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T J Bocklage

Publications and source records attributed to T J Bocklage.

5 recordsLinked to original sources

The XRCC1 399 glutamine allele is a risk factor for adenocarcinoma of the lung.

Defects in the repair and maintenance of DNA increase risk for cancer. X-ray cross-complementing group 1 protein (XRCC1) is involved with the repair of DNA single-strand breaks. A nucleotide substitution of guanine to adenine leading to a non-conservative amino acid change was identified in the XRCC1 gene at codon 399 (Arg/Gln). This change is associated with higher levels of aflatoxin B1-adducts and glycophorin A somatic mutations. A case-control study was conducted to test the hypothesis that the 399Gln allele is positively associated with risk for adenocarcinoma of the lung. XRCC1 genotypes were assessed at codon 399 in 172 cases of lung adenocarcinoma and 143 cancer-free controls. Two ethnic populations were represented, non-Hispanic White and Hispanic. The distribution of XRCC1 genotypes differed between cases and controls. Among cases, 47.7% were Arg/Arg, 35.5% were Arg/Gln, and 16.9% were Gln/Gln. Among controls, XRCC1 allele frequencies were 45.5% for Arg/Arg, 44.8% for Arg/Gln, and 9.8% for Gln/Gln. Logistic regression analysis was used to assess the association between lung adenocarcinoma and the G/G genotype relative to the A/A or A/G genotypes. In non-Hispanic White participants, the lung cancer risk associated with the G/G genotype increased significantly after adjustment for age (OR=2.81; 95% CI, 1.2-7.9; P=0.03) and increased further after adjustment for smoking (OR=3.25; 95% CI, 1.2-10.7; P=0.03). Among all groups, a significant association was found between the G/G homozygote and lung cancer (OR=2.45; 95% CI, 1.1-5.8; P=0.03) after adjustment for age, ethnicity, and smoking. This study links a functional polymorphism in the critical repair gene XRCC1 to risk for adenocarcinoma of the lung.

Adenocarcinoma↗

Primary lung tumors infiltrated by osteoclast-like giant cells.

Six primary lung tumors with numerous multinucleated osteoclast-like giant cells (OLGCs) and no osteogenic component were evaluated histologically and immunohistochemically to examine pulmonary lesions inciting an OLGC response. The patients comprised four women and two men ranging in age from 61 to 80 years (average age, 69 years). The tumors consisted of one adenocarcinoma, two sarcomatoid carcinomas, and three giant cell variants of malignant fibrous histiocytoma. One tumor was endobronchial in location, while five were situated peripherally. Tumor diameter spanned from 1 to 6.5 cm (average, 2.7 cm). In addition to the giant cells, common characteristics included the malignant nature of the neoplasms and, in five of six cases, histologically malignant mesenchyme. This array of cases exemplifies the variability of lung lesions which may elicit an OLGC inflammatory response resulting in areas resembling the giant cell variant of malignant fibrous histiocytoma. The results of this study suggest that OLGCs occur preferentially in malignant rather than benign nonosteogenic lung tumors and that sarcomatoid regions of malignant tumors are more likely to be infiltrated by OLGCs than epithelial regions.

Adenocarcinoma↗

Ameloblastic fibroma: a fine-needle aspiration case report.

Fine-needle aspiration biopsy of an ameloblastic fibroma, an unusual odontogenic tumor related to ameloblastoma, was performed on a 38-yr-old man with a slowly enlarging left facial mass. Aspiration of the tumor yielded a cellular sample composed of a mixture of mesenchymal and epithelial cells, arranged, respectively, in thick mats and complex solid structures outlined by columnar cells with central regions reminiscent of stellate reticulum. A diagnosis of odontogenic tumor was conferred, and the lesion was surgically biopsied and then resected. The key cytologic feature distinguishing this lesion from other odontogenic tumors was fragments of hypercellular stroma. The differential diagnosis includes ameloblastoma, ameloblastic fibrosarcoma, other odontogenic tumors, intraosseous adenoid cystic carcinoma, trabecular adenoma, and basal-cell carcinoma.

Adult↗

Distinctive flow histogram pattern in molar pregnancies with elevated maternal serum human chorionic gonadotropin levels.

BACKGROUND: Flow cytometric analysis of trophoblastic tissue has shown that most partial hydatidiform moles (PMs) are triploid, whereas most complete moles (CMs) are diploid or tetraploid. Ploidy analysis can support a diagnosis of CM or PM. However, in some cases, a precise diagnosis cannot be rendered. METHODS: This study examined DNA flow histograms in 86 cases of histologically diagnosed moles and nonmoles to identify patterns specific to moles to eliminate indeterminate diagnoses. Forty hydropic abortions, 17 CMs, and 29 PMs were analyzed, and results were correlated with microscopic appearance and maternal serum human chorionic gonadotropin (HCG) levels. RESULTS: Analysis of nondiploid histologic moles in which the initial maternal serum HCG level was greater than 150,000 mIU/ml showed similar histograms in 12 of 14 cases. In these 12 specimens, a distinct aneuploid peak could not be delineated from multiple cell populations between the G0/G1 and G2/M or G0/G1diploid and G0/G1aneuploid peaks. This commonly appeared as a slope rising toward the tetraploid region. S-phase fraction values showed a trend toward higher values in the moles versus nonmoles, but the difference was not statistically significant. CONCLUSIONS: This sloping histogram pattern may reflect progression from a single aneuploid to multiple aneuploid populations. Its statistically significant correlation (P < 0.001) with high maternal serum HCG values suggests the presence of a highly metabolically active population of aneuploid trophoblast. Because it appears specific to nondiploid moles, recognition of the pattern will aid in the distinction of mole from hydropic spontaneous abortion.

Abortion, Spontaneous↗

Fine needle aspiration cytology of follicular dendritic cell sarcoma. Report of a case with cytologic detection in an extranodal site.

BACKGROUND: Follicular dendritic cell sarcoma (FDCS) is a rare malignancy of accessory immune cells that can present in both nodal and extranodal sites. Previous cytologic case reports of FDCS have focused on fine needle aspiration (FNA) findings in nodal sites with low grade morphology and indolent clinical courses. CASE: A 33-year-old female presented with a three-month history of abdominal distention, early satiety and nausea. Initial imaging studies showed a large abdominal mass, with subsequent studies showing lung, liver and lymph node metastases. Examination of primary and metastatic tumors by a combination of conventional histology, immunohistochemistry and FNA demonstrated an extranodal intraabdominal follicular dendritic cell sarcoma. CONCLUSION: FDCS demonstrates a characteristic cytologic picture on FNA, with important cytologic features, including both syncytial and discohesive large epithelioid to spindled malignant cells with intranuclear inclusions, nuclear grooves and a prominent, mature, lymphocytic inflammatory component. No evidence of morphologic tumor progression was noted in comparison of primary and metastatic tumors. To aid in the cytologic distinction of FDCS from other similar-appearing neoplasms, we recommend acquisition of material for immunohistochemical studies, recognition of diverse clinical presentations (including extranodal and aggressive) and acknowledgment of the range of tumor morphologic grades.

Abdominal Neoplasms↗