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Biomedical subjects

A Albini

Publications and source records attributed to A Albini.

At least 127 records · Page 7Linked to original sources

Alteration of laminin production in small-cell lung carcinoma: possible correlation with the absence of the basement membrane.

Basement membranes are frequently absent in small-cell lung cancer (SCLC). To study this phenomenon, the production of laminin by SCLC cells, both in vitro and in vivo, has been investigated and compared with the laminin production by lung carcinomas of other histotypes (non-SCLC, NSCLC). Immunoradiometric and immunoperoxidase tests, respectively, carried out on culture supernatants and cells using antilaminin rabbit antiserum, revealed that in 1 (H446) out of 8 SCLC cell lines tested and in the NSCLC line Calu3, laminin was detectable both in the culture medium and in the cytoplasm of the cells. After treatment of an SCLC-negative cell line (N592) with monensin, a molecule which inhibits protein secretion, laminin became detectable in the cytoplasm. Similar results were obtained by FACS analysis on cells permeabilized with saponin. Northern analysis indicated that the laminin B1 gene was transcribed. The level of mRNA for the B1 laminin subunit in the N592 cells was twice and 4 times higher than that found in the laminin-secreting Calu3 and H446 cell lines. The production of laminin in SCLC and NSCLC surgically resected samples using immunoperoxidase staining of cryostatic sections was also investigated. The results indicate that 85% of the NSCLC cases tested showed diffuse staining in the cytoplasm of the tumor cells and strong staining at the basement membrane level, whereas a similar staining was only found in 15% of the SCLC cases tested. The treatment of SCLC cells with differentiating agents in vitro has been shown to induce the adhesion of these cells. In fact, n-butyric acid induced the disaggregation of floating-clump cells and single-cell adhesion in the N592 line, whereas after treatment with retinoids the clumps of the N592 cells were still present, but 30% of these were found to adhere to the plate. However, no increase in the laminin production was found in the cytoplasmic or culture medium under these conditions.

Adenocarcinoma↗

Induction of chemotactic and invasive phenotype in BALB/c 3T3 cells by 1,2-dibromoethane transformation.

1,2-Dibromoethane (DBE), which can act as initiating agent, is capable of inducing a malignant phenotype in BALB/c 3T3 cells. Cells transformed with a single noncytotoxic dose formed more progressive tumors in vivo. Almost all animals (95%) receiving the inoculum of two different transformed clones developed tumors within 1 month. In the control group only 55% of the animals developed tumors after 4 months. Treatment with DBE also increased the chemotactic properties of target cells, which also acquired ability to penetrate and colonize a reconstituted basal membrane (matrigel). These data suggest that DBE could play a key role in tumor progression.

3T3 Cells↗

Oncosuppressor genes: mechanisms of inactivation for the retinoblastoma gene and p53.

Mutations that affect oncosuppressor genes contribute to transformed phenotype. The recessive characteristics of these genes require mutations on both alleles. For this reason alterations of the oncosuppressor genes can be transmitted with the germ line. In this review we focus on mechanisms of inactivation of the retinoblastoma gene and p53. The products of these genes are nuclear phosphoproteins involved in controlling cellular proliferation. Inactivated Rb genes have been found in several tumor types. The phosphorylation of the Rb gene product, p105Rb, is regulated by cyclin-dependent kinases in accordance with the cell cycle. Hypophosphorylated wild-type p105Rb is tightly bound to the nuclear matrix and seems to be critical in inhibition of cellular proliferation. Hyperphosphorylation is a physiological mechanism of inactivation of p105Rb. The p53 gene product is a transcriptional factor that blocks the progression of cell division. Mutations in the p53 gene are frequently found in many human cancers and are localized in the highly conserved region of the gene. The protein product of the mutated gene looses its function as a negative regulator of cellular proliferation. The wild-type protein can also be inactivated by forming stable complex with a mutated p53 protein or with the SV large T antigen.

Animals↗

Matrigel promotes retinoblastoma cell growth in vitro and in vivo.

Cells derived from retinoblastomas grow slowly in vitro and only very rarely form tumors in nude mice. Matrigel, a mixture of components normally found in basement membranes, promotes the growth of Y-79 and WERI-Rb1 retinoblastoma (Rb) cells when added to suspension cultures of the 2 Rb cell lines. It also substantially increases cell adhesion in vitro. Y-79 cells, seeded into a Matrigel matrix, form round colonies over a 3-week period similar to those of control, weakly metastatic murine melanoma cells. In vivo, s.c. co-injection of Matrigel with either Y-79 or WERI-Rb 1 cells into nude mice promotes retinoblastoma tumor formation. Transplantation of as few as 1,000 cells allows for xenografting under these conditions, while no tumors were observed in the absence of Matrigel, even at 10 x 10(6) cells/inoculum. The tumors produced have the expected morphology and express an mRNA for a highly specific retina/retinoblastoma marker protein, the interphotoreceptor retinoid-binding protein. Thus, the xenografts obtained maintain the original morphological and molecular characteristics of the injected cells and represent a useful model for in vivo studies of retinoblastoma growth and treatment.

Animals↗

Inhibition of tumor cell invasion by a highly conserved peptide sequence from the matrix metalloproteinase enzyme prosegment.

The metastasis associated 72-kDa type IV collagenase is secreted as a latent proenzyme which is converted to an active 62-kDa form by autoproteolytic removal of an amino terminal profragment. The region immediately upstream from the cleavage site contains a highly conserved peptide sequence, MRKPRCGNPDV, which is present in all known members of the matrix metalloproteinase family. Evidence implicates the cysteine residue of this sequence as critical for maintenance of the latent form through coordination with the catalytic zinc atom of the active site. A synthetic peptide, TMRKPRCGNPDVAN (peptide 74), encompassing this conserved sequence, has been shown to inhibit the activated form of the 72-kDa type IV collagenase in vitro. In the present study we examine the ability of this peptide inhibitor to modulate tumor cell invasiveness. Peptide 74 and the control peptide 78, which contains a single substitution of serine for the "critical" cysteine residue, were added at 30 microM concentrations to the upper compartment of the Boyden chamber in the chemoinvasion assay using HT1080 and A2058 human tumor cells. In this assay a layer of reconstituted basement membrane, Matrigel, is coated onto chemotaxis filters and acts as a barrier to the migration of cells in the Boyden chambers. Only cells with invasive capacity can cross the Matrigel barrier. Peptide 74 containing the cysteine residue inhibited the invasion of both the HT1080 and A2058 cells through the Matrigel barrier; control peptide 78 was not inhibitory. Both peptides were shown to be without cytotoxic action and did not inhibit chemotaxis or affect cell number. This study demonstrates that addition of an excess peptide containing the matrix metalloproteinase prosegment inhibitory sequence can inhibit invasive activity at the cellular level and suggests that this may be a useful strategy to modulate tumor cell invasiveness in vivo.

Base Sequence↗

Laminin-induced retinoblastoma cell differentiation: possible involvement of a 100-kDa cell-surface laminin-binding protein.

Gene and protein expression of Y-79 retinoblastoma cells growing on poly(D-lysine) is switched from a photoreceptor-like to a conventional neuron-like pathway by the basement membrane glycoprotein laminin. Unlike other cell systems where laminin influences differentiation, Y-79 cells can neither attach to nor chemotactically respond to laminin. However, laminin increases attachment to poly(D-lysine). The laminin effects therefore seem to occur via an adhesion- and chemotaxis-independent mechanism. Moreover, these tumor cells do not exhibit high-affinity laminin binding, having only a single binding site of intermediate affinity. Laminin-Sepharose affinity chromatography of Y-79 cell surface proteins labeled with 125I revealed a single major radiolabeled 100-kDa protein eluted by 20 mM EDTA, with an electrophoretic behavior different from that of integrins. No other proteins were eluted under more stringent conditions. This material, which we call LBM-100 (100-kDa laminin-binding molecule), may be a "differentiative" laminin-binding protein through which laminin influences gene expression and development independently of attachment.

Amino Acid Sequence↗

Induction of invasive and experimental metastasis potential in BALB/c 3T3 cells by benzo(a)pyrene transformation.

A clone of BALB/c 3T3 cells (A-31), which is highly resistant to spontaneous in vitro transformation, was treated with the carcinogen benzo(a)pyrene [B(a)P]. This agent was capable of inducing in vitro transformation in the presence of S9 activating system and 6 weeks after treatment large foci were detected. Transformation frequency in solvent control groups was very low. Three foci from a single plate of two different experiments were pooled and the cells tested for their in vitro invasive properties and in vivo tumorigenic and metastatic potential. B(a)P-transformed 3T3 cells grew in soft agar and were highly tumorigenic when injected s.c. in nude mice (75% incidence within 7 weeks). Untreated cells were poorly tumorigenic (0/4 mice had tumors within 7 weeks), though they also gave rise to neoplasms after a longer latency. Spontaneous metastasis incidence was low for both controls and treated cells; however, almost all animals (15/16) injected i.v. with B(a)P-transformed cells had pulmonary nodules in the experimental metastasis assay. A few nodules in some of the animals in the control group were detected (4/16). B(a)P-transformed cells were able to invade a thin coating of matrigel in the chemoinvasion assay and also grew in matrigel showing an invasive, branching morphology. Untreated cells did not grow or invade. Our data suggest that a single treatment with a chemical carcinogen can increase tumorigenicity as well as confer invasive and experimental metastasis potential in BALB/c 3T3 cells. This work provides evidence for a role of chemical carcinogens in tumor progression.

3T3 Cells↗

Tumor cell invasion inhibited by TIMP-2.

The 72-kd type IV collagenase is a member of the collagenase enzyme family that has been closely linked with the invasive phenotype of cancer cells. Previous studies have shown that both normal cells and highly invasive tumor cells produce the 72-kd type IV procollagenase enzyme in a complexed form consisting of the proenzyme and a novel tissue inhibitor of metalloproteinases, TIMP-2. The balance between activated enzyme and available inhibitor is thought to be a critical determinant of the matrix proteolysis associated with a variety of pathologic processes, including tumor cell invasion. In the present study, we demonstrate that alteration of the metalloproteinase-metalloproteinase-inhibitor balance in favor of excess inhibitor blocks human fibrosarcoma HT-1080 tumor cell invasion of a reconstituted basement membrane. The HT-1080 cell line produces both the 72-kd and the 92-kd type IV collagenases. Alteration of the type IV collagenase-inhibitor balance was achieved by addition of free TIMP-2 or antibodies to 72-kd type IV collagenase. Native, purified TIMP-2 was inhibitory in the range of 1-25 micrograms/mL. Addition of specific antiserum against the 72-kd type IV collagenase, which did not cross-react with the 92-kd type IV collagenase, inhibited HT-1080 cell invasion to the same extent. These results suggest that metalloproteinases, in particular the 72-kd type IV collagenase, are critical for tumor cell invasion of the reconstituted basement membrane. Our findings demonstrate that addition of the endogenous inhibitor TIMP-2 is able to block invasion. Thus, we recommend initiation of in vivo studies of the therapeutic potential of TIMP-2 to block tumor cell invasion and intravasation into the circulation.

Animals↗

Supernatants of acquired immunodeficiency syndrome-related Kaposi's sarcoma cells induce endothelial cell chemotaxis and invasiveness.

Kaposi's sarcoma (KS) in general, and acquired immunodeficiency syndrome-related KS (AIDS-KS) in particular, is a highly invasive and intensely angiogenic neoplasm of unknown cellular origin. We have recently established AIDS-KS cells in long term culture and reported the development of KS-like lesions in nude mice inoculated with these cells. Here, we have examined the in vitro invasiveness of basement membrane by AIDS-KS cells, as well as the effect(s) of their supernatants on the migration and invasiveness of human vascular endothelial cells. AIDS-KS cells were highly invasive in the Boyden chamber invasion assay and formed invasive, branching colonies in a 3-dimensional gel (Matrigel). Normal endothelial cells form tube-like structures on Matrigel. AIDS-KS cell-conditioned media induced endothelial cells to form invasive clusters in addition to tubes. KS-cell-conditioned media, when placed in the lower compartment of the Boyden chamber, stimulated the migration of human and bovine vascular endothelial cells across filters coated with either small amounts of collagen IV (chemotaxis) or a Matrigel barrier (invasion). Basic fibroblast growth factor could also induce endothelial cell chemotaxis and invasion in these assays. However, when antibodies to basic fibroblast growth factor were used the invasive activity induced by the AIDS-KS-cell-conditioned media was only marginally inhibited, suggesting that the large quantities of basic fibroblast growth factor-like material released by the AIDS-KS cells are not the main mediators of this effect. Specific inhibitors of laminin and collagenase IV action, which represent critical determinants of basement membrane invasion, blocked the invasiveness of the AIDS-KS cell-activated endothelial cells in these assays. These data indicate that KS cells appear to be of smooth muscle origin but secrete a potent inducer of endothelial cell chemotaxis and invasiveness which could be responsible for angiogenesis and the resulting highly vascularized lesions. These assays appear to be a model to study the invasive spread and angiogenic capacity of human AIDS-related KS and should prove useful in the identification of molecular mediators and potential inhibitors of neoplastic neovascularization.

Acquired Immunodeficiency Syndrome↗

Propagation and properties of Kaposi's sarcoma-derived cell lines obtained from patients with AIDS: similarity of cultured cells to smooth muscle cells.

Cells derived from Kaposi's sarcoma (KS) were propagated in vitro using conditions which resulted in elimination of contaminating fibroblasts and the emergence of homogeneous cell populations which morphologically resembled smooth muscle cells and had neoplastic characteristics. In long-term culture, they differentiated into large ribbon-like cells with longitudinal fibrillarity of their cytoplasm. These fibrils stained red by Masson trichrome staining, and were reactive with antibodies to desmin. Dense bodies typical of myoblasts were observed in some cells by electron microscopy. The cells did not form capillary structures like endothelial cells, they lacked Weible-Palade bodies, and did not express the blood-clotting Factor VIII-related antigen or receptors for the lectin Ulex europaeus agglutinin I. They did express four other antigens, however, in common with endothelial cells. The cells did not form tumors in athymic nude mice; however, they formed colonies in soft agar, manifested tumor-like growth on muscle organ cultures, and were invasive in an artificial basement membrane invasion assay. The results indicate that a component of KS is closely related to leiomyoblasts and and has neoplastic properties.

Acquired Immunodeficiency Syndrome↗

[Photochemistry of pharmaceutical substances].

The chemistry of excited states is now well understood, and the photo-instability of pharmaceutically active molecules can be rationalized or predicted. Some relevant examples are discussed and include both reactions of the excited state of the substrate and reactions caused by active species photochemically generated from other components, as well as the effect of the physical state of the sample on the reaction.

Chemistry, Pharmaceutical↗

Invasive activity, spreading on and chemotactic response to laminin are properties of high but not low metastatic mouse osteosarcoma cells.

We have examined the interactions of low (Os43 and OS48) and high (Os50/K8 and Os50/K12) metastatic cell lines derived from osteosarcomas (Os) of the Balb/c mouse with fibronectin (FN) and laminin (LN). All of these cell lines formed osteogenic tumors when transplanted subcutaneously into syngeneic mice. Os43 and Os48 cells gave rise to few metastases while the Os50/K8 and Os50/K12 cells were highly metastatic. In an in vitro chemoinvasion assay only the highly metastatic cells were able to invade a reconstituted basement membrane. Although the interactions of all cell lines with FN were quite similar, their response to LN differed considerably. Within each of the cell lines, chemotactic response to and cell spreading on LN were closely correlated. Highly metastatic Os cells migrated to and spread on LN substrates to a much greater extent than low metastatic cells. Os43 and particularly Os48 showed very much low migration to LN, similar to that of Balb/c 3T3 fibroblasts. They also spread poorly on LN, resembling the behavior of normal human bone cells which were used as a control. Thus, with these assays it is possible to distinguish the LN interactions associated with the metastatic phenotype of Os cells. The acquisition of LN recognition in tumor cells of bone origin may be related to their ability to invade and metastasize. This system may be valuable for the study of LN recognition molecules, their appearance, or changes with the metastatic phenotype.

Animals↗

Increased invasive, chemotactic and locomotive abilities of c-Ha-ras-transformed human breast epithelial cells.

Transfection of the immortalized human breast epithelial cells MCF-10A with the mutated ras oncogene resulted in cell transformation (MCF-10A-neoT). Since the transformed state is usually associated with enhanced migratory activity, increased capability to invade basement membranes and to grow in a three-dimensional basement membrane gel (growth in matrigel), we compared these properties in MCF-10A-neoT cells with those of MCF-10A cells transfected with either the neomycin resistance gene alone (MCF-10A-neo cells) or with the normal ras proto-oncogene (MCF-10A-neoN cells). MCF-10A-neoT cells exhibited enhanced migratory activity, as assessed by chemotaxis and chemokinesis assays. and increased capability to invade the basement membrane. These cells also formed large colonies in matrigel. MCF-10A-neo and MCF-10A-neoN cells, on the other hand, showed only marginal migratory, invasive and semisolid medium growth properties. These results indicate that the mutated ras oncogene induces in human breast epithelial cells phenotypic characteristics of malignant transformation.

Adenocarcinoma↗

Hypomethylation of the interphotoreceptor retinoid-binding protein (IRBP) promotor and first exon is linked to expression of the gene.

The interphotoreceptor retinoid-binding protein (IRBP) is limited in expression to retinal photoreceptor cells and a subset of pinealocytes. We have obtained a genomic clone containing the entire coding region and 7 kb of 5' flanking sequence. As a first step in studying IRBP gene regulation we have examined the CpG methylation patterns of the entire IRBP gene in expressing and non-expressing human cells. This has been done by isolation of high molecular weight DNA from Y-79 cells grown in suspension or attached to poly-D-lysine, which synthesize IRBP at different levels, and from human lymphocytes, which were shown by northern analysis to lack IRBP message. The DNA was digested by either Hpa II, Msp I, or Hha I. Southern blots were prepared with these digests and hybridized with probes made from fragments covering the complete genomic clone. Probes from the first exon, the introns and the 3' end gave banding patterns which showed no differences between the expressing cells and the lymphocytes. A probe from the very 5' end did not give a clear banding pattern, probably due to the presence of repetitive elements in the probe. However, a Hind III probe covering the 5' flanking 3 kb and the beginning of the first exon hybridized with a 1.8 kb band in Hpa II digests of Y-79 cells which was not present in Hpa II digests of lymphocyte DNA. In addition, a 2.1-2.3 kb Hha I band was found only in the Y-79 DNA digests. Sequence analysis of the promoter region indicated that these bands were due to hypomethylation of sites within a CpG rich island from -1578 to -1108 in the promoter and hypomethylation of sites in the beginning of the first exon. A Hha I site between the CpG island and the first exon was not hypomethylated in the expressing Y-79 cells. We propose that hypomethylation of the CpG rich island of the IRBP promoter and the first exon is linked to the expression of this gene.

Base Sequence↗

In vitro transformation of BALB/c 3T3 cells by 1,1,2,2-tetrachloroethane.

1,1,2,2-Tetrachloroethane (1,1,2,2-TTCE) was shown to be capable of inducing in vitro transformation of BALB/c 3T3 cells (clone A-31) either in the presence or in the absence of S9 activating system using an amplification-transformation (level-II) assay by reseeding confluent cells from each treatment and allowing additional rounds of cell replication. In the absence of metabolic activation, the highest assayed dose (1000 micrograms/ml), exerting the highest toxicity, was the only transforming dose. Lower doses of 1,1,2,2-TTCE were capable of transforming BALB/c cells in the presence of S9 activating system, the dose of 500 micrograms/ml exerting the highest transforming activity. The number and size of transformed foci recognized in the level-II plates were a function of the number of cells reseeded in the amplification assay. Foci obtained in the presence of S9 activating systems were larger in size, more deeply basophilic, and exhibited denser multilayering of constituent cells than foci recognized in the absence of exogenous metabolic activation.

Animals↗

mRNA for interphotoreceptor retinoid-binding protein (IRBP): distribution and size diversity in vertebrate species.

Northern blots of total retinal RNA from a number of different vertebrate species were probed with a cDNA fragment corresponding to translated portions of bovine IRBP mRNA. A hybridizing band was detected in normal human retina (4.6 kb), Y-79 human retinoblastoma cells (4.4 kb), and in retinas of monkey (4.6 kb), guinea-pig (4.9 kb), mouse (6.1 kb), rat (two bands at 5.4 kb and 6.6 kb), rabbit (6.3 kb), cow (6.5 kb), and hamster (7.6 kb). Thus, the IRBP gene is expressed in the retinas of a wide variety of mammalian species. The mRNAs could be readily detected in about 20 micrograms of total RNA, suggesting that, in these species, IRBP message is relatively abundant. In contrast, only very weak hybridization was detected on northern blots of the three bird species examined (chicken, duck, quail). IRBP mRNA is thus relatively well expressed in mammals, but not in birds.

Animals↗