Therapeutic Advances
Copyright ©The Author(s) 2016.
World J Stem Cells. Oct 26, 2016; 8(10): 306-315
Published online Oct 26, 2016. doi: 10.4252/wjsc.v8.i10.306
Table 1 Summary of preclinical trials showing successful differentiation of various stem cell lines into steroidogenic Leydig-like cells
Ref.Stem cells usedStudy typeDesignResults
Lo et al[52]Mouse mixed testicular stem cells (SP) containing spermatogonial, leydig cell, and myoid stem cellsIn vivoSCs were injected into the testes of sterile sertoli-cell only transgenic mice and transgenic mice with a targeted deletion of 4-kb pairs of the LH receptor geneSP cell transplanted mice had increased time-dependent serum testosterone and spermatogenesis compared to non-SP cell transplanted mice
Yazawa et al[53]Rat BM-MSCsIn vivoBM-MSCs were injected into the testes of 3-wk old Sprague-Dawley ratsBM-MSCs differentiated into steroidogenic cells similar to Leydig cells
Mouse MSCsMSCs were transfected with Sf-1 followed by treatment with cAMP and cultured in Iscova’s MEM or DMEM with 10% fetal calf serumTransfected cells differentiated into Leydig cells
Lue et al[51]Unfractionated mouse bone marrow stem cellsIn vitroSCs were injected into the testes of busulfan treated mice and c-kit mutant homozygous miceSCs differentiated into Leydig, Sertoli, and germ cells after 12 wk. Though germ cells were lacking in c-kit mutant mice
Gondo et al[63]Mouse AMCsIn vitroAMCs and BMCs were transfected with SF-1 and cultured with Medium AAMCs were more likely to differentiate into adrenal-type steroidogenic cells with increased production of corticosterone
Mouse BMCsBMCs were more likely to differentiate into gonadal-type steroidogenic cells with increased production of testosterone
Yazawa et al[54]Human BM-MSCsIn vitroBM-MSCs were transfected with LRH-1 followed by treatment with cAMP and cultured in DMEM with 10% fetal calf serumTransfected cells expressed CYP17 and produced testosterone
Yazawa et al[55]UC-MSCsIn vitroUC-MSCs were transfected with SF-1 followed by treatment with cAMP and cultured in DMEM/Ham’s F-12 supplemented with 0.1% BSATransfected cells differentiated into cells with similar characteristics to granulosa-luteal cells
Wei et al[62]Human UC-MSCsIn vitroUC-MSCs and BM-MSCs were transfected with SF-1 and cultured in the presence of cAMPDifferentiated UC-MSCs had higher expression of steroidogenic mRNAs. They also secreted significantly greater amounts of testosterone and cortisol than BM-MSCs
Human BM-MSCs
Yazawa et al[64]Rat BM-MSCsIn vivoBM-MSCs were transplanted into prepubertal testesMSCs were able to differentiate into steroidogenic Leydig cells in vivo. SF-1 expression was also detected
Yang et al[56]Rat ADSCsIn vivoADSCs were injected into Sprague-dawley rats that had been treated with D-gal (aging model) or saline (control) for 8 wkADSCs migrated to damaged areas, reduced the number of apoptotic Leydig cells, and upregulated enzymes to increase testosterone levels in the testis in those treated with D-gal
Yang et al[58]Mouse ESCsIn vivoESCs were cultured with cAMP, SF-1, and FSK. These derived Leydig-like cells were then injected into Sprague-dawley rats treated with EDSFSK enhanced the differentiation of mESCs into Leydig-like cells. Subsequent treatment with these newly differentiated cells led to increased testosterone levels in EDS-treated rats
Hou et al[57]Human BM-MSCsIn vitroExperimental - BM-MSCs were cultured in conditional medium with different concentrations of HMG/LH Control - BMSCs were cultured in FBS in DMEM medium with normal sodiumExperimental culture medium induced the differentiation of BMSCs into Leydig cells
Zhang et al[59]Rat SLCsIn vitroSLCs were cultured in a seminiferous tubule model using media containing NGF. The proliferative capacity of SLCs, along with testosterone production, and steroidogenic gene/protein expression was measuredNGF significantly promoted the proliferation of stem Leydig cells and also induced steroidogenic enzyme gene expression and 3β-HSD protein expression
Odeh et al[60]Rat SLCsIn vitroSLCs were cultured on the surfaces of seminiferous tubules in a media containing PDGF-AA or PDGF-BB for up to 4 wk. SLC proliferation and differentiation were measuredBoth PDGF-AA and PDGF-BB stimulated SLC proliferation during the first week of culture. After this first week, PDGF-AA had a stimulatory effect on SLC differentiation. PDGF-BB began inhibiting differentiation after this first week
Li et al[61]Rat SLCsIn vitroSLCs were cultured on the surface of seminiferous tubules to assess the ability of factors from the seminiferous tubules to regulate their proliferation and their subsequent entry into the Leydig cell lineageSLC proliferation was stimulated by DHH, FGF2, PDGF, and activin. Differentiation was activated by DHH, lithium-induced signaling, and activin, and inhibited by TGF-β, PDGF-BB, and FGF2