7 research outputs found

    Image_1_Case Report: Tumor-to-tumor metastasis with prostate cancer metastatic to lung cancer: the first reported case.jpeg

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    Tumor-to-tumor metastasis (TTM) occurs rarely in tumor progression, but this event has significant clinical implications. Although the impact of TTM on patient prognosis and survival has been increasingly recognized, understanding of TTM biology and treatment is limited. Prostate cancer is among the most common malignancies threatening male health. Prostate cancer can potentially metastasize to primary lung Cancer; however, this is an exceedingly rare event. We here report for the first time a case of TTM from a prostate cancer to a coexisting primary lung cancer.</p

    Image_2_Case Report: Tumor-to-tumor metastasis with prostate cancer metastatic to lung cancer: the first reported case.tif

    No full text
    Tumor-to-tumor metastasis (TTM) occurs rarely in tumor progression, but this event has significant clinical implications. Although the impact of TTM on patient prognosis and survival has been increasingly recognized, understanding of TTM biology and treatment is limited. Prostate cancer is among the most common malignancies threatening male health. Prostate cancer can potentially metastasize to primary lung Cancer; however, this is an exceedingly rare event. We here report for the first time a case of TTM from a prostate cancer to a coexisting primary lung cancer.</p

    L'Athlète : journal hebdomadaire de tous les sports

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    22 juin 19381938/06/22 (N1102)-1938/06/22.Appartient à l’ensemble documentaire : Aquit

    MOESM5 of Efficient whole-cell-catalyzing cellulose saccharification using engineered Clostridium thermocellum

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    Additional file 5: Figure S5. Production of reducing sugars by ∆pyrF::CaBglA. The concentration of produced reducing sugar was determined by DNS method. 0 or 15 U/g cellulose of CaBglA were added. Three independent replicates were prepared to calculate the average values and standard deviations

    MOESM6 of Efficient whole-cell-catalyzing cellulose saccharification using engineered Clostridium thermocellum

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    Additional file 6: Figure S6. Production of reducing sugars by ∆pyrF::CaBglA and ∆pyrF::CaBglAm. The concentration of reducing sugar was determined by DNS method. Three independent replicates were prepared to calculate the average values and standard deviations

    MOESM4 of Efficient whole-cell-catalyzing cellulose saccharification using engineered Clostridium thermocellum

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    Additional file 4: Figure S4. Growth and fermentation analysis of C. thermocellum strains with Avicel as a carbon source. a, cell growth represented by the abundance of total protein in cell pellets. b, Avicel consumption in mM glucose equivalents. Average values and standard deviations are calculated based on three replicates for each strain
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