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1                                          The immunopathologic and clinical similarities between chron
2 D/LtSz-Rag1nullPfpnull mice were studied for immunopathologic and hematologic abnormalities.
3   In the first posttransplantation year, AMR immunopathologic and histopathologic markers were relati
4 wanted to investigate the reproducibility of immunopathologic and physiologic parameters after short
5                   Both diseases appear to be immunopathologic, and inflammatory mediators are importa
6                         This may also be the immunopathologic basis of other life-threatening human v
7                                The lesion is immunopathologic, but the identities of molecules that d
8 AMR) is diagnosed and graded on the basis of immunopathologic (C4d-CD68) and histopathologic criteria
9 inia virus keratitis is likely to involve an immunopathologic component, but little is known about th
10 use models has resulted in resolution of the immunopathologic condition.
11 nd DC-expressed nuclear receptors to various immunopathologic conditions, such as rheumatoid arthriti
12                      Stromal keratitis is an immunopathologic consequence of herpes simplex virus (HS
13  immunoprotective responses without inducing immunopathologic consequences.
14 enous IL-10 can be effective in ameliorating immunopathologic damage associated with schistosomiasis.
15  these chronic viruses at bay while avoiding immunopathologic damage to persistently infected tissues
16                                              Immunopathologic damage was moderate to widespread in up
17 ar and cytokine/chemokine responses to limit immunopathologic damage, while maintaining host control
18 n immunosuppressive factor produced to limit immunopathologic damage.
19 s adds important information to clinical and immunopathologic data in discriminating between primary
20 ed immunosorbent assay (ELISA); clinical and immunopathologic data were obtained from the patients' m
21 nd SP-D-deficient mice exhibited evidence of immunopathologic defects, the CD11b(high) CD11c(high) de
22 imilar regulatory network may be controlling immunopathologic disease in man.
23               Herpes stromal keratitis is an immunopathologic disease in the corneal stroma leading t
24 ith herpes simplex virus (HSV) results in an immunopathologic disease of the eye termed herpetic stro
25                                         This immunopathologic disease, called herpetic stromal kerati
26 rpes simplex virus keratitis, a well-studied immunopathologic disease.
27 the environment of the eye, culminates in an immunopathologic disease.
28 ntribute to protection from infection and to immunopathologic disease.
29                            Genes controlling immunopathologic diseases of differing etiopathology may
30 a novel immune modulator in a broad array of immunopathologic disorders.
31  the mechanisms by which T cells exert their immunopathologic effects in experimental autoimmune kera
32 rpesvirus spread with associated undesirable immunopathologic effects.
33 7 days after irradiation and histopathologic-immunopathologic evaluation after excision on the sevent
34                                              Immunopathologic examination of biopsies revealed strong
35 , thus directly addressing the telomere loss immunopathologic facet of chronic viral infection.
36 ters with the same clinical, histologic, and immunopathologic features as those documented in BALB/c
37                                          The immunopathologic features of BP can be reproduced in mic
38 view, we describe the genetic, clinical, and immunopathologic features of these 2 disorders and discu
39 ental animals with clinical, histologic, and immunopathologic features similar to those seen in human
40 e rat, another species that shares essential immunopathologic features with human uveitis and is the
41 lies on characteristic clinicopathologic and immunopathologic features.
42                        Some of the described immunopathologic findings (activation, proliferation, ap
43  nonbullous pemphigoid for all patients with immunopathologic findings of bullous pemphigoid, itch, a
44 teen patients with itch without blisters had immunopathologic findings of bullous pemphigoid.
45 atively consistent clinical, histologic, and immunopathologic findings.
46 ons with the potential for both antiviral or immunopathologic functions.
47            In conclusion, IL-15 prevents two immunopathologic hallmarks of sepsis, namely, apoptosis
48            This association may be due to an immunopathologic HLA-A*6802-restricted cytotoxic T lymph
49 l IFN-gamma(+) ILC1 and increased numbers of immunopathologic IL-5(+) and IL-13(+) ILC2 and IL-17A(+)
50 ciple, it may be possible to ameliorate this immunopathologic indirect mechanism by developing therap
51 renchyma is believed to protect the CNS from immunopathologic injury.
52       This represents a CD4+ T cell-mediated immunopathologic lesion in both humans and a mouse model
53  keratitis (HSK) is a CD4+ T cell-controlled immunopathologic lesion in the eye that results from inf
54 SV-1 infection, represents a T cell-mediated immunopathologic lesion.
55                      The immune response and immunopathologic manifestations in schistosomiasis are l
56 AMR2 grade (simultaneous histopathologic and immunopathologic markers) was predictive for clinical AM
57  the syndrome suggest that it is mediated by immunopathologic mechanism.
58 ificant potential for the long-term study of immunopathologic mechanisms and novel therapies in rheum
59                 This review will discuss the immunopathologic mechanisms involved in these demyelinat
60  infection of normal mice results in a fatal immunopathologic meningitis mediated by CD8+ cytotoxic T
61 riable immunodeficiency display clinical and immunopathologic overlap with sarcoidosis.
62 e examined sera from patients with different immunopathologic patterns of MS as determined by brain b
63 ns are increasingly becoming associated with immunopathologic phenomena, being induced in response to
64 ese studies provide strong evidence that the immunopathologic process characteristic of the two major
65 cules to regulate this chronic virus-induced immunopathologic process.
66 n correlated inversely with the airway T(H)2 immunopathologic profile (eosinophilia and IL-4 positivi
67 e to failure of CD4+ T cells to organize the immunopathologic reaction.
68 y of infectious and atopic diseases in which immunopathologic reactions are mediated by selected Th2
69 ere is also the potential to develop adverse immunopathologic reactions characterized by pulmonary ai
70 a critical regulatory role in development of immunopathologic reactions in Mycoplasma respiratory dis
71 f Th2 cells, which may contribute to serious immunopathologic reactions in the lung.
72 onses in IFN-gamma(-/-) mice corresponded to immunopathologic reactions that developed after mycoplas
73 mine the immunologic responses, particularly immunopathologic reactions, associated with nasal immuni
74                        Ad37 induces an acute immunopathologic response in the C57BL/6J mouse cornea,
75 x virus-1 in immunocompetent mice induces an immunopathologic response termed herpetic stromal kerati
76 istinguishing mechanisms associated with the immunopathologic response to the virus from those associ
77                       A trend toward reduced immunopathologic response was found in C-EX mice.
78 n anti-bacterial activity and control of the immunopathologic response.
79 ed tear breakup, ocular surface disease, and immunopathologic response.
80 CD4 T-cell-dependent, Th2-cytokine-dominated immunopathologic response.
81  We investigated physiologic, virologic, and immunopathologic responses to experimental RV infection
82 significant heterogeneity in therapeutic and immunopathologic responses to immune checkpoint therapie
83 ay lead to a failure to control induction of immunopathologic responses, and limitation in repertoire
84 xtent of immunologic responses, particularly immunopathologic responses, within the upper and lower r
85                              To ascertain an immunopathologic role during disease, immunofluorescence
86 eath-1 (PD-1), has been involved in multiple immunopathologic scenarios.
87  H. influenzae mimic epitope only induces an immunopathologic self-reactive Th1 response and subseque
88                              Despite minimal immunopathologic sequelae in PD-1 and LAG-3 single knock
89 al immunostimulants that produce a number of immunopathologic sequelae, including lymphoproliferation
90 al model of antibody-mediated diseases as an immunopathologic spectrum whose specific manifestations
91 ge-scale prospective immunoepidemiologic and immunopathologic studies are needed to address gaps in o
92                                              Immunopathologic studies suggest that loss of aquaporin-
93 ponent of mycoplasma respiratory diseases is immunopathologic, suggesting that lymphocyte activation
94 as by shifting the residual response from an immunopathologic Th1 to a protective Th2 format.
95 D8+ cells, under the control of IL-4, dampen immunopathologic type 2 responses.
96              No adverse effects, clinical or immunopathologic, were noted.

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