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Biomedical subjects

L G Lum

Publications and source records attributed to L G Lum.

At least 19 recordsLinked to original sources

The marrow stem cell: the continuum.

The marrow hematopoietic stem cell is currently being redefined as to all aspects of its phenotype and its total differentiation capacity. This redefinition now includes its plasticity as to production of nonhematopoietic and hematopoietic cell types, the determinants of its in vivo engraftment potential and its expression of stem cell functional characteristics.

Animals↗

Use of anti-CD3 x anti-HER2/neu bispecific antibody for redirecting cytotoxicity of activated T cells toward HER2/neu+ tumors.

Relapse after adjuvant chemotherapy or high-dose chemotherapy with stem cell transplant for high-risk breast cancer remains high and new strategies that provide additional antitumor effects are needed. This report describes methods to generate highly effective HER2/neu-specific cytotoxic T cells by arming activated T cells with anti-CD3 x anti-HER2/neu bispecific antibody (BsAb). OKT3 and 9184 (anti-HER2) monoclonal antibodies (mAb) were conjugated and used to arm T cells that were subsequently tested in binding, cytotoxicity, and cytokine secretion assays. Armed T cells aggregated and specifically killed HER2/neu(+) breast cancer cells. Cytotoxicity emerged after 6 days of culture, was higher in armed T cells than unarmed T cells at all effector to target ratios (E/T) tested, and increased as the arming dose was increased. At an E/T of 20:1, the mean cytotoxicity of armed activated T cells (ATC) from 10 normal subjects increased by 59 +/- 11% (+/-SD) over that seen in unarmed ATC (p < 0.001) and the mean cytotoxicity of armed ATC from 6 cancer patients increased by 32 +/- 9% above that seen for unarmed ATC (p < 0.0004). After arming, the BsAb persisted on ATC up to 72 h and armed ATC continued to be cytotoxic up to 54 h. The amount of interferon-gamma (IFN-gamma), tumor necrosis factor-alpha (TNF-alpha), and granulocyte-macrophage colony-stimulating factor (GM-CSF) secreted was 1699, 922, and 3092 pg/ml/10(6) cells per 24 h, respectively, when armed T cells were exposed to a HER2/neu(+) breast carcinoma cell line. These studies show the feasibility and clinical adaptability of this approach for generating large numbers of anti-HER2-specific, cytotoxic T cells for clinical trials.

Antibodies, Bispecific↗

Activated T-cell and bispecific antibody immunotherapy for high-risk breast cancer. Bench to bedside.

Nontoxic approaches are needed to improve overall survival (OS) and progression-free survival (PFS) for high-risk breast cancer. Combination immunotherapy (IT) consisting of activated T cells (ATC), interleukin-2 (IL-2), and CTL (GM-CSF) was given after peripheral blood stem cell transplant (PBSCT). There were no major toxicities and there appear to be improvements in OS and PFS over historical controls. In order to develop specific cytotoxic T lymphocytes (CTL), we combined ATC with the use of bispecific antibody (BiAb). By arming ATC with anti-CD3 x anti-HER2/neu BiAb (HER2BiAb), the approach converts nonspecific ATC into HER2/neu (HER2) specific CTL. ATC remain armed, kill tumor targets for days, and produce cytokines after binding to tumor. Arming ATC with BiAbs may prove to be effective for targeting a variety of tumors with and without high-dose chemotherapy.

Antibodies, Bispecific↗

Life or death of T cells with antigen-specific receptors--using T cells for cancer adoptive immunotherapy/gene therapy.

A promising strategy for cancer treatment is adoptive gene therapy/immunotherapy by genetically modifying T lymphocytes with a chimeric receptor (ch-TCR) so that cytotoxic T lymphocytes (CTL) can target and lyse tumors in a MHC-non-restricted manner. It is, however, not clear whether non-MHC-restricted tumor cell recognition by T cells will result in activation-induced apoptosis (AICD). This review discusses the factors that affect the development of AICD or CTL proliferation, and how such factors should be considered in the design of clinical trials using ch-TCR.

Antigen Presentation↗

Anti-CD3/anti-CD28 bead stimulation overcomes CD3 unresponsiveness in patients with head and neck squamous cell carcinoma.

OBJECTIVES: To test whether T-cell CD3 responses are altered in patients with advanced-stage head and neck squamous cell carcinoma (HNSCC) and whether anti-CD3/anti-CD28 (alphaCD3/alphaCD28) bead stimulation could reverse CD3 unresponsiveness. DESIGN: Anti-CD3 (alphaCD3) monoclonal antibody immobilized on tissue culture plastic was used to stimulate lymph node mononuclear cells (LNMCs) and peripheral blood mononuclear cells (PBMCs) from patients with advanced-stage HNSCC. Proliferation, T-cell phenotype, and cytokines were measured during 8-day in vitro stimulation. Immune-enhancing properties of alphaCD3/ alphaCD28 beads were also tested on LNMCs and PBMCs. Cytotoxicity of bead-activated T cells (ATCs) was measured against autologous and allogeneic HNSCC. RESULTS: Six patients were nonresponders to alphaCD3 stimulation defined by tritium (3H) incorporation of less than 3500 cpm, whereas 11 patients were responders with 3H incorporation of 3500 cpm or more. Responders produced higher levels of interleukin (IL)-12 and interferon gamma (IFN-gamma) after alphaCD3 stimulation than nonresponders. No phenotypic or clinical differences were identified between groups. Stimulation with alphaCD3/alphaCD28 beads enhanced IFN-gamma and IL-2 produced by both groups. Bead ATCs were generated from PBMCs of patient 11 in the responder group and lysed (+/- SD) 100% +/-1% of autologous tumor and 49% +/-1% of allogeneic tumor. Bead ATCs from LNMCs of this patient lysed 58%+/-1% of autologous tumor and 63%+/-1% of allogeneic tumor. CONCLUSIONS: A subpopulation of patients with HNSCC who are nonresponders to alphaCD3 stimulation has been identified, showing reduced proliferation and IL-12 and IFN-gamma secretion. Nonresponders stimulated with alphaCD3/alphaCD28 beads reversed immune unresponsiveness and induced a type 1 cytokine response. Bead-generated ATCs from patient 11 in the responder group lysed autologous and allogeneic HNSCC in vitro, suggesting a possible effective immunotherapeutic modality in the treatment of HNSCC.

Antibodies, Monoclonal↗

Anti-CD3/anti-CD28 monoclonal antibody-coated suture enhances the immune response of patients with head and neck squamous cell carcinoma.

OBJECTIVE: To test whether anti-CD3/anti-CD28 (alphaCD3/alphaCD28) monoclonal antibodies could be coated on surgical suture and used to enhance T-cell immune function in patients with advanced-stage head and neck squamous cell carcinoma (HNSCC). DESIGN: AlphaCD3/alphaCD28 monoclonal antibodies at varying concentrations and ratios were coated on surgical sutures and tested on peripheral blood mononuclear cells from normal donors to identify the optimal stimulating condition. Immune-enhancing properties of alphaCD3/alphaCD28 monoclonal antibody suture were tested on peripheral blood mononuclear cells and regional lymph node mononuclear cells isolated from patients with advanced HNSCC and on normal donor peripheral blood mononuclear cells. Proliferation, T-cell phenotype, and cytokines were measured during 8-day in vitro stimulation with alphaCD3/alphaCD28 suture and compared with alphaCD3/alphaCD28-coated tissue culture plastic, a previously recognized carrier. RESULTS: Optimal stimulation was observed with monofilament nylon incubated with alphaCD3/alphaCD28, 2 microg/mL, at a 1:1 ratio for 18 hours at 37 degrees C. Strong proliferation of peripheral blood mononuclear cells and lymph node mononuclear cells in patients with HNSCC was induced by alphaCD3/alphaCD28 suture. There was no difference in maximal proliferation between alphaCD3/alphaCD28 plastic and suture. On day 6 after alphaCD3/alphaCD28 suture stimulation, T-cell subpopulations expressing CD3, CD4, CD8, CD28, and CD45RO were enhanced. Suture stimulation significantly enhanced interleukin 2 secretion when compared with plastic stimulation (P = .01). Both alphaCD3/alphaCD28 suture and plastic stimulated interferon gamma secretion. CONCLUSIONS: To our knowledge, this study is the first to report the modification of surgical suture to create an immunomodulant. AlphaCD3/alphaCD28-coated suture expanded T cells from patients with HNSCC and induced a T(H)1 immune response, which may be a useful therapeutic tool in the treatment of HNSCC and other diseases.

Adjuvants, Immunologic↗

T cells coactivated with immobilized anti-CD3 and anti-CD28 as potential immunotherapy for cancer.

This report describes the generation of T cells with characteristics that may prove useful for the immunotherapy of cancer. Peripheral blood mononuclear cells obtained from healthy donors were cultured in the presence of anti-CD3/anti-CD28 mAb-coated beads (3/28 beads) at a 3:1 bead to cell ratio. The 3/28 beads were removed after 14 days of culture. Optimal growth conditions for CD3/CD28 coactivated T cells (COACTS) were determined to be X-VIVO 15 containing 5% human AB serum and 100 IU/ml of interleukin-2. The median fold expansion after 14 days was 84-fold. Flow cytometric analyses demonstrated that all cultures were > 90% CD3+ with an increase in the proportion of CD8+ cells. CD28 expression was maintained at very high levels on CD4+ cells and augmented on CD8+ cells. COACTS were induced to secrete high levels of Th1-type cytokines (IFN-gamma and TNF-alpha) after a 24-h restimulation with fresh 3/28 beads and displayed nonmajor histocompatibility complex-restricted lytic activity against a variety of human tumor cell lines in standard 51Cr-release assays. Bead removal from COACT cultures before day 14 greatly enhanced the cell growth and cytokine production without significantly affecting the lytic potential. In summary, large numbers of T cells can be generated by coactivation with anti-CD3/anti-CD28-coated beads for 14 days. This method may provide an advantage over current forms of cellular immunotherapy for cancer because of the ability of COACTS to secrete tumoricidal cytokines and generate antitumor cytotoxicity.

CD28 Antigens↗

T cell activation modulates retrovirus-mediated gene expression.

Important considerations for T lymphocyte-based gene therapy include efficient gene delivery and expression in primary, human T cells. In this study, retrovirus-mediated gene transfer and the fate of proviral gene expression were evaluated in human T cells activated using (1) immobilized anti-CD3 monoclonal antibody (MAb) plus interleukin 2, or (2) cis costimulation using beads carrying coimmobilized anti-CD3 and anti-CD28 MAbs. By cross-linking the CD3 and CD28 receptors, these MAbs mimic in vivo signaling events, leading to cytokine production and proliferation. A modified human interleukin 1beta (IL-1beta) cDNA inserted into the MFG retroviral vector served as an indicator gene. Retroviral transduction frequencies were similar for T lymphocytes activated by the respective methods. However, early after MAb stimulation and virus exposure, proviral gene expression was greater at the RNA and protein levels in optimized anti-CD3/anti-CD28 bead-activated T cells, corresponding with augmented endogenous cytokine responses and mitogenesis. Proviral gene expression was not regulated by extrinsic cell factors present in activated T cell supernatants. Regardless of the MAb stimulation method, proviral IL-1beta expression declined in later T cell cultures concomitant with a decrease in cellular cytokines. Restimulation by either method reinduced both T cell activity and vector expression. Our finding that proviral gene regulation is downmodulated in the absence of T cell signaling events has implications for clinical strategies using retrovirus-modified T cells.

CD4-Positive T-Lymphocytes↗

Sinus disease in the bone marrow transplant population: incidence, risk factors, and complications.

BACKGROUND: Fever associated with sinus disease in the immunocompromised bone marrow transplant recipient requires prompt evaluation and therapy. Very little is known about the incidence, risk factors, and sequelae of nonsurgically treated sinus disease in this population. METHODS: A retrospective review of 107 consecutive allogeneic and autologous bone marrow transplant recipients from August 1987 to July 1989 was performed to determine (1) the overall incidence of sinus disease; (2) factors that influence the development of sinus disease; and (3) the sequelae of sinus disease treated nonsurgically. RESULTS: Overall 33 (31%) of 107 bone marrow transplant recipients had sinus disease defined as a radiographic abnormality with clinical symptoms. Eleven (10%) of 107 recipients had preexisting sinus disease. Sinus disease developed in 22 (21%) of 107 recipients after bone marrow transplantation. Sinus abnormalities were significantly higher among allografted bone marrow transplant recipients than among autografted recipients (p = 0.027). The diagnosis, stage of disease, cytoreductive regimen, or graft-vs.-host disease were not different between recipients in whom sinus disease did and did not develop. There were no deaths as a result of sinus complications. CONCLUSIONS: Sinus disease developed in 21% of the studied population after bone marrow transplantation. Allogeneic recipients had a higher incidence of sinus disease than autologous recipients. There were no deaths attributed to sinus complications. All sinus disease in this bone marrow transplant population was treated medically. No patient required surgical intervention either before or after bone marrow transplantation.

Adult↗

Prevention of hemorrhagic cystitis following allogeneic bone marrow transplant preparative regimens with cyclophosphamide and busulfan: role of continuous bladder irrigation.

High dose cyclophosphamide and/or busulfan conditioning treatment of recipients of bone marrow transplants proved to be highly effective but associated with substantial and sometimes life threatening hemorrhagic cystitis. To prevent this complication, a prophylactic continuous bladder irrigation program was instituted in patients receiving cyclophosphamide and/or busulfan in preparation for bone marrow transplantation. Retrospective analysis of 199 patients who underwent allogeneic bone marrow transplantation revealed that continuous bladder irrigation significantly decreased the frequency of hemorrhagic cystitis in patients receiving busulfan and cyclophosphamide (continuous bladder irrigation 23% versus no bladder irrigation 53%, p < 0.004). There was no difference in the frequency of hemorrhagic cystitis between the different preparative regimens in patients who underwent continuous bladder irrigation. There was no relationship between the incidence of hemorrhagic cystitis and the severity of graft-versus-host disease or the time to engraftment. The duration of hemorrhagic cystitis and overall survival rates were similar in both groups, and there was no increase in complications related to catheterization. In general, continuous bladder irrigation was well tolerated, decreased the incidence of hemorrhagic cystitis and may be useful in bone marrow transplant patients.

Adolescent↗

Anti-CD3-activated splenocytes enhance survival in lethally irradiated mice after transplant of syngeneic hematopoietic stem cells.

Although cytokines produced by activated T cells may accelerate immunohematopoietic reconstitution after autologous bone marrow transplantation (ABMT), there is no direct evidence that infusion of anti-CD3 mAb-activated T cells can accelerate engraftment by hematopoietic stem cells. This study tests the ability of anti-CD3-activated murine splenocytes (ASC) to enhance the rescue of lethally irradiated (9 Gy) BDF1 mice by transplant of a limiting dose of fresh unmanipulated syngeneic splenocytes (SC). A minority (14.8%, 10-25%) of mice could be rescued with 5 x 10(5) SC after 9 Gy total-body irradiation (TBI). When 10(6) or 10(7) ASC were added to 5 x 10(5) SC, survival increased to 50% in those that received 5 x 10(5) SC + 10(6) ASC (not significant [NS]) and to 81.4% (77.7-88.0%) in those that received 5 x 10(5) SC + 10(7) ASC (p < 0.001). Furthermore, adding a fixed dose of 10(7) ASC to increasing doses of SC (10(5), 5 x 10(5), and 10(6)) enhanced survival at the different doses of SC. ASC alone did not rescue mice. CD3+ cells were the predominant population (77.6 +/- 6.7%) in the ASC inoculum, while NK cells remained low (1.2 +/- 0.9%). Colony-forming unit-spleen (CFU-S) yield after injection of SC showed dose dependence, whereas injection of 10 x 10(6) ASC alone failed to show any CFU-S yield in 23 of 25 recipient spleens. These results show that ASC enhanced survival of mice rescued with limiting doses of SC and that this effect was ASC dose-dependent but not dependent on the addition of extra stem cells.

Animals↗

Signal transduction by B and T cells early after bone marrow transplantation: B cell calcium flux responses are intact whereas lack of CD4 cells accounts for impaired T cell responses.

We previously found that intracellular ionized calcium ([Ca2+]i) flux responses after anti-CD3 crosslinking of CD3/TCR on T cells from allogeneic and autologous bone marrow transplant (BMT) recipients were impaired, Yamagami et al. J Clin Invest 1990; 86: 1347-1351. In contrast to the earlier study, this study focuses on identifying the T cell subset(s) responsible for the defects and determining if B cell responses are defective in BMT recipients early after BMT. In 37 recipients after anti-CD3 stimulation of PBL, a mean of 25.9% responding T cells was observed. This was significantly lower than the mean of 43.6% responding T cells in PBL from 21 normals (P < 0.001). The proportion of responding T cells in PBL (T PBL) increased in the recipients with time after BMT. By 6 months after BMT, the mean percent of responding T PBL approached the normal range. On the other hand, a mean of 8.1% responding B cells in anti-IgM crosslinked PBL from 24 recipients was not different from the mean of 7.4% responding B cells in anti-IgM crosslinked PBL from 16 normals (P = 0.6). Four color flow cytometry was used to identify subpopulations of lymphocytes. Enriched B cells were tested by gating out CD3+ and CD56+ cells to confirm the results of unfractionated PBL. In 8 recipients, the mean percent responding B cells was 36.6% and was not different from 6 normals (mean = 41.0%).(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Prospective comparative trial of autologous versus allogeneic bone marrow transplantation in patients with non-Hodgkin's lymphoma.

A prospective comparative trial of allogeneic versus autologous bone marrow transplant (BMT) was conducted. Sixty-six consecutive patients (median age, 41; range, 15 to 60; female:male ratio = 21:45) entered this clinical trial. Priority for allogeneic BMT was given to patients who were 55 or younger and had a major histocompatibility complex-matched or 1-antigen-disparate sibling donor. Autologous BMT was offered to all other patients whose age was 60 or younger. Patients who had no sibling donor and who had BM involvement at the time of evaluation were not eligible. Thirty-one patients received an allograft, and 35 patients received an autograft. Thirteen patients received a BM graft purged with 4-hydroperoxycyclophosphamide because of previous BM involvement. Patients who had previous radiation to the thoracic and/or abdominal areas of more than 20 Gy received a preparative regimen consisting of cyclophosphamide (1,800 mg/m2/d for 4 days), VP-16 (200 mg/m2 every 12 hours for 8 doses), and 1,3-bis(2-chloroethyl)-1-nitrosourea (600 mg/m2 as 1 dose). Other patients received cyclophosphamide 1,800 mg/m2/d for 4 days followed by total body irradiation of 12 Gy administered as a single daily fraction over 4 days. With a median follow-up of 14 months, the progression-free survival (PFS) for autograft and allograft recipients was 24% +/- 8% (+/- SE) and 47% +/- 9%, respectively, (P = .21). However, the probability of disease progression was significantly higher in the autologous group (69% +/- 9%) than in the allogeneic group (20% +/- 10%; P = .001). When other confounding prognostic factors were adjusted in the multivariate analysis, chemosensitive disease and allograft were found to have a significant favorable influence on probability of disease progression (P = .03 and .003), but only chemosensitive disease had a significant influence on the PFS (P < .002). Our results suggest the existence of graft-versus-lymphoma effect and also support the rationale of using immunotherapy after autologous BMT. Allogeneic BMT should be preferable to autologous BMT in younger patients with lymphoma.

Adolescent↗

Preclinical studies using immobilized OKT3 to activate human T cells for adoptive immunotherapy: optimal conditions for the proliferation and induction of non-MHC-restricted cytotoxicity.

In order to obtain large numbers of T cells for adoptive immunotherapy after bone marrow transplantation (BMT), we optimized conditions for long-term proliferation of T cells that exhibit non-MHC-restricted cytotoxicity using immobilized anti-CD3 (OKT3) activation and culture in IL-2. Proliferation and cytotoxicity directed at Daudi, K562, and B cell lines were used to determine (1) the optimal concentration of IL-2 and the optimal time of exposure to immobilized OKT3 for maintaining growth and cytotoxicity, (2) the starting populations that can be used, (3) the T cell subsets that mediate cytotoxicity, and (4) the optimal medium and concentration of serum for maintaining growth and cytotoxicity. Peripheral blood lymphocytes (PBL) activated with OKT3 would proliferate and mediate cytotoxicity at IL-2 doses as low as 30 IU/ml. Increasing the IL-2 concentrations beyond 600 IU/ml did not augment the proliferative or cytotoxic responses of PBL. A 24-hr incubation on OKT3 was sufficient to activate PBL. Increasing the incubation time on OKT3 from 24 to 72 hr did not significantly enhance cytotoxicity. Comparisons between PBL and purified T cells (E-rosette) indicated that either cell population could be activated with OKT3 in the presence of IL-2 to proliferate and mediate non-MHC-restricted cytotoxicity. Purified populations of CD4+ or CD8+ T cells demonstrated equivalent proliferation and cytotoxicity when activated using IL-2 and OKT3. With equal concentrations of human or fetal bovine serum, RPMI 1640 and X-Vivo 10 were comparable for supporting proliferation and cytotoxicity. These conditions are being used to activate and expand T cells for clinical trials that involve infusing activated T cells into recipients after autologous BMT.

Blood Physiological Phenomena↗

Graft failure in children receiving HLA-mismatched marrow transplants with busulfan-containing regimens.

Identifying risk factors that lead to graft failure may reduce morbidity and mortality after bone marrow transplantation (BMT) for hematologic malignancies. We evaluated engraftment of all patients with acute myelogenous leukemia (AML), chronic myelogenous leukemia (CML) and myelodysplastic syndrome (MDS) receiving an unmanipulated marrow allogeneic BMT at the Detroit Medical Center from 1987 to 1992 using a busulfan, cyclophosphamide +/- cytarabine preparative regimen. Three of 118 patients had graft failure (2.5%; (95% confidence interval (CI) 0.7%, 6.4%). Graft failure was high in patients < or = 15 years with 3 of 12 patients with failure (25.0%) compared with 0 of 106 patients > 15 years (p = 0.002). Failure to engraft was not seen in HLA-identical (related or unrelated) donor transplants (0 of 103) whereas 3 of 15 HLA-mismatched donors failed (p = 0.003). Patient diagnosis, locus of HLA-mismatch, cytarabine in the preparative regimen, marrow cell dose and the relative reactive index (RRI) were not significant factors. Altered busulfan kinetics secondary to young age was probably not a major factor since 8 of 8 HLA-identical donor transplants engrafted in children. These findings demonstrate that patients receiving an unmanipulated marrow graft using busulfan-containing regimens were at a high risk for graft failure only if they were < or = 15 years of age and had an HLA-mismatched donor. More immunosuppressive preparative regimens, possibly including total body irradiation, should be considered to prevent potential graft failure in children.

Adolescent↗

Phase I study of alpha-interferon augmentation of cyclosporine-induced graft versus host disease in recipients of autologous bone marrow transplantation.

To explore the augmentation of cyclosporin-induced graft-versus-host disease (GVHD) in autologous bone marrow transplantation (BMT), we conducted a phase I dose escalation trial of interferon (IFN)-alpha 2a. A dose of either 1 or 3 x 10(6) units of IFN-alpha 2a was given by daily sc injection starting on day 0 of BMT and continuing for 28 days. Cyclosporine (CYA) was also started on day 0 of BMT at a dose of 1 mg/kg/day for 28 days. We enrolled 22 patients (median age 43 years, range 19-55 years, male/female ratio = 9/13) which included 11 patients with lymphoma, 5 patients with Hodgkin's disease, 4 patients with AML and 1 patient each with acute lymphoblastic leukemia (ALL) and myeloma. Patients were divided into four groups: two control groups received either CYA or IFN-alpha 2a alone and the other two groups received IFN-alpha 2a at a dose of either 1 x 10(6) or 3 x 10(6) units/day sc concomitantly with CYA for 28 days. IFN-alpha 2a treatment was terminated early in 5 patients: 2 patients receiving IFN-alpha 2a at a dose of 3 x 10(6) units/day developed intractable fatigue, nausea and vomiting and 3 other patients had life-threatening transplant-related complications not related to IFN-alpha 2a (1 patient receiving 3 x 10(6) units/day, and 2 receiving 1 x 10(6) units/day). These patients were considered not evaluable. Of the 17 evaluable patients, all 13 who received IFN-alpha 2a developed GVHD regardless of whether they received CYA whereas only 2 of the 4 patients who received CYA alone developed detectable GVHD.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Constitutive and mitogen-stimulated cytokine mRNA expression by peripheral blood mononuclear cells from most autologous and allogeneic bone marrow transplant recipients is intact.

The immunodeficiency that occurs after human bone marrow transplantation (BMT) leaves BMT recipients susceptible to fatal infections. Although cytokines are critical for coordinating immune responses and immune reconstitution after BMT, there are still gaps in our knowledge about the expression of mRNA for cytokines in peripheral blood mononuclear cells (PBMC) after BMT. Therefore, we systematically studied cytokine gene expression by PBMC from 11 allogeneic and four autologous BMT recipients from 111 to 837 days after BMT and compared the results with PBMC from seven normal controls tested in parallel. PBMC were examined for mRNA expression for IL-2r alpha, IL-2, IL-3, IL-4, IL-6, and IL-7 using reverse transcription polymerase chain reaction (RT/PCR). PBMC from 11 allogeneic recipients constitutively expressed mRNA for IL-2r alpha in 2 of 11 and IL-2 in 1 of 9 samples tested whereas the same PBMC constitutively expressed mRNA for IL-3 in 8 of 11, IL-4 in 3 of 7, IL-6 in 6 of 7 and IL-7 in 3 of 6 samples tested. After PHA/PMA stimulation, PBMC from the same recipients frequently expressed mRNA for IL-2r alpha in 9 of 11, IL-2 in 8 of 9, IL-4 in 3 of 7 and IL-6 in 7 of 7. PBMC from four autologous recipients (two short-term and two long-term) frequently constitutively expressed mRNA for IL-2r alpha (3 of 4) IL-2 (3 of 4), and IL-3 (4 of 4). Stimulation of PBMC from the autologous recipients did not alter cytokine expression.(ABSTRACT TRUNCATED AT 250 WORDS)

Anemia, Aplastic↗