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1.
Korean Journal of Veterinary Research ; : 269-273, 2012.
Article in English | WPRIM | ID: wpr-206182

ABSTRACT

In the present study, we investigated the expression patterns of ErbB family proteins in the pre-pubertal and pubertal mammary glands of dairy cows in association with gland development. For this study, we performed immunohistochemistry for ErbB-1-4 and Ki-67 cell proliferation marker. We found that the pre-pubertal and pubertal mammary glands had typical structures, including ducts and terminal end buds embedded in the stroma, and no development of lobuloalveolar structures. On immunohistochemistry, ErbB-2 and ErbB-3 were strongly expressed in the cytoplasm and nuclei in the epithelial cells of mammary ducts and terminal end buds, and stromal cells, whereas ErbB-1 and ErbB-4 were weakly expressed only in the cytoplasm of gland epithelium and stromal cells, irrespective of the developmental stage. Cell proliferation was inactive in the mammary gland cell compartments in both phases. Thus, expression of the ErbB family in the developing mammary glands was not associated with their functional effects, such as cell proliferation and lobuloalveolar development. In conclusion, ErbB receptors were differentially expressed in the epithelial and stromal cells of virgin mammary glands of dairy cows. Compared with rodent mammary glands, ErbB-3 and ErbB-4 were found to be highly expressed in bovine mammary glands.


Subject(s)
Humans , Cell Proliferation , Cytoplasm , Epithelial Cells , Epithelium , Immunohistochemistry , Mammary Glands, Human , Proteins , Rodentia , Stromal Cells
2.
Nutrition Research and Practice ; : 389-395, 2012.
Article in English | WPRIM | ID: wpr-31239

ABSTRACT

The study elucidated carbohydrase inhibition, anti-cancerous, free radical scavenging properties and also investigated the DNA and protein protection abilities of methanolic root extract of Rumex crispus (RERC). For this purpose, pulverized roots of Rumex crispus was extracted in methanol (80% and absolute conc.) for 3 hrs for 60degrees C and filtered and evaporated with vacuum rotary evaporator. RERC showed high phenolic content (211 microg/GAE equivalent) and strong 2,2-diphenyl-1-picrylhydrazyl (DPPH) radical scavenging (IC50 = 42.86 (absolute methanol) and 36.91 microg/mL (80% methanolic extract)) and reduced power ability. Furthermore, RERC exhibited significant protective ability in H2O2/Fe3+/ascorbic acid-induced protein or DNA damage and percentage inhibition of the HT-29 cell growth rate following 80% methanolic RERC exposure at 400 microg/mL was observed to be highest (10.2% +/- 1.03). Moreover, methanolic RERC inhibited alpha-glucosidase and amylase effectively and significantly (P < 0.05). Conclusively, RERC could be considered as potent carbohydrase inhibitor, anti-cancerous and anti-oxidant.


Subject(s)
Humans , alpha-Glucosidases , Amylases , Biphenyl Compounds , DNA , DNA Damage , Glycoside Hydrolases , HT29 Cells , Methanol , Phenol , Picrates , Power, Psychological , Rumex , Vacuum
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