Biblio

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2016
K. Sakai, Senda, T., Hata, R., Kuroda, M., Hasegawa, M., Kato, M., Abe, M., Kawaguchi, K., Nakai, S., Hiki, Y., Yuzawa, Y., and Kitaguchi, N., Patients that have Undergone Hemodialysis Exhibit Lower Amyloid Deposition in the Brain: Evidence Supporting a Therapeutic Strategy for Alzheimer's Disease by Removal of Blood Amyloid., J Alzheimers Dis, vol. 51, no. 4, pp. 997-1002, 2016.
K. Sakai, Senda, T., Hata, R., Kuroda, M., Hasegawa, M., Kato, M., Abe, M., Kawaguchi, K., Nakai, S., Hiki, Y., Yuzawa, Y., and Kitaguchi, N., Patients that have Undergone Hemodialysis Exhibit Lower Amyloid Deposition in the Brain: Evidence Supporting a Therapeutic Strategy for Alzheimer's Disease by Removal of Blood Amyloid., J Alzheimers Dis, vol. 51, no. 4, pp. 997-1002, 2016.
K. Sakai, Senda, T., Hata, R., Kuroda, M., Hasegawa, M., Kato, M., Abe, M., Kawaguchi, K., Nakai, S., Hiki, Y., Yuzawa, Y., and Kitaguchi, N., Patients that have Undergone Hemodialysis Exhibit Lower Amyloid Deposition in the Brain: Evidence Supporting a Therapeutic Strategy for Alzheimer's Disease by Removal of Blood Amyloid., J Alzheimers Dis, vol. 51, no. 4, pp. 997-1002, 2016.
K. Sakai, Senda, T., Hata, R., Kuroda, M., Hasegawa, M., Kato, M., Abe, M., Kawaguchi, K., Nakai, S., Hiki, Y., Yuzawa, Y., and Kitaguchi, N., Patients that have Undergone Hemodialysis Exhibit Lower Amyloid Deposition in the Brain: Evidence Supporting a Therapeutic Strategy for Alzheimer's Disease by Removal of Blood Amyloid., J Alzheimers Dis, vol. 51, no. 4, pp. 997-1002, 2016.
2013
T. Kondo, Asai, M., Tsukita, K., Kutoku, Y., Ohsawa, Y., Sunada, Y., Imamura, K., Egawa, N., Yahata, N., Okita, K., Takahashi, K., Asaka, I., Aoi, T., Watanabe, A., Watanabe, K., Kadoya, C., Nakano, R., Watanabe, D., Maruyama, K., Hori, O., Hibino, S., Choshi, T., Nakahata, T., Hioki, H., Kaneko, T., Naitoh, M., Yoshikawa, K., Yamawaki, S., Suzuki, S., Hata, R., Ueno, S. - I., Seki, T., Kobayashi, K., Toda, T., Murakami, K., Irie, K., Klein, W. L., Mori, H., Asada, T., Takahashi, R., Iwata, N., Yamanaka, S., and Inoue, H., Modeling Alzheimer's disease with iPSCs reveals stress phenotypes associated with intracellular Aβ and differential drug responsiveness., Cell Stem Cell, vol. 12, no. 4, pp. 487-96, 2013.
T. Kondo, Asai, M., Tsukita, K., Kutoku, Y., Ohsawa, Y., Sunada, Y., Imamura, K., Egawa, N., Yahata, N., Okita, K., Takahashi, K., Asaka, I., Aoi, T., Watanabe, A., Watanabe, K., Kadoya, C., Nakano, R., Watanabe, D., Maruyama, K., Hori, O., Hibino, S., Choshi, T., Nakahata, T., Hioki, H., Kaneko, T., Naitoh, M., Yoshikawa, K., Yamawaki, S., Suzuki, S., Hata, R., Ueno, S. - I., Seki, T., Kobayashi, K., Toda, T., Murakami, K., Irie, K., Klein, W. L., Mori, H., Asada, T., Takahashi, R., Iwata, N., Yamanaka, S., and Inoue, H., Modeling Alzheimer's disease with iPSCs reveals stress phenotypes associated with intracellular Aβ and differential drug responsiveness., Cell Stem Cell, vol. 12, no. 4, pp. 487-96, 2013.