G. Cricco
University of Buenos Aires
Network
Latest external collaboration on country level. Dive into details by clicking on the dots.
Publication
Featured researches published by G. Cricco.
Cancer Biology & Therapy | 2008
Vanina A. Medina; Máximo Croci; Ernesto Crescenti; Nora Mohamad; Francisca Sánchez-Jiménez; Noelia A. Massari; Mariel Núñez; G. Cricco; G. Martin; Rosa Bergoc; Elena Rivera
There is increasing evidence that describes a histamine role in normal and cancer cell proliferation. To better understand the importance of histamine in breast cancer development, the expression of histamine H3 (H3R) and H4 (H4R) receptors and their association with proliferating cell nuclear antigen (PCNA), histidine decarboxylase (HDC) and histamine content were explored in mammary biopsies. Additionally, we investigated whether H3R and H4R were implicated in the biological responses triggered by histamine in MDA-MB-231 breast cancer cells. The expression levels of H3R, H4R, PCNA, HDC and histamine content were determined by immunohistochemistry in 40 benign and malignant lesions. MDA-MB-231 cells proliferation (clonogenic assay and BrdU incorporation) and cell cycle distribution (flow cytometry) were evaluated upon treatment with histamine, H3R and H4R agonists and antagonists. Apoptosis was determined by Annexin staining and TUNEL assay. Cell migration was assessed by transwell system. Results indicate that H3R was detected in 67% (10/15) of benign lesions and in almost all carcinomas (24/25), being the level of its expression significantly higher in carcinomas (P=0.0016). The non-tumoral breast tissue surrounding carcinomas revealed a lower H3R expression compared to the tumor cells. Only 13% (2/15) of the benign lesions expressed H4R compared to 44% (11/25) of the carcinomas. Interestingly, H3R expression was correlated in carcinomas with the expression of HDC and PCNA (P
Biochemical Pharmacology | 1995
Carlos Davio; G. Cricco; Rosa Bergoc; Elena Rivera
Two specific binding sites for histamine were characterized in the cell membrane of N-nitroso-N-methylurea (NMU)-induced tumors. The first one, with higher affinity (Kd = 4 +/- 2 nM), was further identified as an H2 type, while the lower affinity one (35 +/- 10 nM) corresponded to an H1 receptor. Histamine concentrations up to 50 nM, as well as H2 agonists, significantly enhanced the phosphoinositide turnover by acting through higher affinity H2 receptors. On the other hand, histamine at concentrations over 50 nM and H1 agonists produced a 100% increase in cAMP levels in a response specifically blocked by mepyramine. These H1 and H2 histamine receptors that exhibit different linkages to second messenger systems may prove to be a characteristic of cells with a high proliferating capacity, such as undifferentiated or transformed cells.
Cancer Letters | 1994
Elena Rivera; N. Andrade; G. Martin; G. Melito; G. Cricco; Nora Mohamad; Carlos Davio; Ricardo A. Caro; Rosa Bergoc
In order to obtain an experimental model we induced mammary tumors in female Sprague-Dawley rats. The carcinogen N-nitroso-N-methylurea (NMU) was injected intraperitoneally (i.p.) at doses of 50 mg/kg body weight when animals were 50, 80 and 110 days old. Tumor sizes were measured with a caliper and their growth parameters and histopathological properties were tested. For 100 rats, 88.4% of developed lesions were ductal carcinomas, histologically classified as 52.8% cribiform variety, 30.6% solid carcinoma. Metastases in liver, spleen and lung were present. Other primary tumors were detected with low incidence. The influence of the rat estrous cycle during the first exposure to intraperitoneal NMU injection was studied. The latency period in estrus, proestrus and diestrus was 82 +/- 15, 77 +/- 18 and 79 +/- 18 days, respectively. Tumor incidence was significantly higher in estrus (95.2%) than proestrus (71.4%) or diestrus (77.4), (P < 0.01). Mean number or tumors per animal was similar among the three groups (4.4 +/- 3.2, 3.8 +/- 3.6, 3.2 +/- 1.8). The procedure described appears to be the simplest method for inducing experimental mammary tumors in rats.
Cancer Biology & Therapy | 2006
Vanina A. Medina; G. Cricco; Mariel Núñez; G. Martin; Nora Mohamad; F. Correa-Fiz; Francisca Sánchez-Jiménez; Rosa Bergoc; Elena Rivera
Histamine is a biogenic amine responsible for multiple biological actions including regulation of physiological functions of mammary gland. It has been postulated that histamine plays a critical role in proliferation of normal and cancer cells. To investigate the biological responses that histamine exerts in malignant cells derived from human mammary gland, we evaluated in MDA-MB-231 line the expression of histamine receptors, histamine intracellular content, the capacity of histamine to influence proliferation, cell cycle progression, differentiation and apoptosis. We also studied histamine involvement in cellular response to ionizing radiation. HBL-100 cells were used as control of non-tumorigenic breast cells. Proliferation and surviving fraction were assessed by clonogenic assay. Cell cycle progression and lipid accumulation were determined by flow cytometry while apoptosis was studied by Annexin V and DNA fragmentation assays. Both cell lines expressed the four histamine receptors subtypes as evaluated by western blot and RT-PCR analyses, and present endogenous histamine. Histamine regulated proliferation of cancer cells in a dose-dependent way and 10 μM histamine reduced significantly proliferation to 23% inducing cell cycle arrest in G2/M phase, differentiation by 26% and a significant increase in the number of apoptotic cells (p
Inflammation Research | 1994
G. Cricco; Carlos Davio; G. Martin; N. Engel; C. Fitzsimons; Rosa Bergoc; Elena Rivera
In order to determine the role of endogenous histamine in the regulation of cell growth, thein vitro action of fluoromethyl-histidine (MFMH) was studied in experimental mammary carcinomas induced in rats. Tumor cells were cultured in soft agar using the clonogenic agar technique. The MFMH was added in different concentrations (0.01–100 μM). The effect observed was a 60% inhibition on colony formation with a maximal effect at concentrations over 10 μM. This action was completely reverted by the H2 agonists dimaprit and arpromidine with an IC50 value of 1 μM. The action of the H2 agonists when added alone was a significant increase in cell proliferation (135%), while the H1 agonist produced a dose-dependent inhibition on cell growth. In these experimental carcinomas endogenous histamine is critical for cell proliferation and one of its major effects may be the stimulation of cell growth by acting on specific H2 membrane receptors.
European Journal of Clinical Investigation | 2002
Eszter Lázár-Molnár; Hargita Hegyesi; Éva Pállinger; Péter Kovács; S. Tóth; C. Fitzsimons; G. Cricco; G. Martin; R. Bergoc; Z. Darvas; Elena Rivera; András Falus
Background Interleukin‐6 (IL‐6) is a bifunctional growth factor in malignant melanoma; its expression increases during the malignant progression of the disease. Histamine, detected in large amounts in normal and pathological proliferating tissues, is an important paracrine and autocrine regulator of normal and tumour cell proliferation as well.
Cancer Investigation | 1997
G. Martin; Carlos Davio; Elena Rivera; Graciela Melito; G. Cricco; Nélida Andrade; Ricardo A. Caro; Rosa Bergoc
The purpose of this work was to determine the hormone dependence of mammary tumors induced in Sprague-Dawley rats by three intraperitoneal injections of N-nitroso-N-methylurea at 50, 80, and 110 days of age. Two experimental designs were carried out: (a) Ten days before the first NMU injection, 130 rats were divided into 13 batches and randomly assigned to the following treatments: control, ovariectomy (OVX), tamoxifen (TAM), bromocriptine (BROM), haloperidol (HAL), estradiol (E2), progesterone (Pg), OVX + BROM, TAM + BROM, OVX + HAL, TAM + HAL, OVX + TAM, and E2 + BROM. After 150 days of treatment the following growth parameters were determined: latency period (LP), mean tumor number per rat (n/t), and tumor incidence (TI). LP was significantly increased (p < 0.05) only by Pg and TAM + BROM. The n/t was significantly decreased (p < 0.05) by all treatments except HAL. TI was significantly reduced by OVX, TAM, BROM, and their combinations, (b) Rats bearing ip-NMU-induced mammary tumors were divided into 7 batches and assigned to the following treatments: control, OVX, TAM, BROM, HAL, OVX + BROM, and TAM + BROM. Tumor growth was assessed up to 60 days of treatment; only OVX, TAM and their combination with BROM were able to produce tumor regression. These results support the essential role of E2 and prolactin in the promotion stage of carcinogenesis. However, for established tumors, growth becomes more independent from hormone influence, in particular from prolactin deprivation. We conclude that this model seems suitable for studying the mechanisms underlying the evasion of hormonal control of tumor growth.
Cancer Letters | 1996
G. Martin; G. Melito; Elena Rivera; Emanuel Levin; Carlos Davio; G. Cricco; N. Andrade; Ricardo A. Caro; Rosa Bergoc
The effect of tamoxifen (TAM) was evaluated on a mammary tumor model induced in Sprague-Dawley rats by intraperitoneal administration of three N-nitroso-N-methylurea (NMU) doses. Animals received TAM (1 mg/kg per day) from 10 days before the first NMU dose up to 140 days later. Thereafter, treatment was discontinued and the observation period was extended 60 days longer. Mean overall latency period, tumor number per rat and tumor incidence were recorded. Significant differences between treated and control batches were observed in tumor number per rat (1.8 +/- 1.1 versus 5.2 +/- 1.6; P < 0.05) and in tumor incidence (50% versus 100%; P < 0.05), respectively. No significant difference in latency period between both batches was recorded. All lesions induced in the control batch were malignant, whereas only 45% of those induced in TAM-treated animals were malignant and the remaining 55% were preneoplastic. At 60 days after treatment discontinuance, tumor incidence increased to 90% and also tumor number per rat increased to 4.6 +/- 1.5. TAM effect was also evaluated in rats with NMU-induced tumors by treatment with 1 mg/kg per day during 60 days starting when tumors reached a 1.5-cm diameter. Regression to less than 80% of initial size in 49% of the tumors was observed, while in ovariectomized rats, 33% of tumors regressed. Estrogen receptor content, ER (fmol/mg protein) and Kd (nM) in control tumors were: 56 +/- 10 and 0.5 +/- 0.1. In tumors of TAM-treated animals, ER was less than 5 fmol/mg protein. Findings demonstrate that TAM significantly decreased the appearance of tumors induced in rats by i.p. injection of NMU and when TAM treatment was initiated after tumor induction, some tumors failed to respond to hormonal manipulation. Differential tumor growth response after TAM or oophorectomy in each tumor indicates that in the same rat it is possible to distinguish hormone-dependent and hormone-autonomous tumor populations. Hormonal regulation of tumor growth can be under intrinsic control, regardless of the hormonal status of the whole organism.
International Journal of Radiation Biology | 2007
Vanina A. Medina; Máximo Croci; Nora Mohamad; Noelia A. Massari; Gloria Garbarino; G. Cricco; Mariel Núñez; G. Martin; Ernesto Crescenti; Rosa Bergoc; Elena Rivera
Purpose: To examine the protective effects of histamine on intestinal damage produced by gamma-radiation. Materials and methods: 56 mice were divided into 4 groups. Histamine and Histamine-10 Gy groups received a daily subcutaneous histamine injection (0.1 mg/kg) starting 20 hours before irradiation and continued until the end of the experimental period; the untreated group received saline. Histamine-10 Gy and untreated-10 Gy groups were irradiated with a single dose on whole-body using Cesium-137 source (7 Gy/min) and were sacrificed 3 days after irradiation. Small intestine was removed, fixed and stained with hematoxylin and eosin. The number of intestinal crypts per circumference, and other histological characteristics of intestinal cells were evaluated. We further determined by immunohistochemistry the expression of proliferating cell nuclear antigen (PCNA), Bax, Bcl-2 (pro- and anti-apoptotic protein, respectively), antioxidant enzymes (Superoxide dismutase (SOD), Catalase and Glutathione peroxidase), histamine content and apoptosis by terminal deoxynucleotidyl transferase mediated deoxyuridine triphosphate biotin nick end labeling (TUNEL) assay. Cells in the S phase of the cell cycle were identified by immunohistochemical detection of 5-bromo-2′-deoxyuridine (BrdU) incorporation. Results: Histamine treatment reduced mucosal atrophy, edema and preserved villi, crypts and nuclear and cytoplasmic characteristics of small intestine after radiation exposure. Additionally, histamine treatment increased PCNA expression and the BrdU-positive cell number, histamine content, decreased the number of apoptotic cells and significantly increased Catalase and copper-zinc-containing SOD of irradiated mice. Conclusions: Histamine prevents radiation-induced toxicity by increasing proliferation of damaged intestinal mucosa and suppressing apoptosis that was associated with an increase in SOD and Catalase levels. This effect might be of clinical value in patients undergoing radiotherapy.
Inflammation Research | 2008
G. Cricco; Nora Mohamad; Lorena Sambuco; F. Genre; Máximo Croci; Alicia Gutiérrez; Vanina A. Medina; Rosa Bergoc; Elena Rivera; G. Martin
Several lines of evidence suggest that histamine (HA) may act as an autocrine or paracrine growth factor increasing proliferation rate in normal and malignant tissues. Previously we reported that histamine H1 and H2 receptors are expressed and associated with cell growth in Panc-1, a cell line derived from a human ductal pancreatic carcinoma [1]. This work was to evaluate the presence of histamine H3 and H4 receptors and their potential involvement in PANC-1 cells proliferation.