scholarly journals PO-275 Effect of ionising radiation in FaDu cell line- preliminary results

Author(s):  
A Duarte ◽  
S Graça ◽  
A Salvada ◽  
PC Teixeira ◽  
AS Pires Lourenço ◽  
...  
2002 ◽  
Vol 198 (1-2) ◽  
pp. 123-129 ◽  
Author(s):  
Françoise Paris ◽  
Nadège Servant ◽  
Béatrice Térouanne ◽  
Charles Sultan

2017 ◽  
Vol 9 (12) ◽  
pp. 2013-2021
Author(s):  
Weili Liao ◽  
Yunzhi Ling ◽  
Sui Jiang ◽  
Huaxiong Cai
Keyword(s):  

2014 ◽  
Author(s):  
Jee-Hyub Kim

A cell line is a cell culture developed from a single cell and therefore consisting of cells with a uniform genetic make-up. A cell line has an important role as a research resource such as organisms, antibodies, constructs, knockdown reagents, etc. Unique identification of cell lines in the biomedical literature is important for the reproducibility of science. As data citation, resource citation is also important for resource re-use. In this paper, we mention the challenges of identifying cell lines and describe a system for cell line annotation with preliminary results.


2007 ◽  
Vol 5 ◽  
pp. 1-4 ◽  
Author(s):  
E. Schmid ◽  
T. Schrader

Abstract. It has been discussed ever since among the scientific communities, whether non-ionising radiation can alter or harm biological systems. While the mechanisms of underlying effects of ionising radiation are well understood and described here, there is less understanding in the effects caused by non-ionising radiation except for heating effects. Recent results have been interpreted, that numerical chromosome aberrations may be induced by exposure to RF radiation. Our own experiments employing the µTEM cell yield results similar to findings observed for aneugenic-inducing chemical agents which can cause spindle disturbances. For comparison purpose to the effects caused by those agents we used the well established human-hamster hybrid (AL) cell line to evaluate the biological effects after exposure to RF radiation (835 MHz).


2021 ◽  
Vol 9 (Suppl 3) ◽  
pp. A605-A605
Author(s):  
Yael Sagi ◽  
Michal Shahar ◽  
Marina Pinsker

BackgroundCAR-T therapy has limited efficacy against solid tumors due to low trafficking to the tumor, limited cell expansion in patients, tumor antigen heterogeneity, and an immunosuppressive microenvironment. TTS are fusion proteins that consist of genetically engineered Superantigens (Sag) linked to Fragment antigen binding (Fab) moieties directed to tumor associated antigens. It was previously shown that TTS selectively activates a subset of T cells [1], turns ”cold tumors hot” [2] and, in preclinical models, can lead to long-term memory responses [3]. Here we present preclinical data demonstrating that the lead TTS compound, NAP (5T4 targeted Sag), enhanced the efficacy of CAR-T treatment against tumor cells in vitro, suggesting that NAP may overcome current CAR T limitations.MethodsHer2-CAR-T cells were produced in the presence of NAP or CD3&CD28, and their potency was evaluated against the FaDu cell line and by measurement of T cell activation markers (CD25, CD137, IFN-gamma, CD107a). The expression of memory markers (CCR7, CD45RA/CD45RO, CD95) and Th1 polarization (transcription factors) of the resulted CAR-T cells were analyzed by staining with specific antibodies. The combined potency of NAP with CAR-T was also tested in vitro against the FaDu cell line (which expresses both Her2 and 5T4 antigens). The chemotactic activity of T cells was assessed using a chemotactic chamber.ResultsPBMCs grown in the presence of NAP, in comparison with PBMCs grown in the presence of CD3&CD28 antibodies, resulted in the production of more potent CAR-T cells as measured both by killing assay using the FaDu cell line and by INFγ production, activation markers and T cell degranulation. Central memory (CM) percentages were increased and Th1 polarization was significantly more prominent after NAP stimulation. Following incubation with NAP, the chemotaxis towards the tumor cells was significantly enhanced. Finally, combination of CAR-T and NAP resulted in a synergistic killing effect of the tumor cell line.ConclusionsOur studies show that NAP generates more potent CAR-T cells and acts synergistically with CAR-T against tumor cell lines in vitro. The ability of NAP administration to activate T cells outside of the immunosuppressive microenvironment (in the lymphoid organs), promote T cell infiltration into the tumor and induce long-term memory responses, strongly suggests that combination of CAR-T cells with NAP may overcome the limited effect of CAR-T therapy against solid tumors. NAP is currently being evaluated in clinical studies in combination with durvalumab [NCT03983954] and docetaxel [NCT04880863].ReferencesHedlund G, Eriksson H, Sundstedt A, et al. The Tumor Targeted Superantigen ABR-217620 Selectively Engages TRBV7-9 and Exploits TCR-pMHC Affinity Mimicry in Mediating T Cell Cytotoxicity. PLoS One. 2013; 8(10): e79082.Azulay M, Lifshits S, Friedmann A, et al. Naptumomab Estafenatox induces T cell recognition, turning anti-PD-1 unresponsive “cold” tumors into “hot” responsive tumors. Cancer Research. Jul 2018, 78 (13 Supplement) abstract # 2712 AACR Annual Meeting 2018; Chicago, IL; DOI: 10.1158/1538-7445.AM2018-2712.Azulay M, Lifshits S, Shany E, et al. Selective T cell Redirection Proteins (STR) Enhance the Anti-Tumor Activity of Checkpoint Inhibitors (CPIs) and can Lead to Long-Lasting Immunity Against the Tumor. Abstract # P657. SITC 34th Annual Meeting, 2019. National Harbor, Maryland, USA.


2016 ◽  
Author(s):  
Dorota Dworakowska ◽  
Paulina Szyszka ◽  
Gregory Weitsman ◽  
Salvador Diaz-Cano ◽  
Marta Korbonits ◽  
...  

2021 ◽  
Author(s):  
Sabina-Mădălina Vieriu ◽  
Adrian-Alexandru Someşan ◽  
Cristian Silvestru ◽  
Emilia Licarete ◽  
Manuela Banciu ◽  
...  

Novel triorganotin(iv) nicotinates and isonicotinates were successfully synthesized and fully characterized. The preliminary results for their in vitro antiproliferative activity against the mouse colon carcinoma C26 cell line are also reported.


2020 ◽  
Author(s):  
pin dong ◽  
Jia Zhang ◽  
Wei Mao ◽  
Yuying Liu ◽  
Jian Ding ◽  
...  

Abstract Background: Hypopharyngeal carcinoma is characterized by high degree of malignancy. The most common pathological type is squamous cell carcinoma (HSCC). It has been confirmed that high autophagy level promotes the development of hypopharyngeal cancer in recent years. Clinical researches have reported that high autophagy level often caused insensitivity to chemotherapy, a common phenomenon that greatly reduces therapeutic effect in cisplatin-resistant tumor cell lines. Therefore, exploring internal mechanisms of autophagy on cisplatin resistant HSCC is necessary for founding theoretical basis for synergistic antitumor drugs by interfering with autophagy.Methods: Part I: Cisplatin-resistant FaDu cell line was established and cultured. Cell counting kit-8 was used to detect drug resistance. Inverted microscope was used to observe the morphological changes at different concentrations, then the survival rate was calculated. After MDC staining, the autophagic vacuoles were observed by fluorescence microscopy. The expression of Beclin1 from each group was confirmed by RT-PCR and Western blot method. Part II: Beclin1 was knocked down by plasmid transfection, autophagy inhibitor 3-MA was applied for cisplatin-resistant cells intervention. Cell cycle was detected using flow cytometry assay, apoptosis with necrosis was detected by staining with propidium iodide (PI). CCK-8 was used to observe the cell survival rate in each group. The expression of autophagy-related gene Beclin1,LC3I,LC3II,Atg-5 and P62 in each group was verified by Western blot analysis.Results: Cisplatin-resistant FaDu cell line can be stably constructed by cisplatin intervention. Compared with normal group, autophagy and its related protein Beclin1 expression was enhanced in cisplatin resistant FaDu cells. Autophagy inhibition group showed significant cell cycle changes, mainly manifested by G1 arrest, increased apoptosis rate and significantly decreased survival rate at 24h level. Furthermore, Western blot showed that expression of Beclin1, lc3i, lc3ii, atg-5 protein decreased significantly after the inhibitor used, while the expression of p62 up-regulated, which also confirmed autophagy flow was blocked.Conclusion: Our work confirmed high autophagy level is important for the cisplatin-resistance of HSCC and insensitivity to chemotherapy. The use of 3-MA and Beclin 1 inhibition can significantly reduce autophagy level of cisplatin-resistant FaDu cells, arresting its cell cycle, promote apoptosis and reverse the multidrug resistance condition. These results provide the experimental basis for overcoming multidrug resistance through combination chemotherapy.#These authors contributed equally to this work.


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