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Biomedical subjects

Thomas F Gajewski

Publications and source records attributed to Thomas F Gajewski.

43 records · Page 3Linked to original sources

Cutting edge: targeted ligation of CTLA-4 in vivo by membrane-bound anti-CTLA-4 antibody prevents rejection of allogeneic cells.

Natural engagement of CTLA-4 on host B7 limits T cell activation. We hypothesized that therapeutic cross-linking of CTLA-4 in vivo may further inhibit T cell function and prevent allograft rejection. However, none of the currently available CTLA-4-binding reagents have ligating properties when injected in vivo. The observation that surface-immobilized anti-CTLA-4 mAb inhibits T cell activation in vitro prompted us to develop a membrane-bound single-chain anti-CTLA-4 Ab (7M). To model whether tissue expression of 7M could suppress allograft rejection, we examined the ability of H-2L(d)-specific TCR-transgenic T cells to reject 7M-expressing allogeneic tumor cells injected s.c. Expression of 7M significantly inhibited allogeneic rejection in mice that received CTLA-4(+/+) but not CTLA-4(-/-) T cells. Furthermore, CTLA-4(+/+) T cells that had encountered 7M-expressing tumors in vivo acquired defects in cytokine production and cytotoxicity. Thus, deliberate ligation of CTLA-4 in vivo potently inhibits allogeneic T cell responses.

Abatacept↗

Allogeneic stem-cell transplantation of renal cell cancer after nonmyeloablative chemotherapy: feasibility, engraftment, and clinical results.

PURPOSE: To evaluate the feasibility and safety of nonmyeloablative allogeneic stem-cell transplantation in patients with metastatic renal cell cancer (RCC) and to evaluate efficacy with respect to engraftment and tumor regression. PATIENTS AND METHODS: Between February 1999 and June 2001, patients with refractory, metastatic RCC were screened for enrollment. A fludarabine and cyclophosphamide-based conditioning regimen was used. Patients received granulocyte-macrophage colony-stimulating factor-mobilized, unmanipulated stem cells from a 6/6 HLA-matched sibling donor. Prophylaxis against graft rejection and graft-versus-host disease (GVHD) included tacrolimus and mycophenolate mofetil. RESULTS: A total of 284 patients with metastatic RCC were seen during this time period. Eighty-four patients who had siblings available for HLA typing were actively screened for enrollment, and 15 patients have undergone treatment. Durable donor engraftment was achieved in one of the first four patients treated. Patients no. 5 through 15 received a more immunosuppressive conditioning regimen, and all have achieved sustained donor engraftment. In the 12 patients with at least 180 days of follow-up, acute GVHD has occurred in two patients and chronic GVHD in six patients, with four transplant-related mortalities. Four partial responses have been observed (response rate, 33% in all patients; 44% in the nine patients with sustained donor engraftment). CONCLUSION: Nonmyeloablative allogeneic stem-cell transplantation is feasible for a minority of patients with metastatic RCC. Adequately immunosuppressive conditioning is required for sustained donor engraftment, which is required for an antitumor response. Acute and chronic GVHD are the major causes of substantial morbidity and mortality. Metastatic RCC is susceptible to a graft-versus-tumor effect promoted by allogeneic stem-cell transplantation.

Adenocarcinoma, Clear Cell↗

Increasing tumor antigen expression overcomes "ignorance" to solid tumors via crosspresentation by bone marrow-derived stromal cells.

To explain why solid cancers grow or are rejected, we examined how the tumor stroma affected the level of antigen expression necessary to induce an immune response. We applied a tamoxifen-regulated Cre-loxP system to induce a model SIYRYYGL antigen recognized by the 2C T cell receptor. Solid tumors expressing the antigen at lower levels grew, whereas solid tumors expressing antigen induced to 26-fold higher levels were rejected. In contrast, mice rejected cell suspensions expressing higher or lower levels of the antigen. The antigen was likely crosspresented because draining lymph node responses required bone marrow-derived cells in the tumor stroma. Thus, tumor antigens expressed at levels sufficient for crosspresentation by bone marrow-derived stromal cells may overcome immunological "ignorance" to solid tumors.

Animals↗

Flt-3 ligand and sequential FL/interleukin-2 in patients with metastatic renal carcinoma: clinical and biologic activity.

Flt3 (fms-like tyrosine kinase 3) ligand, a cytokine that stimulates increases in the number of dendritic cells (DC) in vivo, has been shown to have antitumor activity in murine models via an immune-mediated mechanism. Therefore, we examined the clinical activity of this cytokine in patients with an immunologic-responsive cancer, metastatic renal cell carcinoma. Flt3 ligand (25 microg/kg subcutaneous) was administered daily for the first 14 days of a 28-day cycle. Although the treatment was well tolerated and was confirmed to induce expansion of lineage (Lin)-/HLA-DR+/CD11c+ myeloid DC and Lin-/HLA-DR+/CD123+ plasmacytoid DC, no clinical activity was observed. Reasoning that DC expanded by Flt3 ligand might potentiate the clinical activity of low-dose interleukin-2, a second study was conducted of sequential administration of 25 microg/kg of Flt3 ligand daily for 7 days was followed by 11 x 10(6) IU of subcutaneous interleukin-2 for 4 consecutive days x 4 weeks. In this study, increased numbers of circulating DC were again observed, which was followed by increased numbers of activated T cells, confirming a biologic effect of each cytokine. However, toxicity and clinical efficacy were similar to what has been seen with low-dose interleukin-2 alone, with two minor responses observed. These results demonstrate that Flt3 ligand, although capable of inducing expansion of circulating myeloid and plasmacytoid DC in patients with metastatic renal cell carcinoma, lacks significant clinical activity at the doses and schedules examined.

Adult↗

Phase 2 study of the g209-2M melanoma peptide vaccine and low-dose interleukin-2 in advanced melanoma: Cancer and Leukemia Group B 509901.

High-dose interleukin-2 (IL-2) is the only approved immunologic therapy for advanced melanoma, but response rates are low and significant toxicities limit treatment to otherwise healthy patients. g209-2M is a nanopeptide engineered to mimic an epitope of the gp100 melanocyte differentiation protein that is recognized in a human leukocyte antigen (HLA)-restricted manner by melanoma tumor-infiltrating lymphocytes in some patients. Previous reports indicated that administration of the g209-2M peptide could induce g209-reactive circulating T cells in patients with melanoma and that the combination of g209-2M and high-dose IL-2 might be a more active treatment than high-dose IL-2 alone. Low-dose IL-2 is not active but has significant biologic effects, and because of a different toxicity profile, it can be offered to most patients. The primary objective of this cooperative group phase 2 study was to determine the activity of the combination of g209-2M and low-dose IL-2 in advanced melanoma. Twenty-six HLA appropriate patients with advanced melanoma received subcutaneous g209-2M peptide once every 3 weeks and subcutaneous IL-2 (5 million IU/m) daily for 5 days during the first and second weeks. Patients were monitored for tumor response, toxicity, and induction of g209-reactive circulating T cells. There were no objective responses. There were no toxic deaths and no grade 4 toxicities. More than half of the patients experienced some grade 2 toxicity and one quarter experienced grade 3 toxicity. There was no convincing evidence by enzyme-linked immunospot or tetramer analysis of induction of g209-reactive circulating T cells. The combination of g209-2M and low-dose IL-2 is safe and tolerable but inactive against advanced melanoma. Absence of evidence of immunization raises concerns for peptide-based immunization strategies with concurrent IL-2.

Adult↗

Immune suppression in the tumor microenvironment.

The identification of tumor-expressed antigens that can be recognized by specific T lymphocytes has made it possible both to study the properties of T cells participating in anti-tumor immune responses in patients and also to develop antigen-specific immunotherapies as a treatment modality. Interestingly, moves toward intervention have proceeded at a faster pace than have investigations toward understanding. In melanoma in particular, many clinical trials of active immunization have been performed, and many of these have shown increases in tumor antigen-specific T cells circulating in the blood. However, clinical responses have been infrequent, arguing that mechanisms of resistance downstream from initial T cell priming may be dominant in many cases. In fact, may patients show spontaneous generation of immune effector cells and/or antibodies, implying that the priming phase has occurred already in such individuals even without vaccination. Recent attention has turned toward mechanisms of immune evasion at the effector phase of the anti-tumor immune response, predominantly within the tumor microenvironment. Evidence is accumulating that T cell-intrinsic hyporesponsiveness or anergy, extrinsic suppression by regulatory cell populations, inhibitory ligands such as PD-L1, soluble factors such as TGF-beta, and the activity of nutrient-catabolizing enzymes such as indoleamine 2,3-dioxygenase (IDO), may contribute to immune escape in different settings. Murine preclinical models have shown that interfering with each of these processes can translate into T cell-mediated tumor control. Clinical studies to estimate the frequency of specific immune evasion mechanisms in individual patients, to correlate specific events with clinical outcome, and to develop strategies to counter resistance mechanisms should receive a high priority.

Animals↗