1.Interpolation of Dance’s coefficients for the estimation of average glandular dose in mammography
Noriko NAKAMURA ; Yuka OKAFUJI ; Saori ADACHI ; Kyoko ICHIURA
Journal of Rural Medicine 2019;14(1):103-109
Objective: The average glandular dose (AGD) is used to evaluate the radiation dosage in mammography. Dance et al. (2000) presented a computation formula to estimate the AGD based on several coefficient factors, such as compressed breast thickness, breast tissue composition, and half-value layers (HVLs). The objective of this study was to improve the preciseness of AGD estimation.Materials and Methods: We interpolated the coefficients developed by Dance et al. to generate an approximation formulae and reference datasets with higher granularity and breast thickness (2–6 cm) relevant to a Japanese population.Results: The results from this study indicate that the incorporation of HVLs and breast thickness required in mammography densitometry leads to an advancement in the current method for estimating the average glandular dose.Conclusions: We expect that these interpolated values will serve as a reference for other researchers and allow for a more accurate, detailed, and individualized AGD estimation.
2.ERK phosphorylation functions in invadopodia formation in tongue cancer cells in a novel silicate fibre-based 3D cell culture system.
Masaharu NOI ; Ken-Ichi MUKAISHO ; Saori YOSHIDA ; Shoko MURAKAMI ; Shinya KOSHINUMA ; Takeshi ADACHI ; Yoshisato MACHIDA ; Masashi YAMORI ; Takahisa NAKAYAMA ; Gaku YAMAMOTO ; Hiroyuki SUGIHARA
International Journal of Oral Science 2018;10(4):30-30
To screen for additional treatment targets against tongue cancer, we evaluated the contributions of extracellular signal-related kinase (ERK), AKT and ezrin in cancer development. Immunohistochemical staining showed that ERK and ezrin expressions were significantly higher in invasive squamous cell carcinoma than in carcinoma in situ. To investigate the roles of ERK and ezrin in cancer development, we used the non-woven silica fibre sheet Cellbed with a structure resembling the loose connective tissue morphology in a novel 3D culture system. We confirmed that the 3D system using Cellbed accurately mimicked cancer cell morphology in vivo. Furthermore, cell projections were much more apparent in 3D-cultured tongue cancer cell lines than in 2D cultures. Typically, under conventional 2D culture conditions, F-actin and cortactin are colocalized in the form of puncta within cells. However, in the 3D-cultured cells, colocalization was mainly observed at the cell margins, including the projections. Projections containing F-actin and cortactin colocalization were predicted to be invadopodia. Although suppressing ezrin expression with small interfering RNA transfection caused no marked changes in morphology, cell projection formation was decreased, and the tumour thickness in vertical sections after 3D culture was markedly decreased after suppressing ERK activity because both the invasion ability and proliferation were inhibited. An association between cortactin activation as well as ERK activity and invadopodia formation was detected. Our novel 3D culture systems using Cellbed™ are simple and useful for in vitro studies before conducting animal experiments. ERK contributes to tongue cancer development by increasing both cancer cell proliferation and migration via cortactin activation.
Carcinoma in Situ
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metabolism
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pathology
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Carcinoma, Squamous Cell
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metabolism
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pathology
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Cell Culture Techniques
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methods
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Cell Movement
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Cell Proliferation
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Cytoskeletal Proteins
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metabolism
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Extracellular Signal-Regulated MAP Kinases
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metabolism
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Humans
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Neoplasm Invasiveness
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pathology
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Phosphorylation
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Podosomes
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pathology
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Proto-Oncogene Proteins c-akt
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metabolism
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Silicon Dioxide
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Tongue Neoplasms
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metabolism
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pathology
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Tumor Cells, Cultured