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1.
BMC Vet Res ; 14(1): 184, 2018 Jun 15.
Article in English | MEDLINE | ID: mdl-29903015

ABSTRACT

BACKGROUND: Mammaglobin, a member of secretoglobin family has been recognized as a breast cancer associated protein. Though the exact function of the protein is not fully known, its expression has been reported to be upregulated in human breast cancer.We focused on studying the expression of mammaglobin-B gene and protein in canine mammary tumor (CMT) tissue. Expression of mammaglobin-B mRNA and protein were assessed by quantitative real-time polymerase chain reaction (qRT-PCR) and immunohistochemistry (IHC), respectively. RESULTS: High levels of mammaglobin-B mRNA expression (6.663 ± 0.841times) was observed in CMT as compared to age and breed matched healthy controls. Further, expression of mammaglobin-B protein was detected in paraffin-embedded mammary tumor tissues from the same subjects by IHC. Mammaglobin-B protein was overexpressed only in 6.67% of healthy mammary glands while, a high level of its expression was scored in 76.7% of the CMT subjects. Moreover, no significant differences in terms of IHC score and qRT-PCR score with respect to CMT histotypes or tumor grades were observed, indicating that mammaglobin-B over-expression occurred irrespective of CMT types or grades. CONCLUSION: Overall, significantly increased expression of mammaglobin-B protein was found in CMTs with respect to healthy mammary glands, which positively correlates to its transcript. These findings suggest that overexpression of mammaglobin-B is associated with tumors of canine mammary glands.


Subject(s)
Dog Diseases/metabolism , Mammaglobin B/biosynthesis , Mammary Neoplasms, Animal/metabolism , Animals , Dog Diseases/genetics , Dogs , Female , Gene Expression , Immunohistochemistry/veterinary , Mammaglobin B/genetics , Neoplasm Grading/veterinary , RNA, Messenger/metabolism , RNA, Neoplasm/metabolism , Real-Time Polymerase Chain Reaction/veterinary
2.
J Assist Reprod Genet ; 30(10): 1289-99, 2013 Oct.
Article in English | MEDLINE | ID: mdl-23989997

ABSTRACT

PURPOSE: To assess the safety of reimplantation of cryopreserved ovarian tissue from advanced-stage breast cancer patients. METHODS: Cryopreserved ovarian cortical fragments were obtained from 13 advanced-stage breast cancer patients aged 17-35 years. After thawing, part of the ovarian cortical tissue was grafted to severe combined immunodeficient mice for 6 months. The presence of malignant mammary cells in ovarian tissue was evaluated after thawing as well as after grafting by 1) histology and immunohistochemistry (epithelial membrane antigen, Her2/neu and gross cystic disease fluid protein 15 identification), and 2) detection of the MGB2 gene by qPCR. RESULTS: No malignant cells were evidenced by histology and immunohistochemistry. None of the mice died during the 6-month grafting period, nor developed macroscopically visible masses. MGB2 gene expression was detected by qPCR and confirmed by sequencing in frozen-thawed ovarian tissue in 4 cases and in grafts in 1 case. CONCLUSIONS: This pilot study is the first to evaluate the risk of contamination of cryopreserved ovarian tissue from advanced-stage breast cancer patients by xenotransplantation for 6 months to immunodeficient mice, associated with more conventional screening methods. Our xenografting results are reassuring, but caution needs to be exercised, as MGB2 gene expression was detected in some cases. Larger numbers of ovarian tissue samples from patients with advanced-stage breast cancer are required to confirm our findings before ovarian tissue transplantation can be contemplated in these patients.


Subject(s)
Breast Neoplasms/pathology , Fertility Preservation/methods , Ovarian Follicle/transplantation , Adolescent , Adult , Aged, 80 and over , Animals , Carrier Proteins/metabolism , Cryopreservation , Female , Glycoproteins/metabolism , Humans , Mammaglobin B/biosynthesis , Mammaglobin B/genetics , Membrane Transport Proteins , Mice , Mice, SCID , Pilot Projects , Receptor, ErbB-2/metabolism , Transplantation, Heterologous , Young Adult
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