LesseyBASavarisRFAliS. Diagnostic accuracy of urinary cytokeratin 19 fragment for endometriosis. Reprod Sci. 2015;22(5):551–555.
2.
Dela CruzCDel PuertoHLRochaALL. Expression of Nodal, Cripto, SMAD3, phosphorylated SMAD3, and SMAD4 in the proliferative endometrium of women with endometriosis. Reprod Sci. 2015;22(5):527–533.
3.
KhanKNKitajimaMInoueT. 17β-Estradiol and lipopolysaccharide additively promote pelvic inflammation and growth of endometriosis. Reprod Sci. 2015;22(5):585–594.
4.
SalmeriFMLaganàASSofoV. Behavior of TNFα and TNFR1/TNFR2 system in mononuclear cells recovered from peritoneal fluid of women with endometriosis at different stages. Reprod Sci. 2015;22(2):165–172.
5.
KurtRKPinarNKaratekeA. Protective effects of colchicine in an experimental rat endometriosis model: histopathological evaluation and assessment of TNF-α levels. Reprod Sci. 2015;22(2):258–263.
6.
YuanDZYuLLQuT. Identification and characterization of progesterone and estrogen regulated microRNAs in mouse endometrial epithelial cells. Reprod Sci. 2015;22(2):223–234.
7.
ZanattaAPereiraRMRochaAM. The relationship among HOXA10, estrogen receptor-α, progesterone receptor, and progesterone receptor-B proteins in rectosigmoid endometriosis: a tissue microarray study. Reprod Sci. 2015;22(1):31–37.
8.
Di Spiezio SardoAFlorioPFernandezLM. The potential role of endometrial nerve fibres in the pathogenesis of pain during endometrial biopsy at office hysteroscopy. Reprod Sci. 2015;22(1):124–131.