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Primary intraepithelial sebaceous gland carcinoma of the palpebral conjunctiva.

Sebaceous gland carcinoma usually arises from meibomian or Zeis glands deep within the eyelid, but it can rarely arise within the conjunctival epithelium without a deep component. We describe a woman with a history of chronic blepharoconjunctivitis unresponsive to topical medications. Examination disclosed confluent papillary hypertrophy of the upper palpebral conjunctiva and deposits of white flaky material. Tarsoconjunctival punch biopsy revealed intraepithelial sebaceous gland carcinoma. Management consisted of frozen section-controlled complete tumor excision with removal of the entire posterior lamella of the right upper eyelid, cryotherapy to the margins, and reconstruction. Histopathologic analysis confirmed primary sebaceous gland carcinoma localized to the conjunctival epithelium without involvement of underlying meibomian or Zeis glands or the caruncle. Patients with unexplained chronic unilateral blepharoconjunctivitis or papillary hypertrophy of the palpebral conjunctiva should be considered for biopsy to rule out neoplasia, even when there is no sign of an underlying eyelid mass.

Adult↗

Involvement of the SREBP pathway in the mode of action of androgens in sebaceous glands in vivo.

Androgens have profound effects on the physiology of the sebaceous gland. Using the hamster ear sebaceous gland model, we performed a detailed kinetic study to clarify the mechanism of androgen action on sebaceous gland function. We demonstrated that the growth of sebaceous glands observed after androgen treatment was due to both an increase in sebocyte proliferation and a parallel induction of sebocyte terminal differentiation, as evidenced by the induction of the synthesis of specific sebaceous lipids such as cholesterol esters, triglycerides, and squalene. Accordingly, the effect of androgen treatment on the mRNA expression of several key enzymes involved in the synthesis of sebaceous lipids has been studied using semi-quantitative RT-PCR. Up-regulation by androgens of mRNA expression of HMG coenzyme A synthase and reductase, acetyl coenzyme A carboxylase (ACC), glycerol 3-phosphate acyl transferase (GPAT), and FAR-17c (stearoyl coenzyme A desaturase homologous), was demonstrated. Because sterol-response element(s) (SREs) are known to be present in the promoters of these genes, we analyzed the expression by RT-PCR and the activation of the transcription factor sterol regulatory element binding protein (SREBP) using immunoblotting experiments. Our results showed that SREBP-1 was up-regulated and rapidly activated after androgen treatment. Altogether, these results demonstrate for the first time that in sebaceous glands, in vivo, androgen regulates the synthesis of sebum lipids through the SREBP pathway.

Androgens↗

Correlation of the expression of telomerase RNA with risk factors for recurrence of sebaceous gland carcinoma.

AIMS: To investigate the expression of human telomerase gene RNA (hTR) and human telomerase reverse transcriptase (hTRT) in eyelid sebaceous gland carcinoma and to evaluate risk factors for sebaceous carcinoma recurrence. METHODS: The expression patterns of hTR and hTRT were detected by in situ hybridization (ISH) in paraffin-embedded samples of 55 eyelid sebaceous gland carcinoma, 12 chalazia, and four sebaceous adenoma. The proliferation index (PI) of sebaceous gland carcinoma was determined by Ki-67 immunolabeling and the results were compared with the expression of hTR and hTRT. Several factors for recurrence of sebaceous gland carcinoma were evaluated by statistical analysis. RESULTS: Expression of hTR and hTRT was present mainly in the sebaceous gland carcinoma tissues and not in adjacent tissues of carcinoma, chalazia, and sebaceous adenoma. The prevalence of hTR, hTRT, and Ki-67 expression in 55 sebaceous carcinoma samples were 84.45%, 58.1%, and 78.18%, respectively. hTR expression was highly associated with the degree of carcinoma differentiation (P<0.001) and hTRT expression was correlated with the proliferation index as determined by Ki-67 staining (P<0.005). There was a correlation between the recurrence of sebaceous gland carcinoma and the patient's onset age (OR=0.914, P<0.05), as well as the time to first treatment (OR=1.163, P<0.01). CONCLUSIONS: Telomerase may play an important role in the carcinogenesis of sebaceous gland carcinoma, and expression of hTR and hTRT combined with other features of sebaceous gland carcinoma may be helpful for the diagnosis and evaluation of clinical prognosis. Risk factors for recurrence of sebaceous gland carcinoma are patients' onset age and the time to first treatment.

Adenocarcinoma, Sebaceous↗

Sebaceous gland carcinoma of the finger.

We report a patient with sebaceous gland carcinoma of the finger. Sebaceous gland carcinomas located outside the ocular adnexa are rare, with fewer than 100 cases documented to date. The majority of these arise in the head and neck where sebaceous glands are plentiful. Because this tumor shows no pathognomonic characteristics, accurate histologic evaluation is essential to its diagnosis. Local excision may not be adequate treatment for a sebaceous gland carcinoma of the digit. Ray amputation was the treatment of choice for this patient.

Adenocarcinoma↗

Ultrastructure of the sebaceous glands of the camel (Camelus dromedarius).

The sebaceous gland of the camel has been studied by light and electron microscopy. The gland is lobed but the lobes are not subdivided into lobules. The ultrastructure of the sebaceous gland of the camel is generally similar to that of other animals. It consists of cells at different stages of development and maturation. The cells which are programmed to produce lipid secretion are probably those which lose contact with the basal lamina. Various forms of smooth endoplasmic reticulum are seen in the sebaceous cells. These forms include grid lattice, membranous whorls, and parallel cisterns; all of them are associated with lipid droplets which suggest that the smooth endoplasmic reticulum may be involved in lipid synthesis. The connective tissue around the sebaceous gland contains myelinated and unmyelinated axons. Some of these axons possibly penetrate the basal lamina to innervate the cells at the periphery. Encapsulated endings, which closely resemble Ruffini endings, are occasionally observed in the vicinity of the gland.

Animals↗

Sebaceous gland neoplasia.

Neoplasms with sebaceous differentiation cover a broad spectrum. They range from benign sebaceous hyperplasia and adenomas to locally infiltrative sebaceous epitheliomas which have biologic behaviors similar to basal cell carcinomas, to sebaceous carcinomas which can have very malignant biologic behaviors. In this paper, we have purposely excluded the nevus sebaceus of Jadassohn, a nevoid tumor composed of several cutaneous elements. As sebaceous glands are only one part of this tumor, it is better classified as an organoid nevus.

Adenocarcinoma↗

Morphometric studies of the hamster flank organ: an improved model to evaluate pharmacologic effects on sebaceous glands.

The Syrian golden hamster flank organ, composed of clusters of large sebaceous glands, has been used to investigate effects of systemically or topically applied hormones, antiandrogens, and retinoids. Accurate assessments of flank organ sebaceous gland volume and its correlation with in vivo measurements of flank organ size have not been reported. Sixty flank organs were examined. In vivo flank organ size was expressed as the product of the greatest longitudinal (DL) and greatest transverse (DT) diameters of the palpable bulk. Sebaceous gland volumes were calculated from planimetric analyses of serially sectioned specimens of flank organs using a computer-assisted planimetry system. In vivo measurements (DL X DT) were found to correlate with planimetrically determined flank organ volume. Planimetric analysis of every 10th section of a serially sectioned flank organ was almost as sensitive as analysis of every section in determining sebaceous gland volume. Computer-assisted planimetry of serially sectioned flank organs was found to be an accurate and reproducible method for assessing gland volume. In vivo measurements of the palpable bulk are a good indicator of sebaceous gland size and correlate well with planimetrically determined sebaceous gland volumes.

Animals↗

Alpha 2u-globulin in modified sebaceous glands with pheromonal functions: localization of the protein and its mRNA in preputial, meibomian, and perianal glands.

alpha 2u-Globulin, the principal urinary protein of the male rat, has extensive sequence homology with many lipid binding proteins. The highest concentration of alpha 2u-globulin is found in the preputial gland, a holocrine secretory organ with pheromonal function. Meibomian and perianal glands are two other modified sebaceous glands with holocrine secretory cycles and pleiomorphic peroxisomes capable of synthesizing pheromonal lipids. Immunocytochemical examination shows the presence of alpha 2u-globulin in the acinar cells of all three of these modified sebaceous glands. Whereas in the preputial gland all of the acinar cells exhibit immunoreactivity, in the meibomian and perianal glands only selective cells contain alpha 2u-globulin. In the case of the preputial gland, in addition to the acinar cells some stratified epithelial cells also were immunoreactive. In the perianal and meibomian glands, keratinocytes lining nearby hair shafts and select cells of accessory oil glands stained for alpha 2u-globulin. In situ hybridization with a cloned cRNA probe confirmed the immunocytochemical data. Presence of the alpha 2u-globulin mRNA in these glands was also established by Northern blot analysis. Immunoelectron microscopic examination of preputial alpha 2u-globulin showed the presence of this protein in secretory granules of various maturational stages. Immunolabeled alpha 2u was also found in attached vesicles containing protein and lipid inclusions. The lytic cells were not only loaded with alpha 2u-globulin but also contained sharp-edged, irregularly shaped electron-dense granules which stained heavily for this protein. Specific localization of alpha 2u-globulin and its mRNA in three pheromone-producing sebaceous glands and its structural homology with known lipid binding proteins indicate a pheromone carrier role of alpha 2u-globulin.

Alpha-Globulins↗

Is sebaceous gland hypertrophy in the newborn androgen induced?

Sebaceous gland hypertrophy is almost always present on the face of newborn infants and yet its aetiology is obscure. Androgens, either maternal or fetal, are thought to be related to its development. In a study of the extent and distribution of sebaceous gland hypertrophy in 115 newborn infants, it was found that there was no difference between males and females, and that the condition was more extensive in preterm infants. As circulating testosterone levels are higher in male newborns, and as maternal androgen excretion increases as pregnancy progresses, it is concluded that the appearance of sebaceous gland hypertrophy at birth is independent of androgens and may well be a developmental stage in the maturation of the skin.

Androgens↗

Transfollicular extrusion of sebaceous glands: natural phenomenon or artifact? A case report.

A sebaceous gland tumor on the back of a 28-year-old man underwent periodic exudation of yellowish material in association with local irritation. Pathological examination revealed entire sebaceous gland lobes lying subcorneally in the orifices of sebaceous follicles. This case appears to represent transfollicular extrusion of sebaceous gland lobes as a natural phenomenon rather than as an artifact.

Adult↗

Sebaceous adenoma of oral cavity: report of case and comparative proliferation study with sebaceous gland hyperplasia and Fordyce's granules.

Sebaceous adenoma (SA) is a rare solitary tumour with a predilection for the forehead and scalp. In the English literature, less than 10 cases of SA have been described in the oral cavity. The objective of this study was to examine the clinicopathologic features and evaluate the expression of epidermal growth factor and its receptor, estrogen receptor and androgen receptor in SA and in its differential diagnoses including sebaceous gland hyperplasia (SGH) and Fordyce's granules (FG). Additionally, we analysed the proliferative potential of sebaceous cells from SA, SGH and FG by measuring proliferating cell nuclear antigen (PCNA) expression and quantification of argyrophilic nuclear organizer regions (AgNORs). The SA showed many clinicopathologic similarities to cases previously reported including the biphasic population of cells, in the periphery of lobules undifferentiated basaloid cells whereas the central area was formed by mature sebocytes. SA was composed of 198 lobules of sebaceous cells, whereas SGH and FG showed a mean of 21 +/- 7.81 and 5.84 +/- 2.83, respectively. The AgNOR and PCNA indices were similar in SA, SGH and FG. These data suggest that lobule counts may be used as additional criteria in distinguishing SA of the oral cavity from other intraoral sebaceous gland lesions.

Adenoma↗

[Rare tumors of the parotid gland. Lymphadenoma of a sebaceous gland and extracranial metastasis from glioblastoma].

Tumors of the parotid gland can be benign or malignant lesions.The pathophysiology of rare tumors of the parotid gland is often not sufficiently explored in this paper two rare histological entities are described. In one patient a benign sebaceous lymph-adenoma was histologically diagnosed. This type of tumor accounts for only 0.196 of all adenomas. The international literature is not conclusive about whether the tumor originates in the parotid gland itself or in the parotid lymph nodes. The second patient presented with a metastasis from a glioblastoma in the parotid gland. Again, the mechanism for metastasis of an intra-cerebral tumor to the parotid gland remains unknown. Iatrogenic seeding during a neurosurgical intervention is a probable explanation. The actual clinical course of his patient and the cases described in literature render surgical removal of such a metastasis questionable.

Adenoma↗

Ultrastructural changes in the uropygial gland of the male Japanese quail, Coturnix coturnix, after testosterone treatment. Comparison with the sebaceous gland of the male rat.

The ultrastructure of the uropygial gland of the male quail was compared to that of the sebaceous gland of the male rat after castration and testosterone treatment of both species. In intact animals, the differentiating cells of these glands displayed almost the same pattern as regards their smooth endoplasmic reticulum, an organelle involved in lipogenesis in both cases. Castration reduced the volume of this organelle, while testosterone administration restored cell morphology to a normal or supranormal level. Finally, this study showed that at ultrastructural level, there is a close functional analogy between the uropygial gland of quail and the sebaceous glands of rats as regards their androgen dependency. Consequently, the uropygial gland might be an attractive model for study of action of androgens on sebaceous-like glands.

Animals↗

Sebaceous gland tumor of the ovary.

A sebaceous gland tumor of the ovary was detected in a 60-year-old woman who underwent right salpingo-oophorectomy for a right ovarian cyst. The cyst was unilocular, weighed 820 g, and was filled with sebaceous material containing a few hair shafts. There was a protruded mass composed of lobules of mature or immature sebaceous cells over the inner surface of the cyst wall. She has been well for 4 years and 2 months after the surgery. This is the second well-documented case of this extremely rare type of tumor. This lesion is teratogenic with unilateral development of the sebaceous glands and malignant characteristics are nil.

Diagnosis, Differential↗

Premature sebaceous gland hyperplasia: successful treatment with isotretinoin.

Hyperplasia of sebaceous glands is a common cause of papulonodular facial lesions that occur in middle-aged and older patients. Recently, several cases of premature sebaceous gland hyperplasia have been reported. In these patients the lesions had persisted despite vigorous attempts at therapy. We present a case of premature sebaceous gland hyperplasia that was successfully treated with isotretinoin.

Adult↗

Doxorubicin-induced alopecia is associated with sebaceous gland degeneration.

Alopecia, accompanied by skin dryness, is one of the distressing side effects often occurring in chemotherapy-treated cancer patients. Little is known of the effects of chemotherapy on sebaceous glands, despite their importance in hair follicle homeostasis. This study investigates sebaceous gland morphology and the response of SZ95 sebaceous gland cell line to doxorubicin (DXR) treatment. The morphology of sebaceous glands during intraperitoneal DXR treatment was investigated by optical and electron microscopy in a 7-day-old rat model and further confirmed in an adult mouse model. Moreover, in vitro studies using the SZ95 sebaceous gland cell line were performed to assess the response of sebocytes to DXR in terms of cell proliferation, apoptosis, and necrosis. DXR treatment induced sebaceous gland regression and occasionally caused their complete disappearance. This observed damage and disappearance preceded DXR-induced hair loss. In vitro experiments using the SZ95 sebaceous gland cell line indicated that DXR treatment induced a differentiation process leading to premature sebocytes apoptosis. Owing to the importance of the sebaceous gland in hair follicle homeostasis, DXR-induced involution of this gland might be related to subsequent hair loss.

Alopecia↗