[1] |
Gohlke-Barwolf, C Coronary artery disease –is menopause a risk factor? Basic Res Cardiol, 95 (2000),pp. I77-I83
|
[2] |
Scorza, R, Caronni, et al. Post-menopause is the main risk factor for developing isolated pulmonary hypertension in systemic sclerosis Ann N Y Acad Sci, 966 (2002),pp. 238-246
|
[3] |
Schildkraut, JM, Cooper, et al. Age at natural menopause and the risk of epithelial ovarian cancer Obstet Gynecol, 98 (2001),pp. 85-90
|
[4] |
La Vecchia, C, Negri, et al. The role of age at menarche and at menopause on breast cancer risk: combined evidence from four case-control studies Ann Oncol, 3 (1992),pp. 625-629
|
[5] |
van Wayenburg, CA, van der Schouw, et al. Age at menopause, body mass index, and the risk of colorectal cancer mortality in the Dutch Diagnostisch Onderzoek Mammacarcinoom (DOM) cohort Epidemiology, 11 (2000),pp. 304-308
|
[6] |
Hu, FB, Grodstein, et al. Age at natural menopause and risk of cardiovascular disease Arch Intern Med, 159 (1999),pp. 1061-1066
|
[7] |
Harlow, BL, Signorello, et al. Factors associated with early menopause Maturitas, 35 (2000),pp. 3-9
|
[8] |
Liu, P, Li, et al. Relationship between diabetes mellitus, impaired glucose tolerance and age, menopause, pregnancy: a survey of 5153 women in Shenzhen Chin Med J, 112 (1999),pp. 612-614
|
[9] |
Solerte, SB, Fioravanti, et al. Menopause and estrogen deficiency as a risk factor in dementing illness: hypothesis on the biological basis Maturitas, 31 (1999),pp. 95-101
|
[10] |
Bloom, W, Fawcett, et al.
|
[11] |
Bukovsky, A, Caudle, et al. Dominant role of monocytes in control of tissue function and aging Med Hypotheses, 55 (2000),pp. 337-347
|
[12] |
Trosko, JE Human stem cells as targets for the aging and diseases of aging processes Med Hypotheses, 60 (2003),pp. 439-447
|
[13] |
Fulop, TJ, Hauck, et al. Immunol Lett, 14 (1987),pp. 283-286
|
[14] |
Pacifici, R, Brown, et al. Effect of surgical. menopause and estrogen replacement on cytokine release from human blood mononuclear cells Proc Natl Acad Sci USA, 88 (1991),pp. 5134-5138
|
[15] |
Nakagomi, A, Freedman, et al. Interferon-γ and lipopolysaccharide potentiate monocyte tissue factor induction by C-reactive protein: relationship with age, sex, and hormone replacement treatment Circulation, 101 (2000),pp. 1785-1791
|
[16] |
Masuzawa, T, Miyaura, et al. Estrogen deficiency stimulates B lymphopoiesis in mouse bone marrow J Clin Invest, 94 (1994),pp. 1090-1097
|
[17] |
Ben Hur, H, Mor, et al. Menopause is associated with a significant increase in blood monocyte number and a relative decrease in the expression of estrogen receptors in human peripheral monocytes Am J Reprod Immunol, 34 (1995),pp. 363-369
|
[18] |
Porter, VR, Greendale, et al. Immune effects of hormone replacement therapy in post-menopausal women Exp Gerontol, 36 (2001),pp. 311-326
|
[19] |
Safadi, FF, Dissanayake, et al. Influence of estrogen deficiency and replacement on T-cell populations in rat lymphoid tissues and organs Endocrine, 12 (2000),pp. 81-88
|
[20] |
Chernyshov, VP, Radysh, et al. Immune disorders in women with premature ovarian failure in initial period Am J Reprod Immunol, 46 (2001),pp. 220-225
|
[21] |
Overlie, I, Moen, et al. The endocrine transition around menopause –a five years prospective study with profiles of gonadotropines, estrogens, androgens and SHBG among healthy women Acta Obstet Gynecol Scand, 78 (1999),pp. 642-647
|
[22] |
Bancroft, J, Cawood, et al. Androgens and the menopause; a study of 40–60-year-old women Clin Endocrinol (Oxf), 45 (1996),pp. 577-587
|
[23] |
Yao, G, Liang, et al. Int Immunopharmacol, 3 (2003),pp. 1853-1860
|
[24] |
Dvornyk, V, Long, et al. Predictive factors for age at menopause in Caucasian females Maturitas, 54 (2006),pp. 19-26
|
[25] |
Loh, FH, Khin, et al. The age of menopause and the menopause transition in a multiracial population: a nation-wide Singapore study Maturitas, 52 (2005),pp. 169-180
|
[26] |
Parazzini, F Determinants of age at menopause in women attending menopause clinics in Italy Maturitas, 56 (2007),pp. 280-287
|
[27] |
Anonymous
|
[28] |
Gautier, L, Cope, et al. affy –analysis of Affymetrix GeneChip data at the probe level Bioinformatics, 20 (2004),pp. 307-315
|
[29] |
Eisen, MB, Spellman, et al. Cluster analysis and display of genome-wide expression patterns Proc Natl Acad Sci USA, 95 (1998),pp. 14863-14868
|
[30] |
Ashburner, M, Ball, et al. Gene ontology: tool for the unification of biology. The Gene Ontology Consortium Nat Genet, 25 (2000),pp. 25-29
|
[31] |
Wilson, SA, Brown, et al. TRIP: a novel double stranded RNA binding protein which interacts with the leucine rich repeat of flightless I Nucleic Acids Res, 26 (1998),pp. 3460-3467
|
[32] |
Kinoshita, A, Kinoshita, et al. Identification of septins in neurofibrillary tangles in Alzheimer's disease Am J Pathol, 153 (1998),pp. 1551-1560
|
[33] |
Kim, DS, Hubbard, et al. Analysis of mammalian septin expression in human malignant brain tumors Neoplasia, 6 (2004),pp. 168-178
|
[34] |
Sakai, K, Kurimoto, et al. Expression of Nedd5, a mammalian septin, in human brain tumors J Neurooncol, 57 (2002),pp. 169-177
|
[35] |
Wu, M, Li, et al. Cloning and identification of a novel human gene PDLIM5, a homolog of AD-associated neuronal thread protein (AD7c-NTP) DNA Seq, 15 (2004),pp. 144-147
|
[36] |
Araki, T, Milbrandt, et al. Ninjurin2, a novel homophilic adhesion molecule, is expressed in mature sensory and enteric neurons and promotes neurite outgrowth J Neurosci, 20 (2000),pp. 187-195
|
[37] |
Paavola-Sakki, P, Ollikainen, et al. Genome-wide search in Finnish families with inflammatory bowel disease provides evidence for novel susceptibility loci Eur J Hum Genet, 11 (2003),pp. 112-120
|
[38] |
Xu, C, Dai, et al. Linkage analysis in multiple sclerosis of chromosomal regions syntenic to experimental autoimmune disease loci Eur J Hum Genet, 9 (2001),pp. 458-463
|
[39] |
Wiltshire, S, Frayling, et al. Evidence from a large U.K. family collection that genes influencing age of onset of type 2 diabetes map to chromosome 12p and to the MODY3/NIDDM2 locus on 12q24 Diabetes, 53 (2004),pp. 855-860
|
[40] |
Avramopoulos, D, Fallin, et al. Linkage to chromosome 14q in Alzheimerj's disease (AD) patients without psychotic symptoms Am J Med Genet B Neuropsychiatr Genet, 132 (2005),pp. 9-13
|
[41] |
Giedraitis, V, Modin, et al. Genome-wide TDT analysis in a localized population with a high prevalence of multiple sclerosis indicates the importance of a region on chromosome 14q Genes Immun, 4 (2003),pp. 559-563
|
[42] |
Tammela, T, Enholm, et al. The biology of vascular endothelial growth factors Cardiovasc Res, 65 (2005),pp. 550-563
|
[43] |
Rafii, S, Avecilla, et al. Angiogenic factors reconstitute hematopoiesis by recruiting stem cells from bone marrow microenvironment Ann N Y Acad Sci, 996 (2003),pp. 49-60
|
[44] |
Antonaci, S, Jirillo, et al. Non-specific immunity in aging: deficiency of monocyte and polymorphonuclear cell-mediated functions Mech Ageing Dev, 24 (1984),pp. 367-375
|
[45] |
Stoy, NS Monocyte/macrophage initiation of organ-specific autoimmunity: the ultimate ‘bystander’ hypothesis? Med Hypotheses, 58 (2002),pp. 312-326
|
[46] |
Jawaheer, D, Seldin, et al. North American Rheumatoid Arthritis Consortium. Screening the genome for rheumatoid arthritis susceptibility genes: a replication study and combined analysis of 512 multicase families Arthritis Rheum, 48 (2003),pp. 906-916
|
[47] |
Nath, SK, Kelly, et al. Evidence for a susceptibility gene, SLEV1, on chromosome 17p13 in families with vitiligo-related systemic lupus erythematosus Am J Hum Genet, 69 (2001),pp. 1401-1406
|
[48] |
Rzucidlo, EM, Quist, et al. Interferon γ up-regulates a novel protein in vascular smooth muscle cells J Vasc Surg, 29 (1999),pp. 317-323
|
[49] |
Faries, PL, Rohan, et al. Relationship of the 20S proteasome and the proteasome activator PA28 to atherosclerosis and intimal hyperplasia in the human vascular system Ann Vasc Surg, 15 (2001),pp. 628-633
|
[50] |
Yamano, T, Murata, et al. Two distinct pathways mediated by PA28 and hsp90 in major histocompatibility complex class I antigen processing J Exp Med, 196 (2002),pp. 185-196
|
[51] |
Merforth, S, Kuehn, et al. Alteration of 20S proteasome-subtypes and proteasome activator PA28 in skeletal muscle of rat after induction of diabetes mellitus Int J Biochem Cell Biol, 35 (2003),pp. 740-748
|
[52] |
Hsueh, WC, St Jean, et al. Genome-wide and fine-mapping linkage studies of type 2 diabetes and glucose traits in the Old Order Amish: evidence for a new diabetes locus on chromosome 14q11 and confirmation of a locus on chromosome 1q21-q24 Diabetes, 52 (2003),pp. 550-557
|
[53] |
Söderhäll, C, Bradley, et al. Linkage and association to candidate regions in Swedish atopic dermatitis families Hum Genet, 109 (2001),pp. 129-135
|
[54] |
Duerr, RH, Barmada, et al. High-density genome scan in Crohn disease shows confirmed linkage to chromosome 14q11–12 Am J Hum Genet, 66 (2000),pp. 1857-1862
|
[55] |
Wang, DY, McKague, et al. Gene expression profiles for detecting and distinguishing potential endocrine-disrupting compounds in environmental samples Environ Sci Technol, 38 (2004),pp. 6396-6406
|
[56] |
Baechler, EC, Batliwalla, et al. Interferon-inducible gene expression signature in peripheral blood cells of patients with severe lupus Proc Natl Acad Sci USA, 100 (2003),pp. 2610-2615
|
[57] |
Tang, Y, Gilbert, et al. Blood gene expression profiling of neurologic diseases: a pilot microarray study Arch Neurol, 62 (2005),pp. 210-215
|
[58] |
Olsen, N, Sokka, et al. A gene expression signature for recent onset rheumatoid arthritis in peripheral blood mononuclear cells Ann Rheum Dis, 63 (2004),pp. 1387-1392
|
[59] |
Liu, YZ, Dvornyk, et al. J Biol Chem, 280 (2005),pp. 29011-29016
|