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Nilsson, G., and Dahlin, J.S. (2018). New insights into the origin of mast cells.Allergy.
Nilsson, A.Rundberg, Soneji, S., Adolfsson, S., Bryder, D., and Pronk, C.Jan (2016). Human and Murine Hematopoietic Stem Cell Aging Is Associated with Functional Impairments and Intrinsic Megakaryocytic/Erythroid Bias.Plos One11, e0158369.
Nilsson, C., Hulegårdh, E., Garelius, H., Möllgård, L., Brune, M., Wahlin, A., Lenhoff, S., Frödin, U., Remberger, M., Höglund, M., et al. (2019). Secondary acute myeloid leukemia and the role of allogeneic stem cell transplantation in a population-based setting.Biol Blood Marrow Transplant.
Nimishakavi, S., Raymond, W.W., Gruenert, D.C., and Caughey, G.H. (2015). Divergent Inhibitor Susceptibility among Airway Lumen-Accessible Tryptic Proteases.Plos One10, e0141169.
Nimmakayala, R.Krishna, Batra, S.K., and Ponnusamy, M.P. (2018). Unraveling the Journey of Cancer Stem Cells from Origin to Metastasis.Biochim Biophys Acta Rev Cancer.
Nimmer, M., Czachor, J., Turner, L., Thomas, B., Woodford, A.L., Carpenter, K., Gonzalez, V., Liem, R.I., Ellison, A., T Casper, C., et al. (2016). The Benefits and Challenges of Preconsent in a Multisite, Pediatric Sickle Cell Intervention Trial.Pediatr Blood Cancer.
Nimmo, R.A., May, G.E., and Enver, T. (2015). Primed and ready: understanding lineage commitment through single cell analysis.Trends Cell Biol.
Ninagawa, N.Takenaka, Isobe, E., Hirayama, Y., Murakami, R., Komatsu, K., Nagai, M., Kobayashi, M., Kawabata, Y., and Torihashi, S. (2013). Transplantated mesenchymal stem cells derived from embryonic stem cells promote muscle regeneration and accelerate functional recovery of injured skeletal muscle.Biores Open Access2, 295-306.
Ning, T., Shao, J., Zhang, X., Luo, X., Huang, X., Wu, H., Xu, S., Wu, B., and Ma, D. (2019). Aging affects the proliferation and mineralization of rat dental pulp stem cells under inflammatory conditions.Int Endod J.
Ning, X., Du, Y., Ben, Q., Huang, L., He, X., Gong, Y., Gao, J., Wu, H., Man, X., Jin, J., et al. (2015). Bulk pancreatic cancer cells can convert into cancer stem cells(CSCs) in vitro and two compounds can target these CSCs.Cell Cycle.
Ning, H., Lei, H.-E., De Xu, Y.-, Guan, R.-L., Venstrom, J.M., Lin, G., Lue, T.F., Xin, Z., and Lin, C.-S. (2014). Conversion of Adipose-Derived Stem Cells into Natural Killer-Like Cells with Anti-Tumor Activities in Nude Mice.Plos One9, e106246.
Ning, Y., Huang, J.-H., Xia, S.-J., Bian, Q., Chen, Y., Zhang, X.-M., Dong, J.-C., and Shen, Z.-Y. (2013). Mechanisms Underlying the Antiproliferative and Prodifferentiative Effects of Psoralen on Adult Neural Stem Cells via DNA Microarray.Evid Based Complement Alternat Med2013, 452948.
Ning, S.-T., Lee, S.-Y., Wei, M.-F., Peng, C.-L., Lin, S.Yun-Fan, Tsai, M.-H., Lee, P.-C., Shih, Y.-H., Lin, C.-Y., Luo, T.-Y., et al. (2016). Targeting Colorectal Cancer Stem-Like Cells with Anti-CD133 Antibody-Conjugated SN-38 Nanoparticles.Acs Appl Mater Interfaces.
Ninkovic, J., and Götz, M. (2018). Understanding direct neuronal reprogramming-from pioneer factors to 3D chromatin.Curr Opin Genet Dev52, 65-69.
Ninkovic, J., and Götz, M. (2014). A Time and Place for Understanding Neural Stem Cell Specification.Dev Cell30, 114-115.
Ninomiya, K., Iwatsuki, K., Ohnishi, Y.-I., Ohkawa, T., and Yoshimine, T. (2015). Intranasal delivery of bone marrow stromal cells to spinal cord lesions.J Neurosurg Spine1-9.
Nir, G., Farabella, I., Estrada, C.Pérez, Ebeling, C.G., Beliveau, B.J., Sasaki, H.M., Lee, S.H., Nguyen, S.C., McCole, R.B., Chattoraj, S., et al. (2018). Walking along chromosomes with super-resolution imaging, contact maps, and integrative modeling.Plos Genet14, e1007872.
Nirmal, R.S., and Nair, P.D. (2013). Significance of soluble growth factors in the chondrogenic response of human umbilical cord matrix stem cells in a porous three dimensional scaffold.Eur Cell Mater26, 234-251.
Nisbet, M., and Markowitz, E.M. (2014). Understanding Public Opinion in Debates over Biomedical Research: Looking beyond Political Partisanship to Focus on Beliefs about Science and Society.Plos One9, e88473.
Nishi, Y., Murakami, A., Murayama, Y., Tsukahara, N., Okamoto, S., Nakachi, S., Morichika, K., Tamaki, K., Noguchi, H., Matsushita, M., et al. (2019). Adipose tissue-derived mesenchymal stem cells ameliorate bone marrow aplasia related with graft-versus-host disease in experimental murine models.Transpl Immunol.
Nishibayashi, A., Tomita, K., Kiya, K., Yano, K., and Hosokawa, K. (2016). Differentiated adipose-derived stem cells promote the recovery of nociceptor function in rats.Neuroreport.
Nishida, S., Tsuboi, A., Tanemura, A., Ito, T., Nakajima, H., Shirakata, T., Morimoto, S., Fujiki, F., Hosen, N., Oji, Y., et al. (2019). Immune adjuvant therapy using Bacillus Calmette-Guérin cell wall skeleton (BCG-CWS) in advanced malignancies: A phase 1 study of safety and immunogenicity assessments.Medicine (Baltimore)98, e16771.
Nishida, N., Kitano, M., Sakurai, T., and Kudo, M. (2015). Molecular Mechanism and Prediction of Sorafenib Chemoresistance in Human Hepatocellular Carcinoma.Dig Dis33, 771-779.
Nishide, K., and Hirano, T. (2014). Overlapping and Non-overlapping Functions of Condensins I and II in Neural Stem Cell Divisions.Plos Genet10, e1004847.
Nishihara, S. (2018). Glycans in stem cell regulation: from Drosophila tissue stem cells to mammalian pluripotent stem cells.Febs Lett.