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1 e CD8 T cells accumulated at the edge of the mantle zone.
2 cted and mostly restricted to the follicular mantle zone.
3 teristics to the normal B lymphocytes of the mantle zone.
4 24 (4%) clones from the naive B cells of the mantle zone.
5 of small lymphocytes, including those of the mantle zone.
6  remaining three are seen in the postmitotic mantle zone.
7 and IRTA5 are expressed predominantly in the mantle zone.
8 tional activation in the sub-ventricular and mantle zones.
9 secondary lymphoid follicles, but not in the mantle zones.
10 ssified as diffuse (61%), nodular (13%), and mantle zone (26%) in accordance with stated criteria.
11  LT-beta protein was detected on a subset of mantle zone and GC B cells, but also on T cells in folli
12  the dark zone of the follicles, whereas the mantle zone and interfollicular areas were essentially n
13  follicles for BLC showed high expression in mantle zones and low expression in germinal centers.
14     Minimal or no expression was seen in the mantle zones and surrounding paracortices, indicating th
15 so exhibit strong TCL1 protein expression in mantle zone B cells and in rare interfollicular zone cel
16 e that abundant TCL1 expression in quiescent mantle zone B cells is down-regulated in activated germi
17 ce-activated cell sorted germinal center and mantle zone B cells supported the immunohistochemical re
18 ues showed strong nuclear BSAP expression in mantle zone B cells, less intense reactivity in follicul
19 This type of migration occurred as soon as a mantle zone became apparent.
20 ifested selective expansion of their splenic mantle zone compartment.
21 bryonic day 4.5, tangential migration in the mantle zone in multiple directions was observed among th
22  including (a) germinal center (high) versus mantle zone (low) B lymphocytes within the secondary fol
23  no reactivity in the surrounding long-lived mantle zone lymphocytes.
24 the other constituents of the follicular and mantle zone microenvironments, and the development of ne
25 measured the level of mRNA expression in GC, mantle zone (MNZ), and marginal zone (MGZ) cells from la
26 ically eliminating Shh expression in the MGE mantle zone (MZ).
27 es were 100%, 50%, and 55% for patients with mantle zone, nodular, and diffuse histologic patterns, r
28 mbda light-chain restriction localize in the mantle zone of B-cell follicles and coalesce to form mic
29  plasmablasts occur as isolated cells in the mantle zone of B-cell follicles but may form microlympho
30 ncy arising from naive B cells (NBCs) in the mantle zone of lymph nodes.
31 8- B cells that selectively localized to the mantle zone of lymphoid follicles within the thyroid gla
32 itioned proliferating cells are found in the mantle zone of the Id4-/- cortex.
33 ing this malignant lymphoma are found in the mantle zone of the lymph node, a thin layer surrounding
34     Seventy-three percent of patients with a mantle zone pattern attained a complete response compare
35  be naive B cells due to localization to the mantle zone, the expression of surface antigens typical
36 ence of discrete perifollicular marginal and mantle zones; the formation of secondary germinal center
37 se and a poor overall survival rate; (2) the mantle zone variant exhibits the clinical attributes of
38 mmon in diffuse variants and least common in mantle zone variants.
39 re is less BCL6 expression as well as in the mantle zone, where there is little or no BCL6 expression

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