
Cytosol levels of cytokines [interleukins 1b, 6, 8 (IL-1b, 6, 8), tumor necrosis factor-alpha (TNF-alpha)] in aneurysm walls were evaluated in a prospective non-randomized study of 57 patients. The group was divided into two subgroups: Subgroup I (ruptured aneurysms, n =11) and Subgroup II (asymptomatic aneurysms, n =32). A control group consisted of 14 kidney donors. Aortic walls were examined by immunohistochemistry and microscopy to detect inflammatory cells. More pronounced inflammatory changes and higher cytosol cytokine levels [IL6 ( p <0.001), IL8 ( p <0.0003) and TNFalpha ( p <0.002)] were found in the walls of ruptured aneurysms than in the asymptomatic aneurysms. Immunohistochemically, most cells within the inflammatory infiltrates stained positively with the monoclonal antibody to the leucocyte common antigen (CD 45). The majority were of B-cell origin, which was demonstrated by positive staining with the monoclonal antibody L26 directed against the CD 20 antigen. These results show that an inflammatory process plays a significant role in patients with ruptured abdominal aortic aneurysms (AAA). A means of modifying the inflammatory process in the wall of AAAs might play an important role in preventing aneurysm rupture.
Dendritic cell (DC) counts and function were assayed in peripheral blood of lymphoma and solid tumor patients before and after chemotherapy. The DC counts declined significantly within the first week from the start of chemotherapy, recovered in the second week, and exceeded the baseline values in the third week. DC recovery was usually similar after the first and after the last cycle of chemotherapy. DC1 and DC2 subsets followed the pattern of reconstitution found for the DC population as a whole. Monocytes and granulocytes recovered 1-2 weeks later than DC. The primary proliferative response to keyhole lympet hemocyanin (KLH), totally DC-dependent, declined within the first week from the start of chemotherapy, and in the majority of patients (including those initially unresponsive) recovered along with DC counts. The recovered responsiveness to KLH, but not to anti-CD3 antibody, disappeared at the end of chemotherapy in lymphoma and some solid tumor patients. Prolonged depletion of CD4+ T cells could contribute to the loss of responsiveness in lymphoma patients receiving multiple cycles of chemotherapy. However, in some solid tumor patients, the reactivity to KLH was absent, despite the reconstitution of both DC and CD4+ T-cell counts. Our data show that numerical reconstitution of DC is not necessarily accompanied by functional recovery. The early recovery of DC should be considered while designing protocols for DC collection for immunotherapy.
In Crohn's disease (CD) CD4(+) T-cells producing tumor necrosis factor-alpha (TNF-alpha) and interferon-gamma (IFN-gamma) are important for disease progression. T-cell vaccination with such attenuated (gamma-irradiated) CD4(+) T cells may ameliorate the auto-reactive actions of Type-1 T cells through stimulation of interleukin-10 (IL-10)-producing regulatory T cells. This study aimed to propagate and use gut-derived type-1 CD4(+) T-cells for vaccination in CD. In a case study, two patients with CD-activity index (CDAI) >150 for >1 year were vaccinated with 800 x 10(6) attenuated autologous gut-derived CD4(+) T cells producing Type-1 cytokine -- grown in the presence of high concentrations of only IL-2 and IL-4. The T-cell vaccination was safe, causing only minor redness and tenderness at the injection sites. In Case 2, the treatment brought 3-years with active steroid-resistant CD into remission. CDAI dropped from 171 to 76, CD-endoscopic index of severity fell from 20 to eight and C-reactive protein reduced from 165 to 70 nmol/L. Case 1 received rescue infliximab (there was disease progression before sufficient quantities of cells were ready for the second vaccination). We concluded that it is possible to propagate T cells for autologous vaccination for CD and that treatment was safe. One patient, vaccinated according to the protocol, improved with sustained result for >1 year.
Glucocorticoids (GC) are the most powerful anti-inflammatory drugs used in the treatment of autoimmune diseases such as rheumatoid arthritis. In addition, endogenous GC are involved in numerous physiological processes. Most of their effects are mediated by the glucocorticoid receptor (GR) via activation or repression of gene expression. Whereas activation requires DNA binding of the receptor, repression is mediated by protein-protein interactions with other transcription factors. In particular, most immunosuppressive and anti-inflammatory effects are exerted by an interaction of GR with the activating protein 1 (AP-1) and nuclear factor kappaB (NF-kappaB) families of transcription factors without DNA binding. Cytokines such as tumor necrosis factor alpha (TNF-alpha) and interleukin 1 (IL-1) activate the hypothalamus pituitary adrenal (HPA) axis, whereas GC inhibit IL-1 and TNF-alpha forming a cytokine-HPA axis feedback circuit. The high effectiveness of cytokine-antagonists blocking TNF-alpha or IL-1 in RA and the understanding of the precise molecular mechanisms of GC function will enhance our understanding of autoimmune diseases, such as RA, and could suggest new beneficial therapeutic approaches with fewer side-effects.
Cytokines play important roles in the expression of adhesion molecules and the function of anti-tumor effector cells in the immune system. In this study, the influence of interleukin-12 (IL-12) and IL-18 on the expression of ICAM-1 and natural killer (NK)-cell mediated lysis in a human osteosarcoma cell line (HOS) was evaluated. ICAM-I expression of HOS cells were analyzed by flow cytometry following treatment with IL-12, IL-18 or both, and in co-cultures with peripheral lymphocytes. NK-cell activation in response to IL-12 and IL-18 was investigated by selective flow cytometry using propidium iodide. ICAM-1 expression on HOS cells was significantly enhanced by IL-12, but only when co-cultured in cell-to-cell contact with peripheral lymphocytes. Antibodies to interferon-gamma abrogated this effect. If HOS cells and peripheral lymphocytes were separated in co-cultures, IL-18 could substitute for cell-to-cell contact, facilitating IL-12-mediated enhancement of ICAM-1. Addition of IL-18 also enhanced NK-mediated cytolysis of HOS cells. These findings demonstrate that IL-12 can enhance the expression of ICAM-1 in the presence of IFN-gamma and, with IL-18, enhances NK anti-tumor activity. Immunomodulation via cytokine therapy may lead to improved eradication of chemotherapy-resistant osteosarcomas.
Anemia has multiple etiologies: it may be caused by nutritional deficiencies or congenital abnormalities, or it may be associated with a number of conditions, such as chronic kidney disease, cancer, or human immunodeficiency virus (HIV) infection. Anemia is associated with an increase in morbidity and mortality in patients with end-stage renal disease, cancer, or HIV infection. Each case of anemia is different, with different causes, clinical consequences, and treatment strategies. Identifying the most appropriate treatment requires an understanding of the etiology of the anemia and investigation of the nature of the causative medical condition. In some cases, such as anemia associated with chronic kidney disease, treatment is well defined and consists of administration of erythropoiesis-stimulating agents, accompanied by iron supplementation where appropriate. In other instances, such as megaloblastic anemia, which may be caused by vitamin or folate deficiency, vitamin supplementation alone may be a clinically appropriate treatment. This article gives an overview of the etiologies and current therapies of the most commonly encountered types of anemia, highlighting both the diverse nature of the condition, and the equally diverse pharmacologic and supportive treatment approaches.
Allogeneic immunocompetent splenocytes were tested for their ability to exert a GVT effect in a murine model of liver metastasis. Mammary carcinoma cells originating from an H-2 d mouse were inoculated through the PV of F 1 (H-2 d/b ) mice, to mimic clinical hepatic involvement in malignant disease. Cell therapy was given either locally (PV) or systemically by IV inoculation to test differential efficacy of the GVT effect, and the differential expression of GVHD symptoms induced by diverse routes of administration. Livers of mice treated with H-2 b derived splenocytes given PV or IV remained tumor-free for at least 4 weeks following tumor inoculation. Furthermore, all secondary recipients of adoptively transferred (AT) liver cells were tumor-free for >300 days. In contrast, all livers of untreated control mice or mice treated with syngeneic splenocytes displayed tumor metastases as early as 2 weeks following tumor inoculation, and large local tumors developed in AT secondary recipients. Our data demonstrate the efficacy of allogeneic cell therapy, given either locally or systemically, in the eradication of liver metastases. However, diverse routes of cell therapy administration did not show any difference in the expression and outcome of GVHD.
The transition from placental to pulmonary-based respiration causes a relative hyperoxic shift, or oxidative stress, which the perinatal developing-lung experiences during birth. Dynamic changes in pO2, therefore, constitute a potential signaling mechanism for the regulation of the expression/activation of reduction-oxidation (redox)-sensitive and O2-responsive transcription factors, apoptosis signaling and pro-inflammatory cytokines. The variation in deltaPO2, in particular, differentially regulates the compartmentalization and function of the transcription factors hypoxia-inducible factor-1alpha (HIF-1alpha) and nuclear factor-kappaB (NF-kappaB). In addition, O2-evoked regulation of HIF-1alpha and NF-kappaB is closely coupled with the intracellular redox state, such that modulating redox equilibrium affects their expression/activation. The differential regulation of HIF-1alpha and NF-kappaB in vitro is paralleled by O2- and redox-dependent pathways governing the regulation of these factors during the transition from placental to pulmonary-based respiration ex vivo. Furthermore, the birth transition period in vitro and ex vivo regulates apoptosis signaling pathways in a redox-dependent manner, consistent with NF-kappaB playing an anti-apoptotic function. An association is established between an oxidative stress condition and the augmentation of a pro-inflammatory state in pathophysiology, regulated by the O2- and redox-sensitive pleiotropic cytokines.
Decreased Type 1 cytokine production has been observed in T cells of patients with untreated chronic myeloid leukemia (CML). The important role of T cells and T-cell cytokines in the long-term control of CML is well established, for example in allogeneic stem-cell graft recipients. This study examined whether or not molecularly targeted therapy with imatinib, an inhibitor of the BCR-ABL tyrosine kinase, improved endogenous T-cell function in patients resistant to or intolerant of previous IFN-alpha therapy. Intracellular cytokine staining and detection by flow cytometry was used to analyze the expression of the T1 cytokine IFN-gamma in T cells. To secure independence from changes in white blood cell counts during treatment, a constant number of T cells was purified from the peripheral blood before analysis of the proportion of IFN-gamma synthesizing T cells. Twenty-nine patients with CML were tested before and after a median follow-up of 3 month on imatinib. In addition, late follow-up (past the median time to best cytogenetic response) of 15 patients were obtained Twenty-nine age- and gender-matched individuals were used as healthy controls. The frequency of IFN-gamma producing T cells in CML patients resistant to or intolerant to previous IFN-alpha therapy was lower than in healthy individuals (p=0.0181, Mann-Whitney test). Imatinib therapy led to a significant increase over pre-treatment values (p<0.0001, Mann-Whitney test). Late follow-up indicated that the increase was sustained in patients not in major cytogenetic response. In contrast, in major responders levels returned towards values comparable to healthy individuals. In conclusion, treatment with imatinib achieves a significant increase in Type 1 (IFN-gamma) cytokine-producing T cells in patients with CML. This is consistent with the view that enhanced T-cell function is achievable in patients with CML, even in the absence of allo-mechanisms.
Granulocyte-macrophage colony-stimulating factor (GM-CSF) enhances immune responses by inducing the proliferation, maturation, and migration of dendritic cells, and the expansion and differentiation of B and T lymphocytes. Similar biological effects have been observed with the use of GM-CSF DNA in mouse models for therapy of cancer and infectious diseases, and its use is currently being investigated in clinical trials in combination with DNA vaccines. To further understand the adjuvant mechanisms of GM-CSF DNA, we examined early events following its administration. We found measurable levels of GM-CSF protein in the skin and muscle, as well as in serum. Measurements of other cytokine and chemokine levels revealed differential expression patterns over time. The early response was characterized by high levels of inflammatory molecules, including IL-1beta, IL-6, TNFalpha, RANTES, MIP-1alpha and MCP-1, later followed by expression of precursor Th1 cytokines, IL-12 and IL-18, concomitant with IFNgamma production. Local production of GM-CSF protein also resulted in the early recruitment of polymorphonuclear cells and later recruitment of mononuclear cells, including dendritic cells. These results have implications for understanding early events in the immune response to DNA vaccines, and provide a basis for development of new approaches to cancer vaccines, including the use of cytokine genes as adjuvants.
Syngeneic IFN-gamma(-/-) and IRF-1(-/-) mice are very sensitive to B16F10-Nex2 murine melanoma cells implanted subcutaneously. In contrast, IFN-gamma-R(-/-) (GRKO) mice are remarkably resistant to tumor development. Only 0-30% of these animals, challenged with a high dose of melanoma cells (5 x 10(5)), developed tumors at a late stage. The hypothesis of interferon gamma (IFN-gamma) accumulation and consequent cytotoxicity to implanted tumor cells was confirmed in vitro and ex vivo. IFN-gamma reduced tumor-cell growth in vitro in 60-81%, added alone or with LPS. Splenocytes and peritoneal macrophages from naïve GRKO mice activated with anti-CD3 and interleukin-12 (IL-12), respectively, accumulated IFN-gamma at levels 10-fold those of the wild-type. Supernatants of IL-12-activated macrophages from GRKO mice were toxic to B16F10-Nex2 cells, an effect reversible by anti-IFN-gamma antibody treatment. IL-12-activated macrophages from iNOS(-/-) mice were still highly cytotoxic to B16F10-Nex2 cells, but IL-12-activated macrophages from IFN-gamma-deficient mice were not inhibitory. In vivo, a single injection of anti-IFN-gamma antibody 18 h after tumor-cell challenge in GRKO mice rendered all animals susceptible to B16F10-Nex2 melanoma development. No tumors developed in the untreated GRKO mice during up to 45 days of observation. This model can be useful in understanding immune responses that involve IFN-gamma as a direct cytotoxic factor.
Recombinant human platelet-derived growth factor (PDGF) is reported to promote wound closure in problem wounds. The mechanism of PDGF enhancement of wound closure is not clear. Does PDGF enhance wound contraction, or re-epithelialization, or both? In four patients undergoing elective surgery, a full excision 5 cm 2 punch wound was made behind each ear. The left post-articular wound received daily PDGF in a gel and each right post-articular wound received placebo-gel daily. The placebo-treated wounds closed in 19.8 days, while the PDGF-treated wounds closed significantly faster, in 15.6 days, p =0.002. At Day 20, all healed wounds were processed for histology. PDGF-treated wounds showed granulation tissue beneath an uninterrupted epidermis. A fine birefringence pattern, consistent with granulation tissue, was found by polarized light microscopy. The control closed-wounds had a smaller area of granulation tissue under an intact epidermis and polarized light microscopy showed mostly normal dermis. The presence of intact dermis within the closed-wound site is the hallmark of wound contraction. Topical PDGF limits the role of wound contraction in wound closure. Control wounds healed by wound contraction, while PDGF-treated wounds close by re-epithelialization and filling in with scar.
The role of T cells in eradicating leukemic cells has been well demonstrated for chronic myeloid leukemia (CML). Type 1 (T1) T-cell cytokines play a major role in this antileukemic immune effect. Studies in cancer patients have demonstrated a decreased T1 cytokine production, measured by enzyme-linked immunosorbent assay (ELISA), in cultures of peripheral blood mononuclear cells. This observation of malignancy-related suppressed T1 cytokines also occurs in untreated chronic-phase (CP) CML, raising the question of the influence of different CML treatment regimens on this immunosuppression. Intracellular flow cytometry (ICF) has facilitated the evaluation of cytokines on a single-cell level. This study analyzed T1 (interferon-gamma) cytokine production in purified peripheral blood T cells by ICF, comparing different therapy approaches for CML. Twenty-one newly diagnosed CP CML patients were compared with 24 patients treated with interferon-alpha (IFN-alpha) and to 30 allogeneic bone marrow transplant (BMT) recipients (BCR-ABL negative by reverse-transcriptase polymerase chain reaction, and free of, or having only limited graft-versus-host disease at the time of study). Thirty-seven healthy controls were included. Our results showed a significantly decreased T-cell IFN-gamma synthesis in CP CML patients in relation to healthy controls (P = 0.0007). Treatment with IFN-alpha resulted in a shift from immunosuppression--documented for the group of untreated patients--to immunopotentiation, with an increase of T-cell IFN-gamma production (P = 0.0266). Notably, BMT enhanced IFN-gamma production of T cells to a level not only exceeding untreated patients (P < 0.0001) but also healthy volunteers (P < 0.0001). The observation of T1 cytokine up-regulation with IFN-alpha therapy indicates that enhanced T-cell function may be achievable in patients with CML, even in the absence of an allo-response.
A 51-year-old patient with refractory non-Hodgkin lymphoma (NHL) received non-myeloablative conditioning and a two of six (A, B, DR) human leucocyte antigen (HLA) mismatched donor BMT. Post-BMT lymphocytes showed fluctuating T- and natural killer (NK)-cell chimerism, which culminated in mainly donor lymphocytes by Day + 100. Changes in lymphocyte chimerism correlated with anti-donor and anti-host responses in mixed lymphocyte reaction (MLR). On Day + 100, a strong anti-host response was observed in MLR in the absence of graft-versus-host disease (GVHD), together with near complete regression of the patient's lymphoma. A mild chronic GVHD later developed and, eventually, by 680 days post-BMT, the lymphoma had relapsed and MLR reflected a state of global immune unresponsiveness. These observations demonstrate evolving host-versus-graft and graft-versus-host tolerance that correlates with fluctuating lymphoid chimerism and graft-versus-lymphoma (GVL) effects, in the absence of severe GVHD. Eventual lymphoma relapse temporally correlated with a generalised immunosuppressed state.
Melanoma-inhibiting activity (MIA) is a 107 amino-acid protein secreted from melanoma cells and frequently detectable at high concentration in the serum of patients with advanced melanoma. Early studies suggested that MIA may be a useful serum tumor-marker for detection of recurrent or progressive disease. We evaluated the sensitivity of serum MIA levels in predicting the risk of relapse in patients with American Joint Committee on Cancer (AJCC) Stage II, III, and IV melanoma. MIA was measured by ELISA in serum from 39 patients with AJCC Stage II, III and IV disease at a single time-point 1 month to 5 years after they were rendered free of disease. Twenty-three of the 39 patients recurred, with a median follow-up of 4.5 months. Only four of the 23 patients who recurred had shown elevated MIA values (17% sensitivity). Of the 16 patients who remain free of disease (median follow-up 3.5 years, range 11 months to 6.3 years), one patient had an elevated MIA. There was no significant difference in the proportion of patients with elevated serum MIA between the patients who recurred and those who remained free of disease. In this series, serum MIA was not a sensitive marker for relapse in patients who were clinically free of disease after treatment.
Transforming growth factor-beta (TGF-beta) proteins are multifunctional regulators of cell growth and differentiation. The three isoforms, TGF-beta1, -beta2, -beta3 share approximately 70% identical amino acid sequence and are coded by three distinct genes. Growth and differentiation functions in which the isoforms have differential activity include: inhibition of colorectal cancer cell growth, migration of aortic endothelial cells, survival of ciliary ganglionic neurons, and binding to cell surface receptors. A previous paper reported that TGF-beta1 and TGF-beta2 had bimodal dose-dependent stimulatory and inhibitory effects on granulocyte-macrophage colony-stimulating factor induced Day 7 granulocyte-macrophage colony-forming units. The effects of TGF-beta3 were only inhibitory. At low concentrations, TGF-beta1 and -beta2 stimulated growth, whereas at higher concentrations both isoforms inhibited growth. We now report that TGF-beta1, TGF-beta2, and TGF-beta3 are similar to each other at low concentrations; at higher concentrations TGF-beta1 and TGF-beta3 inhibit growth, but TGF-beta2 stimulates growth. Our results are consistent with the known affinities of the TGF-beta isoforms with the Type II TGF-beta signaling receptor, which has greater affinity for TGF-beta1 and TGF-beta3 than TGF-beta2.
Transforming growth factor-beta (TGF-beta) is a multifunctional growth and differentiation factor that affects almost all cells. Although equipotent in many cases, the three isoforms of TGF-beta (-beta1, -beta2, -beta3) have several important isoform specific activities. For example, TGF-beta2 binds with higher affinity to a 60 kDa cell-surface glycosyl phosphatidylinositol (GPI)-linked protein, expressed on vascular endothelial cells. We used chimeric TGF-beta proteins, in which selected regions of TGF-beta1 had been exchanged for the corresponding region of TGF-beta2, to demonstrate that amino acids 67 and 68 regulate binding of TGF-beta to this protein. Exchange of amino acids 67 and 68 of TGF-beta1 into TGF-beta2 resulted in a protein similar in affinity to TGF-beta1 for binding to the GPI-linked protein. In contrast, exchange of only amino acid 67 of TGF-beta1 into TGF-beta2, or exchange of only amino acid 68 of TGF-beta1 into TGF-beta2, resulted in a protein with affinity similar to that of TGF-beta2. This suggests that the coordinated change of Gln and His of TGF-beta1 to Thr and Ile at positions 67 and 68 alters the specificity of TGF-beta. Amino acids 67 and 68 are part of a surface-exposed alpha-helix that forms a projection away from the center of the TGF-beta molecule and is accessible for receptor binding.
This retrospective study sought to evaluate the impact of IL-6 concentration on time to progression in advanced melanoma. One hundred and thirty-five patients were included, serum IL-6 levels were determined before (Day 0), at the end of the treatment (Day 49) and at recurrence: the relationship between IL-6 concentration and time to progression (TTP) was also evaluated. The baseline median serum IL-6 level was 16.5 pg/ml. When disease progression was observed, an increase in serum IL-6 level was noted. In order to establish the possible relationship between IL-6 level and TTP, patients were divided into two groups (low and high) using the median IL-6 level (16.5 pg/ml) detected in the pretreatment serum of overall patients as a cut-off. Sixty patients were in the low IL-6 group and 56 patients in the high IL-6 group. Time to progression was calculated from the beginning of treatment to recurrence, and analyzed using the Kaplan-Meier method. Patients with low IL-6 serum concentration showed a significantly (p<0.00001) higher median TTP than patients with high IL-6 level. Patients maintaining a low IL-6 level during the treatment showed the longest median TTP compared with those supporting high levels (24.4 versus 5.5 months). Taken together, our results showed that serum IL-6 level could be considered a predictive marker of recurrent disease in metastatic malignant melanoma.