Immunodeficiency diseases.
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Biomedical subjects
Publications and source records attributed to R H Buckley.
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Adenosine deaminase (ADA) deficiency and its biochemical consequences cause severe combined immunodeficiency (SCID). Treatment strategies, designed to correct the biochemical abnormalities, include transplantation of matched bone marrow or haploidentical bone marrow stem cells, repeated partial exchange transfusions with frozen irradiated human red blood cells (RBC), or weekly injection of polyethylene glycol-modified bovine ADA (PEG-ADA). To evaluate the effect of these therapeutic options, we studied in vitro T-cell function and in vivo antibody responses to the T-cell-dependent neoantigen, bacteriophage phi X174, in 10 children with ADA-deficient SCID. In untreated patients, T-cell function was severely depressed, and only minute amounts of antibacteriophage antibody were produced. Transplantation of bone marrow from a matched sibling (one patient) or a phenotypically matched parent (one patient) resulted in a stable graft, normal T-cell function, and substantial but subnormal antibody titers to bacteriophage, with reduced memory and impaired switch from IgM to IgG. Patients receiving T-cell-depleted haploidentical bone marrow stem cells had markedly depressed antibody responses for as long as 3 years posttransplantation, despite rapidly improving T-cell function that became normal in two of four patients. Two methods of enzyme replacement were explored. During treatment with human RBC transfusions, antibody responses to bacteriophage were as severely depressed as in untreated ADA-deficient patients. Treatment with weekly injections of PEG-ADA resulted in normalization of T-cell numbers in all four patients, normal or near-normal T-cell function in two, and mildly but variably improved T-cell function in the other two patients. Quantitatively and qualitatively normal antibody responses to bacteriophage were observed in three of four patients. Assessment of antibody responses to immunization with bacteriophage phi X174 is a useful method to monitor humoral immune function in treated ADA-deficient patients and can be used to estimate when intravenous immunoglobulin (IVIG) prophylaxis may be safely discontinued.
Pokeweed mitogen (PWM) suppressed rhIL-4-induced IgE synthesis in a concentration-dependent manner. When rhIL-4 was present from Day 0, PWM added to cultures on Day 0 or 3 inhibited MNC IgE synthesis but not when it was added on Day 6 or later. The concentration of interferon-gamma (IFN-gamma) in MNC culture supernatants varied directly with the quantity of PWM added. Conversely, rhIL-4-stimulated MNC culture IgE concentrations varied inversely with the dose of PWM added and the IFN-gamma concentrations induced. The addition of a rabbit polyclonal neutralizing anti-human IFN-gamma antibody to rhIL-4 plus PWM-stimulated cultures partially or completely reversed PWM-induced inhibition of rhIL-4-induced IgE synthesis. PWM failed to inhibit rhIL-4-induced IgE synthesis by isolated B cells cocultured with monocytes and T cells from a clone unable to produce IFN-gamma message or protein. These findings are consistent with the postulate that PWM inhibits rhIL-4-induced IgE synthesis by inducing the production of IFN-gamma.
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T cell-depleted haploidentical (parental) bone marrow stem cell transplants are given to most infants with the syndrome of severe combined immunodeficiency (SCID) because they have no available HLA-identical sibling potential donors. Since they usually do not undergo cytoreduction prior to transplantation, these children later demonstrate mixed hematopoietic chimerism. Most often, T cells (but usually not B lymphocytes, macrophages, or other hematopoietic cells) can be shown to be of donor type. The origin of natural killer (NK) cells in such chimeras has not been reported. Two lymphocyte lines derived from the CD16+ fraction of an adenosine deaminase (ADA)-deficient male SCID's blood mononuclear cells (MNC) 13 months following maternal marrow stem cell transplantation demonstrated typical phenotypic and functional characteristics of NK cells after expansion. Karyotyping showed both lines to be XX. Thus, NK cell engraftment can occur in SCID infants who have not been conditioned, even when significant NK cell function is present before transplantation.
To investigate whether an underlying defect in antibody (Ab)-forming capacity could contribute to the infection susceptibility of patients with hyper-IgE syndrome, we evaluated 11 such patients for their responses to bacteriophage phi X174 (phi X174), diphtheria and tetanus toxoids, and pneumococcal (Pneumovax) and Hemophilus influenzae vaccines. Three of nine patients immunized with phi X174 had normal primary and secondary Ab responses, five had accelerated declines in their titers after initially normal primary Ab responses and lower than normal secondary Ab responses, and two of the latter patients failed to switch normally from IgM to IgG Ab production. Only one of 10 patients tested had normal Ab responses to diphtheria toxoid, and postimmunization antitetanus titers were abnormally low in five of the 10 patients tested. Serum Abs to H. influenzae polyribose phosphate were protective in seven of the eight immunized patients. Five of the nine patients administered Pneumovax had poor Ab responses to at least one of the pneumococcal serotypes 7, 9, or 14. Abnormal antipolysaccharide responses did not correlate with IgG2 deficiency. All patients responded with protective Ab levels to type 3. Thus, patients with hyper-IgE syndrome are heterogeneous with respect to their Ab-forming capacities. Ab deficiency may contribute to infection susceptibility in some of these patients.
To investigate whether B cells from patients with the hyper-IgE syndrome are more sensitive to the effects of interleukin-4 in vitro than B cells of normal or atopic individuals, we stimulated blood mononuclear cells (MNC) with varying doses of recombinant human interleukin 4 (rhIL-4) and measured supernatant IgE concentrations after 18 days of culture. Geometric mean spontaneous IgE synthesis after 18 days of culture without rhIL-4 was low (less than 3 ng/ml) and similar for MNCs from nine patients with the hyper-IgE syndrome, nine atopic and nine normal subjects. As found in our previous studies, MNCs from the nine atopic and the nine normal donors produced significant and similar quantities of IgE (geometric mean maximum IgE, 25.2 and 18.7 ng/ml, respectively) when MNCs were stimulated with rhIL-4. MNCs from both donor groups had similar sensitivity to the concentration of IL-4 eliciting the IgE response. In striking contrast, MNCs from the nine patients with the hyper-IgE syndrome failed to produce significant IgE over that produced spontaneously when MNCs were stimulated by a wide range of rhIL-4 concentrations. Coculture of B cell-enriched subpopulations from patients with the hyper-IgE syndrome with T cell-enriched subpopulations from nonatopic and atopic donors failed to restore responsiveness to rhIL-4. The addition of anti-CD40 monoclonal antibody to MNC cultures did result in enhancement of rhIL-4 IgE synthesis by MNCs from patients with the hyper-IgE syndrome, but the concentration of anti-CD40 required to elicit this enhancement was tenfold higher than for control MNCs.(ABSTRACT TRUNCATED AT 250 WORDS)
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We studied 16 patients with primary disorders of humoral immunity to determine the practicality of infusing intravenous gamma globulin at rates of infusion and concentrations higher than the 4 mg/kg/min and 6% currently recommended. In the first portion of the study, the concentration of Sandoglobulin was increased from 6% to 12%. In the second portion, the flow rate was increased to 5 mg/kg/min, and if no reactions occurred, the time of each successive infusion was decreased by 10 minutes until infusions were completed in 15 to 20 minutes or vasomotor reactions occurred. Thirteen of the 16 patients completed the study; six patients achieved reaction-free rates greater than 15 mg/kg/min, and the other patients achieved rates ranging from 7.1 to 12 mg/kg/min. Seven patients had infusion times less than 30 minutes, with four patients completing infusions in 15 minutes. In the 13 patients who completed the study, there were 14 reactions in 159 infusions, mostly fever and chills, and often at the end or after the infusion. Only one infusion could not be completed because of an adverse reaction. Three patients were not able to complete the study because of adverse reactions; there were seven reactions in 11 infusions in these three patients, although none of the reactions were considered serious. Overall, in this study, most immunodeficient patients (13/16) were able to tolerate infusion rates of Sandoglobulin two to 10 times higher than the standard rates now recommended. The maximal rate of infusion must be individualized, but for carefully selected patients, infusions of 400 mg/kg can be completed in 1 hour or less.(ABSTRACT TRUNCATED AT 250 WORDS)
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Susceptibility to recurrent staphylococcal cutaneous and respiratory infections beginning in infancy associated with extreme hyperimmunoglobulinemia E is a recently described primary immunodeficiency syndrome. Other clinical features include depressed cellular immunity and deficient antibody formation. Recurrent pneumonia and cyst formation with variable persistence and expansion characterized the radiographic couse in 11 patients. Five cysts resolved with continuous antistaphylococcal therapy; 2 were resected without recurrence; and 4 persisted after surgery and/or antibiotics (2--8 years). The cysts had dense, necrotic surfaces with fibrous walls, eosinophilic and other inflammatory cell infiltrates, and frequent, persistent, bronchial connections. Sinusitis (9/9) and mastoiditis (3/4) were also observed radiographically.
A plaque assay that detects human mononuclear blood cells producing immunoglobulin (Ig)M antibody to sheep erythrocytes was investigated for its usefulness in studying B-cell activation and regulation in 24 patients with humoral immunodeficiency. Cells from 3 of 15 patients with common variable agammaglobulinemia produced some plaques (range 40--160/10(6) cells; normal range 80--1240/10(6)), but those from the other 12, from all 7 with x-linked agammaglobulinemia and from the 2 with x-linked immunodeficiency with hyper-IgM failed to produce any detectable plaques. In co-cultures of patient and normal cells a very good correlation was seen between results of the plaque assay and an IgM biosynthesis assay in detecting excessive suppressor cell activity. Cells from 7 of 15 common variable agammaglobulinemics, from 3 of 7 x-linked agammaglobulinemics, and from both patients with hyper-IgM caused significant suppression of IgM biosynthesis and(or) plaque formation by normal cells. The observations in the last two groups and discordance for excess suppressor activity in identical twins with common variable agammaglobulinemia suggest that the activity develops secondarily to whatever their primary defects may be. Culturing non-T cells from common variable agammaglobulinemics exhibiting excessive suppressor cell activity with normal T cells resulted in plaque formation in four of five patients so studied; in all five the suppressor activity was found in the T-cell population. The availability of a plaque assay for the study of blood cells from immunodeficient patients provides a new probe to examine the cellular nature of such defects.
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The clinical and immunologic features of 11 patients with transient hypogammaglobulinemia of infancy are reported and compared with those of the 16 patients previously reported. Seven were re-evaluated three to ten years after infancy. Two groups were identified: six who were found by screening relatives of patients with other types of immunodeficiency and five whose sera were sent because the patients were having frequent or unusual infections. Those in the first group had no significant health problems during early infancy or childhood. In the second group recurrent infection was a problem during early infancy but not in later years; the latter patients also frequently had other health problems. Serum immunoglobulin concentrations were entirely normal at the last evaluation in five of the six THI patients with immunodeficient relatives. In the second group, the concentrations of one or more immunoglobulin classes, although greatly increased, were still below the normal range. All 11 patients were found to be capable of synthesizing antibodies to human type A and B erythrocytes and to diphtheria and tetanus toxoids, usually by 6 to 11 months of age, and well before immunoglobulin concentrations became normal. Lymphocyte studies in vitro showed no abnormalities in the percentages of cells in the different subpopulations or in their responses to the mitogens. None of the patients was given immune serum globulin replacement therapy and none experienced serious infections during their period of follow-up. The finding of only 11 cases of THI among over 10,000 patients whose sera were sent for immunoglobulin studies over a 12-year period suggests that this is not a common entity.
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To gain insight into a possible role for antibody-dependent cell-mediated cytotoxicity in vivo, we examined the ability of leukocytes from 28 patients with primary immunodeficiency and from 20 normal controls to lyse three different types of antibody-coated targets in vitro. Mean cytotoxic indices +/-1 SD elicited by unfractionated mononuclear cells from normal controls were 28.74+/-13.26 for human HLA antibody-coated lymphocyte targets, 42.79+/-8.27 for rabbit IgG antibody-coated chicken erythrocyte targets, and 47.58+/-10.34 for human anti-CD (Ripley)-coated O+ erythrocyte targets. Significantly (P=<0.05) lower than normal mean cytotoxic indices against lymphocyte targets were seen with effector cells from 10 patients with X-linked agammaglobulinemia (3.7+/-4.33), in 10 with common variable agammaglobulinemia (16.05+/-7.74), in 3 with immunodeficiency with hyper IgM (18.41+/-4.88), and in 2 with severe combined immunodeficiency (3.94+/-0.3). Antibody-dependent cytotoxicity against chicken erythrocytes was significantly (P=<0.05) lower than normal only in the common variable agammaglobulinemic group (33.33+/-12.3) and against human erythrocytes only in the common variable (34.36+/-9.59) and hyper IgM (27.54+/-0.66) groups. Rosette and anti-F(ab')(2) depletion studies with normal leukocytes indicated that a nonadherent, nonphagocytic, non-Ig-bearing, non-C receptor-bearing, Fc receptor-bearing lymphocyte was the only effector capable of lysing HLA antiboyd-coated lymphocyte targets. Patients with infantile X-linked agammaglobulinemia and severe combined immunodeficiency appear to have a marked deficiency in this type of effector cell function.
Natural killing (NK) capacity was evaluated in peripheral blood mononuclear cells from 14 patients with well defined primary immunodeficiency disorders and compared with the activity of those cells in antibody-dependent cell-mediated cytotoxicity (ADCC) assays against antibody-coated erythrocyte (killed primarily by monocytes) and lymphoid or tumor targets (killed exclusively by lymphoid cells). A selective inability to lyse antibody-coated lymphocyte targets was observed with cells from patients with x-linked agammaglobulinemia, suggesting the involvement of either a different lymphocyte subpopulation or membrane receptor for NK and ADCC, or that a different functional susceptibility exists for the two types of killing. The only immunodeficiency state in which lymphocyte NK activity was found to be lacking was severe combined immunodediciency disease.
We observed persistent ECHOvirus infection of the central nervous system, as defined by continued presence of isolatable virus in cerebrospinal fluid, in five patients with agammaglobulinemia. The immunologic deficit in each was characterized by absence of surface-immunoglobulin-bearing B lymphocytes and of lymph-node cortical follicles, but normal T-cell function. ECHOviruses 30, 19, 9 and 33 were recovered from cerebrospinal fluid for periods varying from two months to three years. The patients had few signs of acute central-nervous-system infection. Three of the five patients had a dermatomyositis-like syndrome, with peripheral lymphocytes that reacted with anti-human leukemia-specific primate and rabbit serums in a cytotoxicity assay. These data suggest that intact B-cell function is essential for eradication of ECHOvirus infection of the central nervous system.