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Fas is required for clonal selection in germinal centers and the subsequent establishment of the memory B cell repertoire.

In T cell-dependent immune responses, high-affinity B cells are selected and differentiate into memory cells; however, the mechanism behind this process remains largely unknown. Here, we report that the selection of high-affinity B cells within germinal centers (GCs) is impaired in Fas-deficient lpr mice in the primary response, probably owing to inefficient negative selection. The memory compartment in control mice is mostly established by precursors generated from the early GCs, whereas the lpr defect expands the memory compartment by the increased recruitment of newly generated precursors from the late GCs, resulting in the accumulation of heavily mutated memory B cells at high frequency. These results suggest that Fas is required for clonal selection within GCs and the establishment of the memory B cell repertoire.

ADP-ribosyl Cyclase↗

CD8alpha alpha memory effector T cells descend directly from clonally expanded CD8alpha +beta high TCRalpha beta T cells in vivo.

Whereas most peripheral CD8(+) alphabeta T cells highly express CD8alphabeta heterodimer in healthy individuals, there is an increase of CD8alpha(+)beta(low) or CD8alphaalpha alphabeta T cells in HIV infection or Wiskott-Aldrich syndrome and after bone marrow transplantation. The significance of these uncommon cell populations is not well understood. There has been some question as to whether these subsets and CD8alpha(+)beta(high) cells belong to different ontogenic lineages or whether a fraction of CD8alpha(+)beta(high) cells have down-regulated CD8beta chain. Here we assessed clonality of CD8alphaalpha and CD8alpha(+)beta(low) alphabeta T cells as well as their phenotypic and functional characteristics. Deduced from surface antigens, cytotoxic granule constituents, and cytokine production, CD8alpha(+)beta(low) cells are exclusively composed of effector memory cells. CD8alphaalpha cells comprise effector memory cells and terminally differentiated CD45RO(-)CCR7(-) memory cells. T-cell receptor (TCR) Vbeta complementarity-determining region 3 (CDR3) spectratyping analysis and subsequent sequencing of CDR3 cDNA clones revealed polyclonality of CD8alpha(+)beta(high) cells and oligoclonality of CD8alpha(+)beta(low) and CD8alphaalpha cells. Importantly, some expanded clones within CD8alphaalpha cells were also identified within CD8alpha(+)beta(high) and CD8alpha(+)beta(low) subpopulations. Furthermore, signal-joint TCR rearrangement excision circles concentration was reduced with the loss of CD8beta expression. These results indicated that some specific CD8alpha(+)beta(high) alphabeta T cells expand clonally, differentiate, and simultaneously down-regulate CD8beta chain possibly by an antigen-driven mechanism. Provided that antigenic stimulation directly influences the emergence of CD8alphaalpha alphabeta T cells, these cells, which have been previously regarded as of extrathymic origin, may present new insights into the mechanisms of autoimmune diseases and immunodeficiencies, and also serve as a useful biomarker to evaluate the disease activities.

Adult↗

Reward-produced memories regulate memory-discrimination learning, extinction, and other forms of discrimination learning.

In memory-discrimination learning, reward-produced memories are differentially rewarded such that they are the only stimuli available to support discriminative responding. Memory-discrimination learning was used in this study as follows: Reward-produced memories that were assumed to regulate instrumental performance in previously reported extinction and discrimination learning investigations were isolated and explicitly differentially reinforced (prior to a shift to extinction) in each of 4 runway investigations with rats. Results obtained here in the explicit discrimination learning stage and in the subsequent extinction stage were consistent with the prediction of the memory view and with prior discrimination learning and extinction findings. The memory interpretation was applied to memory-discrimination learning, to extinction, and to 2 other types of discrimination learning. It appears that a theory must use reward-produced memories to explain all 4 types of discrimination learning.

Animals↗

Distinct roles for medial temporal lobe structures in memory for objects and their locations.

The ability to learn and retain novel information depends on a system of structures in the medial temporal lobe (MTL) including the hippocampus and the surrounding entorhinal, perirhinal, and parahippocampal cortices. Damage to these structures produces profound memory deficits; however, the unique contribution to memory of each of these structures remains unclear. Here we have used functional magnetic resonance imaging (fMRI) to determine whether the perirhinal and parahippocampal cortices show differential memory-related activity. Based on the distinct patterns of cortical input to these two areas, we reasoned that these structures might show differential activity for spatial and object recognition memory. In each of 11 subjects, we found that the perirhinal cortex was active during both spatial and object memory encoding, while the anterior parahippocampal cortex was active only during spatial encoding. These data support the idea that MTL structures make distinct contributions to recognition memory performance.

Brain Mapping↗

Oscillator-based memory for serial order.

A computational model of human memory for serial order is described (OSCillator-based Associative Recall [OSCAR]). In the model, successive list items become associated to successive states of a dynamic learning-context signal. Retrieval involves reinstatement of the learning context, successive states of which cue successive recalls. The model provides an integrated account of both item memory and order memory and allows the hierarchical representation of temporal order information. The model accounts for a wide range of serial order memory data, including differential item and order memory, transposition gradients, item similarity effects, the effects of item lag and separation in judgments of relative and absolute recency, probed serial recall data, distinctiveness effects, grouping effects at various temporal resolutions, longer term memory for serial order, list length effects, and the effects of vocabulary size on serial recall.

Association↗

Distinguishing between memory illusions and actual memories using phenomenological measurements and explicit warnings.

Previous research has demonstrated that the false memory effect is robust and that false memories are essentially indistinguishable from memories for events that actually occurred. The current study used several techniques intended to eliminate false memories (source monitoring decisions, confidence ratings, remember/know judgments, and explicit warnings). A robust false memory effect was found in each experiment. However, participants were able to differentiate false memories and actual memories when using specific phenomenological tasks. The current findings provide insight into basic human memory processes.

Adult↗

Memory self-ratings before and after electroconvulsive therapy: depression-versus ECT induced.

The Squire Self-rating Scale of Memory Function was administered to 28 depressed inpatients before and after electroconvulsive therapy (ECT), with random assignment to bilateral or unilateral electrode placement. Several memory changes differentiated between bilateral and unilateral ECT following treatment (p less than 0.05). Memory complaints arising from ECT were distinguished from those due to depression.

Depressive Disorder↗

Differentiation of dementia and depression by memory tests. A meta-analysis.

The many tasks used for clinical memory assessment have not been compared systematically for their usefulness in differentiating dementia and depression in old age. The aim of this meta-analysis was to identify those attributes of memory tasks that show high discriminative power. Eighty-nine effect-sizes were calculated out of 16 publications directly comparing demented and depressed patients. Outliers in the effect-size distribution (5% of the highest values) were excluded. The groups could be significantly better differentiated by delayed retrieval tasks rather than immediate retrieval tasks. Tasks with distraction before retrieval reached higher effect sizes than retrieval tasks without distraction. Tasks of high-capacity demand differentiated the groups significantly better than tasks of moderate and low demand. Effect-size magnitude was not influenced by patient characteristics except severity of dementia. Thus, demented and depressed patients may best be differentiated by a memory task that uses delayed retrieval with distraction.

Aged↗

Role of interleukin 6 for differential responsiveness of naive and memory CD4+ T cells in CD2-mediated activation.

The present study was undertaken to elucidate different requirements for CD2-mediated activation of naive (CD45RO-) and memory (CD45RO+) CD4+ T cells. A mitogenic combination of anti-CD2 (anti-T11(2) and anti-T11(3] mAbs could effectively induce the proliferation of memory CD4+ T cells even in the absence of monocytes. In marked contrast, naive CD4+ T cells did not disclose any proliferative responses to anti-CD2 mAbs, when monocytes were absent in culture. This differential responsiveness of naive and memory CD4+ T cells appeared to be related largely to a difference in IL-6-producing ability between both populations. IL-6 among monocyte-derived cytokines could correct unresponsiveness of naive CD4+ T cells to anti-CD2 stimulation. Unlike naive CD4+ T cells, memory CD4+ T cells produced IL-6 by themselves, with its mRNA being expressed on anti-CD2 stimulation. Anti-IL-6R mAb significantly inhibited proliferation of memory CD4+ T cells seen in the anti-CD2-stimulated cultures without monocytes, indicating the involvement of their own production of IL-6 in CD2-mediated activation. The results suggest an essential role of IL-6 for triggering of CD4+ T cells via the CD2 molecule.

Adult↗

Cutting edge: distinct roles for T help and CD40/CD40 ligand in regulating differentiation of proliferation-competent memory CD8+ T cells.

Murine primary antiviral cytotoxic T cell (CTL) responses are often induced in the absence of Th cells. In this study, we show that virus-like particles, if combined with DNA rich in CpG motifs, efficiently trigger primary CTL responses and comparable frequencies of memory CTLs in the presence or absence of T help. However, memory CTLs primed in the absence of T help failed to proliferate upon viral challenge. Nevertheless, they were efficiently recruited to sites of inflammation, indicating that T help may regulate the balance between proliferation-competent and migration-competent memory CTLs. Surprisingly, generation of proliferation-competent memory CTLs was completely independent of CD40 or CD40L, molecules commonly assumed to be central for mediating the beneficial effects of Th cells on CTL development. Thus, Th cells but not CD40/CD40L are key for the differentiation of proliferation-competent central memory CD8(+) T cells.

Animals↗

[Cytotoxic T lymphocytes in cancer and autoimmunity].

Cytotoxic T lymphocytes (CTLs) are cells of the immune system that recognize and kill cells that have been infected with intracellular pathogens, allogenic cells or tumor cells. It has been reported that CTLs participate in the pathogenesis of some autoimmune diseases. After stimulation with the antigen, CTLs undergo an activation process highly regulated, which leads to the cell to acquire an effector or memory function. In this review, we indicate the cellular markers associated with the different stages of CTL-differentiation (naive, memory and effector); we indicate the distinct models of CTLs differentiation; also, the mechanisms of CTLs cytotoxicity are mentioned. Furthermore, we describe the participation of CTLs in cancer and autoimmunity; the implications of CTLs in the progression of these diseases are discussed.

Autoimmunity↗

Buspirone differentially modifies short-term memory function in a combined delayed matching/non-matching to position task.

This study investigated the action of 5-hydroxytryptamine (5-HT) mimetics on short-term memory function. The objective was to determine whether two closely related tasks could differentiate between partial 5-HT(1A) receptor activation, full 5-HT(1A) receptor activation and generalised enhanced serotonin (5-HT) activity. Male hooded Lister rats were trained to perform an operant-based combined delayed matching/non-matching to position task. Drugs used were: fluoxetine (3 mg/kg, i.p.), a selective 5-HT reuptake inhibitor; the full 5-HT(1A) receptor agonist, 8-hydroxy-2-(di-n-propylamino)tetralin (8-OH-DPAT; 0.3 mg/kg, s.c.); and the partial 5-HT(1A) receptor agonist, buspirone (1 mg/kg, i.p.). Buspirone differentially disrupted response accuracy depending on the style of trial. There was no such difference in the case of 8-OH-DPAT, which impaired accuracy in both delayed matching/non-matching to position task, while fluoxetine affected neither. Thus, the findings suggest that partial 5-HT(1A) receptor activation compromises cognitive function to a greater extent than full 5-HT(1A) receptor activation, although a dopaminergic component cannot be excluded since buspirone possesses some dopamine D2 receptor antagonist activity. Furthermore, it suggests that there is a differential role for 5-HT in these two closely related behavioural tasks.

8-Hydroxy-2-(di-n-propylamino)tetralin↗

Visual spatial and visual pattern working memory: neuropsychological evidence for a differential role of left and right dorsal visual brain.

According to neurophysiological, neuroimaging, and behavioural evidence, visual working memory (WM) can be separated into a "what" and a "where" component, reflecting the duality of visual processing. Whereas a wealth of empirical data suggests a right-sided fronto-parietal network critical for the maintenance of spatial information, the cortical structures underlying maintenance of object information have remained controversial. Although visual object processing depends on ventral, inferior temporal areas, recent neuroimaging results suggest that maintenance of visual object information involves a left-sided or bilateral fronto-parietal network. The aim of the present study is to further clarify the role of the left and right parietal lobes for pattern and spatial visual WM. Seven patients with left-sided, seven with right-sided parietal brain injury, and two age-matched healthy control groups performed a delayed-matching-to-sample task using either pattern (shape) or spatial (location) information or both. In addition, eight patients with left-sided injury sparing parietal areas were tested to further examine the specific role of the left parietal cortex in pattern WM. Left parietal injury resulted in pattern WM impairment, only, while right parietal injury was associated with pattern and spatial WM deficits. Non-parietal injury was not associated with comparable deficits. These results suggest that visual spatial WM depends critically on right parietal areas; in contrast, pattern WM depends on both, left and right parietal areas.

Adult↗

Gender, Memory, and Hippocampal Volumes: Relationships in Temporal Lobe Epilepsy.

Previous research has suggested bilateral hippocampal support for verbal memory in women with early left-hemisphere injury and that women experience better verbal memory outcome following anterior temporal lobectomy (ATL). The present study investigated two issues: (1) Do women have better verbal memory outcome following ATL compared with men? (2) Are verbal memory abilities differentially supported by the right and left hippocampus in males and females? Verbal memory performance [Wechsler Memory Scale: Logical Memory (LM) savings score] was assessed in 70 patients who underwent ATL. MRI volumetric measurements of the left and right hippocampus were performed. No LM savings score difference was found between groups preoperatively although a statistically significant gender effect (P < 0.04) was found for postoperative LM savings scores. Females displayed better postoperative memory performance, regardless of side of surgery. Preoperative verbal memory performance was not associated with right or left hippocampal volumes in either left or right ATL females, although the right hippocampus was positively associated with memory performance for left ATL males. Hippocampal volumes were not associated with postoperative LM savings scores for any group. Results suggest that prose recall was only modestly influenced by gender and that bilateral hippocampal support for prose recall was not present in our female patients.

Journal Article↗

Persistence of memory CD8 T cells in MHC class I-deficient mice.

An understanding of how T cell memory is maintained is crucial for the rational design of vaccines. Memory T cells were shown to persist indefinitely in major histocompatibility complex (MHC) class I-deficient mice and retained the ability to make rapid cytokine responses upon reencounter with antigen. In addition, memory CD8 T cells, unlike naïve cells, divided without MHC-T cell receptor interactions. This "homeostatic" proliferation is likely to be important in maintaining memory T cell numbers in the periphery. Thus, after naïve CD8 T cells differentiate into memory cells, they evolve an MHC class I-independent "life-style" and do not require further stimulation with specific or cross-reactive antigen for their maintenance.

Adoptive Transfer↗

Regulation of development and function of memory CD4 subsets.

Immunologic memory refers to the dramatic response to previously encountered antigen (Ag) that is largely controlled by CD4 T cells. Understanding how CD4 memory is regulated is essential for exploiting the immune system to protect against disease and to dampen immunopathology in allergic responses and autoimmunity. Using defined adoptive-transfer models, we are studying parameters that affect differentiation of memory CD4 cells in vivo and have found that a complex interplay of T cell receptor signaling, costimulation, and cytokines can determine the extent of memory development and the balance of Th1 and Th2 memory subsets. On challenge, memory CD4 cells localize in sites of Ag exposure and develop into effectors that regulate memory responses. We are investigating the roles of adhesion molecules, cytokines, and chemokines in the selective recruitment of CD4 memory subsets to address mechanisms by which memory T cells provide long-lasting immunity and, in our recent studies, to determine how memory CD4 cells contribute to the development of autoimmune diabetes.

Animals↗

The functional role of B cell antigen receptor stimulation and IL-4 in the generation of human memory B cells from germinal center B cells.

The germinal center (GC) is an anatomical site where memory B cells are generated. Ag-Ab complexes presented by follicular dendritic cells in GC select precursors of memory B cells. Using a unique in vitro experimental system in which the survival of GC B cells is supported by a defined follicular dendritic cell-like cell line, we investigated the effects of B cell Ag receptor (BCR) stimulation and IL-4 on the memory B cell generation from centroblasts. IL-4 is reported to be critical for GC formation. Centroblasts differentiated to centrocytes during the culture period of 3 days as demonstrated by the down-regulation of CD77 expression and induction of CD44 as well as Bcl-2 expression. The transition of centroblast to centrocyte was enhanced by BCR stimulation and IL-4. Upon further culture, the centrocytes differentiated to memory B cells, a process that was enhanced by BCR stimulation and IL-4. The presence of IL-4 in the culture did not increase the number of plasma cells. These experimental data provide formal in vitro evidence that Ags in GC may participate not only in the selection but also in the expansion of memory B cells and that IL-4 is a growth factor promoting this expansion.

ADP-ribosyl Cyclase↗