PubMed HealthSearch

Biomedical subjects

X C Xu

Publications and source records attributed to X C Xu.

At least 19 recordsLinked to original sources

Indirect recognition of porcine xenoantigens by human CD4+ T cell clones.

BACKGROUND: Human T-cell response against xenogeneic antigens may occur either by direct recognition of antigens on xenogeneic antigen-presenting cells (APCs) or by an indirect pathway mediated by autologous APCs. METHODS: The proliferative response of human CD4+ T cells to porcine aortic endothelial cells (PAECs) was measured. From these T-cell lines, eight CD4+ T-cell clones were obtained by limiting dilution. RESULTS: CD4+ T cells, in the absence of monocytes, proliferated in response to PAECs only after swine leukocyte antigen (SLA) class II molecules were induced on PAECs. The proliferation was significantly better when autologous human monocytes were added back as APCs. All of the eight CD4+ T-cell clones demonstrated specific proliferative response when stimulator PAECs, but not PAECs of other porcine origins, were preincubated with autologous human APCs before addition of these clones. These results indicated that the clones are recognizing porcine xenoantigens presented by self-APCs. The proliferative response of CD4+ T-cell clones was blocked by antibodies directed against human leukocyte antigen class II and human CD4, but not by anti-SLA class II monoclonal antibodies. A marked inhibition in proliferation was also noted when human APCs were incubated with chloroquine before addition to the cultures, indicating that xenoantigens had to be processed in order to be recognized by the clones. CONCLUSIONS: Human CD4+ T cells can recognize xenoantigens by either a direct or indirect pathway. The CD4+ T-cell clones developed against SLA class II-negative PAECs recognized strain-specific porcine xenoantigens indirectly.

Animals

Modulation of galectin-1 content in human head and neck squamous carcinoma cells by sodium butyrate.

Galectin-1 and galectin-3 are beta-galactoside-binding proteins thought to be important for cellular interactions, growth regulation and differentiation. Alterations in cellular content of galectins have been associated with differentiation, transformation and malignant progression. We examined the modulation of galectin-1 and galectin-3 expression in head and neck squamous cell carcinoma (HNSCC) cell lines by treatment with sodium butyrate, a known differentiation-modulating agent, and identified potential mechanisms of butyrate regulation of galectin-1 levels in one of the cell lines. Sodium butyrate effected an increase in galectin-1 protein concentration in 5 of 8 cell lines. One cell line, MDA-886LN, showed a marked time- and dose-dependent increase from barely detectable amounts with butyrate treatment. Concurrently with increased galectin-1 expression, butyrate treatment promoted morphologic changes, induced growth inhibition and inhibited soft agar colony formation in MDA-886LN cells. Butyrate-treated MDA-886LN cells demonstrated increased galectin-1 mRNA content, suggesting a role for butyrate in transcriptional regulation of galectin-1 expression. Treatment with other inhibitors of histone deacetylase also induced an increase in galectin-1 expression. Together, our results indicate that butyrate treatment can modulate galectin-1 content in MDA-886LN HNSCC cells as well as induce morphologic changes and growth inhibition. This action may involve a combination of transcriptional regulation and inhibition of histone deacetylation.

Animals

Progressive decrease in nuclear retinoic acid receptor beta messenger RNA level during breast carcinogenesis.

Some of the nuclear retinoic acid receptors (RARs) alpha, beta, and gamma and retinoid X receptors (RXRs) alpha, beta, and gamma are thought to mediate the effects of retinoids on cell growth, differentiation, and apoptosis and thereby prevent breast carcinogenesis. We analyzed the expression of mRNAs for the three RARs and RXR-alpha in histological sections of specimens from 70 breast cancer patients, which included adjacent normal tissue, ductal carcinoma in situ, and invasive cancer, using in situ hybridization. RARs alpha, beta, and gamma and RXR-alpha were expressed in 98.1, 98.0, 93.0, and 100% of the adjacent normal tissues. Significant decreases in the number of cases expressing RAR-beta were observed among ductal carcinoma in situ (83.1%) and invasive carcinomas (51.6%), especially among the poorly differentiated cases (77.4 and 35.7 %, respectively). No relationship was found between the expression of estrogen receptor and RAR-beta. These results implicate decreases in RAR-beta expression in breast cancer development and suggest that they are independent of estrogen receptor status.

Breast

Suppression of retinoic acid receptor beta in non-small-cell lung cancer in vivo: implications for lung cancer development.

BACKGROUND: Retinoids, analogues of vitamin A, are required for the normal growth and differentiation of human bronchial epithelium. They are also able to reverse premalignant lesions and prevent second primary tumors in some patients with non-small-cell lung cancer (NSCLC). These effects are thought to result from modulation of cell growth, differentiation, or apoptosis (programmed cell death). When certain retinoid receptors in the cell nucleus (i.e., retinoic acid receptors [RARs] and retinoid X receptors [RXRs]), which mediate most retinoid actions, are suppressed, abnormal activity may result that could enhance cancer development. PURPOSE: This study was designed to determine whether there are abnormalities in the expression of retinoid receptors in surgical specimens from patients with NSCLC. METHODS: Transcripts of nuclear retinoid receptors were detected in formalin-fixed, paraffin-embedded specimens by use of digoxigenin-labeled riboprobes specific for RAR alpha, RAR beta, RAR gamma, RXR alpha, RXR beta, and RXR gamma for in situ hybridization to histologic specimens from 79 patients with NSCLC and as control from 17 patients with non-lung cancer. The quality and specificity of the digoxigenin-labeled probes were determined by northern blotting, and the specificity of the binding of antisense riboprobes was verified by use of sense probes as controls. RESULTS: All receptors were expressed in at least 89% of control normal bronchial tissue specimens from 17 patients without a primary lung cancer and in distant normal bronchus specimens from patients with NSCLC. RAR alpha, RXR alpha, and RXR gamma were expressed in more than 95% of the NSCLC specimens. In contrast, RAR beta, RAR gamma, and RXR beta expression was detected in only 42%, 72%, and 76% of NSCLC, respectively. CONCLUSIONS: These data suggest that the expression of RAR alpha, RXR alpha, and RXR gamma is not altered in NSCLC; however, expression of RAR beta and possibly also of RAR gamma and RXR beta is suppressed in a large percentage of patients with lung cancer. IMPLICATIONS: The loss of expression of one or more of these nuclear retinoid receptors may be associated with lung carcinogenesis.

Adenocarcinoma

Accumulation of p53 protein and retinoic acid receptor beta in retinoid chemoprevention.

Although retinoids have proven to be effective as chemopreventive agents in reversing premalignant oral lesions and preventing second primary tumors, their mechanisms of chemopreventive efficacy in clinical settings have not been established. To better define this mechanism, we studied p53 protein and retinoic acid receptor beta (RAR-beta) expression in 52 baseline biopsy samples taken from premalignant oral lesions. We then studied p53 expression in 39 matched samples and RAR-beta expression in 38 matched samples before and after treating them with isotretinoin. The study results were then compared with clinical responses. To detect p53 protein expression, 4-micrometer sections of formalin-fixed, paraffin-embedded tissue specimens were used for immunohistochemical analysis with a monoclonal anti-p53 antibody, and levels of p53 expression were recorded with a labeling index (LI). Expression of RAR-beta mRNA was determined using nonradioactive in situ hybridization, and the staining intensity of RAR-beta mRNA was semiquantitated using scores from 0 (no expression) to 3+ (highest expression). p53 protein was detected in 85% of all lesions. High p53 protein expression (LI >/= 0.2) was detected in 25% of the lesions at baseline and in 18% of the lesions after isotretinoin therapy. The clinical response was 65% for lesions having low p53 expression (LI < 0.2) and 27% for lesions having high p53 expression (P = 0.027). Expression of RAR-beta mRNA was detected in 40% of the patients at baseline and increased to 90% of the patients after isotretinoin therapy (P < 0. 001). Seventy-two percent of the patients having low p53 expression had no RAR-betamRNA expression at baseline, whereas 22% of the patients having high p53 expression had no RAR-beta expression, which suggests that patients having low p53 expression tended to lose RAR-beta mRNA expression in their tissues. Eighty-three percent of patients having low p53 expression had up-regulation of RAR-beta mRNA after isotretinoin therapy, compared with 22% of patients with high p53 expression (P = 0.003). We correlated baseline p53 protein expression with RAR-beta modulation and clinical responses to isotretinoin therapy. The patients with low p53 protein expression at baseline and up-regulation of RAR-beta after isotretinoin therapy achieved a 70% rate of major response. The patients with low p53 protein expression and either no change or down-regulation of RAR-beta or with high p53 expression and up-regulation of RAR-beta had a response rate of 50%. The patients with high p53 protein expression and either no change or down-regulation of RAR-beta had a response rate of only 14% to isotretinoin therapy. The basic mechanisms underlying the association between clinical responses and these two biomarkers need to be explored.

Adult

Human breast carcinoma slice cultures retain retinoic acid sensitivity.

We have shown earlier that surgical human breast cancer tissue can be maintained in culture as in culture as intact tissue slices (organ culture). Because tumor organ culture ostensibly preserves the interacting network of tumor cells, stromal fibroblasts, endothelial cells and extracellular matrix, it represents a rather complex culture system. Such a system may be especially useful in preclinical trials, where the objective is to make extrapolations to the even more complex in vivo situation. A classical therapeutic target in breast cancer is the estrogen receptor, and we showed earlier that human breast cancer slices retain expression of this receptor in culture. Retinoic acid, the active form of vitamin A, is also an important (negative) growth regulator in breast cancer. In the present communication, we used in situ hybridization to monitor the expression of retinoic acid receptors in tumor slices cultured for 4 days. We show that both members of the all-trans retinoic acid and 9-cis retinoic acid receptor family (RAR and RXR, respectively) are expressed. Moreover, RNase protection analysis showed that expression of the cellular retinoic acid-binding protein type II gene, a known retinoic acid target gene, is upregulated by treatment with 1 microM all-trans retinoic acid for 2 days. These findings attest to the feasibility of using tumor organ cultures as a preclinical model for the evaluation of synthetic vitamin A derivatives (retinoids).

Breast Neoplasms

Differential induction of apoptosis by all-trans-retinoic acid and N-(4-hydroxyphenyl)retinamide in human head and neck squamous cell carcinoma cell lines.

Retinoids have been shown to act as cytostatic agents against a variety of tumor cell types, including squamous carcinoma cells. Recently it was reported that certain retinoids can induce apoptosis as well. Because we are investigating the potential of retinoids in chemoprevention and therapy for head and neck premalignant and malignant lesions, we compared the effects of all-trans-retinoic acid (ATRA) and N-(4-hydroxyphenyl)retinamide (4HPR) on seven human head and neck squamous cell carcinoma cell lines (17A, 17B, 22A, 22B, 38, SqCC/Y1, and 1483). Six of the seven cell lines showed dramatic morphological changes after treatment with 10 micrometer 4HPR, whereas no such changes were induced by 10 micrometer ATRA. To determine whether these retinoids can induce apoptosis, we analyzed both detached and attached cells after 2, 5, and 7 days of treatment for evidence of DNA fragmentation by DNA electrophoresis on agarose gels. In five of the seven cell lines, a DNA ladder was observed after treatment with 10 micrometer 4HPR for 5 or 7 days, whereas treatment with ATRA resulted in a less pronounced effect. In 17B cells, a clear DNA ladder was observed as early as 2 days after treatment with 4HPR; however, neither ATRA nor 9-cis-retinoic acid was as effective. In addition, morphological changes associated with apoptotic cell death, such as chromatin condensation and nuclear segmentation, were observed by propidium iodide staining and by electron microscopic analysis after 4HPR treatment. These results demonstrate that 4HPR causes apoptosis in several head and neck squamous cell carcinoma cell lines and that it is more potent in this effect than ATRA.

Antineoplastic Agents

Anti-retinoic acid (RA) antibody binding to human premalignant oral lesions, which occurs less frequently than binding to normal tissue, increases after 13-cis-RA treatment in vivo and is related to RA receptor beta expression.

Nuclear retinoic acid receptor beta (RAR-beta) expression decreases in human premalignant oral lesions (POLs). RAR-beta suppression could result from a decrease in the cellular level of retinoids because RAR-beta gene transcription is enhanced by retinoids. To explore this hypothesis, we compared the binding of a monoclonal antibody (mAb) against all-transretinoic acid (RA; anti-RA mAbs) to normal oral tissue and POLs. All 7 normal specimens stained positive with the antibody compared to only 20 of 43 POLs; similarly, 7 of 7 normal specimens contained RAR-beta mRNA compared to only 14 of 43 POLs. Twenty-four specimens were available before and after a 3-month treatment with 13-cis-RA in vivo. Anti-RA mAb binding to these specimens increased from 10 of 24 before to 22 of 24 after treatment, and the expression of RAR-beta mRNA increased from 7 of 24 before to 21 of 24 after treatment, respectively. There was a strong agreement between the binding of anti-RA mAbs and the expression of RAR-beta. Thus, we propose that the binding of anti-RA mAbs reflects the level of retinoids in the tissues and that this level is related strongly to RAR-beta expression.

Antibodies, Monoclonal

Retinoid refractoriness occurs during lung carcinogenesis despite functional retinoid receptors.

Retinoids have demonstrated activity in the prevention of second primary tumors in patients with non-small cell lung cancer (NSCLC). They also contribute to the normal growth and differentiation of human bronchial epithelial (HBE) cells. Because retinoids mediate their actions through retinoid nuclear receptors (RARs and RXRs), aberrant signaling through retinoid receptors could contribute to lung carcinogenesis. Using a lung carcinogenesis model consisting of normal, premalignant, and malignant HBE cells, we examined all-trans retinoic acid (t-RA)-induced changes in cellular growth. These studies revealed that t-RA treatment inhibited the growth of normal HBE cells, but premalignant and malignant HBE cells were relatively resistant to t-RA. Coincident with the development of retinoid refractoriness, basal expression of the retinoic acid nuclear receptor beta (RAR-beta) increased. Analysis of receptor function by gel shift and transient transfection assays of normal, premalignant, and malignant HBE cells demonstrated that receptor-DNA binding and transcriptional activation properties were intact in the t-RA-refractory malignant HBE cells. To compare these findings to NSCLCs in patients, we investigated retinoid receptor expression in NSCLC biopsies. A subset of the tumors expressed RAR-beta, reflecting the RAR-beta expression observed in the malignant HBE cells in culture. These findings demonstrate that retinoid receptor function was intact in the t-RA-refractory malignant HBE cell line, suggesting that the defect in retinoid signaling in this lung carcinogenesis model is not intrinsic to the retinoid receptors.

Animals

Suppression of retinoic acid receptor-beta in premalignant oral lesions and its up-regulation by isotretinoin.

BACKGROUND: Retinoids are effective in the treatment and prevention of certain human cancers. Most of their actions are thought to result from changes in gene expression mediated by nuclear retinoic acid receptors and retinoid X receptors. We conducted a study to determine whether the expression of these receptors was altered in premalignant oral lesions and, if so, whether their expression could be restored by treatment with isotretinoin. METHODS: We performed in situ hybridization of retinoic acid receptors and retinoid X receptors using antisense riboprobes in specimens of oral mucosa from 7 normal subjects and specimens of premalignant oral lesions from 52 patients before treatment with isotretinoin and from 39 of the 52 patients after three months of treatment. RESULTS: All the normal specimens expressed retinoic acid receptor-beta messenger RNA (mRNA). In contrast, retinoic acid receptor-beta mRNA was detected in only 21 of the 52 premalignant oral lesions (P = 0.003). Thirty-five of the 39 specimens available for evaluation after treatment expressed retinoic acid receptor-beta mRNA (P < 0.001). All normal and premalignant specimens expressed similar levels of mRNA for retinoic acid receptor-alpha and retinoic acid receptor-gamma and the three types of retinoic X receptors, alpha, beta, and gamma. The levels of retinoic acid receptor-beta mRNA increased in the specimens from 18 of the 22 patients who had responses to isotretinoin and in 8 of the 17 specimens from the patients without responses (P = 0.04). CONCLUSIONS: The expression of retinoic acid receptor-beta mRNA is selectively lost in premalignant oral lesions and can be restored by treatment with isotretinoin. Restoration of the expression of retinoic acid receptor-beta mRNA is associated with a clinical response. Retinoic acid receptor-beta may have a role in mediating the response to retinoids and may be a useful intermediate biologic marker in trials of these agents for the prevention of oral carcinogenesis.

Adult

Differential expression of galectin-1 and galectin-3 in thyroid tumors. Potential diagnostic implications.

Carcinoma of the thyroid gland, the most frequently diagnosed endocrine malignancy, is often associated with early regional metastases. With the exception of papillary carcinoma, distinguishing benign from malignant thyroid neoplasms in the absence of metastatic disease is difficult. Recently, the vertebrate lectins galectin-1 and galectin-3 have been implicated in the regulation of cellular growth, differentiation, and malignant transformation of a variety of tissues. To determine whether these galectins have a role in thyroid neoplasia, we analyzed 32 specimens from thyroid malignancies (16 papillary, 7 follicular, 8 medullary carcinomas, and 1 metastasis to lymph node), 10 benign thyroid adenomas, 1 nodular goiter, and 33 specimens from adjacent normal thyroid tissue for the expression of galectin-1 and galectin-3 with immunohistochemical and immunoblotting techniques utilizing anti-galectin antibodies. All thyroid malignancies of epithelial origin (ie, papillary and follicular carcinomas) and a metastatic lymph node from a papillary carcinoma expressed high levels of both galectin-1 and galectin-3. The medullary thyroid carcinomas, which are of parafollicular C cell origin, showed a weaker and variable expression of these galectins. In contrast, neither benign thyroid adenomas nor adjacent normal thyroid tissue expressed galectin-1 or galectin-3. These results suggest that galectin-1 and galectin-3 may be associated with malignant transformation of thyroid epithelium and may potentially serve as markers for distinguishing benign thyroid adenomas from differentiated thyroid carcinomas.

Adenoma

Increased expression of cytokeratins CK8 and CK19 is associated with head and neck carcinogenesis.

Malignant transformation is often associated with alterations in the expression of normal differentiation markers, which may serve as intermediate end points in carcinogenesis and cancer prevention. To identify early changes in differentiation markers during head and neck cancer development, we examined the expression of cytokeratins (CK1, CK8, CK13, and CK19) and involucrin by immuohistochemical methods in surgical specimens from 29 head and neck squamous cell carcinoma patients that included, in addition to carcinoma, adjacent dysplastic lesions (17 cases), hyperplastic lesions (21 cases), and adjacent histologically normal tissues (15 cases) and in specimens from 31 subjects with premalignant oral lesions (e.g, oral leukoplakia) without cancer, CK13 and involucrin were detected in all specimens from the cancer patients, and no differences in their expression were found among the different histopathological group. CK8 was detected in only 2.7% (1 of 36) of adjacent normal and hyperplastic tissues but in 58.8% (10 of 17) and 75.9% (22 of 29) of dysplastic and carcinoma tissues. The corresponding figures for CK19 expression in adjacent normal, hyperplastic, dysplastic, and carcinoma tissues were 13.3, 70, 71.4, and 82.1%, respectively. The expression of CK1 was not related to the progression from normal to malignant. In the leukoplakia lesions, CK8 CK13, CK19 and involucrin were detected in 13.8, 100, 74.2 and 100% of the specimens, respectively. These results demonstrate that CK19 expression increases in hyperplastic lesions and continues to be expressed in dyplastic and malignant lesions, whereas CK8 expression in low in adjacent normal and hyperplastic tissues and increases only in dysplastic and malignant lesions. Thus, CK19 and CK8 could be markers of sequential premalignant changes in head and neck carcinogenesis.

Biomarkers, Tumor

Modulation by retinoic acid (RA) of squamous cell differentiation, cellular RA-binding proteins, and nuclear RA receptors in human head and neck squamous cell carcinoma cell lines.

The ability of all-trans-retinoic acid (RA) to modulate the growth and squamous differentiation of four head and neck squamous cell carcinoma cell lines (183, 886, 1483, and SqCC/Y1) was examined, and the relationship of their state of squamous differentiation and RA responsiveness to the expression of cytosolic RA-binding proteins (CRABPs), nuclear RA receptors (RARs), and retinoid X receptors (RXRs) was investigated. RA inhibited proliferation of all but the 183 cell line and suppressed squamous differentiation markers K1 keratin, type 1 transglutaminase, and involucrin mRNAs and proteins to varying degrees in 183, 1483, and SqCC/Y1 cells. Traces of CRABP-I mRNA were detected only in the 886 cells, whereas CRABP-II mRNA was detected in the other three cell lines. RA suppressed CRABP-II expression in SqCC/Y1 cells but had no effect on its expression in the other cell lines. All cell lines expressed mRNAs for RAR-alpha, RAR-beta, RAR-gamma, and RXR-alpha. The RAR-beta mRNA level was lowest in the SqCC/Y1 cells, and RXR-beta and RXR-gamma were not detected in any of the cell lines. RA treatment increased the levels of the three RAR mRNAs in most of the cell lines but had no effect on the RXR mRNAs. The CRABP-II mRNA level in SqCC/Y1 cells was lowest in cells grown in serum-free medium and increased when the cells were grown in medium with 5 or 10% serum. In contrast, the RXR-alpha mRNA level was inversely related to serum concentration. The results show that, in head and neck squamous cell carcinoma cells, there are no simple relationships among the expression of CRABPs, RARs, and RXRs and either squamous differentiation or response to RA-induced growth inhibition or suppression of squamous differentiation.

Carcinoma, Squamous Cell

Differential expression of nuclear retinoid receptors in normal, premalignant, and malignant head and neck tissues.

Retinoids reverse premalignant lesions and inhibit the development of second primary cancers in patients with upper aerodigestive tract cancers. It is thought that these effects result from the ability of retinoids to restore normal cell growth and differentiation. Since nuclear retinoid receptors (RARs and RXRs) are the ultimate mediators of retinoid actions, alterations in their expression could lead to cancer development. To determine whether the expression of the mRNAs of the receptors is related to the development of head and neck squamous cell carcinoma (HNSCC), we used digoxigenin-labeled antisense riboprobes of RAR-alpha, RAR-beta, RAR-gamma, RXR-alpha, and RXR-beta for in situ hybridization to histological sections of specimens from 7 normal volunteers and 31 HNSCC patients. All 31 tissue specimens contained carcinomas, 16 also contained dysplastic lesions, 22 also contained hyperplastic lesions, 17 also contained adjacent normal tissue, and 6 contained all 4 types of tissue. All specimens from normal volunteers expressed the 5 receptors. Similar levels of RAR-gamma and RXR-alpha and RXR-beta mRNAs were detected in most of the adjacent normal, hyperplastic, dysplastic, and malignant tissues. RAR-alpha mRNA was detected in 94% of adjacent normal tissues and hyperplastic tissues, in 87% of dysplasias, and in 77% of HNSCCs. In contrast, RAR-beta mRNA was detected in about 70% of adjacent normal and hyperplastic lesions, and its expression decreased further to 56% of dysplastic lesions and to 35% of HNSCCs. The difference in RAR-beta level in carcinoma and adjacent normal tissues was significant (P < 0.05). These results indicate that the decreased expression of RAR-beta may be associated with HNSCC development.

Carcinoma, Squamous Cell

Expression of galectins on microvessel endothelial cells and their involvement in tumour cell adhesion.

Lactoside-binding lectins (galectins) with molecular weights of about 14.5 kDa (galectin-1) and 29-35 kDa (galectin-3) bind preferentially to polylactosaminoglycan-containing glycoconjugates and have been found on the surface of tumour cells and implicated in cell-cell and cell-extracellular matrix adhesion and metastasis. We have demonstrated by immunoblotting that both galectin-1 and galectin-3 are present in extracts of endothelial cells cultured from bovine aorta, rat lung, mouse lung and mouse brain microvessels, whereas mouse hepatic sinusoidal endothelial cells expressed primarily galectin-1. These galectins were also localized by indirect immunofluorescent labelling on the surface of the different endothelial cells in culture and by immunohistochemical staining in human tissues in vivo. Anti-galectin-1 antibodies inhibited the adhesion of liver-preferring murine RAW117-H10 large-cell lymphoma cells to hepatic sinusoidal endothelial cells or lung microvessel endothelial cells in vitro. The data indicate that galectin-1 is expressed on the extracellular surface of endothelial cells and can mediate in part the adhesion of RAW117-H10 cells to liver microvessel endothelial cells.

Animals

Detection of nuclear retinoic acid receptor mRNA in histological tissue sections using nonradioactive in situ hybridization histochemistry.

Nuclear retinoic acid receptors (RARs) function as ligand-activated trans-acting transcription factors and mediate the effects of retinoids on gene expression, cell growth, and differentiation. Determination of the receptors' expression in premalignant and malignant lesions may provide prognostic value and direct the selection of receptor-specific retinoids in cancer prevention or treatment. We describe a sensitive and practical in situ hybridization method for the analysis of RARs in tissue sections of fixed and embedded surgical specimens. Digoxigenin-labeled antisense and sense RNA probes were prepared for nuclear RAR-alpha, RAR-beta, and RAR-gamma. The specificity of the probes for their respective receptor mRNAs was demonstrated by Northern blot hybridization to total RNA extracted from murine and human cells. Optimal conditions for in situ localization of the RAR mRNA were established using cultured tumor cells, and these conditions were then used for the detection of RAR mRNA in formalin-fixed, paraffin-embedded sections of surgical specimens from human tumors. The hybridization stain was detected in the cytoplasm (where it was expected to be localized) and not seen in the cell nucleus. This method provides a rapid detection procedure with good resolution that allows one to clearly distinguish strongly and weakly stained cells. A comparison of receptor expression in head and neck squamous carcinoma specimens and in adjacent normal tissues revealed a significant decrease in the level of RAR-beta mRNA in the tumor cells.

Animals