by expression of WT1 and ACTA2 proteins, respectively, was evident in the autografts until 8 weeks. Interestingly, seminal vesicle weight and serum testosterone level were restored in autografted mice by 8 weeks post grafting. The expression of Leydig cell-specific proteins such as CYP11A1, HSD3B2 and LHCGR showed revival of Leydig cell (LC) populations in autografts over time since grafting. Elevated expression of PDGFRA, LIF, DHH and NEFH in autografts indicated de novo regeneration of LC populations. Autografted adult testis can be used as a model for investigating Leydig cell regeneration, steroidogenesis and regulation of the intrinsic factors involved in Leydig cell development. The success of this rodent model can have therapeutic applications for adult human males undergoing sterilizing cancer therapy.
Oxford University Press (OUP)
Title: Regeneration of Leydig cells in ectopically autografted adult mouse testes
Description:
Abstract
Ectopic autografting of testis tissue is a promising approach for studying testicular development, male germline preservation and restoration of male fertility.
In this study, we examined the fate of various testicular cells in adult mouse testes following ectopic autografting at 1, 2, 4 and 8 weeks post grafting.
Histological examination showed no evidence of re-establishment of spermatogenesis in autografts, and progressive degeneration of seminiferous tubules was detected.
Expression of germ cell-specific proteins such as POU5F1, DAZL, TNP1, TNP2, PRM1 and PRM2 revealed that, although proliferating and differentiating spermatogenic germ cells such as spermatogonia, spermatocytes and spermatids could survive in autografts until 4 weeks, only terminally differentiated germ cells such as sperm persisted in autografts until 8 weeks.
The presence of Sertoli and peritubular myoid cells, as indicated by expression of WT1 and ACTA2 proteins, respectively, was evident in the autografts until 8 weeks.
Interestingly, seminal vesicle weight and serum testosterone level were restored in autografted mice by 8 weeks post grafting.
The expression of Leydig cell-specific proteins such as CYP11A1, HSD3B2 and LHCGR showed revival of Leydig cell (LC) populations in autografts over time since grafting.
Elevated expression of PDGFRA, LIF, DHH and NEFH in autografts indicated de novo regeneration of LC populations.
Autografted adult testis can be used as a model for investigating Leydig cell regeneration, steroidogenesis and regulation of the intrinsic factors involved in Leydig cell development.
The success of this rodent model can have therapeutic applications for adult human males undergoing sterilizing cancer therapy.
Related Results
Lhb−/−Lhr−/− Double Mutant Mice Phenocopy Lhb−/− or Lhr−/− Single Mutants and Display Defects in Leydig Cells and Steroidogenesis
Lhb−/−Lhr−/− Double Mutant Mice Phenocopy Lhb−/− or Lhr−/− Single Mutants and Display Defects in Leydig Cells and Steroidogenesis
In the mouse, two distinct populations of Leydig cells arise during testis development. Fetal Leydig cells arise from a stem cell population and produce T required for masculinizat...
Prepubertal Buffalo (Bubalus bubalis) Leydig Cells: Isolation, Culture and Characterization
Prepubertal Buffalo (Bubalus bubalis) Leydig Cells: Isolation, Culture and Characterization
Water buffalo (Bubalus bubalis) is an economically important livestock species in India. Male buffaloes display delayed sexual maturity as compared to the bulls (Bos taurus). Serum...
In vitro interstitial (Leydig) cell response to LH and concentrations of plasma testosterone and LH in the naked mole rat (Heterocephalus glaber, Ruppell)
In vitro interstitial (Leydig) cell response to LH and concentrations of plasma testosterone and LH in the naked mole rat (Heterocephalus glaber, Ruppell)
SummaryReproductive endocrinology of the male naked mole rat (Heterocephalus glaber) caught in the wild was studied. In vitro treatment of isolated Leydig cells using either normal...
Evaluation of relative roles of LH and FSH in regulation of differentiation of Leydig cells using an ethane 1,2-dimethylsulfonate-treated adult rat model
Evaluation of relative roles of LH and FSH in regulation of differentiation of Leydig cells using an ethane 1,2-dimethylsulfonate-treated adult rat model
Abstract
The relative role of LH and FSH in regulation of differentiation of Leydig cells was assessed using an ethane 1,2-dimethylsulfonate (EDS)-treated rat mod...
Protective Effect of TNFAIP3 on Testosterone Production in Leydig Cells under an Aging Inflammatory Microenvironment
Protective Effect of TNFAIP3 on Testosterone Production in Leydig Cells under an Aging Inflammatory Microenvironment
AbstractBackground The aging inflammatory microenvironment surrounding Leydig cells is linked to reduced testosterone levels in males. Tumor necrosis factor alpha-induced protein 3...
Vitamin E and genistein generate a cytoprotective effect on polychlorinated biphenyl- induced oxidative stress in testicular Leydig cells
Vitamin E and genistein generate a cytoprotective effect on polychlorinated biphenyl- induced oxidative stress in testicular Leydig cells
Polychlorinated biphenyls (PCBs) are industrial substances which were widely used in industrial applications starting from the 1930s until the mid-1970s. Aroclor 1242 (A1242) is a ...
Data from Imatinib Mesylate Inhibits Leydig Cell Tumor Growth: Evidence for <i>In vitro</i> and <i>In vivo</i> Activity
Data from Imatinib Mesylate Inhibits Leydig Cell Tumor Growth: Evidence for <i>In vitro</i> and <i>In vivo</i> Activity
<div>Abstract<p>Leydig cell tumors are usually benign tumors of the male gonad. However, if the tumor is malignant, no effective treatments are currently available. Ley...
Leydig Cell and Extracellular Matrix Effects on Sertoli Cell Function: Biochemical and Morphologic Studies
Leydig Cell and Extracellular Matrix Effects on Sertoli Cell Function: Biochemical and Morphologic Studies
The reciprocal influence between Leydig and Sertoli cells prepared from pig testis were studied by coculture of both types of cells in either plastic dishes or dishes coated with b...

