Background: Pituitary adenomas are usually well-differentiated tumors but may show locally aggressive behavior. Aim: To investigate the relationship between proliferation and apoptosis parameters and tumor recurrence in a series of 20 radically resected pituitary macroadenomas (11 functioning, 9 non-functioning). Materials and methods: Proliferative activity and DNA ploidy were analyzed by flow cytometry (FCM) on fresh surgical specimens. Immunohisto-chemistry for Ki-67/MIB-1 and for the anti-apoptotic protein Bcl-2 was performed on paraffin-embedded specimens from the same tumors. Tumor regrowth was evaluated by magnetic resonance imaging (MRI). Results: Six adenomas recurred after surgery, regardless of hormonal hypersecretion. Pre-surgical tumor size was significantly higher in recurrent than in non-recurrent adenomas (p=0.003). Pre-surgical MRI demonstrated cavernous sinus (CS) invasiveness in all recurrent tumors, while none of the non-invasive adenomas recurred (p=0.042, Fisher’s exact test). The DNA content was aneuploid in 5/20 adenomas, one of which recurred. Cell percentages in the S (%SPF) and G2+M (%G2-M) phases and proliferative index (PI) (PI= %SPF + %G2-M) were significantly higher in aneuploid than in diploid adenomas (p<0.05), but no significant differences concerning all FCM parameters were observed between recurrent and non-recurrent adenomas. Similarly, MIB-1 did not show a significant difference of expression between recurrent and non-recurrent adenomas (p=0.33). Bcl-2 immunoreactivity was detected in 12/15 pituitary adenomas, involving 63±35% of tumor cells, regardless of tumor recurrence. Conclusions: In this group of radically resected pituitary macroadenomas, neuroradiological finding of CS invasiveness — but not FCM parameters nor MIB-1 and Bcl-2 expression — is useful for predicting tumor recurrence.
Lactoferrin (Lf) expression was determined immunohistochemically in 57 formalin-fixed paraffin-embedded bioptic samples obtained from an equal number of patients treated by surgery to remove pigmented skin lesions (nevi = 23; melanoma = 12; vulgaris and seborrhoeic warts = 12; basal cell carcinoma = 10); in addition, 10 specimens of normal skin were studied as control. On 3 mm thick sections, depigmentation and antigen retrieval procedures were performed. The Lf immunoreactivity was revealed by a rabbit anti-human Lf. Quantification of Lf immunoreactivity was performed using an intensity-distribution (ID) score. Melanocytic cells, regardless of their benign or malignant nature, were consistently stained, with no significant differences in the Lf ID-score between melanomas or nevi. A different intensity of Lf immunoreactivity was encountered in superficial portions of warts, exclusively inside squamous epithelial cells arranged in sheets or whorls of keratin. On the contrary, basal cell carcinomas were always unstained, while a slight Lf positivity was found in focal keratinized areas present in two tumours showing baso-squamous differentiation. The Lf immunoreactivity was localized in the cytoplasm and only occasionally in the nucleus. The biological meaning of Lf in these cases of human skin specimens remains unexplained, although it cannot be ruled out that Lf might be involved in the defense system against tumours, or alternatively, may be used by cells requiring iron availability for their turnover. Moreover, the immunohistochemical expression of Lf in melanocytic lesions might be also related to a Lf-melanin interaction. Finally, the involvement of Lf in skin squamous non-neoplastic elements could be related to its role as one of the molecules modulating an unspecific inflammatory or anti-oxidant response.
We have previously studied the sensitivity of laser microdissection (LMD) techniques and have tested our capability to yield a complete genotype from 30 haploid sperm cells. Partial but significant genotype information have been obtained also from 5 to 10 haploid sperm cells. This experimental procedure has important applications both in pathological and in forensic fields. A real casework of a teenager sexually assaulted in a car in a small town in Sicily has induced us to evaluate the possibility to transfer the biological residuals present on a cut off from the car seat to a laser microdissection-prepared microscope slide. Biological traces have been at first examined with Crimescope CS-16 in order to evaluate the kind of traces we were to process; to avoid the loss of the forensic traces, we have reproduced the same conditions in several experimental procedures. We have settled several samples distinct for the amount of biological mixed traces, age of the traces and their exposure to different atmospheric agents. DNA typing was performed both with Identifiler STR loci kit and with another forensic kit based on shorter STR amplicons (MiniSTR). Laser microdissection techniques, coupled to high-sensitivity DNA typing methods as short STRs, allow forensic operators to isolate the different cell residuals whenever in front of mixed traces.
Tissue microdissection techniques offer the chance to characterize the several kinds of single cells present both in pathologic and in forensic samples cutting small tissue fragments as well as single cells by an ultraviolet laser beam under direct microscopic visualization. The low number of target cells among a wide spectrum of cell types in heterogeneous tissue samples may complicate the analysis of biological residuals found on crime scenes, while the possibility to perform a genomic analysis of low copy number DNA from few cells harvested by laser microdissection represents a valid aid to solve forensic problems. A complete genotypic profile was obtained down to 10 haploid and 5 diploid cells as to pathological and forensic genetic markers; different results–concerning the integrity of the extracted DNA–were achieved according to the kind of histological stainings performed.
Rare tumor of the oral cavity presenting as a gingival swelling without bone involvement was present.The lesion, resected for mastication troubles, histologically presented a basaloid cell proliferation predominantly organized in nests formed by a peripheral palisading of cells with apically disposed nuclei.Immunohistochemical stainings for the cytokeratin 19 and Ber-EP4 showed a marked and diffuse positivity for the former, while the latter was negative.These results support the diagnosis of peripheral ameloblastoma and allow us to distinguish it from the basal cell carcinoma, which shares some histological features with this unusual tumor of the oral cavity.
In 1996, Van Oorschot and Jones firstly reported in scientific correspondence that short tandem repeat (STR) profiles could be obtained from cells left on different objects. Since then, forensic scientists have focused their efforts in isolating single cells as it can be extremely helpful in solving case works where sexual violence was concerned. Laser microdissection is a micromanipulation procedure allowing to cut off precisely the cells of interest from tissue samples or smears by a laser beam fitted with an optical microscope. We have harvested single sperm cells by laser microdissection using a Leica AS LMD (Leica Microsystems, Germany); laser setting, pulse laser intensity and laser alignment as well as recovery of the specimen have been properly fitted to the samples we were dealing with. Different tissue preservation, fixation, histological staining (Papanicolau, Nuclear Fast Red-Picroindigocarmine) methods and number of harvested cells for each sample have been evaluated as well. Finally, the genotype of sperm cells has been determined by STR typing, evaluating the sensibility of this forensic technique according to instrumental and biological above-mentioned variables.
Isolation and identification of single cells from tissue samples or smears assume a great relevance in pathological and forensic applications; in this latter field, the possibility to identify a specific genetic profile can be obtained by short tandem repeat (STR) typing, allowing to achieve a scientific proof important in law courts. It is well known that DNA extraction may be performed from several tissue fragments, blood traces, spermatozoa as well as telogen hair. However, in the last case, few follicle cells are coupled to a great amount of keratin reducing the efficiency of DNA amplification. Recently, the introduction of laser microdissection technique has greatly improved the capability to select single cells without any cross-contamination. In the present report, we have performed a laser microdissection using a Leica AS LMD (Leica Microsystems, Germany), utilized on cutting the telogen hair in order to exclusively collect the lower part of the follicle and reduce keratin contamination. In this way we can accurately extract an adequate amount of DNA, successfully typed by STR profile.
Lactoferrin (Lf) expression has been immunohistochemically investigated in 117 formalin-fixed paraffin-embedded liver bioptic samples obtained from an equal number of patients affected by chronic hepatitis (HCV = 76; HBV = 17; HBV + HDV = 14; cryptogenetic = 10); in addition, 10 autoptic specimens of normal liver were studied as control. The Lf immunoreactivity was evaluated by an intensity-distribution (ID) score. The Lf immunoexpression was observed in 88 out of 117 (75%) cases of chronic hepatitis; interestingly, all liver specimens from HBV hepatitis showed a constant Lf reactivity with the highest ID-score, whereas the evidence of Lf was encountered in 54/76 (71.1%) HCV as well as in 11/14 (78.6%) HDV chronic hepatitis, thus documenting a variable degree of Lf immunostaining in relation to different viruses. Moreover, in 6/10 (60%) cases of cryptogenetic hepatitis Lf immunoexpression was documented, whereas all normal liver controls were unreactive. In HCV specimens, the Lf nuclear immunoreactivity appeared to increase with the progression of the disease, with a greater expression in genotype 1. In contrast, no relationship among Lf ID-scores and different stages or grades of HBV, HDV or cryptogenetic hepatitis was encountered. This fact may suggest a role for Lf as an unspecific defensive agent in chronic inflammatory liver diseases, similarly to that elsewhere reported in other inflammatory tissue injuries.
Data on the expression of interleukin 6 (IL-6)/interleukin 6 receptor (IL-6R) in thyroid nodules is scarce. Based on our recent data of CD30 ligand (CD30L)/CD30 receptor (CD30) in these nodules and on the knowledge that this signal stimulates IL-6 production in non-thyroid neoplasms, we wanted to evaluate the immunocytochemical expression of these 2 ligand/receptor systems in a large archival series of paraffin-embedded specimens. These specimens included 6 normal thyroids and 130 thyroid nodules. Co-expression of IL-6 and IL-6R in the epithelial (follicular) cells was observed solely in CD30L/ CD30 positive nodules: 5/15 (33%) oncocytic adenomas; 6/30 (20%) follicular adenomas which belonged to 2 variants (4/4 microfollicular toxic and 2/2 hyalinizing trabecular); 9/30 (30%) papillary thyroid cancers (PTC), all belonging to the conventional variant. In PTC the proportion of tumor epithelial cells that were IL6 positive was inversely correlated with the pTNM staging (r= −0.549, p=0.01). All 15 follicular cancers (FTC), all 6 anaplastic cancers (ATC) were IL-6/IL-6R negative; 14/15 FTC and 5/6 ATC were CD30L/CD30 negative. In another oncocytic adenoma, another 4 conventional PTC and another 7 non-conventional PTC CD30L/CD30 expression was associated to expression of IL-6 only. IL-6 staining associated to absent expression of CD30L and CD30 was observed in 7 follicular adenomas (all belonging to variants different from toxic and hyalinizing trabecular), 2 oncocytic adenomas, 5 of the 30 colloid nodules and 2 normal thyroids. Of the 6 tumors arising from the parafollicular C cells (medullary thyroid cancer, MTC), all 3 that had metastasized were CD30L/ CD30/IL-6 positive and IL-6R negative; only IL-6 expression was lost in both the local and distant metastases. This finding matched the loss of IL-6 expression in one PTC metastasis. All 3 non-metastasized MTC were IL-6/IL-6R negative, and 1/3 was CD30L positive/CD30 negative. We conclude that only in a subset of both benign and malignant thyroid nodules the IL-6/IL-6R signal could be induced by the CD30L/CD30. IL-6 expression is related with aggressiveness in both PTC and MTC. In the normal thyroid tissue, colloid nodules, and another subset of benign and malignant thyroid nodules, IL-6 expression is under control of signals other than CD30L/ CD30. (J. Endocrinol. Invest. 25: 959–966, 2002)
Because the CD30 ligand (CD30L)/CD30 receptor (CD30) system is expressed in certain malignancies, but has not been studied in thyroid nodules, we investigated its immunohistochemical expression in 6 normal thyroids (NT) and 131 thyroid nodules: 28 colloid nodules (CN), 45 adenomas (15 oncocytic [OA], 30 follicular [FA]) and 58 carcinomas (15 follicular [FTC], 1 insular [ITC], 6 anaplastic [ATC], 30 papillary [PTC], and 6 medullary [MTC]). NT and CN expressed neither CD30L nor CD30 (CD30L(-)/CD30(-)). Forty percent of OA and 20% of FA showed epithelial coexpression of CD30L and CD30, and interstitial expression of CD30L, which was also observed in the surrounding normal tissue. Within malignancies, epithelial coexpression of CD30L and CD30 was observed in 7% of FTC, 33% of ATC, 67% of PTC, and 67% of MTC. Only PTC and MTC showed epithelial expression of CD30L in the perinodular tissue with similar frequency (80% PTC, 75% MTC). PTC and MTC had the highest proportion of CD30L(+) or CD30(+) cells, and together with OA, a thus far unreported nuclear location of CD30L. In PTC, the proportion of CD30L(+) cells and the prevalence of nuclear location of CD30L correlated inversely and directly, respectively, with aggressiveness. Ln conclusion, CD30L/CD30 signaling is activated only past the colloid nodule stage, most frequently in an autocrine fashion.