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Biomedical subjects

S Caltagirone

Publications and source records attributed to S Caltagirone.

10 recordsLinked to original sources

Flavonoids apigenin and quercetin inhibit melanoma growth and metastatic potential.

Flavonoids are a class of polyphenolic compounds widely distributed in the plant kingdom, which display a variety of biological activities, including chemoprevention and tumor growth inhibition. Our aim was to investigate the effects of several polyphenols on the growth and metastatic potential of B16-BL6 melanoma cells in vivo. Intraperitoneal administration of quercetin, apigenin, (-)-epigallocathechin-3-gallate (EGCG), resveratrol, and the anti-estrogen tamoxifen, at the time of i.m. injection of B16-BL6 cells into syngeneic mice, resulted in a significant, dose-dependent delay of tumor growth, without toxicity. The relative descending order of potency was EGCG > apigenin = quercetin = tamoxifen > resveratrol > control. Furthermore, polyphenols significantly potentiated the inhibitory effect of a non-toxic dose of cisplatin. When tested for the ability to inhibit lung colonization, quercetin, apigenin, and tamoxifen (but not EGCG or resveratrol) significantly decreased the number of B16-BL6 colonies in the lungs in a dose-dependent manner, with quercetin and apigenin being more effective than tamoxifen. Interestingly, quercetin, apigenin, and tamoxifen (but not EGCG or resveratrol) significantly decreased the invasion of B16-BL6 cells in vitro, with quercetin and apigenin being more effective than tamoxifen. This suggests that anti-invasive activity is one of the mechanisms underlying inhibition of lung colonization by quercetin and apigenin. In conclusion, quercetin and apigenin inhibit melanoma growth and invasive and metastatic potential; therefore, they may constitute a valuable tool in the combination therapy of metastatic melanoma.

Animals↗

Transforming growth factor beta 1, interleukin-8 and interleukin-1, in non-small-cell lung tumors.

A role in tumor progression has been proposed for transforming growth factor-beta 1 (TGF beta 1) and interleukin (IL)-8 as well as for IL-1, which itself induces the production of TGF beta 1 and IL-8 in many cell types. TGF beta 1 and IL-8 production and their regulation by IL-1 in five non-small-cell (NSC) lung tumor cell lines were evaluated. Moreover, their levels were evaluated in 29 NSC lung tumors. All cell lines constitutively produced TGF beta 1, and three produced IL-8. After IL-1 beta treatment, TGF beta 1 production was upregulated in two cell lines, whereas IL-8 production was markedly upregulated in two, induced in one, and unmodified in two. In tumors, the levels of TGF beta 1, IL-8, and IL-1 beta were higher than in normal counterparts (p < 0.001), and a positive correlation between IL-8 and IL-1 beta levels (p < 0.001) was found. TGF beta 1, IL-8, and IL-1 beta mRNA expression was examined in 12 tumors. TGF beta 1 mRNA was detected in all cases, IL-8 mRNA in 7, and IL-1 beta MRNA was undetectable. TGF beta 1, IL-8, and IL-1 beta immunoreactivity was then studied by immunohistochemistry. TGF beta 1 and IL-8 immunoreactivity was observed in neoplastic cells; IL-1 beta immunoreactivity was observed in mononuclear cells. In conclusion, in tumors IL-1 beta levels positively correlated with those of IL-8, and IL-1 beta as well as TGF beta 1 and IL-8 levels were significantly higher than in normal tissues.

Adenocarcinoma↗

Interaction with type II estrogen binding sites and antiproliferative activity of tamoxifen and quercetin in human non-small-cell lung cancer.

The antiestrogen tamoxifen is thought to antagonize the effects of estrogens by competing with them for estrogen receptor (ER) binding. However, tarnoxifen can also reverse multidrug resistance, synergize with cisplatin cytotoxicity, and inhibit growth in ER-negative lung cancer cells. In addition to ERs, rat and human target tissues contain a second binding macromolecule termed the type II estrogen binding site (type II EBS). It has been shown that tamoxifen and flavonoids, a widely distributed class of natural substances with a variety of biologic actions, bind to type II EBS and inhibit the growth of several tumor cell types. At present, conflicting data about ERs and an absence of data about type II EBSs exist for lung tumors. We have tested non-small-cell lung carcinoma cell lines and primary tumor cells for the presence of ERs and type II EBSs and have evaluated the effects of tamoxifen and quercetin (pentahydroxyflavone) on the growth of these cells. Using a whole-cell assay and nuclear and cytosolic radiobinding experiments with [3H]estradiol as tracer, we have found that SK-LU1, SW900, ChaGo-K-1, H441, H661, and A549 cells, as well as primary tumors, bind estrogen specifically. This binding results mainly from the presence of a large number of type II EBSs, whereas ERs are absent or present at low concentrations. Type II EBSs bound tamoxifen and quercetin with similar affinity. Cell counts and a thymidine incorporation assay showed that both compounds inhibit cell growth in a concentration-dependent manner at concentrations ranging from 10 nM to 1 microM. Neither ipriflavone, an isoflavone, nor rutin, the 3-rhamnosylglucoside of quercetin, bound type II EBSs or inhibited cell growth. These findings suggest that tamoxifen and quercetin could regulate lung cancer cell growth through a binding interaction with type II EBSs. This mechanism could also be active in vivo, in that we have observed that nuclear and cytosolic type II EBSs were present in all primary lung cancers tested (n = 12), and that tamoxifen and quercetin were effective in inhibiting in vitro bromodeoxyuridine (BrdU) incorporation and proliferation-cell nuclear antigen expression by neoplastic cells in these cancers.

Aged↗

Depletion of stromal and intraepithelial antigen-presenting cells in cervical neoplasia in human immunodeficiency virus infection.

Human immunodeficiency virus-positive (HIV+) women have an increased risk of lower genital tract dysplasia and neoplasia, and studies of the central lymphoid system suggest that impaired immunosurveillance plays a role in the development of their cervical tumors. Intraepithelial and stromal immunocompetent cell counts were compared in cervical specimens from 50 HIV+ and 50 appropriately matched HIV-women (controls) with low and high grade squamous intraepithelial lesions (SIL), or carcinoma. Each histological class of HIV+ women displayed fewer intraepithelial Langerhans' (S100+) cells (LC) (as already known), and also fewer stromal LC and both intraepithelial and stromal (CD68+) macrophages. LC and macrophages were reduced in all HIV+ patients, whereas reduction of cervical T lymphocytes was found in only immunocompromised subjects (peripheral blood CD4+ T-cell count < 500/microL). A mucosal quantitative deficiency of antigen-presenting cells (APC) thus precedes that of T cells. HIV infection appears to lead to early impairment of mucosal immunoreactivity mainly because of defective antigen presentation. This impairment may be one mechanism underlying the increased frequency of cervical dysplasia/neoplasia, and the enhanced aggressiveness of invasive cancers in HIV+ women.

Acquired Immunodeficiency Syndrome↗

[Controlled clinical study of the treatment of chronic bronchitis with guacetisal].

Controlled clinical research has been carried out on the activity and tolerance of a new active principle, guacetisal (Broncaspin) obtained from the esterification of acetylsalicylic acid with guaiacol, in the treatment of chronic bronchitis. The drug's therapeutic response was evaluated with respect to that of bromexine. Guacetisal was generally well tolerated. It had no unwanted side-effects on the main haematochemical parameters or on the function of organs and systems. It was found to have considerable therapeutic effectiveness, at times even superior to that of the control drug, with respect to general symptomatology and at respiratory system level. It produced early, lasting reduction in temperature, heart frequency, dyspnoea, duration of expirium and in the intensity and number of coughing attacks. It also led to an appreciable improvement in thoracic objectivity and the X-ray picture. Variations in respiratory functional parameters were of considerable interest and from these it is concluded that guacetisal exerts its polyvalent activity to a proportionately higher extent in the bronchial districts more seriously involved in the inflammatory process, inducing an elective improvement in bronchial permeability, a reduction in total pulmonary resistances--with consequent tendency for ventilation-perfusion relations to normalise--as well as an improvement in gas exchanges and patient oxygenation.

Adult↗