A clinical and radiographic variant of Wernicke-Korsakoff syndrome in a nonalcoholic patient.
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Biomedical subjects
Publications and source records attributed to T J Herzog.
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OBJECTIVE: MLH1 methylation is associated with the microsatellite instability (MSI) phenotype in endometrial cancer and atypical endometrial hyperplasia, a premalignant precursor to carcinoma. The observation that methylation is also seen in atypical endometrial hyperplasia without MSI suggests that methylation is an early event in endometrial tumorigenesis. Our objective was to determine if methylation is always present in MSI-positive atypical hyperplasia concomitant with MSI-positive, methylation-positive carcinoma. METHODS: We used laser capture microdissection to study MLH1 methylation and MSI in a large series of endometrial cancer cases that had previously been shown to have methylation and the MSI-high (MSI-H) phenotype. We resampled areas of carcinoma from 27 patients along with 51 foci of concomitant atypical endometrial hyperplasia. RESULTS: Consistent with previous reports, we saw MLH1 methylation in areas of atypical endometrial hyperplasia that did not show MSI. In addition, we noted that 18% of the MSI-H atypical endometrial hyperplasia DNAs lacked methylation of critical cytosines in the MLH1 promoter. Immunohistochemistry studies showed that these MSI-H unmethylated foci of atypical endometrial hyperplasia failed to express MLH1, as did regions of simple hyperplasia. CONCLUSION: Methylation of the MLH1 promoter is an early event in endometrial tumorigenesis. Given that not all MSI-positive tissues had methylation at cytosines -229 and -231, it appears that methylation may not be required for MLH1 silencing and loss of mismatch repair.
BACKGROUND: Rubitecan (9-nitrocamptothecin, 9-NC, Orathecin) and gemcitabine have single-agent activity in pancreatic and ovarian carcinoma. We conducted a phase I trial to evaluate the maximum tolerated dose (MTD) and toxicities of this combination in advanced malignancies. PATIENTS AND METHODS: Twenty-one patients with refractory or recurrent malignancies were enrolled in this dose escalation trial. Dose escalation proceeded from a starting level of rubitecan at 0.75 mg/m(2)/day administered orally on days 1-5 and 8-12 in combination with gemcitabine 1000 mg/m(2) administered intravenously on days 1 and 8 of a 21-day cycle. RESULTS: The MTD was defined as rubitecan 1 mg/m(2) administered orally days 1-5 and 8-12, and gemcitabine 1000 mg/m(2) administered intravenously over 30 min days 1 and 8, given every 21 days. Dose-limiting toxicity was myelosuppression including neutropenia and thrombocytopenia. Other side effects included diarrhea, nausea, vomiting and fatigue. Five patients with stable disease were observed among 18 evaluable patients. CONCLUSIONS: The recommended phase II dose is rubitecan 1 mg/m(2) given orally on days 1-5 and 8-12 in combination with gemcitabine 1000 mg/m(2) as a 30-min intravenous infusion on days 1 and 8 of a 21-day cycle.
We set out to determine the relative timing of loss of DNA mismatch repair and KRAS2 mutation in endometrial tumorigenesis. We studied endometrial carcinoma (CA) and synchronous atypical endometrial hyperplasia (AEH), the premalignant precursor of endometrial cancer. Carcinoma and hyperplasia were investigated for loss of mismatch repair as evidenced by microsatellite instability (MSI) and for KRAS2 mutations. Endometrial cancers previously shown to be MSI-positive were evaluated for KRAS2 codon 12 and 13 mutations. DNA was isolated from foci of AEH concomitant with, but physically remote from, the cancers by use of tissues prepared by laser capture microdissection (LCM). The AEH DNAs were then assessed for MSI and KRAS2 mutations. Of 210 endometrial CAs investigated, 51 (26%) were MSI-positive, and among those, 21 (41%) arose concomitantly with AEH. Of 41 foci of AEH (mean, two foci per patient) investigated, 34 (83%) were MSI-positive. KRAS2 mutations were seen in 5/51 (10%) MSI-positive carcinomas. From the five patients informative for both KRAS2 mutation and MSI, 10 foci of AEH were available for investigation. All 10 AEH specimens (100%) were MSI-positive, and six (60%) had the KRAS2 mutation present in the coexisting CA. The observation that some MSI-positive AEH specimens lack the KRAS2 mutation seen in the coexisting CA supports a model in which loss of DNA mismatch repair precedes KRAS2 mutation. However, in addition to the absence of KRAS2 mutations in AEH, we discovered mutations in LCM hyperplasia and carcinoma specimens that were not present in the portion of the cancers originally investigated. These discordant genotypes suggest genetic heterogeneity in endometrial hyperplasia and concomitant cancer.
OBJECTIVE: The goal of this study was to assess the involvement of chromosome 1p deletion in ovarian papillary serous carcinoma (OPSC) via high-resolution physical mapping to detect a candidate tumor suppressor gene previously implicated in uterine papillary serous carcinoma (UPSC) tumorigenesis. METHODS: Previous studies have demonstrated a high rate of loss of heterozygosity (LOH) within a critical region of chromosome 1p in UPSC, suggesting the presence of a putative tumor suppressor gene important in the development of UPSC. To compare the genetic changes in OPSC with those in UPSC, seven microsatellite repeat polymorphisms were used to evaluate LOH in primary OPSC specimens. Allelic intensity was compared between normal and tumor DNA from microdissected, formalin-fixed, paraffin-embedded specimens. In addition to the same seven 1p markers used for UPSC, three additional non-1p markers for chromosomes 1q, 11q, and 2p were tested to determine a baseline rate of LOH. RESULTS: Overall, 26.6% (8/30) of OPSC (vs 63.2% of UPSC) were characterized by loss at either of the two loci that define the critical region for UPSC. Rates of LOH at each of the 1p loci in the OPSC tumors ranged from 5.6 to 38.9%, which are compatible with background rates of loss for OPSC. LOH at non-1p loci was 29.2%. CONCLUSION: While a tumor suppressor gene on 1p appears to be an important genetic event in the development of UPSC, a similar rate and pattern of loss on 1p are not identified in OPSC. Thus, despite the striking clinical similarities between UPSC and OPSC, tumorigenesis in these carcinomas appears to occur via distinctly different pathways.
OBJECTIVE: We set out to determine the factors that predict subcutaneous implanted central venous port function. Specifically, we sought to determine whether the location of the catheter tip is correlated with port failure. METHODS: A review of all gynecologic oncology patients who underwent initial port placement between 1993 and 1998 was undertaken. The initial chest radiograph following port placement was reviewed, and the venous location of the catheter tip was recorded. Patients were followed until port removal, death, or the last documentation of port function. RESULTS: Two hundred thirty-six patients underwent port placement during the study period. The majority of patients (97%) had their port placed for intravenous chemotherapy. The median time of port duration in patients with a functional port was 21.6 months. Forty of the 236 ports (17%) were removed because of device malfunction. Catheter tips were located in the central venous system in 164 (69%) cases and outside of the central venous system in 72 (31%) cases. Removal secondary to malfunction was significantly higher when the catheter tip was located outside of the central venous system (30/72 (42%) versus 10/164 (6%), P = 0.001). By life-table analysis, ports removed for malfunction with their tips located centrally had a significantly longer median duration of functional use than those whose tips were located peripherally (78 versus 44 months, P = 0.0001). CONCLUSIONS: The rate of port removal secondary to malfunction is significantly less if the catheter tip is located in the central venous system. Confirmation of the location of the catheter tip is imperative for the long-term function of a subcutaneous implanted central venous port.
OBJECTIVE: To report a successful IVF pregnancy in an infertile couple after conservative treatment of endometrial cancer. DESIGN: Case report and literature review. SETTING: University teaching hospital. PATIENT(S): A 29-year-old infertile white woman. MAIN OUTCOME MEASURE(S): Successful pregnancy after conservative management of endometrial cancer. INTERVENTION(S): Grade 1 endometrial adenocarcinoma diagnosed at hysteroscopy, followed by dilatation and curettage (D&C). On follow-up D&C, pathologic examination was normal after high-dose progesterone therapy. The patient subsequently underwent an IVF cycle with transfer of three blastocysts. RESULT(S): The patient delivered triplets by cesarean section. Laparoscopic-assisted vaginal hysterectomy and bilateral salpingo-oophorectomy was then done. No residual endometrial cancer was evident in the hysterectomy specimen, but a 1.1-cm cystic mixed endometrioid and clear cell-type adenocarcinoma was discovered in the left ovary. The patient is doing well after 3 cycles of chemotherapy; her CA-125 level is normal. The triplets are also doing well. CONCLUSION(S): In carefully chosen situations, deferring surgery in infertile patients with endometrial cancer may be a viable option permitting subsequent successful pregnancy.
BACKGROUND: Meigs' syndrome refers to solid, benign ovarian tumors, ascites, hydrothorax, and resolution of these signs after surgery. Meigs' syndrome with an elevated CA 125 secondary to benign Brenner tumors is exceedingly rare. CASE: A postmenopausal woman presented with a large pelvic mass, ascites, and a right pleural effusion. Serum CA 125 was 759 IU/mL. Ascitic fluid, pleural fluid, and fine needle aspiration of the mass were without evidence of malignancy. Exploratory laparotomy with total abdominal hysterectomy and bilateral salpingo-oophorectomy revealed benign Brenner tumors. Immunohistochemical staining for CA 125 showed immunoreactivity in the omentum only. Postoperatively, her signs and symptoms resolved completely and did not recur. CONCLUSION: Cytologic or histologic confirmation of malignancy is imperative in patients with a pelvic mass, ascites, hydrothorax, and elevated CA 125 before initiating chemotherapy.
After the logic of evidence-based medicine, there are several conclusions to be reached from these recent prospective, randomized phase III clinical trials. Patients with stages IB2 and IIA cervical carcinoma, although technically manageable, should be treated with external pelvic irradiation and brachytherapy and weekly (cisplatin 40 mg/m2 x 6 wk), if it is suspected that the likelihood of positive lymph nodes or margins requiring adjuvant treatment after radical surgery would be significant. In those patients in whom the risks of either positive margins or lymph nodes are low, either radical surgery or radiation are equally efficacious options. A recent report that surveyed the Surveillance, Epidemiology, and End Results program database suggested that there may be a survival advantage for surgical intent-to-treat patients compared with the radiation intent-to-treat patients for tumors 4 cm or smaller in patients with stage IB and IIA cervical cancers. Certainly, toxicity criteria for these patients in terms of long-term problems need to be further examined. For those patients who undergo a radical hysterectomy and lymph node dissection, postoperative irradiation is indicated if high-risk factors such as large tumor size, lymph vascular space invasion, and deep stromal invasion are identified. Patients who are found to have positive lymph nodes, positive parametrial invasion, or positive margins at the time of hysterectomy should receive postoperative irradiation with chemotherapy. All other patients with more advanced clinical stages of cervical carcinoma should be treated with external pelvic irradiation, brachytherapy, and concurrent chemotherapy. Based on the results of the randomized studies, there appears to be no role for either hydroxyurea or fluorouracil. The chemotherapy agent of choice, at present, is cisplatin administered concurrently with irradiation at a dose of 40 mg/m2 weekly for 6 weeks. Concurrent chemotherapy should be avoided in patients with a poor performance status and other severe comorbidities, and these patients should be treated with irradiation alone. Further refinement of treatment for those patients who require combined chemo/radiation versus those with comorbidities such that combination chemotherapy is actually too toxic must be defined.
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BACKGROUND: The purpose of this study was to compare the clinical characteristics of endometrial carcinomas with and without microsatellite instability (MSI). METHODS: The authors prospectively acquired DNA from patients with endometrial carcinomas at Washington University Medical Center. Tumors were assigned MSI (+) status when two or more of five microsatellite repeat markers revealed novel bands in tumor DNA not present in the corresponding normal DNA. Clinical characteristics and survival data of patients with and without MSI were abstracted from patient charts. Statistical significance was calculated with the chi-square test, and survival was assessed with Kaplan-Meier methods. RESULTS: The authors found 65 of 70 (93%) patients with MSI (+) tumors to be of white race, whereas only 124 of 159 (78%) patients with MSI (-) tumors were white (P = 0.012). Advanced disease (International Federation of Gynecology and Obstetrics Stage III-IV) was observed in 9 of 70 (13%) MSI (+) patients and 44 of 159 (28%) MSI (-) patients (P = 0.017). In addition, aggressive histologic subtypes were observed less frequently in MSI (+) tumors (6/70 [8%]) than in MSI (-) tumors (30 of 159 [19%]) (P = 0.034). Race and stage were shown by multivariate analysis to be different in MSI (+) and MSI (-) patients. Recurrence and overall survival were similar in the two groups. CONCLUSIONS: Patients with MSI (+) tumors were more likely to be of white race and to present with early stage disease. Further investigation is needed to explain why patients with MSI (+) tumors have similar survival to patients with MSI (-) tumors, despite presenting at earlier stages, being of white race, and being less likely to be associated with virulent histologic subtypes.
OBJECTIVE: We set out to determine whether hereditary nonpolyposis colorectal cancer (HNPCC) was responsible for cancer susceptibility in a family with gynecologic malignancies in three consecutive generations. METHODS: A detailed family history study, including review of medical records, was undertaken. Tumor DNAs from affected family members were evaluated for microsatellite instability (MSI). Linkage between cancer susceptibility and the candidate DNA mismatch repair genes MLH1, MSH2, MSH3, and MSH6 (GTBP) was investigated. MLH1 and MSH2 protein expression was evaluated by immunohistochemistry and MSH2 was investigated for mutation. RESULTS: Four gynecologic malignancies in the core family were confirmed. MSI was seen in six of seven cancers studied. The only MSI-negative tumor was an ovarian cancer from the proband's maternal grandmother, which arose at the age of 92. Haplotype analysis using chromosome 2p markers implicated the MSH2 gene in this family's cancer susceptibility. MSH2 protein expression was absent in an MSI-positive colon cancer from an affected family member. CONCLUSIONS: The inability to exclude linkage of MSH2 with the disease susceptibility, the presence of the MSI phenotype in cancers from family members sharing the same region of chromosome 2p, and the lack of immunodetectable MSH2 point to MSH2-associated HNPCC as a cause for this family's cancer susceptibility. Continued efforts to increase awareness of the heritability of endometrial cancer should improve our understanding of the disease, with resultant improved surveillance strategies, recommendations for surgical and chemoprophylaxis, and identification of patients at risk for malignancy as a result of HNPCC.
PURPOSE: The activity and toxicity of topotecan were evaluated in a multicenter Phase II study for patients with previously treated squamous cell carcinoma of the uterine cervix. PATIENTS AND METHODS: Histologic confirmation of the primary diagnosis was required, as well as adequate performance status and vital organ function and the presence of measurable disease. Patients were allowed one prior regimen of systemic therapy, usually platinum-based. A two-stage accrual design was utilized with early stopping criteria and monitoring of toxicity. Topotecan was administered at 1.5 mg/m(2) per day for 5 consecutive days on a 21-day cycle with modifications based on hematologic toxicity. RESULTS: Forty-five patients were entered. Two patients were ineligible (incorrect tumor type) and 2 were inevaluable (never received therapy). One additional patient was not evaluable for response (nonmeasurable disease). A median of 2 cycles was administered to each patient (range: 1-17 cycles) with grade 4 neutropenia in 68% and grade 4 thrombocytopenia in 39% of patients, but without treatment-related deaths. Nonhematologic toxicity was generally mild and not dose-limiting. The overall (complete and partial) response rate among evaluable patients with measurable disease was 12.5% with stable disease in an additional 37. 5%. Median progression-free survival was 2.1 months. CONCLUSIONS: As a single agent topotecan shows modest antitumor activity, with manageable hematologic and nonhematologic toxicity, in patients with previously treated squamous cell carcinoma of the cervix. Further evaluation in chemotherapy-naive patients or in combination with cisplatin and/or radiation may be indicated.
OBJECTIVE: PTEN, a tumor suppressor gene shown to be frequently mutated in endometrial cancers, has been suggested to be a target of microsatellite instability (MSI)-driven mutagenesis. We set out to investigate the relationship between MSI and PTEN mutation in a large series of primary endometrial carcinomas. METHODS: Thirty-nine MSI-positive endometrial cancers were evaluated by single-strand conformational variant analysis and direct sequencing to screen all nine PTEN exons for mutation. RESULTS: Fifteen specimens (38%) demonstrated 16 PTEN mutations. We observed only one alteration in the poly-adenine repeat of exon 8 that is suggested to be a target for mutation in endometrial cancers with MSI. Seven of 16 (44%) mutations in our series were deletions of >/=3 bp, a class of mutation not usually associated with tumors with defective DNA mismatch repair. To determine the significance of this high frequency of deletion, 26 additional endometrial cancers without MSI were matched with the 39 MSI-positive cancers for the prognostic factors of tumor histology, stage, grade, and patient race. The MSI-positive tumors had a significantly higher frequency of deletions involving >/=3 bp when compared with the MSI-negative group (5/11 versus 0/10, P = 0.035). CONCLUSIONS: Repeat tract mutation in PTEN is an uncommon event in MSI-positive cancers. Deletion of >/=3 bp in this gene is more common in MSI-positive cancers when compared with tumors without MSI.
OBJECTIVE: To estimate the morbidity, adequacy of surgery, and survival of obese women undergoing radical hysterectomy and pelvic lymphadenectomy. METHODS: Patients with stage I and IIa cervical cancer and a body mass index (BMI) over 30 kg/m(2) and absolute weight greater than 85 kg explored with the intent for radical hysterectomy between 1986 and 1998 were identified. Patient characteristics, surgical, pathologic, and follow-up data were extracted and survival curves were generated. RESULTS: Forty-eight obese women were identified who were explored for radical hysterectomy and pelvic lymph node dissection. The median BMI was 36 kg/m(2), and the median weight was 95 kg. Thirty-five patients (73%) had stage Ib1 disease. Despite the obesity of the study group, none had severe comorbidity. The procedure was completed in 46 patients, and abandoned in two because of metastatic disease. For patients undergoing radical hysterectomy and pelvic lymph node dissection, median blood loss was 800 mL. No patient developed fistulas. Residual tumor was present in 26 (57%) hysterectomy specimens, and margins were without disease in 45 specimens (98%). A median of 26 pelvic lymph nodes were obtained per procedure, and six patients (13%) had positive nodes. Five-year overall and disease-free survival are 84% (95% confidence interval [CI] 70.9, 97.5) and 80% (95% CI 65.2, 93.8), respectively, at a median follow-up of 36 months. CONCLUSION: In this carefully selected obese group, we demonstrate that radical hysterectomy and pelvic lymph node dissection can be performed with adequate surgical resection, acceptable morbidity, and excellent survival.
Gestational trophoblastic disease (GTD) is a spectrum of rare neoplastic conditions that are highly curable, even in the presence of widely metastatic disease. These diseases vary from partial hydatidiform mole, which rarely metastasizes and infrequently requires treatment with chemotherapy, to choriocarcinoma, for which multi-agent chemotherapy is the standard treatment. Much has been learned regarding the epidemiology of this disease, and our understanding of the genetics underlying GTD is rapidly expanding. As technology such as ultrasonography and sensitive tests for beta-human chorionic gonadotropin have evolved, the presentation of molar pregnancy has significantly changed, although the incidence of persistent GTD has not decreased. This review highlights these recent advancements in the epidemiology, genetics, diagnosis, and treatment of gestational trophoblastic disease.
PURPOSE: The purpose of this analysis was to evaluate the prognostic significance of cervical tumor size in patients with Stages Ib and IIa carcinoma of the cervix treated with preoperative irradiation and radical or conservative hysterectomy. METHODS AND MATERIALS: This study is a retrospective analysis of 177 patients. One hundred forty-one patients had Stage Ib and 36 patients had Stage IIa carcinoma of the cervix. All patients were treated with preoperative irradiation and surgery. Radiation therapy consisted of external pelvic irradiation and intracavitary brachytherapy; total doses ranged from 30 to 60 Gy to the pelvic sidewall and 60 to 70 Gy to point A. Surgery consisting of radical hysterectomy and lymph node dissection or a conservative hysterectomy and lymph node dissection was performed 4 to 6 weeks after completion of irradiation. RESULTS: The 5-year progression-free survivals were 80% for Stage Ib and 63% for Stage IIa (p = 0.03). The 5-year cumulative pelvic failure rates for Stage Ib were 16% for tumors <3 cm and 9% for tumors >3 cm (p = 0.90). The 5-year cumulative pelvic failure rates for Stage IIa were 22% for tumors <3 cm and 22% for tumors >3 cm (p = 0.75). The corresponding cumulative distant metastasis failure rates at 5 years for Stage Ib were 21% for tumors <3 cm and 21% for tumors >3 cm (p = 0.60). For patients with Stage IIa disease, the 5-year cumulative distant metastasis rates were 33% for tumors <3 cm and 36% for tumors >3 cm (p = 0.70). A multivariate analysis was performed to evaluate prognostic factors for the endpoint of progression-free survival. The variables that were analyzed were patient age, tumor histology, tumor size, clinical stage, point A and pelvic lymph node irradiation dose, and cervical tumor status and pelvic lymph node status at the time of hysterectomy. The variables that were found to be of independent significance for progression-free survival by multivariate analysis were pelvic lymph node irradiation dose (p <0.001), pelvic lymph node status at the time of hysterectomy (p = 0.01), and clinical stage (p = 0.02). Cervical tumor size at the time of diagnosis and the presence of tumor cells in the cervix in the hysterectomy specimen was not an independent prognostic factor by multivariate analysis. The overall severe complication rate was 11% for all patients. CONCLUSIONS: For this population of patients treated with preoperative irradiation and surgery, pelvic lymph node status at the time of hysterectomy and the preoperative irradiation dose to the pelvic lymph nodes are independent predictors of progression-free survival and the development of distant metastasis. The pretreatment cervical tumor size is of less importance for predicting progression-free survival and the development of distant metastasis but clinical stage is an important prognostic variable. These results are in contrast with those of surgery or irradiation alone, in which primary tumor size is a critical prognostic factor for all outcome parameters.
Our laboratory previously reported a high frequency of loss of heterozygosity (LOH) at 1p32-p33 in endometrial cancers. LOH at 1p32-p33 is a specific feature of one of the most aggressive forms of endometrial carcinoma, uterine papillary serous cancer (UPSC). The minimum region of allelic loss in UPSC is defined by D1S190 and D1S447, an interval corresponding to less than 1 cM. Here we describe the construction and characterization of a sequence-ready clone contig that spans the deletion region. The contig consists of 24 bacterial artificial chromosome clones and 18 P1 artificial chromosome clones and spans approximately 1050 kb. The consensus region of allelic loss between D1S190 and D1S447 represents approximately 792 kb. Eight previously described ESTs have been positioned within the contig.