Identification of Suitable Reference Genes for Normalization of Real-Time Quantitative Polymerase Chain Reaction in an Intestinal Graft-Versus-Host Disease Mouse Model
TRANSPLANTATION PROCEEDINGS
Authors: Li, X.; Qiao, J.; Yang, N.; Mi, H.; Chu, P.; Xia, Y.; Yao, H.; Liu, Y.; Qi, K.; Yan, Z.; Zeng, L.; Xu, K.
Abstract
Background. With the development of real-time quantitative polymerase chain reaction (RT-qPCR) and intensive research on acute graft-versus-host disease (GVHD), selecting the best reference gene for normalization of RT-qPCR analysis in a GVHD model becomes more and more important. In this study, we aimed to identify suitable reference genes for mRNA studies in an intestinal GVHD mouse model after bone marrow transplantation (BMT). Methods. BALB/c recipients received 7.5 Gy total body irradiation (TBI) followed by injection of 5 x 10(6) bone marrow cells, without infusion of spleen cells for BMT, with infusion of 5 x 10(5) or 2.5 x 10(6) spleen cells for mild or moderate GVHD, respectively. Healthy mice were chosen as normal control subjects. Duodenum, jejunum, ileum, colon, and small intestine were collected at days 7, 14, 21, and 28 after transplantation. Transcription levels of 9 candidate genes, B2M, SDHA, HPRT, ACTB, GAPDH, HMBS, TBP, YWHAZ, and RPLP0, in each tissue were measured with the use of RT-qPCR. Combined data from these tissues in each group were defined as all samples. The expression stability of these genes was analyzed with the use of Genorm, Normfinder, Bestkeeper, and Delta Ct. Results. Our results showed that in all samples, ACTB and HMBS displayed the highest and lowest expression levels, respectively. Genorm identified HRPT and SDHA as the most stable reference genes, whereas Normfinder and Delta Ct method showed HPRT as the most stably expressed gene. Bestkeeper ranked YWHAZ and HPRT as the top 2 most suitable genes. In conclusion, HPRT was recommended as the most suitable reference gene after comprehensive ranking, suggesting that it could be used as an internal control for mRNA studies in intestinal GVHD after BMT.
Expression pattern of androgen receptors, AR-V7 and AR-567es, in circulating tumor cells and paired plasma-derived extracellular vesicles in metastatic castration resistant prostate cancer
ANALYST
Authors: Strati, Areti; Zavridou, Martha; Bournakis, Evangelos; Mastoraki, Sophia; Lianidou, Evi
Abstract
Androgen-receptor splice variant 7 (AR-V7) is a highly promising liquid biopsy predictive biomarker showing primary or acquired resistance to novel androgen receptor signaling inhibitors in metastatic castration resistant prostate cancer (mCRPC). We present for the first time the expression pattern of AR-FL, AR-V7, and AR-567es at a quantitative level in circulating tumor cells (CTCs) and paired plasma-derived extracellular vesicles in mCRPC. We first developed and analytically validated a novel multiplex RT-qPCR assay for AR full length (AR-FL), AR-V7, AR-567es and AR-total. We then quantified the expression levels of AR-splice variants, CK-19 (epithelial marker) and B2M (reference gene) in EpCAM+ CTCs, and paired plasma-derived extracellular vesicles isolated from peripheral blood (20 mL) of 62 mCRPC patients and 10 healthy donors. CTCs were enumerated using the FDA-cleared CellSearch (R) system. In CTCs AR-FL was detected in 64/69 (92.3%), AR-V7 in 34/69 (49.3%), AR-567es in 16/69 (23.2%) and AR-total in 62/69 (89.9%). In 52 out of 69 samples, paired plasma-derived extracellular vesicles were analyzed. AR-FL was detected in 40/52 (76.9%), AR-V7 in 4/52 (7.7%), AR-567 in 2/52 (3.8%) and AR total in 39/52 (75.0%). In all cases AR splice variants were expressed in higher levels in CTCs than in paired extracellular vesicles, while AR-V7 was detected in higher percentages than in AR-567es. Using CellSearch (R), CTCs were detected in 52/69 (75.4%) mCRPC patient samples; 27/52 (51.9%) of these samples were CTC+/AR-V7+ and 14/52 (26.9%) were CTC+/AR-567es+, while 7/17 (41.2%) were CTC-/AR-V7+ and 2/17 (11.8%) were CTC-/AR-567es+. Our results reveal for the first time a remarkable heterogeneity in the expression levels of AR-FL, AR-V7 and AR-567es in EpCAM+ CTCs and paired extracellular vesicles between individual mCRPC patients. The clinical significance of this finding will be further investigated in a large patient cohort with respect to therapy response.