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C Cordon-Cardo

Publications and source records attributed to C Cordon-Cardo.

At least 199 records · Page 11Linked to original sources

Cell-surface antigens of human lung tumors detected by mouse monoclonal antibodies: definition of blood-group- and non-blood-group-related antigenic systems.

The pattern of antigen expression in human non-small-cell cancers of various histological subtypes has been studied. Mouse monoclonal antibodies (MAbs) were generated following immunizations with cell lines of squamous, adeno- and anaplastic large-cell carcinomas of the lung. Seven non-blood-group-related antigens were defined in addition to 5 antigens related to blood-group determinants. Detailed specificity was established with a large panel of cultured cell lines and normal and neoplastic tissues. MAb F-18 reacted in direct tests with the immunizing squamous lung carcinoma cell line, with 5 out of 5 choriocarcinoma cell lines, but with no other cell lines. No expression of F-18 antigen was observed in any normal or malignant tissue examined. The other 6 non-blood-group-reactive MAbs (F-7, F-8, F-11, F-15, F-16 and F-17) could be distinguished by their reactivity on a panel of cultured cells and tissues. One MAb in this group (F-17) reacted strongly with 19/35 lung tumor cell lines, 32/76 other tumor-derived cell lines, cultured normal kidney cells and fetal lung fibroblasts. This antibody did not react with any normal adult tissues examined, but did react with several cancer tissues including 1/17 lung tumors, 2/4 ovarian cancers and 1/5 colon tumors. Immunoprecipitation tests revealed that 5 of the antigens were glycoproteins: F-18 (Mr greater than 200,000), F-15 (Mr 44,000), F-16 (Mr 90,000), F-17 (Mr 95,000) and F-8 (Mr 95,000). Four MAbs detected Y blood-group antigen (Le(y)), only 2 of which were able to agglutinate O erythrocytes. Another antibody detected X blood-group antigen (Le(x)).

Animals↗

Phase I evaluation of a combination of monoclonal antibody R24 and interleukin 2 in patients with metastatic melanoma.

A combination of recombinant human interleukin 2 (rhIL-2) and mouse monoclonal antibody R24 (recognizing the ganglioside GD3) was evaluated in patients with metastatic melanoma in a phase I trial. rhIL-2 was given at a constant daily dose of 1 x 10(6) units/m2 i.v. over 6 h on days 1-5 and 8-12. R24 was given on days 8-12 at four dose levels (1, 3, 8, and 12 mg/m2 daily). Twenty patients were evaluable for toxicity and response, five at each dose level. The toxicity of the combination was not overlapping and generally mild. There was a rebound peripheral blood T-lymphocytosis at the end of treatment increasing with the dose of R24. The median lymphocyte count on day 12 of treatment was 3108 +/- 554/ml in patients treated at R24 doses of 8 and 12 mg/m2 versus 2239 +/- 672/ml at doses of 1 and 3 mg/m2. This evidence and other data suggested that R24 enhanced IL-2-mediated T-cell activation in vivo. Two patients demonstrated increases in R24-mediated antibody-dependent cellular cytotoxicity for GD3-expressing cells during treatment. rhIL-2 appeared to accelerate the development of human anti-mouse antibody; three patients developed human anti-mouse antibody by the fifth day of R24 treatment, earlier than observed in prior studies using R24 alone and one patient during the first week of rhIL-2 alone, prior to R24 treatment. One patient had a partial response in soft tissue sites lasting 6 months and two patients had minor responses. This clinical trial extends the previous observation that R24 enhances lymphocyte proliferation in vitro.

Adult↗

Altered expression of the retinoblastoma gene product in human sarcomas.

BACKGROUND: The retinoblastoma-susceptibility (Rb) gene is a prototype tumor-suppressor gene originally isolated from patients with heritable retinoblastoma. This gene encodes a nuclear phosphoprotein whose expression is altered in several types of human tumors. METHODS: We studied the expression of the Rb protein in 44 primary and 12 metastatic high-grade human sarcomas by means of immunohistochemical methods and Western blotting. Computerized image analysis was used to quantify the level of Rb gene product in individual tumor cells. The expression of the Rb gene was then correlated with clinical outcome in the patients with primary tumors. RESULTS: Of the 44 patients with primary sarcomas, 13 (30 percent) had tumors with normal, homogeneous expression of the Rb protein in essentially all tumor cells. Thirty-one patients with primary tumors (70 percent) had altered Rb expression; in 18 (40 percent) the Rb protein was heterogeneously expressed, and in 13 (30 percent) it was detected in fewer than 20 percent of the tumor cells. All 12 of the patients with metastatic sarcomas had altered expression of the Rb protein. When the findings in the patients with primary tumors were correlated with clinical outcome, survival was found to be significantly increased in the patients whose tumors had homogeneous Rb expression, as compared with those with either heterogeneous expression (P = 0.026) or no expression (P = 0.012). CONCLUSIONS: Tumors in which the expression of Rb gene product was decreased were more aggressive than tumors in which this protein was expressed by nearly all cells. The Rb gene product may be an important prognostic variable in patients with these tumors.

Adolescent↗

Gene amplification in gastric and esophageal adenocarcinomas.

In a United States series of 28 gastric/esophageal adenocarcinomas of poorly to moderately differentiated histopathology, we detected gene amplification in 21% of the tumors. Using the modified DNA in-gel renaturation assay to detect down to 7-8 copies of amplified DNA sequences, we identified 3 gastric tumors with amplified DNA sequences and confirmed by Southern hybridization analysis that HER-2/neu was amplified greater than 5-fold in these specimens. Immunohistochemical staining of tumor tissue sections with p185 HER-2/neu antibodies demonstrated that only the 3 gastric adenocarcinomas with corresponding HER-2/neu gene amplification displayed membrane immunoreactivity. Amplification of c-met was identified in 2 tumors, and this was the first study to assay for multiple copies of this protooncogene in fresh gastric tumor tissues. Amplification of c-erbB was observed in one tumor, and no evidence for amplification of int-2 was obtained in this series of adenocarcinomas.

Adenocarcinoma↗

Association of type 1 blood group antigens with urinary tract infections in children with genitourinary structural abnormalities.

Bacterial adherence to carbohydrate receptors on the surface of urothelial cells is important in the pathogenesis of urinary tract infections. Blood group-related antigens, genetically determined carbohydrate structures found on the urothelial cell surface, may influence the availability of these receptors thereby affecting bacterial adherence and the susceptibility to urinary tract infections. Recent evidence indicates that the immunoanatomical distribution of type 1 blood group-related antigens in urothelium is influenced by ABO, Lewis and secretor phenotypes, women with Le(a-b-) and Le(a+b-) blood phenotypes have more than a 3-fold greater risk of recurrent urinary tract infections compared to Le(a-b+) women and epithelial cells from nonsecretors have more bacterial receptors than cells from secretors. To determine the relation between the expression of type 1 blood group-related antigens and urinary tract infections we performed an immunohistochemical analysis using a well characterized panel of monoclonal antibodies on 72 surgical specimens obtained from children who underwent correction of a structural genitourinary anomaly at the University of Rochester Medical Center from December 1983 to May 1988. Of 72 children 48 had a history of at least 1 documented urinary tract infection. The differences in the distribution of children by type 1 blood group immunophenotype in the infection and noninfection groups were highly significant (p = 0.003, Fisher's exact test). There is an increased frequency of urinary tract infections in children with genitourinary structural anomalies whose urothelium reflects the nonsecretor phenotype, that is they have minimal or undetectable levels of ABO and Leb reactivity compared to those with intense ABO and/or Leb immunoreactivity. Of 17 children with minimal or no ABO or Leb immunoreactivity 16 (94.1%) belonged to the infection group. Furthermore, 23 of 24 patients (95.8%) without a history of urinary tract infection expressed intense ABO and/or Leb immunoreactivity. It appears that the type 1 blood group-related antigen profile of urothelium influences susceptibility to urinary tract infection and it may be important in identifying patients who would benefit from prophylactic antibiotic therapy or earlier surgical intervention.

ABO Blood-Group System↗

Enhanced bladder cancer detection with the Lewis X antigen as a marker of neoplastic transformation.

Recent evidence indicates that the Lewis X determinant is a tumor-associated antigen in the urothelium. Immunohistochemical analyses on frozen and deparaffinized, formalin-fixed tissue sections have demonstrated that the Lewis X antigen is not detected in normal adult urothelium except for occasional umbrella cells. However, papillomas and transitional cell carcinomas express this blood group-related antigen in more than 90% of the cases regardless of the grade or stage of the tumor, or the blood type or secretor status of the individual. To determine the presence of Lewis X antigen on exfoliated bladder epithelial cells we used an anti-Lewis X monoclonal antibody (P-12) and the avidin-biotin-peroxidase technique on 129 bladder barbotage specimens. Of 40 controls 34 were negative for Lewis X antigen, for a specificity of 85%. The 89 bladder tumor patients consisted of 14 with papilloma, 13 with flat carcinoma in situ, 49 with transitional cell carcinoma, and 13 with a positive cytology and negative biopsy results. Of these 89 patients 76 were considered positive for Lewis X antigen, for an over-all sensitivity 85.4%. The sensitivity for cytology alone was 61.2%. However, the combination of a positive cytology and/or positive Lewis X antigen result yielded a sensitivity of 93.2%. The data suggest that immunocytological detection of the Lewis X antigen on exfoliated bladder cells enhances the detection of urothelial tumor cells, particularly from low grade and low stage neoplasms.

Antibodies, Monoclonal↗

Expression of the multidrug resistance gene product (P-glycoprotein) in human normal and tumor tissues.

We have characterized the normal human tissue distribution and tumor expression of the human multidrug resistance gene (MDR1) product P-glycoprotein (Pgp) by immunohistochemical staining of frozen tissue sections of human normal and tumor tissues, using three mouse monoclonal antibodies (MAb) which recognize at least two different epitopes of Pgp. Pgp expression on normal human tissues was detected in specialized epithelial cells with secretory/excretory functions, trophoblasts in the placenta, and on endothelial cells of capillary blood vessels at blood-tissue barrier sites. There were significant differences in the staining patterns of these MAb. Mouse MAb HYB-241 and HYB-612 each recognize an extracellular epitope of Pgp, whereas mouse MAb C219 detects a carboxy terminal intracellular epitope and has recently been reported to crossreact with the MDR3 gene product. HYB-241 and HYB-612 strongly stain endothelial cells and trophoblasts, whereas C219 is weakly positive or unreactive on these cells. Likewise, C219 strongly stains the biliary pole of hepatocytes, skeletal and heart muscle fibers, whereas HYB-241 and HYB-612 are unreactive on these cells. Immunopathological studies were performed on a wide variety of human tumors. Pgp expression on human tumors was most commonly detected in colon. renal, and adrenal carcinomas; rarely in lung and gastric carcinomas and certain germ cell tumors; and was undetectable in breast and endometrial carcinomas tested. Few sarcomas and none of the melanomas, neuroblastomas, gliomas, and pheochromocytomas had detectable Pgp expression. Intensity and pattern of staining varied among different cases of a given tumor type; although homogeneous immunoreactivity was observed, heterogeneity of expression in a single histological section was more common. The finding of Pgp expression in a variety of normal tissues with diverse physiological functions suggests that the role of Pgp may not be limited to excretion of xenobiotics. Pgp expression in capillaries of the brain and testis may explain the failure of drugs such as vincristine and actinomycin-D to penetrate into these tissues, allowing them to remain as pharmacological sanctuaries for malignant cells. Although Pgp expression can now be detected in a variety of human tumors, further studies are needed to establish the possible significance of this finding.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Immunopathology of adrenal and renal cortical tumors. Coordinated change in antigen expression is associated with neoplastic conversion in the adrenal cortex.

A series of adrenal cortical adenomas (ACA) and carcinomas (ACC), as well as normal adrenal cortex have been studied by a panel of 11 antibodies to characterize antigenic changes that may distinguish these morphologically similar entities. Normal adrenal cortex and ACA express low-molecular weight cytokeratin intermediate filaments. However, none of the six primary or seven metastatic ACCs were found to express detectable levels of cytokeratins. In contrast, vimentin was seen in all ACCs studied and was heterogeneously expressed by ACAs. However, its expression was usually confined to stromal elements of the normal adrenal cortex. We conclude that adrenal cortical cells undergo characteristic changes in intermediate filament expression during the process of neoplastic conversion and malignant transformation. Undetectable expression of cytokeratins and strong expression of vimentin is associated with malignant adrenal cortical lesions. In addition, we examined the antigenic phenotype of a series of primary renal cell carcinomas (RCC). Renal cell carcinomas express cytokeratins, while ACCs do not. The majority of primary RCCs express Lewis blood group isoantigens (most commonly Lewis X), while ACAs and ACCs do not. The panel of antibodies described here may help to distinguish morphologically similar lesions of like histogenesis (ACAs vs. ACCs) and lesions of different histogenesis (adrenal vs. renal) on the basis of their composite antigenic phenotypes.

Adenoma↗

Expression of the HER-2/neu proto-oncogene in normal human adult and fetal tissues.

The HER-2/neu proto-oncogene is homologous with, but distinct from, the epidermal growth factor receptor. Current evidence indicates that this gene is frequently amplified and/or overexpressed in some human breast and ovarian cancers and that these alterations may be clinically important; however, little is known about the expression pattern of the gene in normal tissues. Using immunohistochemistry and northern blot analyses to identify the HER-2/neu protein and transcript respectively, we have evaluated a variety of normal adult and fetal tissues for HER-2/neu expression. HER-2/neu protein was identified on cell membranes of epithelial cells in the gastro-intestinal, respiratory, reproductive, and urinary tract as well as in the skin, breast and placenta. Northern hybridization confirmed the presence of the 4.5 kb transcript encoding the protein in these tissues. The amount of HER-2/neu message and protein was generally higher in fetal tissues than in the corresponding normal adult tissues. HER-2/neu expression levels in these normal tissues were similar to the levels found in non-amplified, non-overexpressing breast cancers and breast cancer cell lines. Southern hybridization of extracted DNA showed that none of the normal tissues expressing HER-2/neu had amplification of the gene. These results confirm that HER-2/neu is normally a membrane constituent of a variety of epithelial cell types.

Blotting, Northern↗

Recent diagnostic modalities for bladder cancer.

Recent advances in hybridoma technology, immunohistochemistry, cytopathology, cytogenetics, and molecular biology have not only furthered our understanding of the biology of bladder cancer but are also beginning to find clinical applications in the early diagnosis of the disease. It is likely that further study and refinement of these tools could reliably identify patients with superficial bladder tumors who are at increased risk for subsequent muscle infiltrative disease, or patients whose tumors are not amenable to current front-line chemotherapy.

Antigens, Neoplasm↗

Expression of basic fibroblast growth factor in normal human tissues.

The distribution of basic fibroblast growth factor (bFGF) was studied immunohistochemically in fresh frozen sections of normal human tissues. Immunodetection was performed with a specific anti-bFGF mouse monoclonal antibody that was found to react with recombinant human bFGF in Western blot analysis, and to specifically neutralize the mitogenic activity of bFGF on bovine vascular endothelial cells. Expression of bFGF on normal human tissues was ubiquitously detected in the basement membranes of all size blood vessels, but was not found in epidermal or epithelial basement membranes of a variety of tissues tested. Intensity and patterns of localization in blood vessels was consistent in various tissues, but varied among different regions of the vascular bed. Whereas homogeneous and intense immunoreactivity were observed in large and intermediate size blood vessels, heterogeneity of expression was found in capillaries. The most intense immunoreactivity was observed in branching capillaries. Endothelial cell staining was heterogeneous and varied in different regions. Strong staining for bFGF was also found in cardiac muscle fibers, smooth muscle cells of mid-size blood vessels, the gut and the myometrium, in central nervous system neurons and cerebellar Purkinje cells, and on epithelial cells of the bronchi, colon, endometrium, and sweat gland ducts of the skin. The presence of bFGF in the extracellular compartment of a diverse variety of organs may play a role in angiogenesis. However, the function of bFGF in parenchymal cells remains to be determined.

Adult↗

IFN-gamma and IFN-alpha induce the expression and synthesis of Leu 13 antigen by cultured human endothelial cells.

Leu 13 is a 16 kDa human lymphocyte surface Ag and monoclonal anti-Leu 13 induces T cell aggregation and alters T cell proliferation. In previous studies using anti-Leu 13, Leu 13 Ag has been detected on endothelial cells (EC) of arteries, capillaries, and veins in human tissue sections. In contrast, in this study using the same antibody, Leu 13 Ag could not be detected on unstimulated cultured human umbilical vein endothelial cells (HUVEC) by indirect immunofluorescence, immunoperoxidase staining, or immunoisolation of radiolabeled Ag from labeled endothelial cells. However, when HUVEC were cultured with IFN-gamma, Leu 13 Ag was demonstrable using all three detection techniques. Leu 13 Ag was detectable after 24 h of incubation with IFN-gamma (30 U/ml) and was maximally expressed after 72 h. After removal of IFN-gamma, Leu 13 Ag progressively declined back to basal levels by 4 days. Induction of Leu 13 Ag expression by IFN-gamma was suppressed by cycloheximide. Although Leu 13 Ag expression was also induced by IFN-alpha, PMA, and IL-1 were inactive. When HUVEC were incubated with IFN-gamma, surface-labeled with 125I, and then solubilized, anti-Leu 13 immunoisolated a 16-kDa radioactive band that comigrated with Leu 13 immunoisolated from T cells. Similar results were obtained using HUVEC that were metabolically labeled with 35S-methionine. These results demonstrate that HUVEC stimulated with IFN-gamma and IFN-alpha express Leu 13 Ag on their surface and suggest that exposure of EC to IFN may induce EC to develop new functional properties at sites of inflammatory and immune reactions.

Antibodies, Monoclonal↗

Analysis of a mouse monoclonal antibody that reacts with a specific region of the human proximal tubule and subsets renal cell carcinomas.

Murine monoclonal antibody (mAb) F31 detects a heat-stable antigen (URO-8) found in the acidic lipid fraction of renal cancer cell extracts. Serological analysis of mAb F31 reactivity was assayed on 176 human cell lines. mAb F31 reacted with 38 of 45 renal cancers, a subpopulation of cells in primary cultures of normal renal epithelia, and two of 13 colon, two of 15 lung, and four of five ovarian cancers. No other epithelial, hematopoietic, or neuroectodermal cell lines tested were reactive. Immunofluorescence and immunoperoxidase analyses of fresh frozen tissue sections revealed mAb F31 reactivity in kidney, gastrointestinal tract, biliary canaliculi, bronchial epithelium, and skin. Within the kidney, mAb F31 immunoreactivity was confined to the straight portion of the proximal tubule. A panel composed of previously characterized mAbs as well as mAb F31 defines the antigenic phenotype of proximal convoluted tubular cells as URO-2+/URO-3+/URO-4+/URO-10+/URO-8-/URO-5-; proximal straight tubular cells as URO-2+/URO-3+/URO-4+/URO-10-/URO-8+/URO-5-; and cells of the descending thin limb of Henle as URO-2-/URO-3+ or -/URO-4+/URO-10-/URO-8-/URO-5+. While adult proximal tubular cells demonstrated reciprocal expression of URO-8 and URO-10, fetal kidney proximal tubule progenitor cells coexpressed both antigens (URO-10+/URO-8+). Fifty renal cancer specimens were typed with these antibodies. Fourteen cases were URO-10+/URO-8-, ten cases were URO-10-/URO-8+, and 25 cases expressed both antigens (URO-10+/URO-8+). These phenotypes are consistent with derivation of these particular subsets from the proximal convoluted tubule, the pars recta, or a proximal tubule progenitor cell, respectively. Only one specimen failed to express either URO-8 or URO-10.

Antibodies, Monoclonal↗

Expression of transforming growth factor alpha and epidermal growth factor receptor messenger RNA in neoplastic and nonneoplastic human kidney tissue.

Using Northern blot analysis, we have demonstrated that mRNA for transforming growth factor alpha (TGF-alpha) was expressed in five malignant kidney tissue specimens but was not detected in their autologous nonneoplastic homologues. In addition, the expression of epidermal growth factor (EGF) receptor mRNA in these malignant tissues was 2- to 3-fold greater than in nontransformed tissues. In two cases examined using immunohistochemistry, we were able to correlate the increased expression of the mRNA with an increase in protein expression. Since TGF-alpha is known to bind to the EGF receptor, the finding of an increased expression of both TGF-alpha and EGF receptor mRNA in kidney tumor tissue suggests that interaction between TGF-alpha and the EGF receptor may play a role in promoting transformation and/or proliferation of kidney neoplasms, perhaps by an autocrine mechanism.

Blotting, Northern↗

Association of the Lewis blood-group phenotype with recurrent urinary tract infections in women.

Blood-group antigens are found on the surface of urothelial cells and may affect bacterial adherence and thereby the susceptibility to urinary tract infection. We determined the ABO, P, and Lewis blood-group phenotypes in 49 white women with histories of recurrent urinary tract infections and compared them with those found in 49 healthy control women without recurrent urinary tract infections. There was no significant difference between the two groups in the distribution of the ABO or P phenotypes. The distribution of Lewis blood-group phenotypes among control women was similar to that in the general population: secretor phenotype (Le(a-b+)), 74 percent; nonsecretor phenotype (Le(a+b-)), 18 percent; and recessive phenotype (Le(a-b-)), 8 percent. The following distribution was noted among the women with recurrent urinary tract infections: secretor phenotype, 45 percent; nonsecretor phenotype, 29 percent; and recessive phenotype, 26 percent (P = 0.002). When the women with nonsecretor and recessive phenotypes were combined and considered collectively, the odds ratio (an estimate of relative risk of recurrent urinary tract infection) for those without the secretor phenotype was 3.4 (95 percent confidence interval, 1.5 to 7.9). We conclude that there is an increased frequency of the Lewis blood-group nonsecretor (Le(a+b-] and recessive (Le(a-b-] phenotypes among women with recurrent urinary tract infections.

Adult↗

Blood group-related antigens in human kidney: modulation of Lewis determinants in renal cell carcinoma.

Seven mouse monoclonal antibodies and the lectin Ulex europaeus, detecting blood group related antigens of the ABH and Lewis systems, have been used to determine the immunophenotype of human renal cell carcinomas. Immunohistochemical analyses have demonstrated that these antigenic systems are differentially expressed by distinct normal cell types and domains of the human nephron. In the present study we analyzed the immunophenotype of 29 primary and 15 metastatic renal carcinomas by the immunoperoxidase method. Blood type was known in all of the cases and secretor status in nine cases. ABH specificities were not detected in tumor cells of the primary tumors studied, although two of the metastases showed heterogeneous expression of H and A antigens, respectively. Lewisx (Lex) determinant was detected in 76% of primary renal cell carcinomas; however, Lex was only expressed by occasional cells in 20% of the metastatic tumors analyzed. Lewisa (Lea) was detected with a heterogeneous pattern of expression in 31% of the primary and 26% of the metastatic renal tumors studied. Lewisy (Ley) antigen expression was found in 17% of the primary and 20% of the metastatic tumors analyzed. Detection of precursor type 1 structure was observed in 28% of primary and 20% of metastatic renal cell carcinomas. The present study suggests the histogenesis of renal cell carcinoma in the proximal nephron, based on the expression of Lex and Lea antigens. It also shows: (a) an apparent deletion, downregulation or structural modification of Lex determinant in most of the metastatic tumors; (b) undetectable levels of ABH specificities in tumor cells of primary renal cell carcinoma; and (c) enhanced expression and/or neosynthesis of precursor type 1 structure and Ley determinant in some renal cell carcinomas.

ABO Blood-Group System↗

Initial evaluation of a new epithelial antigen (T16) for bivariate flow cytometry of bladder irrigation specimens.

Bivariate flow cytometry (FCM) was used to study immunofluorescent T16 mouse monoclonal antibody (Mab) binding simultaneously with propidium iodide DNA measurements in bladder irrigation specimens from 30 patients with a history of bladder cancer. Aliquots of the same samples were stained with acridine orange (AO) and examined by conventional FCM. T16 Mab is believed to be specific for epithelial cells in this type of specimen and stained from 13% of the cells in a patient with cystitis to 95% of the cells in a patient with an atypical papilloma. In combination with DNA measurements, this antibody increased the sensitivity of FCM in patients with severe cystitis and relatively small numbers of tumor cells, but the diagnostic specificity may be decreased and the criteria established for interpreting univariate flow cytometry may have to be re-evaluated and modified.

Antibodies, Monoclonal↗

Multidrug-resistance gene (P-glycoprotein) is expressed by endothelial cells at blood-brain barrier sites.

Endothelial cells of human capillary blood vessels at the blood-brain and other blood-tissue barrier sites express P-glycoprotein as detected by mouse monoclonal antibodies against the human multidrug-resistance gene product. This pattern of endothelial cell expression may indicate a physiological role for P-glycoprotein in regulating the entry of certain molecules into the central nervous system and other anatomic compartments, such as the testes. These tissues, which limit the access of systemic drugs, are known pharmacologic sanctuaries for metastatic cancer. P-glycoprotein expression in capillary endothelium of brain and testes and not other tissues (i.e., kidney and placenta) may in part explain this phenomenon and could have important implications in cancer chemotherapy.

ATP Binding Cassette Transporter, Subfamily B, Mem↗