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Biomedical subjects

R B Colvin

Publications and source records attributed to R B Colvin.

At least 109 records · Page 6Linked to original sources

DNA flow cytometry of epithelioid sarcoma.

DNA ploidy of paraffin-embedded tissue from 11 patients with epithelioid sarcoma and 20 control specimens (granuloma annulare and sarcoid) was studied. DNA aneuploidy was found in 64% of the epithelioid sarcomas and in none of the control samples. Aneuploidy did not correlate with necrosis, vascular invasion, or mitotic rate. There was also no association of aneuploidy with adverse outcome.

Aneuploidy↗

Expression of cell adhesion molecules in human melanoma cell lines and their role in cytotoxicity mediated by tumor-infiltrating lymphocytes.

The role of cell adhesion molecules (CAM) LFA1, ICAM-1, LFA3, VLA1, VLA4, CD29, CD44, and CD56 in tumor-infiltrating lymphocyte (TIL) and natural killer cell (NK)-mediated killing of target cells was studied. Melanoma cell lines and autologous TIL were derived from seven patients with metastatic melanoma, and cytotoxicity assays were done in the presence and absence of monoclonal antibodies (MoAb) to CAM expressed on melanoma cells or TIL. The melanoma cell lines analyzed were all positive for CD29 and LFA3 expression, negative for LFA1 expression, but showed variable expression of ICAM-1, VLA1, VLA4, CD44, and CD56. The effects of anti-CAM antibodies on TIL-mediated melanoma killing fell into three categories: (1) consistent inhibition of TIL-mediated killing was observed when melanoma cells were pretreated with anti-ICAM1 and anti-LFA-3 MoAb or when TIL were pretreated with anti-LFA1; (2) no effect was observed when melanoma cells were pretreated with anti-CD56; or (3) a discreet, but significant, inhibition was observed when target cells were pretreated with anti-CD29, anti-VLA1, anti-VLA4, and anti-CD44. Cytotoxicity was significantly enhanced by pretreatment of target cells with gamma-interferon (gamma-IFN), although gamma-IFN did not augment surface expression of the CAM studied. The NK-mediated killing of K562 cells was blocked by anti-LFA1, anti-CD18, and anti-ICAM, and partially inhibited by anti-CD44 MoAb. Together, these results suggest that several accessory CAM may play a role in regulating cellular cytotoxicity. Because cytotoxicity generally correlated with the level of expression of CAM in melanoma cells, weak CAM surface expression may provide a means for melanomas to escape immune surveillance.

Antibodies, Monoclonal↗

DNA content in juvenile granulosa cell tumors of the ovary: a study of early- and advanced-stage disease.

Paraffin-embedded tissue from 38 patients with early- and advanced-stage juvenile granulosa cell tumor (JGCT) of the ovary was analyzed by flow cytometry to investigate whether the DNA content is related to the histologic features, stage, or clinical outcome. Thirty-three cases were suitable for analysis: twenty-seven Stage Ia, two Stage Ic, and four Stage III. Eighteen (55%) tumors were DNA diploid and fifteen (45%) tumors were DNA aneuploid with a mean S-phase fraction (SPF) of 13.6% and a range of DNA indices from 1.0 to 2.2. Neither the DNA ploidy nor the SPF was associated with the stage of the disease. An analysis of the relation between DNA content and histopathologic features revealed that aneuploidy was associated with high mitotic rates and to a lesser extent with high-grade nuclear atypia. DNA aneuploidy was not associated with aggressive behavior of Stage Ia JGCTs. However, among the four patients with Stage III tumors, the two with diploid, low-SPF tumors were alive and well, whereas the two with aneuploid, high-SPF tumors developed recurrences or died. These data suggest that further studies on the prognostic significance of flow cytometric analysis of DNA content in advanced-stage JGCTs are warranted.

Adolescent↗

Comparative studies of isolated CD3: CD8, CD3: CD3, and monovalent CD3 binding on CD8+ T-cell activation: model of progressive T-cell receptor aggregation synergism.

The TCR and CD8 complexes of CD8+ T cells bind to different regions of MHC class I molecules and both play important roles in the response of the CD8+ T cells to Ag/MHC on APCs. In this report, we mimicked common MHC binding with an anti-CD3:anti-CD8 (CD3,8) BSMAB to isolate the effect of CD3: CD8 pairing, compared this with the effect of CD3: CD3 pairing by the parental bivalent anti-CD3 MAB, and with monovalent anti-CD3 binding by an anti-CD3: anti-CD4 (CD3,4) BSMAB. CD3: CD8 pairing induced an increase in cytosolic free [Ca2+] 1.5 to 3.0-fold greater than the increase induced by CD3: CD3 pairing whereas monovalent CD3 binding induced only 20%-30% of the increase. Postbinding receptor migration studies suggested that microaggregation increased from monovalent CD3 binding to CD3: CD3 pairing to CD3: CD8 pairing. Further studies revealed that progressively higher concentrations of antibodies were needed from CD3,8 to CD3,3 to CD3,4 to initiate the same degree of DNA synthesis. These results demonstrated that Ti/CD3 and CD8 can indeed be bridged by a single molecule. A model of direct CD8: CD3 synergism was raised as a possible explanation for the enhanced activation induced by CD3: CD8 pairing. The observed parallel between all three parameters and the number of TCRs that can be directly linked by the Abs raised a nonmutually exclusive model whereby CD3 binding induces activated TCR intermediaries (aTCRi) that progressively synergize with other adjacent aTCRis. In this model, this dominant inter-aTCRi synergism may be enhanced by the di- and multimeric CD8 alpha chains serving as aTCRi-aggregation foci.

Antigen-Antibody Reactions↗

Deoxyribonucleic acid flow cytometry in invasive bladder carcinoma: a possible predictor for successful bladder preservation following transurethral surgery and chemotherapy-radiotherapy.

Tumor deoxyribonucleic acid (DNA) ploidy was evaluated as an objective parameter that may correlate better with the responsiveness of bladder cancer to chemotherapy plus radiotherapy than do clinical features or histopathological subtypes. A total of 40 patients with localized muscle-invading bladder cancer (clinical stages T2 to T4) underwent prospective treatment on a potential bladder preserving protocol. Tumors of 37 of the 40 patients were analyzed by DNA flow cytometry of multiple paraffin embedded specimens. Transurethral resection, neoadjuvant chemotherapy and 40 Gy. radiotherapy plus cisplatin were followed by urological reevaluation of the tumor (a complete response required a negative biopsy and a negative urine cytology study). A total of 7 noncomplete response patients underwent immediate radical cystectomy whereas the full bladder sparing treatment (radiotherapy to 64.80 Gy. plus cisplatin) was given to 23 complete response patients and 7 noncomplete response patients who were unsuited for surgery. Of the tumors 22 (59%) were purely aneuploid and 10 (27%) were purely diploid. Five tumors contained aneuploid and diploid patterns in different tumor specimens (partly diploid). Current status with a 30-month median followup in surviving patients includes an 82% overall survival rate in the aneuploid group versus 47% in the diploid/partly diploid group. Of all the patients 68% are free of invasive tumor: 82% in the aneuploid group versus 47% in the diploid/partly diploid group. By multivariate analysis pure aneuploidy was significantly (p = 0.05) correlated with freedom from invasive tumor in the bladder (either as persistence or as recurrence) and approached significance (p = 0.08) in correlation with overall patient survival. A longer observation time will be required to confirm this unexpectedly good outcome for patients with pure aneuploid tumors. We hypothesize that pretreatment DNA ploidy status may become a clinically useful prognostic factor in selecting patients for successful treatment with transurethral surgery and neoadjuvant chemotherapy plus radiotherapy.

Clinical Protocols↗

The effects of OKT4A monoclonal antibody on cellular immunity of nonhuman primate renal allograft recipients.

Significant differences in cellular responses were found among allograft recipients treated with various OKT4A mAb protocols. Recipients of multiple infusion low-dose and 2-bolus OKT4A immunosuppressive regimens regularly showed potent donor-specific cytotoxic CD8+ and CD4+ intragraft T cells and donor-reactive PBMC in MLC tests. In contrast, PBMC isolated from recipients of high-dose OKT4A therapy generally showed very weak or no response to donor-antigens during the later posttransplant periods. Furthermore, an absence of IL2-responsive intragraft cells was found to correlate with stable graft function in these recipients. We conclude that OKT4A mAb, in high doses, can block allosensitization and induce donor-specific nonresponsiveness in vivo. An OKT4A-based therapy, therefore, may have the potential of inducing long-lasting donor-specific immunosuppression, or even tolerance.

Animals↗

Topical fibronectin in an alkali burn model of corneal ulceration in rabbits.

We studied the effect of topical fibronectin on epithelial wound healing and ulceration in alkali-burned rabbit corneas. After the first 56 hours, fibronectin accelerated complete surface reepithelialization to 4.3 +/- 2.3 days. Control alkali-burned corneas treated with phosphate-buffered saline or albumin did not resurface for 6.7 +/- 3.7 days and 6.2 +/- 2.5 days, respectively. When recurrent epithelial defects occurred, the time required for healing was also significantly accelerated by fibronectin treatment. Corneal ulceration developed in 25 of 28 and 15 of 18 saline and albumin-treated control eyes, respectively; only nine of 18 fibronectin-treated eyes ultimately ulcerated. Immunohistologic studies showed that the initially deposited fibronectin-fibrinogen matrix on the surface of burned corneas had disintegrated by 72 to 96 hours after wounding, corresponding clinically to the time of secondary epithelial breakdown. A prominent fibronectin-fibrinogen matrix remained on the surface of fibronectin-treated corneas, presumably aiding surface reepithelialization and decreasing corneal ulceration.

Administration, Topical↗

Selective reduction and proliferation of the CD4+ and CD8+ T cell subsets with bispecific monoclonal antibodies: evidence for inter-T cell-mediated cytolysis.

CD3,4 (anti-CD3:anti-CD4) bispecific monoclonal antibodies (BSMAB) cause a profound decrease in CD4+ T cells and a marked proliferation of CD8+ T cells in peripheral blood mononuclear cells in vitro. CD3,8 (anti-CD3:anti-CD8) BSMAB causes a reciprocal decrease in CD8+ T cells and a proliferation of CD4+ T cells. The major effector of CD4+ T cell cytolysis in the presence of CD3,4 resides in the CD8+ T cell population. In contrast, both the CD4+ and CD8+ T cells are effective mediators of cytolysis of the CD8+ T cells in the presence of the CD3,8. The likely underlying mechanism in each case is bridging of the CD4 and CD8 of the target cells to the CD3 complexes of the effector cells by antibodies, mimicking the natural encounter between a cytolytic T cell and its target. Proliferation studies indicated that CD3,4 and CD3,8 each can induce proliferation of both CD4+ and CD8+ T cells in the presence of accessory cells. These results suggest that the major selection of the BSMABs occurs via selective destruction of one T cell subset with concurrent stimulation of the remaining CD3+ population. Potential applications of the selective destruction and proliferation include study and manipulation of the T cell subsets in HIV infections, tumor infiltrating lymphocytes, autoimmune diseases, and graft rejection.

Antibodies, Monoclonal↗

Application of DNA flow cytometry from paraffin-embedded tissue to the diagnosis of mycosis fungoides.

The distinction of mycosis fungoides from benign inflammatory lesions is sometimes difficult by conventional histological techniques. Aneuploidy, a feature often associated with malignant tumors, can be assessed even in tissue routinely processed in paraffin using the flow cytometric technique of Hedley and associates. In many tumor systems, there are significant diploid clones. We have evaluated the flow cytometric DNA ploidy of paraffin-embedded tissue in the diagnosis and prognosis of mycosis fungoides (MF). We studied 22 cases of MF and 10 control cases of inflammatory skin lesions with epidermal involvement. Aneuploidy was found in 27% of the MF cases, but in none of the controls (ED). Aneuploid features were seen in 23% of tissues from early stage disease. Aneuploidy did not correlate with atypia, epidermotropism, or number of mitoses. There was a trend towards showing adverse outcome in those patients with aneuploid lesions. The detection of aneuploidy might be helpful for early diagnosis of MF.

Aneuploidy↗

Laboratory monitoring of therapy with OKT3 and other murine monoclonal antibodies.

The first monoclonal antibody (MAb) approved by the Food and Drug Administration (FDA) for therapeutic use, OKT3, is now a standard treatment for organ allograft rejection. This article reviews the interpretation of laboratory tests used to manage patients treated with MAb. Emphasis is placed on OKT3, with which the experience is also the greatest, although comparisons with other MAbs in clinical trials is also discussed.

Animals↗

In vivo effects of monoclonal antibody to ICAM-1 (CD54) in nonhuman primates with renal allografts.

These studies test whether allograft rejection can be blocked by interference with leukocyte adhesion, using a murine IgG2a mAb (R6.5) reactive with monkey ICAM-1 (CD54). In 16 Cynomolgus renal allograft recipients, R6.5 was administered prophylactically as the sole immunosuppressive agent for 12 days (0.01 to 2 mg/kg/day). Survival in 14 recipients with technically successful grafts was significantly prolonged (24.2 +/- 2.4 vs 9.2 +/- 0.6 days for controls; p less than 0.001). Intercellular adhesion molecule-1 (CD54) (ICAM-1) was expressed on vascular endothelium in the kidney and other organs in the monkey in a pattern similar to that in humans. During cellular rejection in controls, ICAM-1 expression increased on endothelial cells, infiltrating mononuclear leukocytes and tubular cells. Biopsies during R6.5 administration showed decreased T cell infiltration (CD2, CD8, CD4) compared with controls and decreased arterial endothelial inflammation. No changes occurred in circulating T cells, aside from variable coating with mIgG. In six of eight other recipients R6.5 administration (0.5 to 2 mg/kg/day for 10 days) reversed preexisting rejection that resulted from taper of Cyclosporine to subtherapeutic levels. Responding grafts showed decreased edema and hemorrhage but no consistent change in the infiltrate. At 1 h after the first dose, mouse IgG deposited primarily on the graft vascular endothelium without any change in the inflammatory infiltrate. Mouse IgG also deposited on the endothelium of normal organs without eliciting an inflammatory response and was cleared from the endothelium within 4 days. Inasmuch as the principal site of binding was the vascular endothelium, we hypothesize that the antibody blocks adhesion to graft ICAM-1 molecules on the vessels. Anti-ICAM-1 also binds to recipient cells and may interfere with Ag presentation and/or T cell interactions. Whatever the mechanism(s), these studies indicate that an anti-ICAM-1 antibody inhibits T cell mediated injury in vivo, and that ICAM-1 is a critical molecule in the pathogenesis of allograft rejection.

Animals↗

Clonal analysis of graft-infiltrating lymphocytes from renal and cardiac biopsies. Dominant rearrangements of TcR beta genes and persistence of dominant rearrangements in serial biopsies.

Graft-infiltrating lymphocytes from both human renal and cardiac allografts were propagated in interleukin 2 in order to evaluate rearrangements in the T-cell receptor (TcR) beta-chain genes. Individual biopsies from renal allografts during episodes of cellular rejection were examined as well as multiple biopsies of heart transplant patients from whom endomyocardial samples were taken prior to, during, and after episodes of rejection. TcR beta-chain rearrangements were evaluated in Southern blots using DNA extracted from interleukin 2-propagated cells and digested with restriction endonucleases permitting assessment of rearrangements to both C beta 1 and C beta 2. Rearrangements shared among greater than 5% of the "bulk" culture appear as nongermline bands when hybridized with a C beta probe. Single-cell progeny were generated from limiting dilution, and the rearrangements among the cloned progeny compared to the "bulk" of the cultured progeny of graft-infiltrating lymphocytes. The results indicate that "dominant" rearrangements are a common feature of renal allograft-infiltrating lymphocytes (14 of 15 cases examined). Since the number of cells which can be recovered from a given cardiac biopsy may be limiting, evaluation of clonal dominance from these cultures is more difficult to evaluate. However, sharing of "dominant" rearrangements among multiple biopsies from the same cardiac allograft patient indicates an in vivo selection for T cells with the same receptor rearrangement. Analysis of individual clones showed 3/33 clones from a renal allograft sharing the "dominant" rearrangement noted in the bulk culture, but none of these "dominant" clones showed antidonor specificity.(ABSTRACT TRUNCATED AT 250 WORDS)

Biopsy↗

Characterization of lymphokine fibronectin from guinea pig lymphoid cell culture supernatants.

Fibronectins (FN) in guinea pig lymphoid cell culture supernatants have been studied using a panel of polyclonal and monoclonal anti-FN antibodies to clarify their relationship with macrophage agglutination factor (MAggF), an inflammatory lymphokine sharing many properties with this family of high molecular weight glycoproteins. MAggF contained cellular FN epitopes, and was reversibly bound by antibodies specific for cellular FN. Enzyme-linked immunoassay and inhibition of MAggF activity by monoclonal anti-plasma FN antibodies revealed immunoreactive FN in guinea pig lymphoid cell culture supernatants to share three epitopes with plasma FN and to lack a fourth epitope present in plasma FN. Immunoreactive FN in gelatin-affinity purified lymph node cell culture supernatants was polydisperse; MAggF activity (Mr 410 kD) was associated with only 13% of total immunoreactive FN. Although a low molecular weight FN fragment (Mr 67 kD) was associated with MAggF activity in salt-fractionated peritoneal exudate culture supernatants, it was not possible to generate MAggF activity by limited proteolysis of MAggF-inactive, high molecular weight FN in lymph node cell culture supernatants. We conclude that MAggF is a cellular FN containing a number of epitopes in common with plasma FN and suggest it may be a unique species of cellular FN produced by T lymphocytes involved in initiating delayed hypersensitivity reactions.

Animals↗