scholarly article | Q13442814 |
review article | Q7318358 |
P356 | DOI | 10.1016/S0015-0282(02)02959-X |
P698 | PubMed publication ID | 12009336 |
P50 | author | Jacques Donnez | Q15430313 |
Anne Van Langendonckt | Q106870669 | ||
P2093 | author name string | Françoise Casanas-Roux | |
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Do soluble cell adhesion molecules play a role in endometriosis? | Q33180053 | ||
Nitric oxide in the endometrium | Q33535270 | ||
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Endometriosis: a disease of oxidative stress? | Q33547835 | ||
Regulation of gene expression by reactive oxygen | Q33636648 | ||
Endometriosis and free radicals | Q33772542 | ||
Nitric oxide mediates interleukin-1-induced cellular cytotoxicity in the rat ovary. A potential role for nitric oxide in the ovulatory process | Q33910931 | ||
Oxidative stress and protection against reactive oxygen species in the pre-implantation embryo and its surroundings. | Q34206139 | ||
Identification of binding sites for transcription factors NF-kappa B and AP-2 in the promoter region of the human heme oxygenase 1 gene | Q35545986 | ||
Endothelial-cell heme uptake from heme proteins: induction of sensitization and desensitization to oxidant damage | Q36584535 | ||
Transcriptional regulation of the intercellular adhesion molecule-1 gene by inflammatory cytokines in human endothelial cells. Essential roles of a variant NF-kappa B site and p65 homodimers | Q38299782 | ||
Activation of NFkappaB is necessary for IL-1beta-induced cyclooxygenase-2 (COX-2) expression in human gingival fibroblasts | Q38309389 | ||
Endometriotic lesions synthesize and secrete a haptoglobin-like protein | Q38338432 | ||
Importance of Se-glutathione peroxidase, catalase, and Cu/Zn-SOD for cell survival against oxidative stress | Q40645040 | ||
Oxidative stress as a mediator of apoptosis | Q40729167 | ||
Cellular defenses against damage from reactive oxygen species | Q40808542 | ||
RU486-induced growth inhibition of human endometrial cells | Q40845481 | ||
Morphological changes in mesothelial cells induced by shed menstrual endometrium in vitro are not primarily due to apoptosis or necrosis | Q40870606 | ||
Heme induces the expression of adhesion molecules ICAM-1, VCAM-1, and E selectin in vascular endothelial cells | Q73948106 | ||
Aberrant expression of glutathione peroxidase in eutopic and ectopic endometrium in endometriosis and adenomyosis | Q74114645 | ||
Endothelial nitric oxide synthase in the endometrium during the menstrual cycle in patients with endometriosis and adenomyosis | Q74296200 | ||
Extracellular matrix remodelling in the endometrium and its possible relevance to the pathogenesis of endometriosis | Q74459346 | ||
Peritoneal endometriotic lesions differentially express a haptoglobin-like gene | Q74527740 | ||
Levels of antibodies to transferrin and alpha 2-HS glycoprotein in women with and without endometriosis | Q77384763 | ||
Fibrinolytic factors in endometriotic tissue, endometrium, peritoneal fluid, and plasma from women with endometriosis and in endometrium and peritoneal fluid from healthy women | Q77525914 | ||
Dioxin causes a sustained oxidative stress response in the mouse | Q77753435 | ||
Autoantibodies to markers of oxidative stress are elevated in women with endometriosis | Q77849843 | ||
Transition metal ion-catalyzed oxygen activation during pathogenic processes | Q77937459 | ||
Immunohistochemical assessment of superoxide dismutase expression in the endometrium in endometriosis and adenomyosis | Q78067199 | ||
Levels of transferrin and alpha 2-HS glycoprotein in women with and without endometriosis | Q78085965 | ||
Activation of the human RANTES gene promoter in a macrophage cell line by lipopolysaccharide is dependent on stress-activated protein kinases and the IkappaB kinase cascade: implications for exacerbation of allergic inflammation by environmental pol | Q40967365 | ||
NF-kappa B-mediated regulation of urokinase gene expression by PMA and TNF-alpha in human A549 cells | Q41168579 | ||
Integrin-mediated tyrosine phosphorylation and cytokine message induction in monocytic cells. A possible signaling role for the Syk tyrosine kinase. | Q41326678 | ||
The heme oxygenase system: a regulator of second messenger gases | Q41455806 | ||
Peritoneal endometriosis, ovarian endometriosis, and adenomyotic nodules of the rectovaginal septum are three different entities | Q41619198 | ||
Xanthine oxidase in eutopic and ectopic endometrium in endometriosis and adenomyosis | Q43564901 | ||
Peritoneal fluid concentrations of the cytokine RANTES correlate with the severity of endometriosis. | Q46036918 | ||
Analysis of the cytokine-stimulated human inducible nitric oxide synthase (iNOS) gene: characterization of differences between human and mouse iNOS promoters | Q47688242 | ||
Vascular endothelial growth factor (VEGF) in endometriosis | Q47750518 | ||
Evidence for oxidatively modified lipid-protein complexes in endometrium and endometriosis | Q47972295 | ||
Macrophage scavenger receptor(s) and oxidatively modified proteins in endometriosis | Q47972306 | ||
Lysophosphatidyl choline, a chemotactic factor for monocytes/T-lymphocytes is elevated in endometriosis | Q47976535 | ||
Effect of inhibition of oxygen free radical on ovulation and progesterone production by the in-vitro perfused rabbit ovary. | Q50802048 | ||
Expression of interstitial collagenase (matrix metalloproteinase-1) is related to the activity of human endometriotic lesions. | Q50944132 | ||
Importance of reactive oxygen species in the peritoneal fluid of women with endometriosis or idiopathic infertility. | Q53852321 | ||
Dioxin concentrations in women with endometriosis | Q57275950 | ||
Menstruum Induces Changes in Mesothelial Cell Morphology | Q57578231 | ||
The acute-phase response in endometriosis of women | Q57578292 | ||
Cvtokines and Paf Release from Human Monocytes and Macrophages: Effect of Hemoglobin and Contaminants | Q58135624 | ||
Total antioxidant status and nitric oxide do not increase in peritoneal fluids from women with endometriosis | Q58377259 | ||
Menstrual characteristics in women with and without endometriosis | Q62090918 | ||
Transferrin receptor (CD71) expression in peritoneal macrophages from fertile and infertile women with and without endometriosis. | Q64978496 | ||
Histologic confirmation of endometriosis in different peritoneal lesions | Q67503594 | ||
Three-dimensional architectures of peritoneal endometriosis | Q68106168 | ||
Interleukin-1: a possible role in the infertility associated with endometriosis | Q68814211 | ||
Enhancement of human monocyte and peritoneal macrophage chemiluminescence activities in women with endometriosis | Q69107841 | ||
Tumor necrosis factor in peritoneal fluid of women undergoing laparoscopic surgery | Q70061691 | ||
Human peritoneal macrophage and T lymphocyte populations in mild and severe endometriosis | Q70900915 | ||
Changes in activity of superoxide dismutase in the human endometrium throughout the menstrual cycle and in early pregnancy | Q71162399 | ||
Human endometrial stromal cells as a source of soluble intercellular adhesion molecule (ICAM)-1 molecules | Q71162457 | ||
Accentuated cyclic activation of peritoneal macrophages in patients with endometriosis | Q71254052 | ||
Immunohistochemical analysis of estrogen and progesterone receptors in endometrium and peritoneal endometriosis: a new quantitative method | Q71650168 | ||
Endometriosis-associated infertility | Q72300189 | ||
De novo formation of adhesions in endometriosis: the role of iron and free radical reactions | Q72332474 | ||
Oestrogen and progesterone receptors in endometriotic tissue and endometrium: comparison of different cycle phases and ages | Q72347435 | ||
Endometriosis and infertility: the role of exogenous lipid peroxides in the peritoneal fluid | Q72370828 | ||
Endometriosis and infertility: raised iron concentration in the peritoneal fluid and its effect on the acrosome reaction | Q72810252 | ||
Peritoneal endometriosis: two-dimensional and three-dimensional evaluation of typical and subtle lesions | Q72853271 | ||
Expression of superoxide dismutase (SOD) in adenomyosis | Q72925946 | ||
Differential expression and localization of de-novo synthesized endometriotic haptoglobin in endometrium and endometriotic lesions | Q73006339 | ||
Localization of laminin, fibronectin, E-cadherin, and integrins in endometrium and endometriosis | Q73044527 | ||
Nitric oxide modulates human chorionic gonadotropin-induced ovulation in the rabbit | Q73198781 | ||
GnRH agonist-suppressed expression of nitric oxide synthases and generation of peroxynitrite in adenomyosis | Q73247111 | ||
Cytologic diagnosis of peritoneal fluids. Applicability to the laparoscopic diagnosis of endometriosis | Q73376478 | ||
Cytokine induction of monocyte chemoattractant protein-1 gene expression in human endothelial cells depends on the cooperative action of NF-kappa B and AP-1 | Q73396203 | ||
Total antioxidant status of peritoneal fluid in infertile women | Q73412029 | ||
Immunoblot detection of decreased antibodies to haptoglobin-like protein in the serum of infertile women with or without endometriosis | Q73480455 | ||
Distribution of cyclooxygenase-2 in eutopic and ectopic endometrium in endometriosis and adenomyosis | Q73562927 | ||
Menstrual characteristics associated with endometriosis | Q73582826 | ||
Immunohistochemical analysis of proliferative activity and steroid receptor expression in peritoneal and ovarian endometriosis | Q73923632 | ||
Is endometriosis an endometrial disease? | Q73930820 | ||
P433 | issue | 5 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | endometriosis | Q205764 |
oxidative stress | Q898814 | ||
P304 | page(s) | 861-870 | |
P577 | publication date | 2002-05-01 | |
P1433 | published in | Fertility and Sterility | Q15724525 |
P1476 | title | Oxidative stress and peritoneal endometriosis | |
P478 | volume | 77 |
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Q40193563 | Dapsone hydroxylamine-mediated alterations in human red blood cells from endometriotic patients. |
Q89440134 | Effect of Intrauterine Infusion of Momordica Charantia L. on Oxidative Stress and Pregnancy Rate in Infertile Cows |
Q46442101 | Effect of nitric oxide and TH1/TH2 cytokine supplementation over ectopic endometrial tissue growth in a murine model of endometriosis |
Q46898305 | Effect of vitamins C and E supplementation on peripheral oxidative stress markers and pregnancy rate in women with endometriosis. |
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Q58779829 | Expression and localization of nuclear factor erythroid 2-related factor 2 in the ovarian tissues of mice at different ages |
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Q45351409 | Increased circulating MMP-2 levels in infertile patients with moderate and severe pelvic endometriosis. |
Q44047400 | Lack of association between LIPC-514 C/T polymorphism of hepatic lipase and endometriosis in Iranian women |
Q37706290 | Looking for celiac disease in Italian women with endometriosis: a case control study |
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Q51068219 | Melatonin causes regression of endometriotic implants in rats by modulating angiogenesis, tissue levels of antioxidants and matrix metalloproteinases. |
Q28729119 | Mitochondrial genome variations in advanced stage endometriosis: a study in South Indian population |
Q50695828 | Nuclear factor-kappa B is constitutively activated in peritoneal endometriosis. |
Q46278016 | Oxidative Stress and Endometriosis: A Systematic Review of the Literature. |
Q43556907 | Oxidative cell injury as a predictor of endometriosis progression. |
Q42660095 | Oxidative damage and mitochondrial DNA mutations with endometriosis. |
Q46427615 | Oxidative stress and endometriosis |
Q36367094 | Oxidative stress and its implications in female infertility - a clinician's perspective |
Q38674214 | Oxidative stress and oocyte quality: ethiopathogenic mechanisms of minimal/mild endometriosis-related infertility |
Q38025993 | Oxidative stress biomarkers in patients with endometriosis: systematic review |
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Q45154456 | Possible pathophysiological roles of mitogen-activated protein kinases (MAPKs) in endometriosis. |
Q37988818 | Principles of phenomics in endometriosis |
Q36154561 | Reactive oxygen species and oocyte aging: role of superoxide, hydrogen peroxide, and hypochlorous acid |
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Q39443992 | Regression of endometrial implants by resveratrol in an experimentally induced endometriosis model in rats |
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