There is considerable concern that isoflavones,such as genistein in fish feed composed of soybean protein,affects somatic growth in fish.Our previous works demonstrated that 30 and 300 μg/g dietary genistein had no s...There is considerable concern that isoflavones,such as genistein in fish feed composed of soybean protein,affects somatic growth in fish.Our previous works demonstrated that 30 and 300 μg/g dietary genistein had no significant effect on growth performance in Nile tilapia(Oreochromis niloticus),but the higher level of genistein(3 000 μg/g) significantly depressed growth.This study was conducted to further examine the effects of dietary genistein on the endocrine disruption on growth hormone/insulin-like growth factor-I(GH/IGF-I) axis in Nile tilapia(O.niloticus).Juvenile fish were fed by hand twice daily to satiation with one of four isonitrogenous and isoenergetic diets,each containing either 0,30,300 or3 000 μg/g genistein.Following an 8-week feeding period,plasma GH and IGF-I levels were investigated by radioimmunoassay and gene expression levels of gh,ghrelin,gnrhs,ghr,npy,npyrs,pacap,ghrs,igf-I,igf-Ir,and igfbp3 were examined by real-time PCR.The results show that no significant change in plasma GH and IGF-I levels in fish fed with diets containing 30 μg/gand 300 μg/g genistein.mRNA expression of genes along the GH/IGF-I axis remained unaffected,except for igf-Ir,which was stimulated by the 300 μg/g genistein diet.While in fish fed the 3 000 μg/g genistein diet,the plasma GH and IGF-I levels decreased,and mRNA expression of gh,ghr2,npyr1,igf-I,and igf-Ir were also significantly depressed.In contrast,npy and igfbp3 mRNA expression were enhanced.This study provides convincing evidence for growth impediment by genistein by disturbing the GH/IGF-I axis in Nile tilapia O.niloticus.展开更多
Insulin-like growth factor-I (IGF-I) regulates cell growth, survival, and differentiation by acting on the IGF-I receptor, (IGF-IR)-a tyrosine kinase receptor, which elicits diverse intracellular signaling respons...Insulin-like growth factor-I (IGF-I) regulates cell growth, survival, and differentiation by acting on the IGF-I receptor, (IGF-IR)-a tyrosine kinase receptor, which elicits diverse intracellular signaling responses. All skeletal cells express IGF-I and IGF-IR. Recent studies using tissue/cell-specific gene knockout mouse models and cell culture techniques have clearly demonstrated that locally produced IGF-I is more critical than the systemic IGF-I in supporting embryonic and postnatal skeletal development and bone remodeling. Local IGF-I/IGF-IR signaling promotes the growth, survival and differentiation of chondrocytes and osteo- blasts, directly and indirectly, by altering other autocrine/paracrine signaling pathways in cartilage and bone, and by enhancing interactions among these skeletal cells through hormonal and physical means. Moreover, local IGF-I/IGF-IR signaling is critical for the anabolic bone actions of growth hormone and parathyroid hormone. Herein, we review evidence supporting the actions of local IGF-I/IGF-IR in the above aspects of skeletal development and remodeling.展开更多
基金Supported by the National Natural Science Foundation of China(No.31170322)
文摘There is considerable concern that isoflavones,such as genistein in fish feed composed of soybean protein,affects somatic growth in fish.Our previous works demonstrated that 30 and 300 μg/g dietary genistein had no significant effect on growth performance in Nile tilapia(Oreochromis niloticus),but the higher level of genistein(3 000 μg/g) significantly depressed growth.This study was conducted to further examine the effects of dietary genistein on the endocrine disruption on growth hormone/insulin-like growth factor-I(GH/IGF-I) axis in Nile tilapia(O.niloticus).Juvenile fish were fed by hand twice daily to satiation with one of four isonitrogenous and isoenergetic diets,each containing either 0,30,300 or3 000 μg/g genistein.Following an 8-week feeding period,plasma GH and IGF-I levels were investigated by radioimmunoassay and gene expression levels of gh,ghrelin,gnrhs,ghr,npy,npyrs,pacap,ghrs,igf-I,igf-Ir,and igfbp3 were examined by real-time PCR.The results show that no significant change in plasma GH and IGF-I levels in fish fed with diets containing 30 μg/gand 300 μg/g genistein.mRNA expression of genes along the GH/IGF-I axis remained unaffected,except for igf-Ir,which was stimulated by the 300 μg/g genistein diet.While in fish fed the 3 000 μg/g genistein diet,the plasma GH and IGF-I levels decreased,and mRNA expression of gh,ghr2,npyr1,igf-I,and igf-Ir were also significantly depressed.In contrast,npy and igfbp3 mRNA expression were enhanced.This study provides convincing evidence for growth impediment by genistein by disturbing the GH/IGF-I axis in Nile tilapia O.niloticus.
基金supported by NIH grants RO1 AG021353(W.C.),AR055924(D.B),DK 054793(D.B.)Department of Veteran Affairs Program Project Award Program in Bone Disease and Merit Review Grants(W.C.,D.B.)
文摘Insulin-like growth factor-I (IGF-I) regulates cell growth, survival, and differentiation by acting on the IGF-I receptor, (IGF-IR)-a tyrosine kinase receptor, which elicits diverse intracellular signaling responses. All skeletal cells express IGF-I and IGF-IR. Recent studies using tissue/cell-specific gene knockout mouse models and cell culture techniques have clearly demonstrated that locally produced IGF-I is more critical than the systemic IGF-I in supporting embryonic and postnatal skeletal development and bone remodeling. Local IGF-I/IGF-IR signaling promotes the growth, survival and differentiation of chondrocytes and osteo- blasts, directly and indirectly, by altering other autocrine/paracrine signaling pathways in cartilage and bone, and by enhancing interactions among these skeletal cells through hormonal and physical means. Moreover, local IGF-I/IGF-IR signaling is critical for the anabolic bone actions of growth hormone and parathyroid hormone. Herein, we review evidence supporting the actions of local IGF-I/IGF-IR in the above aspects of skeletal development and remodeling.