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Biomedical subjects

Robert A Bray

Publications and source records attributed to Robert A Bray.

6 recordsLinked to original sources

Unappreciated risk factors for transplant patients: HLA antibodies in blood components.

One of the more aggressive approaches in renal transplantation is the use of plasmapheresis (PP) and intravenous immunoglobulin to eliminate donor-directed human leukocyte antigen (HLA) alloantibodies. A potential complication of a PP protocol is iatrogenic hypocoagulability resulting from the removal of coagulation factors. To prevent bleeding, hypocoagulable patients may require transfusions with fresh frozen plasma (FFP) and/or cryoprecipitate (Cryo). Although HLA alloantibodies in these components have been linked to complications, such as transfusion-related acute lung injury (TRALI), whether they cause complications following transfusion into allograft recipients is unknown. The incidence of complications would be dependent, in part, upon the frequency of HLA alloantibodies in the various blood components. In this study, segments from 77 units of FFP, 66 units of Cryo, 106 units of packed red blood cells (RBCs), and 59 units of apheresis platelets (Plts) were tested for antibodies to HLA class I and class II antigens using FlowPRA, an HLA antigen-specific flow cytometric assay. On average, 22% of blood components tested contained HLA alloantibodies, tenfold greater than previously reported. This unappreciated frequency of HLA alloantibodies in blood components may pose a risk to transplant patients requiring transfusions by promoting allograft dysfunction or loss.

Antibodies↗

Adult reserve stem cells and their potential for tissue engineering.

Tissue restoration is the process whereby multiple damaged cell types are replaced to restore the histoarchitecture and function to the tissue. Several theories have been proposed to explain the phenomenon of tissue restoration in amphibians and in animals belonging to higher orders. These theories include dedifferentiation of damaged tissues, transdifferentiation of lineage-committed progenitor cells, and activation of reserve precursor cells. Studies by Young et al. and others demonstrated that connective tissue compartments throughout postnatal individuals contain reserve precursor cells. Subsequent repetitive single cell-cloning and cell-sorting studies revealed that these reserve precursor cells consisted of multiple populations of cells, including tissue-specific progenitor cells, germ-layer lineage stem cells, and pluripotent stem cells. Tissue-specific progenitor cells display various capacities for differentiation, ranging from unipotency (forming a single cell type) to multipotency (forming multiple cell types). However, all progenitor cells demonstrate a finite life span of 50 to 70 population doublings before programmed cell senescence and cell death occurs. Germ-layer lineage stem cells can form a wider range of cell types than a progenitor cell. An individual germ-layer lineage stem cell can form all cells types within its respective germ-layer lineage (i.e., ectoderm, mesoderm, or endoderm). Pluripotent stem cells can form a wider range of cell types than a single germ-layer lineage stem cell. A single pluripotent stem cell can form cells belonging to all three germ layer lineages. Both germ-layer lineage stem cells and pluripotent stem cells exhibit extended capabilities for self-renewal, far surpassing the limited life span of progenitor cells (50-70 population doublings). The authors propose that the activation of quiescent tissue-specific progenitor cells, germ-layer lineage stem cells, and/or pluripotent stem cells may be a potential explanation, along with dedifferentiation and transdifferentiation, for the process of tissue restoration. Several model systems are currently being investigated to determine the possibilities of using these adult quiescent reserve precursor cells for tissue engineering.

Animals↗

Discordance at human leukocyte antigen-DRB3 and protection from human immunodeficiency virus type 1 transmission.

Host human leukocyte antigens (HLAs) integrated into the human immunodeficiency virus (HIV) type 1 envelope could theoretically determine, as in tissue transplants, whether HIV-1 is "rejected" by exposed susceptible persons, preventing transmission. HLA discordance (mismatch) was examined among 45 heterosexual partner pairs in which at least 1 partner was HIV-1 infected and exposure or transmission between partners had occurred. Immunologic discordance at class II HLA-DRB3 (present in the HIV donor partner but absent in the recipient partner) was associated with lack of transmission of HIV-1. Eight (35%) of 23 partner pairs in which HIV-1 transmission did not occur were immunologically discordant at HLA-DRB3, compared with 0 of 11 partner pairs in which HIV-1 transmission did occur (P=.027). Further investigation of the roles of class II HLAs in HIV-1 transmission and as possible components of HIV-1 vaccines should be pursued.

Adult↗

Regulated expression of human histocompatibility leukocyte antigen (HLA)-DO during antigen-dependent and antigen-independent phases of B cell development.

Human histocompatibility leukocyte antigen (HLA)-DO, a lysosomal resident major histocompatibility complex class II molecule expressed in B cells, has previously been shown to be a negative regulator of HLA-DM peptide loading function. We analyze the expression of DO in human peripheral blood, lymph node, tonsil, and bone marrow to determine if DO expression is modulated in the physiological setting. B cells, but not monocytes or monocyte-derived dendritic cells, are observed to express this protein. Preclearing experiments demonstrate that approximately 50% of HLA-DM is bound to DO in peripheral blood B cells. HLA-DM and HLA-DR expression is demonstrated early in B cell development, beginning at the pro-B stage in adult human bone marrow. In contrast, DO expression is initiated only after B cell development is complete. In all situations, there is a striking correlation between intracellular DO expression and cell surface class II-associated invariant chain peptide expression, which suggests that DO substantially inhibits DM function in primary human B cells. We report that the expression of DO is markedly downmodulated in human germinal center B cells. Modulation of DO expression may provide a mechanism to regulate peptide loading activity and antigen presentation by B cells during the development of humoral immune responses.

Adult↗

Conundrums with FlowPRA beads.

In 1969, a study by Patel and Terasaki persuaded the renal transplant community that a pre-transplant cross-match should always be performed between donor and recipient to detect HLA antibodies and prevent hyperacute allograft rejection. Although the role of the cross-match among nonsensitized patients is controversial, its importance among sensitized recipients is undeniable. Over the past 30 years, more sensitive techniques, such as the flow cytometric cross-match (FCXM), were developed to identify low levels of antibodies undetectable by other approaches. The clinical relevance of a positive FCXM, however, has been hotly disputed, with some investigators maintaining that the FCXM is 'too sensitive' and rules out acceptable donor-recipient combinations. An alternative explanation is that the FCXM is non-specific, and, at least in certain situations, identifies non-HLA antibodies that are clinically irrelevant. Recently, a solid phase immunoassay utilizing purified HLA Class I or Class II molecules bound to microparticles (FlowPRA) was developed. Ideally, use of the FlowPRA for the identification of HLA antibodies in recipient sera would help ascertain whether a positive FCXM with donor cells was truly the result of an HLA-specific antibody. As shown here, this may not always be true. In this study, two unexpected serum patterns were observed. Pattern 1: FlowPRA beads were positive (with an associated HLA Class I specificity) and the FCXM with cells expressing the HLA antigen(s) to which the antibody was directed, was negative. Sequence analysis of the HLA antigens reactive with this unexpected antibody suggests that the epitope recognized resides on the floor of the groove, a site generally not expected to generate antibody activity. Pattern 2: FlowPRA beads were negative yet the FCXM was T and B cell positive. Further analysis of the FlowPRA negative/FCXM positive sera using a flow cytometric cell-based panel reactive antibody (PRA) approach revealed those sera to have specific anti-HLA Class I activity. We suspect that both types of antibodies described above have clinical relevance. Thus, a negative or positive FCXM (when the FlowPRA against donor antigens is positive or negative, respectively) is not always a straightforward interpretation.

B-Lymphocytes↗