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Adenoid cystic and adenoid basal carcinoma of the uterine cervix: comparative morphologic, mucin, and immunohistochemical profile of two rare neoplasms of putative 'reserve cell' origin.

Adenoid cystic carcinomas (ACCs) and adenoid basal carcinomas (ABCs) are rare neoplasms of the uterine cervix that are currently regarded as distinct clinicopathologic entities. Accurate distinction between ABCs and ACCs is of clinical importance because of differences in their biological behavior. This study compares the morphologic, mucin, and immunohistochemical profiles of 18 cervical ACCs, 8 ABCs, and 1 combined ABC-ACC. Serial sections from the 27 cases were stained with hematoxylin and eosin, periodic acid-Schiff-diastase, mucicarmine, and alcian blue and subjected to a panel of immunoperoxidase markers, namely, MNF116, CAM 5.2, CK7, CK20, epithelial membrane antigen, carcinoembryonic antigen (CEA), S-100, HHF 35, laminin, and type IV collagen. One ACC was also examined ultrastructurally. Almost all patients were postmenopausal black women. The distinction between ABC and ACC was best made morphologically. Divergent epithelial differentiation was seen in 18 cases (11 ACCs, 6 ABCs, and 1 ABC-ACC). Six cases with intact surface epithelium showed a high grade squamous intraepithelial lesion. There was no significant difference in mucin staining. Both tumor types had a similar immunohistochemical profile, apart from type IV collagen and laminin staining, which occurred exclusively in relation to the extracellular basement membranelike material in the ACC. Eleven ACCs and three ABCs were S-100-positive, including the respective ACC and ABC components of the combined ABC-ACC. Eight of the S-100-positive neoplasms with ACC morphology also stained with HHF 35, suggesting myoepithelial differentiation. The latter was confirmed in one ACC examined ultrastructurally. The similar clinical profiles, apart from the different biological behavior, capacity for divergent differentiation, and the occurrence of ABC areas in some ACCs and vice versa suggest that these tumors may share a common histogenesis, forming part of a morphologic and biologic spectrum of basaloid cervical neoplasms of putative "reserve cell" origin. Circumstantial evidence suggests that ABC may be a precursor of cervical ACC.

Adult↗

Multiplanar reconstruction MR image of primary adenoid cystic carcinoma of the central airway: (MPR of central airway adenoid cystic carcinoma).

Multiplanar reconstruction (MPR) is a method that allows free selection of computerized reconstruction images. We reviewed a total of six MPR magnetic resonance (MR) examinations in five cases of adenoid cystic carcinoma of the central airway, which is a rare low-grade malignant tumor. MPR MR provides images either longitudinally or at right angles to the longitudinal axis of the trachea and main bronchi, so it was useful to diagnose tumor extent along airways more precisely and to evaluate therapeutic effects. MPR MR may help in planning therapeutic strategy and in posttherapeutic follow-up.

Adult↗

Adenoid cystic carcinoma of the nasopharynx after previous adenoid irradiation.

In 1978, Pratt challenged the otolaryngology community to identify an incidence of malignancy in individuals who have previously received radium therapy to the nasopharyngeal lymphoid tissues. This case report is a direct response to that quest and presents a well documented adenoid cystic carcinoma evolving 23 years after radium applicator treatment to the fossa of Rosenmuller. Although a cause-and-effect relationship cannot be scientifically proven, the case history raises several important questions concerning the stimulating effects of radiation on the later onset of frank malignancy.

Carcinoma, Adenoid Cystic↗

Adenoid cystic ovarian carcinoma compared with other adenoid cystic carcinomas of the female genital tract.

Adenoid cystic carcinoma (ACC) of the ovary is an extremely rare neoplasm referred to infrequently in the literature. A new case of a pure, primary, ovarian ACC is reported. The patient was a 45-year-old white woman who had a stage IA, well-circumscribed, unilateral, ovarian mass. Histologically, the tumor was composed of small, uniform, and basaloid cells exhibiting predominantly a tubular pattern, as well as demonstrating cribriform and focal solid areas. There was no necrosis and minimal nuclear pleomorphism; the mitotic rate was fewer than three cells per 10 high-power fields. Immunohistochemical examination showed that the tumor cells were strongly positive for cytokeratins CAM 5.2 and AE1/3 and carcinoembryonic antigen. The cells at the periphery of the epithelial aggregates in the cribriform and tubular areas were positive for muscle-specific actin and, occasionally, for S100 protein. Electron microscopic examination revealed that these cells had convoluted nuclei and filamentous structures associated with dense bodies. These findings support a myoepithelial component. A characteristic feature was the production of periodic acid-Schiff stain-positive basement membrane material, which appeared as reduplicated basal lamina by electron microscopic examination. The patient is currently alive, without evidence of recurrence or persistent tumor 7 years after surgical excision. The tumor demonstrated immunohistochemical and ultrastructural findings similar to those of ACCs of salivary gland origin and to other ACCs of the female genital tract. The histogenesis of most ovarian ACCs is through metaplasia of the celomic epithelium, but pure cases might also be of teratomatous origin.

Carcinoma, Adenoid Cystic↗

Chronic rhinosinusitis and adenoid hypertrophy in children.

PURPOSE: The purpose of this study was to investigate the relationship between adenoid microbiology, adenoid size, and maxillary sinus microbiology in children with both chronic rhinosinusitis and adenoid hypertrophy. METHODS: The children with both chronic rhinosinusitis and adenoid hypertrophy were admitted to this prospective study. The study included 30 children. The diagnosis of chronic rhinosinusitis was based on clinical and radiologic examinations. Adenoid hypertrophy was classified as medium and large based on the preoperative flexible fiberoptic endoscopy and nasal endoscopy during surgery. Maxillary sinus aspiration and adenoidectomy was performed in all patients. Sinus aspirate and adenoid tissue specimens were cultured. The correlation of culture results was investigated. The relationship between adenoid size and maxillary sinus culture results was analyzed by using chi-square test. RESULTS: Adenoid sizes were medium in 12 (40%) and large in 18 (60%) cases. Bacterial growth was found on 14 of 30 (47%) sinus aspirate, and all adenoid specimen cultures showed bacterial growth (100%). There was no statistical correlation between cultures obtained from the adenoid tissue with those from the maxillary sinus. The relationship between adenoid size and maxillary sinus culture results was not found statistically significant (chi(2) = 0.96, P = 1.0). CONCLUSION: The reason that there was no correlation between cultures obtained from the adenoid tissue with those from the maxillary sinus is that it seems possible that the adenoids act as a barrier causing mechanical obstruction rather than a nidus for chronic sinus infection. However, there is no relationship between adenoid size and maxillary sinus culture positivity. Medium adenoids causing partial obstruction may lead to changes in the microenvironment and may start bacterial growth in children with positive maxillary culture. Further investigation is needed to explain the association between adenoid hypertrophy and rhinosinusitis. Adenoidectomy helps to resolve the symptoms of chronic rhinosinusitis in the children with both chronic rhinosinusitis and adenoid hypertrophy.

Adenoids↗

Increased adenoid mast cells in patients with otitis media with effusion.

OBJECTIVE: Previous studies have been suggested the possible role of adenoid mast cells in the pathogenesis of otitis media with effusion (OME). The aim of the present study was to evaluate the possible relationship of adenoid mast cells and hearing loss in patients with chronic OME. METHODS: Twenty patients with combined chronic OME and chronic adenoiditis (OME-A) and 20 patients with isolated chronic adenoiditis were studied. Hearing thresholds were determined by pure tone audiometry in both groups. All subjects underwent adenoidectomy and adenoid mast cells were counted in each specimen. Number of adenoid mast cells were determined in both groups. Possible relationship of adenoid mast cells and hearing thresholds in OME-A patients was evaluated by comparing the hearing thresholds of OME-A patients with mast cell count above the mean of OME-A group and hearing thresholds of OME-A patients with mast cell count below the mean of OME-A group. RESULTS: All isolated chronic adenoiditis patients had normal hearing thresholds. OME-A patients had hearing thresholds ranging from 12-52 dB. The number of adenoid mast cells in OME-A group (median: 80) was significantly greater than isolated chronic adenoiditis group (median: 38) (P < 0.05). OME-A patients with adenoid mast cell count above the mean of OME-A group had significantly higher hearing thresholds compared to OME-A patients with mast cell count below the mean of OME-A group (P < 0.05). CONCLUSIONS: Patients with OME-A have greater number of adenoid mast cells than patients with isolated chronic adenoiditis. OME-A patients with adenoid mast cell count above the mean of the OME-A group had higher hearing thresholds than OME-A patients with adenoid mast cell count below the mean of the OME-A group. Increased number of adenoid mast cells may contribute to the pathogenesis of higher hearing thresholds in some OME-A patients.

Adenoids↗

Bacteriology and immunology of normal and diseased adenoids in children.

Adenoid physiology as reflected in the qualitative and quantitative bacteriology and immune cell distribution was correlated with clinical presentation in 69 children (16 to 130 months of age) undergoing adenoidectomy for obstructive adenoid hyperplasia (n = 38) or chronic adenoid infection (n = 31) and in 16 adenoid core biopsy specimens from 16 nondiseased controls. In the control adenoids, few potentially pathogenic bacteria were found as the dominant bacteria in the adenoid core (25%), and significantly greater concentrations of nonpathogens (commensals) were isolated (P < .01). Potential pathogens as the dominant bacteria were found twice as often in obstructive adenoid hyperplasia (62%) and in chronic adenoid infection (55%) (P < .05). Haemophilus influenzae was most common in the diseased adenoids, 53% in obstructive adenoid hyperplasia and 48% in chronic adenoid infection, compared with only 19% in the controls (P < .05). No significant differences in lymphocyte density, B and T cells, as well as T-helper subsets, were found between clinical classifications. However, T-suppressor cells, monocytes-macrophages, and natural killer cells were significantly increased in chronic adenoid infection only (P < .05). The findings in this study support roles for both alterations in bacterial homeostasis and an altered immune profile in the etiology of chronic adenoid disease in children.

Adenoids↗

Antibody production directed against pneumococci by immunocytes in the adenoid surface secretion.

OBJECTIVE: In previous studies of the adenoid surface secretion we revealed the presence of activated T cells, granulocytes engaged in phagocytosis and immunocytes that produce IgG, IgA and IgM. In the present study the objective was to assess the ability of these immunocytes to produce antibodies directed at S. pneumoniae. METHOD: Nine children subjected to adenoidectomy due to adenoid hypertrophy, secretory otitis media or recurrent otitis media were enrolled in the study. Samples of adenoid surface secretion were obtained by an imprint method and for comparison samples of adenoid tissue and peripheral blood were also obtained as well as a nasopharyngeal culture. Double-colour enzyme-linked immunospot (ELISPOT) assays were performed to detect total and pneumococci-specific IgG- and IgA-antibody secreting cells (ASC). In the adenoid tissue, the presence of H. influenzae type b specific ASC was also examined. RESULTS: ASC were present in all nine samples of adenoid surface secretion with a dominance of IgG-ASC as compared to IgA-ASC. The proportion of ASC relative to the total number of lymphocytes was always greater in the secretion than in the corresponding adenoid tissue. The adenoid surface secretion samples from three of nine children contained IgG-ASC directed against S. pneumoniae. IgG-ASC directed against S. pneumoniae were detected in six of eight adenoids and IgA-ASC directed against S. pneumoniae were detected in two of eight adenoids. IgA-ASC directed against H. influenzae type b (Hib) were detected in one of seven adenoids. CONCLUSION: The immunocytes in the adenoid surface secretion and the adenoid tissue itself hold the property to produce antibodies specific for known pathogens of the upper airways. These ASC are probably engaged in the immunologic defence of the nasopharyngeal mucosa and further studies are therefore called upon.

Adenoids↗

IgE-positive plasma cells are present in adenoids of atopic children.

CONCLUSIONS: We demonstrated the presence of IgE(+) plasma cells in the adenoids of atopic children. Our data suggest that adenoids are capable of local production of IgE and support the role of adenoids as an inductive site for allergic reactions. OBJECTIVE: We have previously demonstrated increased numbers of IgE(+) cells in the adenoids of atopic children and also found support for an IL-4-induced class switch to IgE production in adenoids. In search of further evidence of adenoids being involved in IgE-mediated sensitization, we investigated the distribution of plasma cells and macrophages positive for IgE in adenoids. MATERIAL AND METHODS: Adenoid tissue from atopic and non-atopic children was examined using immunohistochemical markers for IgE, plasma cells (CD138) and macrophages (CD68). The distribution of positive cells was determined in the extrafollicular area and in the follicles of adenoids. Co-localization of IgE and CD138(+) plasma cells and CD68(+) macrophages was examined using immunohistochemical double-staining methods. RESULTS: Non-atopic adenoids contained no or very few IgE(+) cells. In contrast, IgE(+) cells were found in high numbers in atopic adenoids, mainly in the extrafollicular area. Higher numbers of IgE(+) plasma cells and IgE(+) macrophages were also found in the adenoids of atopic children.

Adenoids↗

Development of adenoids: a study by measurement with MR images.

Magnetic resonance (MR) imaging, which is able to demonstrate the actual size of adenoids by differentiating them from other soft-tissue structures, can be effectively used to study the normal development of adenoids. To assess the normal development of adenoids and to understand their role in the nasopharyngeal airway compromise, the adenoids of 290 children who had MR examination for other reasons were measured by midsagittal T1-weighted spin-echo MR image. The maximal thickness of adenoids (A), anteroposterior depth of the nasopharynx (N) and the adenoid-nasopharynx (A/N) ratios were obtained using this method. The results showed that of the infants under the age of 3 months only 2 out of 11 adenoids (18%) could be identified. By 4 months of age, adenoids could be identified in 6 of 8 infants (75%). After 5 months of age, all adenoids were well demonstrated by MR imaging. The adenoids developed rapidly during infancy and reached a plateau between 2- and 14 years of age with a mean thickness ranging from 10.7 to 12.2 mm. Finally, the adenoids regressed rapidly after 15 years old. The A/N ratios, which could be used to assess the airway compromise, had a plateau between 2- and 7 years of age. After that, with the steady growth of the nasopharynx, the possible role of adenoid in airway compromise will become increasingly less significant in later childhood.

Adenoids↗

Expression of KIT (CD117) in neoplasms of the head and neck: an ancillary marker for adenoid cystic carcinoma.

Adenoid cystic carcinoma is an indolent salivary gland malignancy that is associated with a poor long-term prognosis. The distinction of adenoid cystic carcinoma from other head and neck neoplasms can occasionally be problematic, particularly in small biopsies. Recent studies suggest that KIT (CD117) might be useful as an ancillary marker for adenoid cystic carcinoma; however, the expression of KIT in other benign and malignant head and neck neoplasms, including those that might mimic adenoid cystic carcinoma, has not been well studied. Here we use two different antibodies against KIT to evaluate its expression in a series of 66 adenoid cystic carcinomas compared with its expression in 98 other neoplasms of the head and neck. Overall, 94% (n = 62) of adenoid cystic carcinomas from various anatomic sites and of various histologic subtypes were positive for at least one of the KIT antibodies, and 77% (n = 50) of adenoid cystic carcinoma cases were positive for both antibodies. This contrasted with only 8% (n = 8) of other head and neck neoplasms that were positive for both KIT antibodies (P <.001). It was of note that certain neoplasms, including pleomorphic adenoma, basal cell adenoma, polymorphous low-grade adenocarcinoma, and basal cell carcinoma, that can show histologic overlap with adenoid cystic carcinoma had significantly less KIT immunoreactivity than did adenoid cystic carcinoma (P <.001). In contrast, KIT expression did not reliably distinguish adenoid cystic carcinoma from basal cell adenocarcinoma and basaloid squamous carcinoma (P >.05). The overall sensitivity of the two KIT antibodies for adenoid cystic carcinoma was 82-89%, and the specificity was 87-88%. The findings in this study support the potential use of KIT immunoexpression for distinguishing adenoid cystic carcinoma from many other benign and malignant head and neck neoplasms.

Adenoma, Pleomorphic↗

Obstructive adenoid tissue: an indication for powered-shaver adenoidectomy.

OBJECTIVES: To quantify the incidence of intranasal extension of adenoid tissue and residual adenoidal obstruction of the posterior choanae following traditional curette adenoidectomy to determine the efficiency of adenoid curettage and the usefulness of intraoperative endoscopic examination and powered-shaver adenoidectomy in achieving better postnasal patency. DESIGN: Prospective intraoperative endoscopic evaluation of the posterior choanae and nasopharynx of a case series of 130 patients before and after curette and powered-shaver adenoidectomy. SETTING: Tertiary referral center. PATIENTS: One hundred thirty consecutive pediatric patients with obstructive adenoidal hypertrophy undergoing adenoidectomy. MAIN OUTCOME MEASURES: The degree of residual postnasal obstruction due to adenoid tissue was assessed endoscopically (grades 0-3) after curette and adjuvant powered-shaver adenoidectomy. The presence of intranasal adenoid tissue was also recorded. RESULTS: Following traditional curette adenoidectomy, 51 (39%) of 130 patients had residual obstructive adenoid with 42 patients (32%) having occlusive intranasal adenoid tissue. Having determined the presence of remaining obstructive tissue with intraoperative nasal endoscopy in these 51 patients, complete airway patency was achieved with powered-shaver adenoidectomy. CONCLUSION: The presence of intranasal extension of adenoids obstructing the posterior choanae is common in children with adenoid hypertrophy. Traditional adenoidectomy is ineffective in removing this tissue and may also leave obstructive tissue high in the nasopharynx. Intraoperative nasal endoscopy allows assessment of the completeness of surgery. Powered-shaver adenoidectomy enables complete removal of obstructive adenoid tissue thereby ensuring postnasal patency.

Adenoidectomy↗