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1 tinin disease, IgM-mediated neuropathies and mixed cryoglobulinemia.
2 vasculitis syndrome, Sjogren's syndrome, and mixed cryoglobulinemia.
3 GV RNA, for an overall prevalence of 3.0% in mixed cryoglobulinemia.
4  infection does not appear to have a role in mixed cryoglobulinemia.
5   One patient was also found to have type II mixed cryoglobulinemia.
6  the largest cohort of patients with type II mixed cryoglobulinemia.1 Steroids and rituximab appear t
7               HCV is also the major cause of mixed cryoglobulinemia, a B-lymphocyte proliferative dis
8 ymphocyte proliferative disorders, including mixed cryoglobulinemia and B-cell lymphoma.
9 opoietin (TSLP) transgenic mice that produce mixed cryoglobulinemia and develop hepatitis.
10 nce of coinfection with HGV in patients with mixed cryoglobulinemia and HCV infection in the United S
11 c diseases, and type II/III, which is called mixed cryoglobulinemia and is seen in hepatitis C virus
12                Patients with HCV may develop mixed cryoglobulinemia and its sequelae, ranging from cu
13  infection, particularly its relationship to mixed cryoglobulinemia and related clinical syndromes.
14 etin transgenic (TSLPtg) mice, which develop mixed cryoglobulinemia and severe cryoglobulinemia-assoc
15  were observed infrequently in patients with mixed cryoglobulinemia and were caused by nonspecific bi
16 ation and function: autoantibody production, mixed cryoglobulinemia, and B cell lymphomas.
17 xtrahepatic manifestations of HCV infection: mixed cryoglobulinemia, chronic kidney or end-stage rena
18 ith HCV infection, 6 patients with essential mixed cryoglobulinemia (EMC; all with type II), 50 hospi
19                                    Essential mixed cryoglobulinemia in humans is strongly associated
20 cryoglobulinemia, sera from 29 patients with mixed cryoglobulinemia (including 13 with rheumatic symp
21                                    Essential mixed cryoglobulinemia is frequently associated with chr
22 s, positive anti-nuclear autoantibodies, and mixed cryoglobulinemia is increasingly reported in diffe
23 B-cell lymphoproliferative disorders such as mixed cryoglobulinemia (MC) and B-cell non-Hodgkin lymph
24 ith the B-cell lymphoproliferative disorders mixed cryoglobulinemia (MC) and non-Hodgkin lymphoma.
25               Hepatitis C virus (HCV) causes mixed cryoglobulinemia (MC) by driving clonal expansion
26                                              Mixed cryoglobulinemia (MC) is the most common extrahepa
27           Hepatitis C virus (HCV)-associated mixed cryoglobulinemia (MC) vasculitis commonly regresse
28 h hepatitis C virus (HCV) frequently develop mixed cryoglobulinemia (MC), a monoclonal expansion of i
29 atment in hepatitis C virus (HCV)-associated mixed cryoglobulinemia (MC), especially concerning the l
30 is C virus (HCV) is the most common cause of mixed cryoglobulinemia syndrome (MCS).
31 TSLP transgenic animals developed polyclonal mixed cryoglobulinemia (type III) and a systemic inflamm
32  and therapeutic management of noninfectious mixed cryoglobulinemia vasculitis (CryoVas) in the era o
33     Thirty-six HCV patients with and without mixed cryoglobulinemia were compared with 18 healthy con
34 oducible mouse model of renal involvement in mixed cryoglobulinemia, which enables detailed studies o

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