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Lucy Golden-Mason

Publications and source records attributed to Lucy Golden-Mason.

At least 19 recordsLinked to original sources

Changes in hepatic immunoregulatory cytokines in patients with metastatic colorectal carcinoma: implications for hepatic anti-tumour immunity.

The hepatic immunological environment, dominated by NK and NKR(+) T cells, seems specialised to respond to malignant challenge. Ineffective immune responses to malignancy are likely determined by factors including alterations in the local cytokine profile. This study examines the cytokine milieu of normal and tumour-bearing liver, quantifying pro-/anti-inflammatory cytokines using modified ELISAs and real-time quantitative PCR. Cytokine protein was localised using immunohistochemistry. We demonstrate an active cytokine environment in normal liver, with high levels of inflammatory and regulatory cytokines. Inflammatory IFN-gamma was increased in tumour-bearing liver (p<0.0001). However, a much greater increase in anti-inflammatory IL-10, produced by non-parenchymal cells (p<0.0005), resulted in a reduced IFN-gamma:IL-10 ratio in tumour-bearing liver (p<0.02). In contrast, immunosuppressive TGF-beta and IL-13 were significantly downregulated (p<0.02). Furthermore, IL-2 was not increased and IL-15 was reduced (p<0.02). The IFN-gamma inducing cytokine, IL-18 was increased in tumour-bearing liver (p<0.02), while pro-inflammatory TNF-alpha was suppressed (p<0.05). These results suggest that, whilst there is a significant inflammatory immune response in tumour-bearing liver, evidenced by increased levels of IFN-gamma, disproportionate increase in IL-10 may be a key factor in facilitating tumour progression. Therapies aimed at antagonising IL-10-mediated immunosuppression may prove a useful strategy in the future treatment of metastatic disease.

Colorectal Neoplasms↗

Detection and characterization of hemopoietic stem cells in the adult human small intestine.

The concept of lymphoid differentiation in the human gastrointestinal tract is controversial but is the focus of this study, which examined adult human small intestinal tissue for the presence of CD34(+)CD45(+) hemopoietic stem cells (HSCs) and lymphoid progenitors. Flow cytometry demonstrated that over 5% of leukocytes (CD45(+) cells) isolated from human gut were HSCs coexpressing CD34, a significantly higher incidence than in matched peripheral blood or control bone marrow. HSCs were detected in cell preparations from both the epithelium and lamina propria of all samples tested and localized to the intestinal villous and crypt regions using immunofluorescence. A high proportion of gut HSCs expressed the activation marker CD45RA, and few expressed c-kit, indicating ongoing differentiation. The vast majority of intestinal HSCs coexpressed the T cell Ag, CD7 (92% in the epithelium, 80% in the lamina propria) whereas <10% coexpressed the myeloid Ag CD33, suggesting that gut HSCs are a relatively mature population committed to the lymphoid lineage. Interestingly, almost 50% of epithelial layer HSCs coexpressed CD56, the NK cell Ag, compared with only 10% of the lamina propria HSC population, suggesting that the epithelium may be a preferential site of NKR(+) lymphoid differentiation. In contrast, bone marrow HSCs displayed low coexpression of CD56 and CD7 but high coexpression of CD33. The phenotype of intestinal HSCs, which differs significantly from circulating or bone marrow HSCs, is consistent with a role in local lymphoid development.

Adult↗

Resolution of endothelial activation and down-regulation of Tie2 receptor in psoriatic skin after infliximab therapy.

BACKGROUND: Psoriasis is a common dermatosis characterized by erythematous skin plaques and associated arthritis. Microvessels of the papillary dermis in psoriatic lesions are elongated, tortuous, and dilated, which contributes significantly to the proinflammatory response. Angiopoietin (Ang) 1 and 2 and their receptor, Tie2, are a family of growth factors recognized in inflammatory lesions to be critical for new blood vessel growth and maintenance, with recent studies suggesting tumor necrosis factor (TNF)-alpha-induced angiogenesis is in part mediated by the Tie2 receptor. The aim of this study was to evaluate the effect of anti-TNF-alpha therapy on angiogenic growth factor expression and on the cellular infiltrate in psoriatic lesional skin. METHODS: Sixteen patients with moderate to severe psoriasis and associated psoriatic arthritis (n = 13) received infliximab infusions (3-5 mg/kg) at baseline and at 2 and 6 weeks. Clinical assessments and skin biopsies were undertaken at baseline, and at 2 and 12 weeks. Ang 1, Ang 2, Tie2, and TNF-alpha messenger RNA expression were quantified by real-time polymerase chain reaction. Protein expression of vascular endothelial growth factor, Ang 2, Tie2, TNF-alpha, and the inflammatory infiltrate was determined using immunohistology. We conducted clinical assessments including Psoriasis Area and Severity Index, percentage body surface area, Arthritis Disease Activity Score, and Health Assessment Questionnaire. RESULTS: At baseline expression of Ang 1/2, vascular endothelial growth factor, Tie2, and TNF-alpha messenger RNA and protein were greater in preinvolved skin compared with uninvolved skin (P < .05). Infliximab produced a significant reduction in protein expression of Ang 2, vascular endothelial growth factor, and Tie2 (P < .001) along with a decrease in messenger RNA expression of Ang 1 (P < .045) and Tie2 (P < .021). This was paralleled by a significant reduction in the inflammatory infiltrate scores (P < .001) and platelet-endothelial cell adhesion molecule (CD31) expression (P = .001), suggesting deactivation of endothelial cell. There was a 93% mean reduction in Psoriasis Area and Severity Index (P = .001), and a significant reduction in Disease Activity Score 28 (P = .012) and mean Health Assessment Questionnaire scores by week 12. LIMITATIONS: This study involves a small number of patients. CONCLUSION: These results suggest infliximab is both effective and well tolerated in severe psoriasis, resulting in deactivation of endothelium and down-regulation of growth factor and cytokine expression, leading to a decrease in the cellular infiltrate and clinical improvement in psoriasis. Furthermore, the effect of infliximab on growth factor expression, in particular Tie2, supports previous in vitro work suggesting TNF-alpha may be a major regulator of the Ang/Tie2 pathway.

Adult↗

Acute-phase serum amyloid A stimulation of angiogenesis, leukocyte recruitment, and matrix degradation in rheumatoid arthritis through an NF-kappaB-dependent signal transduction pathway.

OBJECTIVE: To examine the role of the acute-phase protein serum amyloid A (A-SAA) in regulating cell adhesion molecule expression, leukocyte recruitment, and angiogenesis in rheumatoid arthritis (RA). METHODS: Intercellular adhesion molecule 1 (ICAM-1), vascular cell adhesion molecule 1 (VCAM-1), and matrix metalloproteinase 1 (MMP-1) expression was examined in RA fibroblast-like synoviocytes (FLS) and human microvascular endothelial cells (HMVECs) using flow cytometry and enzyme-linked immunosorbent assay techniques. Peripheral blood mononuclear cell (PBMC) adhesion to FLS/HMVECs was determined by flow cytometry. Angiogenesis was examined using a Boyden chemotaxis chamber and Matrigel tubule formation. NF-kappaB/IkappaBalpha mediation of the effects of A-SAA was investigated using a specific NF-kappaB inhibitor and Western blotting. RESULTS: A-SAA significantly enhanced the time- and dose-dependent expression of ICAM-1 and VCAM-1 as effectively as interleukin-1beta/tumor necrosis factor alpha. A-SAA promoted the adhesion of PBMCs to FLS and HMVECs. In addition, A-SAA at 10 mug/ml and 50 mug/ml significantly increased endothelial cell tube formation by 69% and 207%, respectively. At 50 mug/ml and 100 mug/ml, A-SAA increased HMVEC migration by 188 +/- 54% and 296 +/- 71%, respectively (mean +/- SEM). A-SAA-induced expression of VCAM-1, ICAM-1, and MMP-1 was down-regulated by NF-kappaB inhibition. Furthermore, A-SAA induced IkappaBalpha degradation and NF-kappaB translocation, suggesting that its proinflammatory effects are mediated in part by NF-kappaB signaling. CONCLUSION: Our findings demonstrate the ability of A-SAA to induce adhesion molecule expression, angiogenesis, and matrix degradation, mechanisms that are mediated by NF-kappaB. Targeting A-SAA and its signaling pathways may represent a new therapeutic approach in the treatment of RA.

Arthritis, Rheumatoid↗

Loss of IL-7 receptor alpha-chain (CD127) expression in acute HCV infection associated with viral persistence.

Interleukin-7 (IL-7) is required for the establishment and maintenance of memory CD4(+) and CD8(+) T lymphocytes, and cells lacking IL-7Ralpha (CD127) demonstrate impaired IL-2 secretion and have a short life-span. Chronic HCV is characterized by T cells that are functionally impaired and exhibit an immature phenotype. To investigate the potential role of IL-7/IL-7Ralpha in the outcome of HCV infection, we used multiparameter flow cytometry to characterize patients with acute infection (n = 24), long-term chronic infection (12) and normal subjects (13). HCV infection per se resulted in downregulation of CD127 on total CD4(+) and CD8(+) T lymphocytes as compared to normal controls. Total expression was lowest in those patients who subsequently developed persistence and intermediate in those patients with acute-resolving infection. This reduction affected both naïve and effector/memory T cells. CD127 correlated phenotypically with upregulation of chemokine receptors CCR7 and CXCR4, expression of the anti-apoptotic molecule B cell leukemia/lymphoma 2 (Bcl-2), and enhanced IL-2 production. In six HLA A2-positive patients, we longitudinally tracked tetramer responses to HCV and CMV epitopes; at baseline, reflecting the expression of CD127 on whole T cell populations, viral-specific CTLs in patients who became chronic demonstrated lower CD127. In conclusion, CD127 is a useful marker of functional CD4(+) and CD8(+) T cells and its expression correlates with virologic outcome of acute HCV. These data provide a mechanistic basis for the observation that CTLs generated in early infection rapidly decline as chronicity is established; CD127 expression should be considered in the design of novel immunotherapeutic approaches.

Acute Disease↗

Natural killer cells: primary target for hepatitis C virus immune evasion strategies?

Liver cirrhosis and hepatocellular carcinoma secondary to chronic hepatitis C virus (HCV) infection requiring transplantation represents a significant public health problem. The most remarkable feature of hepatitis C virus is the ability to establish chronic infection in the vast majority of cases. Efforts to define clinical correlates of HCV persistence have focused primarily on CD4 and CD8 T cell responses. Until recently, the role of innate immunity in determining the outcome of HCV infection had received relatively little attention. Natural killer (NK) cells are an important antiviral effector population eliminating virus through direct killing and cytokine production. Recent studies highlighting the cross-talk between NK cells, dendritic cells (DCs) and T cells have prompted reevaluation of the important role NK cells play in regulating and maintaining specific immune responses. Like many other viruses, HCV has evolved strategies to evade detection and elimination by NK cells. T cell defects observed in HCV infection may be a consequence of inhibition of NK:DC interactions. We propose a theoretical model for HCV persistence that places the NK cell at the center of HCV immune evasion strategies. While this model is only theoretical, it provides a plausible interpretation of many published observations and a useful working model to test the role of NK cells in HCV persistence. In conclusion, the role of innate immune cells and their regulation of antigen-specific responses by the initial innate response to the virus, in particular NK cells, may prove to be an informative and clinically relevant avenue of investigation.

Cell Communication↗

The hepatitis C envelope 2 protein inhibits LFA-1-transduced protein kinase C signaling for T-lymphocyte migration.

BACKGROUND & AIMS: The ability of viruses to escape the host immune response represents a globally important problem related to a wide variety of pathogens. Hepatitis C is one of the major causes of liver disease worldwide. Clearance rates of this virus are low, and this condition normally involves a chronic inflammatory process. This raises a possibility that the virus may have developed mechanisms enabling it to evade T-cell-mediated immune surveillance. The aim of this study was to investigate the effect of the hepatitis C envelope protein E2 on LFA-1-stimulated T-cell migration and macrophage inflammatory protein (MIP-1alpha, MIP-1beta) secretion. METHODS: T cells were stimulated through the leukocyte function-associated molecule-1 (LFA-1) receptor by incubating with either intracellular adhesion molecule 1 (ICAM-1)-Fc fusion protein or anti-LFA-1 immobilized on 8-well chamber slides. Subcellular localization of protein kinase C (PKC)-beta, CD81, and LFA-1 was determined by immunofluorescence analysis. Lipid raft formation was assessed using the Cellomics Kineticscan reader. MIP-1alpha and MIP-1beta levels were detected by enzyme-linked immunosorbent assay. RESULTS: We report that the hepatitis C envelope protein E2 can dramatically inhibit T-lymphocyte motility and chemokine release induced via LFA-1 integrin ligation. We have demonstrated a novel T-lymphocyte-directed viral inhibitory mechanism involving the PKC-beta enzyme as a definitive intracellular target. E2-CD81 interaction stimulates translocation of PKC-beta to lipid rafts, thereby preventing its association with the centrosome and microtubule cytoskeleton, which is crucial to the process of T-cell migration. CONCLUSIONS: These studies identify a mechanism whereby the hepatitis C virus can evade the host immune response by inhibition of T-cell migration.

Cell Movement↗

Trephine biopsies are enriched for activated T/NK cells and cytotoxic T cells.

Although bone marrow aspiration is the most commonly obtained human marrow sample type, it yields liquid samples that contain a varying degree of blood contamination. Trephine biopsies, on the other hand, are solid marrow cores and are, therefore, much less likely to contain contaminating peripheral blood. In this study, we utilised a technique to extract viable cells from solid trephine biopsy specimens, by means of mechanical and enzymatic digestion, allowing cytometric comparison of cells in these biopsies and simultaneously obtained liquid aspirate samples. Having established that the digestion procedure itself was not causing any significant alteration in the immunophenotypic composition of the marrow samples, our data show that trephine biopsies were enriched for CD8(+) T cells, with concomitant decrease in the CD4(+) subset, compared to paired aspirates. Furthermore, T cells, NK cells and T cells expressing NK cell receptor (NKR) molecules were all significantly more likely to express both early (CD69) and late (HLA-DR) markers of activation. Bone marrow aspirates do not, therefore, provide truly representative data on the phenotypic composition of bone marrow, and the effect of peripheral blood contamination in aspirates should be taken into account when comparisons are being made between the bone marrow and other human issues or, perhaps more so, between human and murine marrow.

Adult↗

Nitric oxide in early ischaemia reperfusion injury during human orthotopic liver transplantation.

BACKGROUND: Altered nitric oxide (NO) metabolism has been shown to contribute to ischemia-reperfusion (IR) injury in animal models. However, similar studies have not been performed in human liver transplantation (LT). In this study, we examined nitrate, nitrite, and nitrosothiols (NOx), NO synthases (endothelial [constitutive] nitric oxide synthase [eNOS] and inducible nitric oxide synthase [iNOS]), and nitrotyrosine in early IR injury after human LT. METHODS: Paired biopsies were obtained from nine donor livers before cold ischemia (retrieval biopsy) and after reimplantation (reperfusion biopsy). Sections were graded for reperfusion injury using the Suzuki score. NO was detected by chemiluminescence after reduction of NOx. Expression of eNOS and iNOS was by Western blot and reverse transcriptase polymerase chain reaction and peroxynitrite by immunodetection of 3-nitrotyrosine. RESULTS: Reperfusion biopsies showed histologic evidence of injury (median Suzuki score: retrieval 2, reperfusion 6, P=0.008) and neutrophil infiltration. NOx was reduced after reperfusion from 5.41 microM/100 mg (median, range 2.17-13.39 microM) to 3.51 microM (1.45-5.66 microM, P=0.05). eNOS protein was reduced after reperfusion from 0.6 units (median, range 0.45-1 unit) in retrieval biopsies to 0.39 units in reperfusion biopsies (range 0.2-0.79 units, P=0.007). There was no change in eNOS or iNOS mRNA expression or iNOS protein. Western blotting showed increased nitrotyrosine formation after reperfusion, median 0.42 (range 0.16-0.87) units in retrieval biopsies and 0.68 (0.29-1.06) units in reperfusion samples (P=0.007) and localized to periportal regions. CONCLUSIONS: iNOS protein may not contribute to early reperfusion injury during human LT. However, reduced NO bioavailability caused by reduced eNOS may contribute significantly to damage at this time point.

Adolescent↗

Adult human liver contains CD8pos T cells with naive phenotype, but is not a site for conventional alpha beta T cell development.

Normal adult human liver (AHL) contains populations of unconventional lymphocytes that have been shown in the mouse to mature locally. The presence of lymphoid progenitors together with IL-7, recombinase-activating gene, and pre-TCR-alpha expression in AHL suggests similar local T cell development activity in humans. Flow cytometry was used to characterize potentially naive hepatic alphabeta-T cells. We looked for evidence of TCR-alphabeta cell development in AHL by quantifying delta deletion TCR excision circles (TRECs) in CD3(pos) populations isolated from the liver and matched blood of eight individuals. Phenotypic analysis of hepatic T cells suggests the presence of Ag-inexperienced populations. TRECs were detected in all blood samples (mean, 164.10 TRECs/ micro g DNA), whereas only two hepatic samples were positive at low levels (59.40 and 1.92). The relatively high level of CD8(pos) T cells in these livers with a naive phenotype suggests that in addition to its role as a graveyard for Ag-specific activated CD8(pos) T cells, naive CD8(pos) T cells may enter the liver without prior activation. The almost complete absence of TRECs suggests that normal AHL is not a site for the development of conventional alphabeta T cells.

Adult↗

Interleukin 12 (IL-12) is increased in tumour bearing human liver and expands CD8(+) and CD56(+) T cells in vitro but not in vivo.

Human liver is enriched with CD8(+)T- and CD3(+)CD56(+) natural T (NT)-lymphocytes, important anti-tumour effectors, similar to murine NKTs. IL-12 promotes anti-tumour functions of NKTs. We quantified IL-12 and CD56(+)/CD8(+)T lymphocytes in normal and tumour bearing liver. We also examined the effect of IL-12 on the expansion/activation of peripheral blood cells in vitro. IL-12 was detected in normal (n=13, median 2032 pg/100 mg protein) and increased in tumour bearing liver (n=9, 3678 pg, p< 0.01). Infiltrating monocytes appear to be the principal producers. Culture with IL-12 selectively expanded CD8(+)T and CD3(+)CD56(+)NT cells and polarised their cytokine responses to Th1-type. However, there was no in vivo expansion of these cells in tumour bearing liver. Changes observed in culture required addition of IL-2. We therefore quantified IL-2 in hepatic tissue. IL-2 was detected in normal liver (median 4700 pg/100 mg protein). Surprisingly, there was no increase in tumour-infiltrated liver (4910 pg). The presence of IL-12 may create an environment in healthy liver that promotes the accumulation of CD8(+)T and CD56(+)NT cells. Therefore, the development of metastases in the presence of high levels of IL-12 may be due to an insufficient IL-12 response. Alternatively, lack of IL-2 rather than a defect in IL-12, may be responsible for insufficient expansion/activation of tumour specific cytotoxic T lymphocytes.

CD56 Antigen↗

Distinct subpopulations of gamma delta T cells are present in normal and tumor-bearing human liver.

Gamma delta T cells are thought to mediate immune responses at epithelial surfaces. We have quantified and characterized hepatic and peripheral blood gamma delta T cells from 11 normal and 13 unresolved tumor-bearing human liver specimens. gamma delta T cells are enriched in normal liver (6.6% of T cells) relative to matched blood (0.9%; P = 0.008). The majority express CD4(-)CD8(-) phenotypes and many express CD56 and/or CD161. In vitro, hepatic gamma delta T cells can be induced to kill tumor cell lines and release interferon-gamma, tumor necrosis factor-alpha, interleukin-2 and interleukin-4. Analysis of V gamma and V delta chain usage indicated that V delta 3(+) cells are expanded in normal livers (21.2% of gamma delta T cells) compared to blood (0.5%; P = 0.001). Tumor-bearing livers had significant expansions and depletions of gamma delta T cell subsets but normal cytolytic activity. This study identifies novel populations of liver T cells that may play a role in immunity against tumors.

Adolescent↗

Cortisol does not mediate the suppressive effects of psychiatric morbidity on natural killer cell activity: a cross-sectional study of patients with early breast cancer.

BACKGROUND: There is evidence that depression impairs natural killer cell activity (NKA); this could have implications for anti-tumour immunity. Our aim was to examine the role of the hypothalamic-pituitary-adrenal (HPA) axis in suppressing NKA in a population of patients with early breast cancer, screened for depression. Secondary aims were to study the relationship between psychological, endocrine and immune variables and baseline tumour characteristics. METHOD: A cross-sectional population of female patients (n=55) with early breast cancer was sampled prior to primary surgery. Structured interview and psychometric instruments measured psychological distress. Flow cytometry was used to enumerate NK cells and lymphocytes were cryopreserved for use in a 51Cr-release assay, to estimate NKA. Midnight and three early morning saliva samples were collected to measure free cortisol levels. Tumour characteristics were obtained from hospital laboratory data. RESULTS: A high rate of psychological morbidity (40%) was observed in the population. NKA was reduced in those with past or current psychiatric illness compared to those without (344 v. 553 LU20 and 455 v. 569 LU20 respectively, p < 0.05 for both). Cortisol was not related to psychological status but was modestly positively correlated to NKA. A positive correlation was observed between the Fighting Spirit subscale of the Mental Adjustment to Cancer Scale and tumour size (r=0.383, p=0.012). CONCLUSIONS: Our data support the evidence that psychological morbidity is associated with immune dysfunction; however, the most obvious candidate mediator of this effect, the HPA axis, does not appear responsible for this effect. Possible reasons for this are discussed.

Adult↗

NKT cells from normal and tumor-bearing human livers are phenotypically and functionally distinct from murine NKT cells.

A major group of murine NK T (NKT) cells express an invariant Valpha14Jalpha18 TCR alpha-chain specific for glycolipid Ags presented by CD1d. Murine Valpha14Jalpha18(+) account for 30-50% of hepatic T cells and have potent antitumor activities. We have enumerated and characterized their human counterparts, Valpha24Vbeta11(+) NKT cells, freshly isolated from histologically normal and tumor-bearing livers. In contrast to mice, human NKT cells are found in small numbers in healthy liver (0.5% of CD3(+) cells) and blood (0.02%). In contrast to those in blood, most hepatic Valpha24(+) NKT cells express the Vbeta11 chain. They include CD4(+), CD8(+), and CD4(-)CD8(-) cells, and many express the NK cell markers CD56, CD161, and/or CD69. Importantly, human hepatic Valpha24(+) T cells are potent producers of IFN-gamma and TNF-alpha, but not IL-2 or IL-4, when stimulated pharmacologically or with the NKT cell ligand, alpha-galactosylceramide. Valpha24(+)Vbeta11(+) cell numbers are reduced in tumor-bearing compared with healthy liver (0.1 vs 0.5%; p < 0.04). However, hepatic cells from cancer patients and healthy donors release similar amounts of IFN-gamma in response to alpha-galactosylceramide. These data indicate that hepatic NKT cell repertoires are phenotypically and functionally distinct in humans and mice. Depletions of hepatic NKT cell subpopulations may underlie the susceptibility to metastatic liver disease.

Animals↗

Expansion of innate CD5pos B cells expressing high levels of CD81 in hepatitis C virus infected liver.

BACKGROUND/AIMS: Association of hepatitis C virus (HCV) with increased autoantibodies, mixed cryoglobulinaemia, non-Hodgkin's B-cell lymphoma and increased peripheral innate (CD5(pos)) B cells suggests a role for B-lymphocytes in the pathogenesis of HCV-infection. METHODS: Flow cytometry was used to estimate CD5(pos) B cell levels and CD81 co-expression in chronic HCV infection. Viral load was assessed using PCR. RESULTS: We demonstrate expansion of innate B cells in HCV-infected liver from patients with fibrosis score less than stage II (39%, % of total B cells, P=0.002) and end stage HCV cirrhosis (20%, P<0.05) compared with normal liver (8%). Expression of CD81, a signal transducing molecule and putative HCV receptor, was significantly increased on peripheral blood CD5(pos) B cells compared with conventional B cells (P=0.0001). Higher levels of CD81 on CD5(pos) B cells were more dramatic in the liver of HCV-infected individuals. However, no significant difference was observed in the viral load of CD5(pos)CD81(High) B cells and CD5(neg)CD81(Low) B cells. CONCLUSIONS: Increased expression of CD81 on innate B cells, a population that is expanded in the livers and peripheral blood of chronic HCV-infected patients, suggests a role in viral specific activation and clonal proliferation in chronic HCV infection.

Adult↗

Decrease in hepatic CD56(+) T cells and V alpha 24(+) natural killer T cells in chronic hepatitis C viral infection.

BACKGROUND/AIMS: The intrahepatic immune system is likely to play a key role in determining the outcome of hepatitis C virus (HCV) infection. The hepatic lymphocyte repertoire is characterised by high CD8/CD4 T cell ratios and large numbers of gamma delta T cells, natural killer (NK) cells, NK T cells and NK receptor-positive T cells. It is not known which of these populations contribute to immunity against HCV or immune pathology. METHODS: To explore the relative contributions of lymphocyte subpopulations, we have compared the intrahepatic lymphocyte repertoires and cytokine expression in 13 patients with mild chronic hepatitis C infection, 14 with end-stage hepatitis C cirrhosis and five histologically normal livers by flow cytometry and immunohistochemistry. RESULTS: CD4(+) T cells bearing alpha beta T cell receptors (TCR) were significantly expanded in livers with chronic HCV infection while CD56(+) alpha beta T cells and V alpha 24 TCR-positive T cells were significantly depleted. Expanded CD4(+)T cells were predominantly Th1 cells, producing interferon-gamma but not interleukin-4. CONCLUSIONS: Failure to resolve HCV infection may be due to deficient innate and/or memory immune responses, while Th1 cells may mediate immune pathology.

Adult↗

Having it all? Stem cells, haematopoiesis and lymphopoiesis in adult human liver.

Because of its location and function, the liver is continuously exposed to large antigenic loads that include pathogens, toxins and tumour cells, as well as harmless dietary and commensal proteins and peptides. Therefore, the liver must be actively immunocompetent and, at the same time, control inappropriate inflammatory responses to dietary and other harmless antigens encountered in the portal circulation. In addition to conventional CD4+ and CD8+ T lymphocytes from the circulation, several specialized lymphoid populations are found in the liver to meet these diverse immunological challenges. These populations display the functional and phenotypic properties of innate cells as well as conventional CD4+ or CD8+ helper and cytotoxic T lymphocytes and B cells. The innate lymphoid cells include gammadeltaTCR+ T cells, B1-B cells and NKT cells as well as large numbers of NK cells. The origin of these cells is unknown, but their murine counterparts have been shown to be capable of differentiation in situ in adult liver. Because haematopoietic stem cells have been found in adult human liver as well as molecular evidence of T-cell maturation, we hypothesize that some resident human hepatic lymphoid cells, particularly those expressing innate phenotypes, also differentiate locally. In particular, it is likely that the adult human liver is an important site of NK cell maturation. In this review, we explore the evidence for an active lymphopoietic role for the normal adult human liver.

Adult↗

Stress-related hormonal suppression of natural killer activity does not show menstrual cycle variations: implications for timing of surgery for breast cancer.

BACKGROUND: Evidence exists that prognosis in breast cancer may be related to the timing of primary surgery. Fluctuations in natural killer (NK) cells and/or their sensitivity to surgical stress hormones could mediate this phenomenon. We sought to establish, firstly, if there are any numerical or functional changes in NK cells during the course of the menstrual cycle and, secondly, if their prior in vitro incubation with cortisol and adrenaline produced functional change that was more pronounced at a particular point in the cycle. SUBJECTS AND METHODS: Normally menstruating females (n = 10) were sampled at two points (mid-follicular and mid-luteal) during two cycles. NK cell numbers were determined by flow cytometry. Natural killer cell activity (NKA) (unstimulated and following a 2-hour pre-incubation with cortisol and adrenaline) was determined using chromium-51 release assays from peripheral blood mononuclear cells (PBMCs) prepared from cryopreserved samples from the second cycle. RESULTS: NK cell numbers (expressed as a percentage of a standard lymphgate) were significantly higher at the mid-luteal point compared to the mid-follicular point (8.45 +/- 3.71 vs. 6.85 +/- 2.80, p < 0.05, data pooled from both cycles). Corresponding changes in NKA were observed, although these did not reach statistical significance. The mean inhibitory effects of cortisol (67%) and adrenaline (12%) on NKA were significant, but this phenomenon was uninfluenced by cycle point. CONCLUSION: This study supports the role of menstrual cycle-induced alterations in NK cells as a putative mediator of improved survival when surgery for breast cancer is carried out in the follicular phase. However there is no evidence of the cyclical sensitivity of NK cells to the principal surgical stress hormones.

Adult↗