PubMed HealthSearch

Biomedical subjects

L Ossowski

Publications and source records attributed to L Ossowski.

6 recordsLinked to original sources

Invasion of connective tissue by human carcinoma cell lines: requirement for urokinase, urokinase receptor, and interstitial collagenase.

We have screened six human squamous carcinoma cell lines for their ability to invade connective tissue by using the experimentally modified chorioallantoic membrane of a chick embryo as an in vivo model of invasion. In confirmation of our earlier studies, all the invasive cell lines expressed high levels of surface-bound urokinase type plasminogen activator (uPA). However, some cell lines expressing this activity were not invasive, suggesting that surface uPA, although necessary, was not sufficient. Since in addition to fibronectin, that can be degraded by uPA or plasmin, chorioallantoic membrane connective tissue contains collagen, we examined the profile of collagenases secreted by the various cell lines in search for an activity that would coincide with the invasive phenotype. We found, using gelatin substrate gels, that type IV gelatinase was produced by all six cell types tested, three cell types produced the M(r) 92,000 gelatinase, and three a lower-molecular-weight activity, which we identified by immunoprecipitation with specific antibodies, and by a direct assay of activity, as interstitial collagenase. Only the latter cells were found to be highly invasive. We showed previously that continuous culture in vitro of one of the carcinoma cell lines, HEp3, led to a gradual extinction of their malignant phenotype. To confirm the correlation between invasion and the production of interstitial collagenase, we examined these two functions in cells freshly isolated from a HEp3 tumor and intermittently during passage in vitro. We found that, although the surface uPA activity was slightly diminished in the in vitro grown cultures, it was still within the range of values found in highly malignant cells, suggesting that it is not the reason for the decrease in invasiveness. In contrast, the reduction in interstitial collagenase closely followed the loss of the invasive phenotype; after 30 in vitro passages the cells were almost completely devoid of interstitial collagenase and unable to invade. The decrease in collagenase activity was not the result of an increased tissue inhibitor of metalloproteinases production.

Animals

Estradiol modulation of plasminogen activator production in organ cultures of human breast carcinomas: correlation with clinical outcome of anti-estrogen therapy.

We have studied the estradiol sensitivity of primary human breast carcinomas in organ culture in a prospective pilot series of 109 tumors. The effect on plasminogen activator (PA) production was used as the end-point of estrogen action. We found that: (i) All tumors secreted detectable levels of urokinase-type PA (uPA); the level of basal uPA production was markedly heterogeneous but showed a weak association with the level of estrogen receptor positivity (p = 0.049). (ii) Only 23.5% of the tumors secreted tissue-type PA (tPA) in addition to uPA; a higher proportion of these tumors had histological characteristics indicative of good prognosis (18% vs. 3% of tumors secreting only uPA). (iii) Estradiol modulated uPA production and this effect was receptor-mediated. (iv) Responsiveness to estradiol was limited to a subset (25 of 60 or 41.7%) of estrogen and progesterone-receptor-positive tumors. (v) Of 20 evaluable patients with lymph-node and receptor-positive breast cancer who received adjuvant anti-estrogen therapy, 11 were identified as estradiol-sensitive by the in vitro PA assay; of these, 10 had no evidence of disease after a median follow-up period of 3+ years. In contrast, of 9 patients with tumors identified as estradiol-insensitive, 4 developed metastases within 3+ years of follow-up. (vi) Consistent with the previously reported inhibitory effect of corticosteroids on uPA production in organ cultures of human tumors, the basal culture level of uPA produced by tumors from patients receiving corticosteroids at the time of surgery was significantly lower than the level of uPA in the remaining tumors (p = 0.029). Also, tumors from patients receiving thyroid hormone, known to stimulate uPA in vitro, showed a slight trend toward increased production of uPA. These results show that hormone effects on tumor PA production are qualitatively similar in organ culture and in the host. This and the emerging individual correlation between sensitivity to estradiol in vitro, as determined by PA, and the clinical effectiveness of anti-estrogen therapy, underscore the potential usefulness of the organ culture approach.

Breast Neoplasms

Inhibition of urokinase-type plasminogen activator by antibodies: the effect on dissemination of a human tumor in the nude mouse.

Nude mice given inoculations s.c. of a human squamous carcinoma--HEp3 (1.5 x 10(6) cells/mouse)--developed invasive tumors that produced high levels of urokinase-type plasminogen activator (uPA) and metastasized predictably to the lungs and lymph nodes of the host. To investigate the role of uPA in invasion and metastasis, mice given inoculations of tumor cells were treated daily with s.c. injections of specific, anti-human uPA antibodies (rabbit polyclonal, 150 inhibitory units; mouse monoclonal, 3000 inhibitory units/mouse/day). Control mice received either saline or preimmune rabbit immunoglobulins. A total of approximately 50 mice was studied. The tumors were surgically excised 10 to 17 days postinoculation when weighing 1 to 2 g. Antibody administration was discontinued after tumor excision. Two strategies were used: (a) following the removal of tumors the mice were maintained and observed until respiratory distress, indicative of lung metastasis, was evident; or (b) their lungs were examined for evidence of metastasis on the day of tumor removal. While histological sections of s.c. tumors excised from control mice indicated extensive local invasion, evidence of invasion was absent in most tumors excised from mice in which tumor uPA was inhibited by the antibody (P less than 0.025). The inhibition of local invasion did not, however, lead to a reduced incidence of distant metastasis. Since we found that the presence of HEp3 tumors in mice elicits a pronounced granulocytosis, we propose that this response may facilitate the spread of tumor cells by a mechanism independent of endogenous tumor proteases.

Animals

In vivo paracrine interaction between urokinase and its receptor: effect on tumor cell invasion.

Numerous studies have linked the production of increased levels of urokinase type plasminogen activator (uPA) with the malignant phenotype. It has also been shown that a specific cell surface receptor can bind uPA through a domain distinct and distant from the proteolytic domain. In an in vivo model of invasion, consisting of experimentally modified chorioallantoic membrane (CAM) of a chick embryo, only cells that concurrently expressed both uPA and a receptor for uPA, and in which the receptor was saturated with uPA, were efficient in invasion. To test whether uPA produced by one cell can, in a paracrine fashion, affect the invasive capacity of a receptor-expressing cell, we transfected LB6 mouse cells with human uPA (LB6[uPA]), or human uPA-receptor cDNA (LB6[uPAR]). LB6(uPA) cells released into the medium 1-2 Ploug units of human uPA per 10(6) cells in 24 h. The LB6(uPAR) cells expressed on their surface approximately 12,000 high affinity (Kd 1.7 x 10(-10) M uPA binding sites per cell. Unlabeled LB6(uPA) and 125-IUdR-labeled LB6(uPAR) cells were coinoculated onto experimentally wounded and resealed CAMs and their invasion was compared to that of homologous mixtures of labeled and unlabeled LB6(uPAR) or LB6(uPA) cells. Concurrent presence of both cell types in the CAMs resulted in a 1.8-fold increase of invasion of the uPA-receptor expressing cells. A four-fold stimulation of invasion was observed when cells were cocultured in vitro, prior to in vivo inoculation. Enhancement of invasion was prevented in both sets of experiments by treatment with specific antihuman uPA antibodies, indicating that uPA was the main mediator of the invasion-enhancing, paracrine effect on the receptor-expressing cells.

Animals

Preservation of steroid hormone receptors in organ cultures of human breast carcinomas.

In a study of human breast carcinomas in short-term organ culture, in which plasminogen activator modulation by estrogen was used as a test of estrogen sensitivity (R. Mira-y-Lopez and L. Ossowski, Cancer Res., 47: 3558-3564, 1987), we found that the number of estrogen and progesterone receptor-positive cancers showing estrogen sensitivity was less than anticipated from reported rates of antiestrogen-induced clinical remission. Since in these experiments the estrogen receptor (ER) content of the tumor cultures was only inferred from determinations carried out before culture, we postulated that the apparent estrogen insensitivity of some tumors resulted from poor ER preservation. We have now measured ER levels directly in cultured tissue and found that (a) ER levels in slices of human breast cancers decreased 78% (median) after 1-4 days; 4 of 16 (25%) ER-positive breast cancers had no detectable estradiol binding activity after culture; (b) the drop in ER level was a result of net receptor loss rather than inactivation of binding activity; (c) loss of cell viability could be definitively ruled out as a cause of decreased receptor level; (d) cortisol receptor levels in human breast cancers and ER levels in other hormone-responsive cancers also decreased in culture, and to a similar extent. Higher ER levels (sometimes equal to preculture levels) were preserved by culture at subphysiological temperature or in slices of controlled thickness, not exceeding 0.6 mm. These findings should be considered when organ culture is used to predict tumor hormone responsiveness.

Biomarkers, Tumor

Mammary plasminogen activator: correlation with involution, hormonal modulation and comparison between normal and neoplastic tissue.

We have analyzed the plasminogen activator (PA) content of normal rodent mammary glands at different stages of the mammary life cycle and after exposing the animals to various hormones; we have also assessed the PA response of mammary explants to a variety of hormonal environments. Similar studies were performed on a limited number of primary mammary tumors. Plasminogen activator production was clearly correlated with mammary involution. A large but transient increase in enzyme content followed the initiation of involution in all glands, and the enzyme was produced by mammary cells, not by macrophages or granulocytes. Oxytocin, prolactin and hydrocortisone, which slowed or blocked involution, produced parallel effects on gland regression and PA synthesis. PA synthesis by explants in organ culture was induced by hormonal environments that fostered involution and repressed by those that promoted lactation. Mammary tumors produced much more PA than normal tissue both in vivo and in vitro, and distinct differences were found in the response of enzyme synthesis to hormones. The results reinforce the association of PA with tissue remodeling; show that the enzyme can be used as an indicator of cellular response to a wide range of hormones in both normal and malignant tissue; and suggest that observations of this type in organ culture may be of some value in predicting physiological responses in vivo.

Animals