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Biomedical subjects

R Heimann

Publications and source records attributed to R Heimann.

At least 19 recordsLinked to original sources

Invariant p53 immunostaining in primary and recurrent breast cancer.

In animal models, acquired mutations of the p53 gene that result in increased p53 protein expression are associated with tumour recurrence following chemotherapy. The aim of this study was to test the hypothesis that breast cancer recurrences following adjuvant therapy exhibit aberrant p53 expression. We therefore evaluated p53 expression in paired primary and recurrent breast tumours: 48% of primary and 32% of recurrent tumours had abnormally increased p53 expression. Of the paired samples, 84% showed no change in p53 expression between the primary tumour and the metastasis. In fact, in no case was low (normal) p53 expression in the primary tumour followed by the development of high (aberrant) p53 expression in the recurrence. These results show that increased p53 expression is not selected for in the malignant cells emerging following adjuvant therapy, suggesting that p53 expression is unlikely to play a central role in breast cancer recurrences.

Adult↗

Effect of radiotherapy after breast-conserving treatment in women with breast cancer and germline BRCA1/2 mutations.

PURPOSE: Recent laboratory data suggest a role for BRCA1/2 in the cellular response to DNA damage. There is a paucity of clinical data, however, examining the effect of radiotherapy (RT), which causes double-strand breaks, on breast tissue from BRCA1/2 mutation carriers. Thus the goals of this study were to compare rates of radiation-associated complications, in-breast tumor recurrence, and distant relapse in women with BRCA1/2 mutations treated with breast-conserving therapy (BCT) using RT with rates observed in sporadic disease. PATIENTS AND METHODS: Seventy-one women with a BRCA1/2 mutation and stage I or II breast cancer treated with BCT were matched 1:3 with 213 women with sporadic breast cancer. Conditional logistic regression models were used to compare matched cohorts for rates of complications and recurrence. RESULTS: Tumors from women in the genetic cohort were associated with high histologic (P =.0004) and nuclear (P =.009) grade and negative estrogen (P=.0001) and progesterone (P=.002) receptors compared with tumors from the sporadic cohort. Using Radiation Therapy Oncology Group/European Organization for Research and Treatment of Cancer toxicity scoring, there were no significant differences in acute or chronic morbidity in skin, subcutaneous tissue, lung, or bone. The 5-year actuarial overall survival, relapse-free survival, and rates of tumor control in the treated breast for the patients in the genetic cohort were 86%, 78%, and 98%, respectively, compared with 91%, 80%, and 96%, respectively, for the sporadic cohort (P = not significant). CONCLUSION: There was no evidence of increased radiation sensitivity or sequelae in breast tissue heterozygous for a BRCA1/2 germline mutation compared with controls, and rates of tumor control in the breast and survival were comparable between BRCA1/2 carriers and controls at 5 years. Although additional follow-up is needed, these data may help in discussing treatment options in the management of early-stage hereditary breast cancer and should provide reassurance regarding the safety of administering RT to carriers of a germline BRCA1/2 mutation.

Adult↗

Separating favorable from unfavorable prognostic markers in breast cancer: the role of E-cadherin.

Distant metastases are the major cause of morbidity and mortality in women with breast cancer. The ability to predict the metastatic proclivity is essential in choosing the optimal treatment. Tumor size and grade, which are frequently used markers in node-negative breast cancer patients, are inadequate markers for prognosis and individualized treatment design. The steps in metastatic progression include angiogenesis, invasion, and changes in adhesion characteristics. We developed a strategy for choosing biomarkers representing these steps in malignant progression to identify patients with occult metastases who will need chemotherapy and spare those women whose tumors have not developed the capacity to spread. To evaluate the added significance of E-cadherin to that of nm23-H1 and angiogenesis in determining metastatic proclivity, we used archival material from 168 node-negative breast cancer patients who were treated with mastectomy without any adjuvant chemotherapy or hormone therapy. Immunohistochemistry was used to detect E-cadherin and nm23-H1 expression, whereas angiogenesis was determined by microvessel count (MVC) after immunohistochemical staining. The median follow-up is 14 years. We found that E-cadherin is better in identifying the poor prognosis patients. The 14-year disease-free survival (DFS) is 84%, 80%, and 56% in patients with high, intermediate, and low E-cadherin. The worst prognosis group using nm23-H1 and MVC as biomarkers has a 14-year DFS of 62%. In this group, if E-cadherin is low, the 14-year DFS is further decreased to 44%. Nm23-H1 and MVC are better in identifying the good prognosis patients. The long-term DFS is >90% if MVC is low or if nm23-H1 is high. Multivariate analysis shows that E-cadherin, nm23-H1, and MVC are more significant prognostic biomarkers than tumor size or grade. Loss of E-cadherin appears to be a latter step in the metastatic progression compared to angiogenesis and the loss of nm23-H1 expression.

Adult↗

Should internal mammary nodes be sampled in the sentinel lymph node era?

BACKGROUND: Controversy exists regarding internal mammary lymph nodes (IMNs) in the staging and treatment of breast cancer. Sentinel lymph node identification with radiocolloid can map drainage to IMNs and directed biopsy can be performed with minimal morbidity. Furthermore, recent studies suggest that IMN drainage of breast tumors may be underestimated. To gain further insight into the prognostic value of IMNs, we reviewed the outcome of patients in whom the IMN status was routinely assessed. METHODS: A retrospective review of 286 patients with breast cancer who underwent IMN dissection between 1956 and 1987 was conducted. RESULTS: Median follow-up is 186 months, age was 52 years (range, 21-85 years), tumor size was 2.5 cm, and number of IMNs removed was 5 (range, 1-22); 44% received chemotherapy, 16% endocrine therapy, and 5% radiotherapy. Presence of IMN metastases correlated with primary tumor size (P < .0001) and number of positive axillary nodes (P < .0001) but did not correlate with primary tumor location or age. Overall, the 20-year disease-free survival is significantly worse for the 25% of patients with IMN metastases (P < .0001). In patients with positive axillary nodes and tumors smaller than 2 cm, there was a significantly worse survival (P < .0001) in the patients with IMN metastases. This difference in survival was not seen in women with tumors larger than 2 cm. CONCLUSIONS: Patients with IMN metastases, regardless of axillary node status, have a highly significant decrease in 20-year disease-free survival. Treatment strategies based on knowledge of sentinel IMN status may lead to improvement in survival, especially for patients with small tumors. At present, sentinel IMN biopsies should be performed in a clinical trial setting.

Adult↗

Individual characterisation of the metastatic capacity of human breast carcinoma.

The clinical implications of understanding the invasive and metastatic proclivities of an individual patient's tumour are substantial because the choice of systemic therapy needs to be guided by the likelihood of occult metastasis as well as by knowing when the metastases will become overt. Malignant potential is dynamic, progressing throughout the natural history of a tumour. Required of tumours is the development of critical phenotypic attributes: growth, angiogenesis, invasion and metastagenicity. Characterisation of the extent of tumour progression with regard to these major tumour phenotypes should allow the fashioning of individual therapy for each patient. To examine the clinical parameters and molecularly characterise the metastatic proclivity we have been studying a series of regionally treated breast cancer patients who received no systemic therapy and have long follow-up. Clinically we describe two parameters: metastagenicity - the metastatic proclivity of a tumour, and virulence--the rate at which these metastases appear. Both attributes increase with tumour size and nodal involvement. However, within each clinical group there is a cured population, even in those with extensive nodal involvement, underscoring the heterogeneity of breast cancers within each group and the need for further molecular characterisation. Using biomarkers that characterise the malignant phenotype we have determined that there is progression in the phenotypic changes. Angiogenesis and loss of nm23 are earlier events than the loss of E-cadherin, or abnormalities in TP53. The strongest biomarkers of poor prognosis are p53 and E-cadherin, but even when both are abnormal 42% of node-negative patients are cured indicating that other determinative steps need to occur before successful metastases are established. Identification of these critical later events will further increase the efficacy of determining the malignant capacities of individual tumours.

Breast Neoplasms↗

Clinical progression of breast cancer malignant behavior: what to expect and when to expect it.

PURPOSE: Seemingly localized breast cancer is a heterogeneous mix of truly localized cancers and cancers with occult metastases. Our purpose is to determine the parameters of metastatic proclivity for the different clinical presentations of operable breast cancer and to present quantitative prognostic information useful to both doctors and patients. PATIENTS AND METHODS: A series of regionally treated breast cancer patients was analyzed to determine the likelihood and time of the appearance of clinical metastases for different clinical subgroups. Patients operated on at the University of Chicago from 1927 to 1987 for clinically regionally localized breast cancer, who received no systemic therapy as a part of their initial treatment, were included. Overall survival and distant disease-free survival in this mature series are analyzed. RESULTS: Metastagenicity, the metastatic proclivity of a tumor, increases with both tumor size and nodal involvement. This is also true for virulence, which is the rate at which these metastases appear. Each clinical group has a cured population, even those with extensive nodal involvement. A table provides a tool for determining the proportion of risk expended in each clinical group as a function of the distant disease-free survival. Whereas the likelihood of metastasis increases with tumor size and nodal involvement, the time to their appearance decreases. CONCLUSIONS: Breast cancer metastagenicity and virulence are heterogeneous even within clinically similar groups of operable breast cancer patients. Tumor progression is correlated with increasing tumor size and nodal involvement. Markers are needed to identify individual tumor virulence and metastagenicity.

Adult↗

Cathepsin B activity and protein levels in thyroid carcinoma, Graves' disease, and multinodular goiters.

Cathepsin B (CB) is involved in the hydrolysis of thyroglobulin (Tg) and thought to be regulated by thyroid stimulating hormone (TSH) in the normal thyroid. Our analyses of 91 thyroid tissues from 71 patients with Graves' disease (GD), multinodular goiter (MNG), papillary carcinoma (PC), or follicular carcinoma (FC), demonstrated a 2-fold increase in expression of CB in GD and an average increase of 1.5-fold in MNG (varying from 10-fold below normal to 6-fold above normal in MNG nodules), as might be predicted by the altered functional status of thyroid follicular cells in those diseases. However, CB activity was not downregulated in conjunction with the known "blocking effect" of malignancy on many thyroid functions, but rather increased on average 9-fold in papillary carcinomas (n = 33), and also showed a marked increase in 2 follicular carcinomas. Activity measurements were confirmed by CB protein detection on Western blot with moderately increased CB protein levels demonstrated in GD, variable expression in nodules of MNG, and markedly increased protein expression in carcinomas. In all diseased states, increased protein was detected primarily as overexpression of the 27 kd heavy chain of 2-chain mature CB and less frequently as overexpression of 31 kd single-chain mature CB. However, an additional 35 kd protein form was noted in 3 of 9 PCs, 1 of 2 FCs, and 1 of 4 GD cases but in none of 10 MNG cases. In conjunction with elevated CB activity plus additional protein bands on Western blots, altered patterns of CB immunohistochemical staining were observed, irrespective of the type of thyroid disease, suggesting certain common changes in CB expression, posttranslational processing, and vesicular trafficking. In summary, GD and MNG thyroid tissues demonstrated altered CB expression in keeping with predicted functional changes in thyroid follicular cells, while increased CB expression in carcinomas indicated a more pathological role for CB in thyroid cancers, possibly related to the processes of invasion or metastasis.

Blotting, Western↗

Modulation of apoptotic response of a radiation-resistant human carcinoma by Pseudomonas exotoxin-chimeric protein.

Strategies to sensitize human tumors that are resistant to apoptosis have been clinically unsuccessful. We demonstrate that a structurally modified chimeric Pseudomonas exotoxin, PEdelta53L/TGF-alpha/KDEL, with binding specificity for the epidermal growth factor receptor, markedly enhances sensitivity of human xenografts to radiation killing. Exposure to PEdelta53L/TGF-alpha/KDEL decreases the apoptotic threshold through protein synthesis inhibition and simultaneous production of ceramide in tumor cells that lack functional p53 protein. In contrast, no increase in local or systemic toxicity was observed with the chimeric toxin and radiation. We conclude that biochemical targeting of the chimeric toxin and physical targeting of ionizing radiation may increase the therapeutic ratio in the treatment of human cancers with alterations of p53 expression. This strategy offers a high therapeutic potential for Pseudomonas exotoxin A chimeric proteins and irradiation.

ADP Ribose Transferases↗

Combined effects of angiostatin and ionizing radiation in antitumour therapy.

Angiogenesis, the formation of new capillaries from pre-existing vessels, is essential for tumour progression. Angiostatin, a proteolytic fragment of plasminogen that was first isolated from the serum and urine of tumour-bearing mice, inhibits angiogenesis and thereby growth of primary and metastatic tumours. Radiotherapy is important in the treatment of many human cancers, but is often unsuccessful because of tumour cell radiation resistance. Here we combine radiation with angiostatin to target tumour vasculature that is genetically stable and therefore less likely to develop resistance. The results show an antitumour interaction between ionizing radiation and angiostatin for four distinct tumour types, at doses of radiation that are used in radiotherapy. The combination produced no increase in toxicity towards normal tissue. In vitro studies show that radiation and angiostatin have combined cytotoxic effects on endothelial cells, but not tumour cells. In vivo studies show that these agents, in combination, target the tumour vasculature. Our results provide support for combining ionizing radiation with angiostatin to improve tumour eradication without increasing deleterious effects.

Angiostatins↗

The relationship between nm23, angiogenesis, and the metastatic proclivity of node-negative breast cancer.

Distant metastases are the major cause of morbidity and mortality in women with breast cancer. The prediction of this metastatic proclivity is essential in determining prognosis and should allow an appropriate choice of therapy. A critical look at the metastatic process and its phenotypic expression offers an opportunity to identify some of the important events in the process that may relate to prognosis, with the goal of identifying those patients with occult metastases and also sparing systemic treatment in those patients whose tumors have not developed the capacity for distant spread. To evaluate the significance of nm23 and angiogenesis in the metastatic cascade, we used archival material from 163 node-negative breast cancer patients who had a median follow-up of 14 years. All patients underwent mastectomy and received no adjuvant chemotherapy or hormone or radiation therapy. Immunohistochemistry was used to detect nm23-H1 expression, whereas angiogenesis was determined by microvessel count (MVC). We found the 15-year disease-free survival (DFS) to be significantly better in patients with high nm23 compared with low nm23 (91% compared with 70%, P = 0.008). Low MVC is associated with excellent (92%) long-term DFS. In those patients with high MVC, high nm23 allows the identification of a subgroup with significantly higher DFS (90% compared with 66%, P = 0.02). Among high nuclear grade tumors, if nm23 is high, the DFS is significantly better (89% compared with 68%, P = 0.03). Thus, nm23 is still associated with excellent survival, even when there is unfavorable angiogenesis or nuclear grade. Multivariate analysis confirms that nm23 and MVC are important prognostic factors. High MVC appears necessary but not sufficient for metastasis to occur, whereas low nm23 may further contribute to metastatic progression. Both nm23 and MVC contribute valuable information in characterizing the malignant phenotype.

Adult↗

The benefits of mammography are not limited to women of ages older than 50 years.

BACKGROUND: Although the benefits of mammography are established in women age < or = 50 years, its use in women age < 50 years is controversial. It is the purpose of this study to determine whether the better outcome in mammographically detected breast carcinoma compared with clinically detected breast carcinoma observed in women age > or = 50 years also is observed in women age < 50 years. METHODS: The authors analyzed 869 cases of Stage I and II breast carcinoma in women treated with breast-conserving therapy between 1984-1994. The median follow-up was 43 months (range, 3-128 months). Three hundred and eighteen patients (37%) presented with mammographic abnormalities without clinical signs of disease and 551 patients (63%) presented with clinical signs of disease. The median age of the patients was 56 years (range, 22-88 years). Three hundred and four patients (35%) were age < 50 years. RESULTS: Mammographically detected tumors in women age < 50 years were of similar size to those in women age > or = 50 years (median 1.1 cm vs. 1.0 cm). Axillary lymph node involvement and tumor grade were not significantly different between these two groups. However, in women age < 50 years the clinically detected tumors were found to be significantly larger, more likely to be axillary lymph node positive, and of higher grade compared with tumors in older women. Consequently, in patients with mammographically detected tumors, there was no significant difference in recurrence free survival (RFS) between women age < 50 years compared with women age > or = 50 years (90% and 92%, respectively; P=0.4), whereas in patients with clinically detected tumors there was a significant difference in 5-year RFS (77% vs. 87%, respectively; P=0.02). CONCLUSIONS: Mammography results in the diagnosis of smaller and lower grade breast carcinoma. If mammographically detected, there appears to be no difference in RFS between women age < 50 years and those women age > or = 50 but there is a difference if the tumors are clinically detected. If left to grow to the size necessary for clinical detectability, the disease appears to be more aggressive in younger women.

Adult↗

Assessment of intratumoral vascularization (angiogenesis) in breast cancer prognosis.

The search for prognostic markers is important both to identify those patients with occult metastases and also to spare chemotherapy in those patients whose tumors have not developed the capacity for distant spread. Angiogenesis, the formation of new blood vessels, is necessary for breast cancer growth and metastasis. Good correlation has been demonstrated between intratumoral vascularization and outcome in patients with breast cancer. Intratumoral vascularization in human breast cancer can be measured by using standard immunohistochemical methods. Strict guidelines for scoring need to be followed. Although attempts are being made to automate the reading, visual scoring remains superior. We studied a population of women with small node-negative breast cancer who received no adjuvant therapy and have a median follow-up of 15 years. We have found intratumoral vascularization, as measured by microvessel count, to be an independent prognostic factor for disease-free survival. Low microvessel count identifies a group of patients with a 20 year disease free survival of 93%. The proportion of women with low microvessel count decreases with increase in tumor size and increases with patient age. But even in mammographically detected nonpalpable breast cancer, that is, the smallest breast cancer we currently detect, the majority already have high microvessel count. Intratumoral vascularization appears to be an early event that is necessary but not sufficient for metastatic progression. Microvessel count seems to be an excellent marker to identify patients with good prognosis because those with low microvessel count have a 93% disease-free survival irrespective of size, grade, or estrogen receptor status, but is less good at predicting those at high risk since the 20-year disease-free survival is still 67-70% in those with high microvessel count. Thus, the higher risk group needs to be further stratified using additional prognostic factors.

Breast Neoplasms↗

Aging, progression, and phenotype in breast cancer.

The malignant potential of cancer is dynamic, changing throughout the natural history of a tumor. For breast cancer, this is especially important because the clinical presentation has been altered by the increasing use of screening mammography. The varied outcomes of similarly staged patients is most consistent with breast cancer not being a homogeneous disease, but rather a spectrum of disease states that have varying capacities for growth and metastasis. Evolutionary pressures are at play in both tumor development and during the clinically apparent portion of the life of a tumor and are responsible for this spectrum of tumor heterogeneity. Required of tumors is the development of critical phenotypic attributes: growth, invasion, metastagenicity, and angiogenesis. The combination and permutation of genetic changes that result in the acquisition of these characteristics may vary, but they must result in some expression of each of these phenotypes. The expression of these attributes will differ as tumors evolve to become more adept at each of these characteristics. Recognizing tumor heterogeneity emphasizes the need to determine an individual tumor's place in the evolutionary spectrum. This may be accomplished using clinical features such as size, nuclear grade, and patient age, as well as by examining markers of angiogenesis, metastatic capacity, and proliferation. Identification of the extent of tumor progression with regard to these major tumor phenotypes should allow individual therapy to be fashioned for each patient.

Aging↗

Decreasing the apoptotic threshold of tumor cells through protein kinase C inhibition and sphingomyelinase activation increases tumor killing by ionizing radiation.

Approximately 30% of cancer deaths result from the failure to control local and regional tumors. The goal of radiotherapy is to maximize local and regional tumor cell killing while minimizing normal tissue destruction. Attempts to enhance radiation-mediated tumor cell killing using halogenated pyrimidines, antimetabolites, and other DNA-damaging agents or sensitizers of hypoxic tumor cells have met with only modest clinical success. In an unique strategy to modify tumor radiosensitivity, we used an inhibitor of the protein kinase C group A and B isoforms, chelerythrine chloride (chelerythrine), to enhance the killing effects of ionizing radiation (IR). Protein kinase C activity plays a central role in cellular proliferation, differentiation, and apoptosis. Chelerythrine increases sphingomyelinase activity and enhances IR-mediated cell killing through induction of apoptotic tumor cell death in a radioresistant tumor model both in vitro and in vivo. Although previous reports have suggested that IR-mediated apoptosis correlates with tumor volume reduction, we demonstrate for the first time that lowering the apoptotic threshold increases tumor cell killing in vivo.

Alkaloids↗