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  1. 90741
    “…Time-activity curves were expressed as SUV mean, SUVR and PKM performed using 1-/2-tissue-compartment models (1TCM, 2TCM), Patlak and Logan analysis (LA). Immunofluorescent staining (IFS), western blotting, and autoradiography of tumor tissue were performed for result validation. …”
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  2. 90742
    “…The therapy predictive marker for PD-L1 (SP263) is moderately to strongly positive membranous staining in all cases. All ten tumors demonstrate a medium frequency of split TFEB fluorescent signals ranging from 30 to 50% (mean 38%). …”
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  3. 90743
    “…BBB leakage and tight junction proteins were analyzed by Evans Blue (EB) staining and western blotting, respectively. Co-IP assay and Cav-1 siRNA/pcDNA 3.1 vector transfection were employed to verify the endocytosis efficacy of Cav-1 on tight junction proteins. …”
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  4. 90744
    “…PARTICIPANTS/MATERIALS, SETTING, METHODS: In addition to clinical data, we analyzed measurements of testicular volume and performed histological staining on testicular biopsies obtained before treatment, at cryopreservation, to evaluate number of spermatogonia per tubular cross-section, tubular fertility index, and the most advanced germ cell type prior to chemo-/radiotherapy. …”
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  5. 90745
  6. 90746
  7. 90747
    Publicado 2023
    “…The levels of reactive oxygen species (ROS) in the H9c2 cells of the four groups were determied with 2'-7'-dichlorodihydrofluorescein diacetate (DCFH-DA) staining. The activities of lactate dehydrogenase (LDH), superoxide dismutase (SOD), catalase (CAT), and SIRT1 as well as the malondialdehyde (MDA) content were measured using ELISA kits. …”
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  8. 90748
  9. 90749
    por Stirnemann, J., Villar, J., Salomon, L. J., Ohuma, E., Ruyan, P., Altman, D. G., Nosten, F., Craik, R., Munim, S., Cheikh Ismail, L., Barros, F. C., Lambert, A., Norris, S., Carvalho, M., Jaffer, Y. A., Noble, J. A., Bertino, E., Gravett, M. G., Purwar, M., Victora, C. G., Uauy, R., Bhutta, Z., Kennedy, S., Papageorghiou, A. T., Katz, M, Bhan, MK, Garza, C, Zaidi, S, Langer, A, Rothwell, PM, Weatherall, Sir D, Bhutta, ZA, Villar, J, Kennedy, S, Altman, DG, Barros, FC, Bertino, E, Burton, F, Carvalho, M, Ismail, L Cheikh, Chumlea, WC, Gravett, MG, Jaffer, YA, Lambert, A, Lumbiganon, P, Noble, JA, Pang, RY, Papageorghiou, AT, Purwar, M, Rivera, J, Victora, C, Uauy, R, Kennedy, S, Villar, J, Altman, DG, Barros, FC, Berkley, J, Burton, F, Carvalho, M, Ismail, L Cheikh, Chumlea, WC, Lambert, A, Munim, S, Norris, S, Nosten, F, Papageorghiou, AT, Victora, C, Villar, J, Altman, DG, Ismail, L Cheikh, Kennedy, S, Lambert, A, Noble, JA, Papageorghiou, AT, Bhutta, ZA, Craik, R, Uauy, R, Villar, J, Ismail, L Cheikh, Kennedy, S, Lambert, A, Papageorghiou, AT, Shorten, M, Hoch, L, Knight, HE, Ohuma, EO, Cosgrove, C, Blakey, I, Ash, S, Craik, R, Altman, DG, Ohuma, EO, Urias, E Staines, Villar, J, Altman, DG, Roseman, F, Kunnawar, N, Gu, SH, Wang, JH, Wu, MH, Domingues, M, Gilli, P, Juodvirsiene, L, Hoch, L, Musee, N, Al‐Jabri, H, Waller, S, Cosgrove, C, Muninzwa, D, Ohuma, EO, Yellappan, D, Carter, A, Reade, D, Miller, R, Ahmed, I, Ash, S, Condon, C, Mainwaring, M, Muninzwa, D, da Silveira, MF, Urias, E Staines, Walusuna, L, Wiladphaingern, S, Papageorghiou, AT, Salomon, L, Leston, A, Mitidieri, A, Al‐Aamri, F, Paulsene, W, Sande, J, Al‐Zadjali, WKS, Batiuk, C, Bornemeier, S, Carvalho, M, Dighe, M, Gaglioti, P, Jacinta, N, Jaiswal, S, Noble, JA, Oas, K, Oberto, M, Olearo, E, Owende, MG, Shah, J, Sohoni, S, Todros, T, Venkataraman, M, Vinayak, S, Wang, L, Wilson, D, Wu, QQ, Zaidi, S, Zhang, Y, Chamberlain, P, Danelon, D, Sarris, I, Dhami, J, Ioannou, C, Knight, CL, Napolitano, R, Wanyonyi, S, Pace, C, Mkrtychyan, V, Buckle, M, Jackson, N, Mitidieri, A, Munim, S, Mwangudzah, H, Norris, T, Shah, J, Zainab, G, Ismail, L Cheikh, Chumlea, WC, Al‐Habsi, F, Bhutta, ZA, Carter, A, Alija, M, Jimenez‐Bustos, JM, Kizidio, J, Puglia, F, Kunnawar, N, Liu, H, Lloyd, S, Mota, D, Ochieng, R, Rossi, C, Luna, M Sanchez, Shen, YJ, Knight, HE, Rocco, DA, Frederick, IO, Kizidio, J, Monyepote, B, Salim, M, Salam, R, Carrara, VI, Craik, R, Alam, D, Guman, Y, Kilonzo, J, Min, A, Ngami, V, Olivera, I, Deutsch, G, Bhutta, ZA, Albernaz, E, Batra, M, Bhat, BA, Bertino, E, Nicola, P Di, Giuliani, F, Rovelli, I, McCormick, K, Ochieng, R, Pang, RY, Paul, V, Rajan, V, Wilkinson, A, Uauy, R, Varalda, A, Eskenazi, B, Bradman, A, Burnham, O, Corra, LA, Dolk, H, Farhi, F, Finkton, D, Golding, J, Matijasevich, A, de Wet, T, Villar, J, Zhang, JJ, Stein, A, Fernandes, M, Abubakar, A, Acedo, J, Aranzeta, L, Ismail, L Cheikh, Giuliani, F, Ibanez, D, Kennedy, S, Kihara, M, de Leon, E, Newton, CR, Savini, S, Soria‐Frisch, A, Villar, J, Wulff, K, Barros, FC, Domingues, M, Fonseca, S, Leston, A, Mitidieri, A, Mota, D, Sclowitz, IK, da Silveira, MF, Pang, RY, He, YP, Pan, Y, Shen, YJ, Wu, MH, Wu, QQ, Wang, JH, Yuan, Y, Zhang, Y, Purwar, M, Choudhary, A, Choudhary, S, Deshmukh, S, Dongaonkar, D, Ketkar, M, Khedikar, V, Kunnawar, N, Mahorkar, C, Mulik, I, Saboo, K, Shembekar, C, Singh, A, Taori, V, Tayade, K, Somani, A, Bertino, E, Nicola, P Di, Frigerio, M, Gilli, G, Gilli, P, Giolito, M, Giuliani, F, Oberto, M, Occhi, L, Rossi, C, Rovelli, I, Signorile, F, Todros, T, Stones, W, Carvalho, M, Kizidio, J, Ochieng, R, Shah, J, Vinayak, S, Musee, N, Kisiang'ani, C, Muninzwa, D, Kilonzo, J, Sande, J, Berkley, J, Kemp, B, Barsosio, H, Mwakio, S, Mwangudzah, H, Ngami, V, Salim, M, Seale, A, Walusuna, L, Jaffer, YA, Al‐Abri, J, Al‐Abduwani, J, Al‐Habsi, FM, Al‐Lawatiya, H, Al‐Rashidiya, B, Al‐Zadjali, WKS, Juangco, FR, Venkataraman, M, Al‐Jabri, H, Yellappan, D, Munim, S, Zainab, G, Ahmed, I, Alam, D, Raza, A, Salam, R, Norris, S, Guman, Y, Lephoto, T, Macauley, S, Malgas, L, Nosten, F, Jackson, N, McGready, R, Min, A, Cararra, VI, Wiladphaingern, S, Kennedy, S, Ismail, L Cheikh, Lambert, A, Lloyd, S, Napolitano, R, Ohuma, EO, Papageorghiou, AT, Patel, B, Puglia, F, Roseman, F, Roseman, S, Ioannou, C, Sarris, I, Ash, S, Baricco, M, Capp, A, Craik, R, Hussein, S, Laister, A, Lewis, T, Maggiora, E, Norris, T, Sharps, M, Varalda, A, Carew, R, Gravett, MG, Batiuk, C, Batra, M, Bornemeier, S, Dighe, M, Oas, K, Paulsene, W, Wilson, D, Frederick, IO, Andersen, HF, Abbott, SE, Carter, AA, Algren, H, Rocco, DA, Sorensen, TK, Enquobahrie, D, Waller, S
    Publicado 2017
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  10. 90750
    “…The expression of p38 mitogen-activated protein kinases (p38 MAPK), Bcl-2 and Bcl-2-associated X protein (Bax) were detected through immunofluorescence staining, qRT-PCR and western blot in mice heart tissue and H9c2 cells. …”
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  11. 90751
    “…Body weight, organ index, serum biochemistry, and Hematoxylin and Eosin (HE) staining were used to evaluate the liver toxicity effect of BGZ on rats with Yang(syn) and Yin(syn). …”
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  12. 90752
  13. 90753
    “…In this work, we present the results of detailed examinations with transmitted light and epifluorescence microscopy, SEM, solid state NMR analysis, FTIR and X-ray analysis and staining of Monorhaphis chuni basal spicules of different sizes, collected from a number of deep sea locations, to better understand its structure and function. …”
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  14. 90754
  15. 90755
    “…Quantitative real-time polymerase chain reaction (qRT-PCR), Western blotting, immunohistochemical staining and immunofluorescence were used to detect protein localization and expression. …”
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  16. 90756
    “…We used T cell coculture, flow cytometry, ELISA, CCK8 assay and crystal violet staining to detect the expression of regulatory T cell (Tregs), IFN-γ, IL-2 and the ability of T cell-mediated tumour cell killing respectively. …”
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  17. 90757
  18. 90758
  19. 90759
    “…Western blot and immunofluorescence staining were used to detect the expression changes of HR repair factors in ANRIL-KD cells after ionizing radiation, and it was found that knockdown of ANRIL can inhibit the expression of PARP1, BRCA1 and Rad51, hinder radiation-induced HR repair, and eventually result in resensitizing ANRIL-KD cells to ionizing radiation. …”
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  20. 90760
    “…To verify the TCS-induced liver fibrosis, the expression levels of key fibrogenic proteins were examined by Western blotting, immunofluorescence, Masson’s trichrome and Sirius red staining. In addition, normal hepatocyte cell MIHA and hepatic stellate cell LX-2 were used as in vitro cell models to experimentally validate the effects of TCS by immunological, proteomic and metabolomic technologies. …”
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