scholarly journals Cytotoxicity, Antiproliferative and Apoptotic Effect of n-Hexane Fraction of Lime Parasite (Dendrophtoe pentandra)

Molekul ◽  
2019 ◽  
Vol 14 (1) ◽  
pp. 1
Author(s):  
Subandrate Subandrate ◽  
Masayu Farah Diba ◽  
Salni Salni ◽  
Triwani Triwani ◽  
Sri Nita

Breast cancer is one of the biggest causes of death in women in the world. Lime parasite (Dendrophtoe pentandra (L.) Miq.), a folk remedy used by Indonesian people, is believed to be efficacious as anticancer drug. This research aims to know the activity of n-hexane fractions of lime parasite in inhibiting the proliferation and apoptosis of T47D cells in vitro. Cytotoxic test with MTT method assay from n-hexane fractions used a multilevel concentration. Antiproliferative test was carried out by the method of MTT assay and cell doubling time was calculated at the time of duplication. Apoptotic test was done with concentration of 1 IC50and ½ IC50which was analyzed by flow cytometry. The results reveals that fractions of lime parasite have cytotoxic activity with concentration of IC50is included in moderatecytotoxic level. The result of the doubling time of the optimum fraction of n-hexane is in 31 hours with the concentration of ¼IC50. Results for the flow cytometry shows the fraction of n-hexane does not induce apoptosis in cells of T47D.  Those results show that the active fraction of lime parasite has cytotoxic activity which is able to inhibit proliferation, but does not induce apoptosis of T47D cell.

1977 ◽  
Vol 25 (1) ◽  
pp. 87-94
Author(s):  
J. Murphy ◽  
C. Desaive ◽  
W. Giaretti ◽  
F. Kendall ◽  
C. Nicolini

SV-40 virus-transfromed human diploid fibroblasts (2RA) were grown in a monolayer on plastic Petri dishes in an aqueous medium deuterated to different concentrations of deuterium oxide: 10, 20, 30, up to 60%. The cells must be acclimatized to concentrations higher than 20% D2O by stepping them from a lower initial concentration during their exponential growth. The increase of cell doubling time with increasing deuterium concentrations seems to correlate, at least at 20% D20, with an initial period of suspended cell growth (lag-phase), and is qualitatively similar to that previously reported for Escherichia coli.


2004 ◽  
Vol 21 (5) ◽  
pp. 383-391 ◽  
Author(s):  
Erol Erduran ◽  
Yavuz Tekelioglu ◽  
Yusuf Gedik ◽  
İsmail Bektaş ◽  
Sadan Hacisalihoglu

2008 ◽  
Vol 51 (3) ◽  
pp. 165-172 ◽  
Author(s):  
Lenka Brůčková ◽  
Tomáš Soukup ◽  
Jiří Moos ◽  
Martina Moosová ◽  
Jana Pavelková ◽  
...  

The major functions of granulosa cells (GCs) include the production of steroids, as well as a myriad of growth factors to interact with the oocyte during its development within the ovarian follicle. Also FSH stimulates GCs to convert androgens (coming from the thecal cells) to estradiol by aromatase. However, after ovulation the GCs produce progesterone that may maintain a potential pregnancy. Experiments with human GCs are mainly focused on the purification of GCs from ovarian follicular fluid followed by FACS analysis or short-term cultivation. The aim of our study was to cultivate GCs for a long period, to characterize their morphology and phenotype. Moreover, we have cultivated GCs under gonadotropin stimulation in order to simulate different pathological mechanisms during folliculogenesis (e.g. ovarian hyperstimulation syndrome). GCs were harvested from women undergoing in vitro fertilization. Complex oocyte-cumulus oophorus was dissociated by hyaluronidase. The best condition for transport of GCs was optimized as short transport in follicular fluid at 37 °C. GCs expansion medium consisted of DMEM/F12, 2 % FCS, ascorbic acid, dexamethasone, L-glutamine, gentamycine, penicillin, streptomycin and growth factors (EGF, bFGF). GCs transported in follicular fluid and cultivated in 2 % FCS containing DMEM/F12 medium supplemented with follicular fluid presented increased adhesion, proliferation, viability and decreased doubling time. Cell viability was 92 % and mean cell doubling time was 52 hrs. We have optimized transport and cultivation protocols for long-term cultivation of GCs.


2019 ◽  
Author(s):  
Miriam Gutiérrez-Gutiérrez ◽  
Ishell Aline Figueroa-Martínez ◽  
Rafael Jurado ◽  
Norma Uribe ◽  
Patricia García-López ◽  
...  

Abstract Background: Diabetes mellitus and malignant tumor are the second and third causes of women death in Mexico. Hyperglycemia, insulin and insulin-like growth factor 1 are the main risk factors involved in cancer development in patient with diabetes. The aim of this study was to evaluate the effect of hyperglycemia and hyperinsulinemia over cell proliferation and tumor growth in cervical cancer. Methods: Cell proliferation, apoptosis and cell cycle of cervical cancer cell lines (HeLa, SiHa and CaSki) in presence of hyperglycemia and/or insulin were evaluated. Xenograft model for cervical cancer was done in diabetic female nu/nu mice; biochemical parameters, body weight, tumoral volume and cell doubling time were evaluated. Results: Hyperglycemia and hyperinsulinemia significantly increase cell proliferation and decreases apoptosis with no change in cell cycle. Insulin treatment increase tumor volume and diminish cell doubling time, this group also developed hyperinsulinemia and in Langerhans pancreatic islet hypertrophy; whereas, hyperglycemic groups show the same effects but in lesser degree than the insulin treated group. Conclusion: Glucose and insulin stimulates both, proliferation and tumoral growth of cervical cancer, so this should be a possible explanation for the low survival of diabetic patients with cervical cancer in compare to non-diabetic patients with cervical cancer.


2019 ◽  
Vol 7 (22) ◽  
pp. 3816-3818
Author(s):  
Nadiya Anandita Nasution ◽  
Urip Harahap ◽  
Ginda Haro ◽  
Hari Purnomo ◽  
Denny Satria

AIM: The aim of this study was to determine cytotoxic activity of BornUSU I or Boronhafagama I (1,5-bis(4-hydroxyphenyl)-3-oxa-1,5-diaza-2,4-diboropentane-2,4-diol) as a boron derivate compounds which are boron neutron captured theraphy (BNCT) candidates. METHODS: The T47D cells were treated by BornUSU I, and Tamoxifen as a positive control. The in vitro study was using MTT method with the incubation period for 24h and 48h. All data were determined using viability of cells equation for showing each IC50 value. RESULTS: The IC50 value of BornUSU I and Tamoxifen were 72.61 ± 0.82 µM and 10.62 ± 0.06 µM for 24 h incubation period, and for the 48 h incubation period were 44.63 ± 0.23 µM and 7.79 ± 0.05 µM. The 48 h incubation period results showed the lowest IC50 value. CONCLUSION: The results reveal that BornUSU I provide effective as anticancer, especially for breast cancer treatment.


2013 ◽  
Vol 31 (15_suppl) ◽  
pp. e11606-e11606
Author(s):  
Daphne Gschwantler-Kaulich

e11606 Background: HER-targeted tyrosine kinase inhibitors (TKIs) have demonstrated pro-apoptotic and antiproliferative effects in vitro and in vivo. The exact pathways through which TKIs exert their antineoplastic effects are, however, still not completely understood. Methods: Using Milliplex assays, we have investigated the effects of the three panHER-TKIs lapatinib, canertinib and afatinib on signal transduction cascade activation in SKBR3, T47D and Jurkat neoplastic cell lines. The growth-inhibitory effect of blockade of HER and of JNK and STAT5 signaling was measured by proliferation- and apoptosis-assays using formazan dye labeling of viable cells, Western blotting for cleaved PARP and immunolabeling for active caspase 3, respectively. Results: All three HER-TKIs clearly inhibited proliferation and increased apoptosis in HER2 overexpressing SKBR3 cells, while their effect was less pronounced on HER2 moderately expressing T47D cells where they exerted only a weak antiproliferative and essentially no pro-apoptotic effect. Remarkably, phosphorylation/activation of JNK and STAT5A/B were inhibited by HER-TKIs only in the sensitive, but not in the resistant cells. In contrast, phosphorylation/activation of ERK/MAPK, STAT3, CREB, p70 S6 kinase, IkBa, and p38 were equally affected by HER-TKIs in both cell lines, irrespective of their sensitivity against the HER-TKIs. Moreover, we demonstrated that direct pharmacological blockade of JNK and STAT5 abrogates cell growth in both HER-TKI-sensitive as well as -resistant breast cancer cells, respectively. Conclusions: We have shown that HER-TKIs exert a HER2 expression-dependent effect on proliferation and apoptosis in cancer cell lines in vitro, which is at least partially mediated by blockade of JNK and STAT5A/B. Despite slight differences in their specificity towards individual members of the HER family all three inhibitors had comparable antiproliferative and proapoptotic effects in vitro.


Development ◽  
1970 ◽  
Vol 24 (1) ◽  
pp. 203-207
Author(s):  
Patricia Bowman ◽  
Anne McLaren

Mouse embryos (Q strain) developing in vivo from the 2-cell to the blastocyst stage showed a constant cell doubling time of about 10 h. Embryos cultured in vitro over the same period showed a rate of cleavage which was initially almost as great as in the reproductive tract, but subsequently declined to give a doubling time of about 24 h. Addition of oestrogen to the culture medium increased the diameter of blastocysts but did not increase cell number.


Author(s):  
Tuba Gokdogan Edgunlu ◽  
Cigir Biray Avci ◽  
Neslihan Pınar Ozates ◽  
Bakiye Goker Bagca ◽  
Sevim Karakas Celik ◽  
...  

Aim: It was aimed to determine the cytotoxic and apoptotic effect of propofol on glioma cells. Background: Propofol [2,6-diisopropylphenol] is a commonly used intravenous anesthetic. Propofol is known to have a mechanism of action on the PI3K-AKT pathway. Objective: This study aimed to evaluate the effect of propofol on the proliferation and apoptosis of human glioma cells, as well as to investigate changes in expression levels of the PI3K-AKT signaling pathway genes. Results: We have shown that propofol-induced apoptosis in U-87 MG cells by 17.1-fold compared to untreated control. Furthermore, significant differences were found in the expression levels of the PI3K-AKT signaling pathway genes. Conclusion: As a result of our study, it was found that propofol caused differences in expression levels of PI3K-AKT signaling pathway genes, and it was suggested that these differences might be related to apoptosis induction.


Author(s):  
Samira Kadkhodamasoum ◽  
Farahnaz Bineshian ◽  
Amir KarimiPour ◽  
Pooya Tavakoli ◽  
Masoud Foroutan ◽  
...  

Background;: Leishmaniasis is one of the major diseases caused by the intracellular parasite of Leishmania. It has become one of the most dangerous health problems today. Our aim of the present study is to compare the effects of Sambucus ebulus leaf and fruit extracts on Leishmania major in vitro. Methods: In this study, we used MTT, promastigote and amastigote assay to evaluate the effect of different concentrations of the extract on parasite and we compared their effects. The flow cytometry technique was also used to detect the apoptotic effect of the extracts on promastigotes. Results: According to MTT experiment IC50 concentration of leaf and fruit extracts on parasite was 157 μg/ml and 265 μg/ml, respectively. After analysis by flow cytometry, leaf and fruit extracts also showed apoptosis effect. Leaf and fruit extract caused 40.2 and 2.67 percent apoptosis. Conclusion: Based on the above assessment, we determined that the S. ebulus leaf extract has a more toxic effect on promastigotes and amstigotes than its fruit extract and maybe in the future that be used as a drug candidate.


Blood ◽  
2007 ◽  
Vol 110 (11) ◽  
pp. 1919-1919
Author(s):  
Caridad Martinez ◽  
Ted J. Hofmann ◽  
Roberta Marino ◽  
Massimo Dominici ◽  
Edwin M. Horwitz

Abstract Human mesenchymal stromal cells (MSCs) are spindle-shape, plastic-adherent cells with capacity to differentiate to bone, cartilage, and fat. MSCs express fibroblast, endothelial, and lymphocyte antigens, e.g. CD105, CD73, CD90, and CD166 which are the cornerstone of phenotypic characterization of these cells. We recently showed that MSCs are the only bone marrow cell to express GD2, a neural ganglioside. Now, for the first time we show that GD2 may serve as the single, unique, and definitive marker of marrow and adipose derived MSCs that can be used to isolate GD2+ MSCs, which possess important biologic properties justifying prospective isolation. MSCs expression of GD2 is uniformly high on freshly isolated and culture-expanded cells. Using the Miltenyi AutoMACS® device and a monoclonal antibody recognizing GD2 (clone 14.G2A) we prospectively isolated a highly enriched MSC population from bone marrow MNCs. The selected fraction was >98% pure for GD2+ cells determined by flow cytometry. Light microscopy showed that the GD2-selected cells were smaller, thinner, and more spindle-like when attached to plastic compared to unselected MSCs which spread wider along the surface of the culture flask, the so-called “fried egg” appearance. The doubling time of GD2-selected MSCs was 30 hrs compared to 90 hrs for unselected cells representing a 3-fold greater growth rate. Cell cycle analysis by flow cytometry showed ∼80% of cells were in G0/G1 and ∼20% were in S/G2/M phases of the cell cycle in both populations. With the shorter doubling time, this data indicates that GD2-selected MSCs move through the cell cycle more rapidly than unselected cells. In accordance with this finding, electron microscopy showed few organelles in the GD2-selected cells, but increase lamellar bodies indicating overall less complexity, but consistent with a greater membrane turnover rate (cell division) than unselected MSCs. Moreover, flow cytometric analysis revealed an increased expression of receptors for bFGF and EFG, known mitogenic factor receptors for MSCs, compared to unselected MSCs. In vitro differentiation of GD2-selected MSCs showed a more robust osteoid matrix formation (osteoblast) and proteoglycan formation (chondroblast) assayed by semi-quantitative Alizarin Red and Alcian blue staining, respectively. Additionally, more GD2-selected MSCs differentiated to adipocytes than among unselected cells. Surprisingly, GD2 expression persisted on the in vitro human MSC-differentiated osteoblasts, chondroblasts, and adipocytes, in contrast to human bone-derived osteoblasts, adipose tissue, and cartilage which lacked GD2 expression. We conclude that GD2 is a unique, stably expressed surface MSC marker which can be used to prospectively isolate MSCs from marrow, GD2-selcted cells have a more robust in vitro proliferation and differentiation potential which may be valuable for cell therapy, and biologically, in vitro isolated MSCs may not represent the in vivo progenitor for bone, fat, or cartilage.


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