Patients with lupus nephritis pose a therapeutic challenge and stimulate investigation of innovative treatment strategies. Although patient survival and renal function outcomes have improved over the last 4 decades, contemporary immunosuppressive regimens are not consistently effective and often require extended courses associated with insidious toxicities. Several strategies are under investigation to induce remissions more rapidly and to reduce the risk of long courses of cytotoxic drug therapy. The combination of pulse methylprednisolone and pulse cyclophosphamide may be more effective than pulse cyclophosphamide alone for patients with relatively severe proliferative lupus nephritis. Ongoing clinical studies evaluate the risk/benefit of other intensive induction regimens (eg, combination fludarabine with relatively low-dose pulse cyclophosphamide). A particularly vigorous strategy employs immunoablative cyclophosphamide with or without stem cell rescue. Several studies of sequential immunosuppressive therapy are in progress. It is anticipated that long-term toxicities can be lessened by substituting various maintenance agents (eg, azathioprine or mycophenolate mofetil) after initial cyclophosphamide therapy has induced a renal response. Additional information is needed to determine the role of this strategy. Furthermore, a number of standard and experimental immunosuppressive regimens (that do not include cyclophosphamide) are under investigation as well. Innovative approaches (eg, costimulatory blockade) offer the hope of more effective treatments without the risks of contemporary regimens.
Autoreactive alpha beta T cells have been implicated as playing a primary pathogenic role in a group of diseases characterized by chronic muscle inflammation known as the idiopathic inflammatory myopathies (IIM). gamma delta T cells, a distinct and enigmatic class of T cells, play a less certain role in a variety of human autoimmune diseases including the IIM. In an attempt to understand the significance of gamma delta T cells in the IIM, we utilized a sensitive polymerase chain reaction (PCR) technique to evaluate gamma delta T cell receptor (TCR) gene expression in 45 muscle biopsies obtained from 42 IIM patients (17 polymyositis, 12 dermatomyositis, and 13 inclusion body myositis). gamma delta TCR gene expression was not detected in 36 specimens, the majority of muscle biopsies surveyed. gamma delta TCR gene expression by muscle-infiltrating lymphocytes was detected among nine clinically heterogeneous patients. We further analysed the junctional sequence composition of the V gamma 3 and V delta 1 transcripts, whose expression was prominent among gamma delta positive patients. DNA sequence analysis of V gamma 3 amplification products from two patients revealed the presence of several productively rearranged transcripts with amino acid sequence similarities within the V gamma 3-N-J gamma junctional domain. No amino acid sequence similarities were evident within the V delta-N-D delta-N-J delta region of V delta 1 transcripts amplified from four patients, although a distinct and dominant clonotype was detected from each patient. Our cumulative data suggest that unlike alpha beta T cells, gamma delta T cells do not play a prominent pathologic role in the IIM. In fact, the sporadic nature of gamma delta TCR gene expression detected among these patients implies that gamma delta T cell infiltration, when it occurs, is a secondary event perhaps resulting from non-specific inflammatory processes.
An autosomal recessive deficiency of acid alpha-glucosidase (GAA), type II glycogenosis, is genetically and clinically heterogeneous. The discovery of an enzyme-inactivating genomic deletion of exon 18 in three unrelated genetic compound patients--two infants and an adult--provided a rare opportunity to analyze the effect of the second mutation in patients who displayed dramatically different phenotypes. A deletion of Lys-903 in one patient and a substitution of Arg for Leu-299 in another resulted in the fatal infantile form. In the adult, a T-to-G base change at position -13 of intron 1 resulted in alternatively spliced transcripts with deletion of exon 2, the location of the start codon. The low level of active enzyme (12% of normal) generated from the leakage of normally spliced mRNA sustained the patient to adult life.
Antitopoisomerase I autoantibodies are highly specific of scleroderma and are mainly IgG. The present study was designed to evaluate the prevalence of each IgG antitopoisomerase I subclass. An ELISA for the detection of IgG antitopoisomerase I subclasses was standardized and used to study the antibodies from 49 antitopoisomerase I-positive patients identified from a total of 541 patients. Correlations and multivariate analysis were performed to determine the frequency of associations between the IgG antitopoisomerase I subclasses. All IgG antitopoisomerase I subclasses were found. Twelve patients (24.5%) had all four IgG antitopoisomerase I subclasses, 13 (26.5%) had three, 16 (32.7%) had two, and 7 (14.3%) had only one antitopoisomerase I subclass. The presence of all four IgG antitopoisomerase I subclasses suggests that this specific B-cell is the target of multiple activation pathways which indicate that there is a complex T-cell–cytokine-driven process. Together with the absence of other autoantibodies in these sera, our results support the concept of a multiple but highly selected and chronic B-cell activation in scleroderma patients with antitopoisomerase I.
The idiopathic inflammatory myopathies (IIM) are a heterogeneous group of diseases in which autoreactive T cells are thought to play a pathogenetic role. We have determined the pattern of TCR-alpha beta gene expression by muscle-infiltrating lymphocytes within clinically and serologically defined groups of IIM patients. We utilized the PCR to study TCR V gene expression in muscle biopsies from nine polymyositis (PM) and eight dermatomyositis (DM) patients, all of whom had autoantibodies directed against histidyl-transfer RNA synthetase (anti-Jo-1 autoantibodies). While the TCR repertoire in DM patients was generally polyclonal, an oligoclonal profile characterized PM patients. Certain V gene families were predominantly expressed; V alpha 1 and V beta 6 gene families were detected in 82 and 91% of PM biopsies, respectively. TCR expression was characterized further by analyzing J gene usage from four PM patients expressing the V beta 6 gene. Sequence analysis of 40 independent recombinants (10 per patient) identified only seven V beta 6 clonotypes and restricted usage of the related J beta 2.1, -2.3, and -2.7 genes. These data, describing predominant TCR V and J gene usage by muscle-infiltrating lymphocytes in myositis patients, suggest that Ag-driven T cell responses may play a primary role in mediating some forms of the IIM.