47 Publications (Page 1 of 2)
2019
Quantitative, real-time in vivo tracking of magnetic nanoparticles using multispectral optoacoustic tomography (MSOT) imagingAnani, Tareq⋅Anani, Tareq⋅Brannen, Andrew⋅Brannen, Andrew⋅Panizzi, Peter⋅Panizzi, Peter⋅Duin, Evert C⋅Duin, Evert C⋅David, Allan E and David, Allan EJournal of Pharmaceutical and Biomedical Analysis, pp. 112951, 2019-10-00.
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Synthesis of silica–alginate nanoparticles and their potential application as pH-responsive drug carriers
Fan, Xin⋅Domszy, Roman⋅Hu, Naiping⋅Yang, Arthur⋅Yang, Jeff and David, Allan
Journal of Sol-Gel Science and Technology, vol. 91, (no. 1), pp. 20, 20190715. | Journal Article
2018
Engineered silica nanoparticles interact differently with lipid monolayers compared to lipid bilayersElectronic supplementary information (ESI) available. See DOI: 10.1039/c7en00685cAsghari Adib, Ali⋅Nazemidashtarjandi, Saeed⋅Nazemidashtarjandi, Saeed⋅Nazemidashtarjandi, Saeed⋅Kelly, Alexander⋅Kelly, Alexander⋅Kelly, Alexander⋅Kruse, Adelaide⋅Kruse, Adelaide⋅Kruse, Adelaide⋅Cimatu, Katherine⋅Cimatu, Katherine⋅Cimatu, Katherine⋅David, Allan E⋅David, Allan E⋅David, Allan E⋅Farnoud, Amir M⋅Farnoud, Amir M and Farnoud, Amir M(no. 2), pp. 33, 20180215.
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Interactions of Engineered Silica Nanoparticles with Lipid Monolayers and Bilayers
Asghari Adib, Ali⋅Nazemidashtarjandi, Saeed⋅Kelly, Alexander⋅Kruse, Adelaide⋅Cimatu, Katherine⋅David, Allan and Farnoud, Amir
Biophysical Journal, vol. 114, (no. 3), pp. 176a, 2018-02-02. | Journal Article
Nanomaterial Endocytosis: Estimation of Particles Per Cell by Magnetic MeasurementZhou, Chen⋅Zhou, Chen⋅Choi, Young⋅Choi, Young⋅David, Allan E⋅David, Allan E⋅Todd, Paul Wilson⋅Todd, Paul Wilson⋅Hanley, Thomas R and Hanley, Thomas RIEEE Magnetics Letters, vol. 9, pp. 5, 20180000.
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2017
Abstract 1245: Screening methodologies for the discovery of small molecule melanoma therapeutics targeted at the ErbB4 receptor tyrosine kinaseCullum, Richard L⋅Cullum, Richard L⋅Piazza, John T⋅Piazza, John T⋅Senfeld, Jared I⋅Senfeld, Jared I⋅Neel, Logan T⋅Neel, Logan T⋅Gupta, Ram B⋅Gupta, Ram B⋅David, Allan E⋅David, Allan E⋅Riese, David J and Riese, David JCancer Research, vol. 77, (no. 13 Supplement), pp. 1245, 2017-07-01.
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Application of magnetic carriers to two examples of quantitative cell analysisZhou, Chen⋅Zhou, Chen⋅Qian, Zhixi⋅Qian, Zhixi⋅Choi, Young Suk⋅Choi, Young Suk⋅David, Allan E⋅David, Allan E⋅Todd, Paul⋅Todd, Paul⋅Hanley, Thomas R and Hanley, Thomas RJournal of Magnetism and Magnetic Materials, vol. 427, pp. 28, 2017-04-01.
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Enhanced accumulation of theranostic nanoparticles in brain tumor by external magnetic field mediated in situ clustering of magnetic nanoparticles
Lee, Kyuri⋅David, Allan E⋅Zhang, Jian⋅Shin, Meong Cheol and Yang, Victor C
Journal of Industrial and Engineering Chemistry, vol. 54, pp. 397, 2017-10-25. | Journal Article
2016
Effects of Iron-Oxide Nanoparticle Surface Chemistry on Uptake Kinetics and Cytotoxicity in CHO-K1 Cells
Hanot, Camille C⋅Choi, Young S⋅Anani, Tareq B⋅Soundarrajan, Dharsan and David, Allan E
International Journal of Molecular Sciences, vol. 17, (no. 1), pp. 54, 2016. | Journal Article
Nanoparticle-based probes to enable noninvasive imaging of proteolytic activity for cancer diagnosisAnani, T.⋅Panizzi, Peter⋅Anani, Tareq⋅Panizzi, Peter⋅Panizzi, P.⋅David, A.E. and David, Allan ENanomedicine, vol. 11, (no. 15), pp. 2022, 2016-August-01.
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2015
Effects of Iron-Oxide Nanoparticle Surface Chemistry on Uptake Kinetics and Cytotoxicity in CHO-K1 Cells
Hanot, Camille C⋅Choi, Young Suk⋅Anani, Tareq B⋅Soundarrajan, Dharsan and David, Allan E
International journal of molecular sciences, vol. 17, (no. 1), pp. 54, 2015-Dec-31. | Journal Article
Exploiting Size-Dependent Drag and Magnetic Forces for Size-Specific Separation of Magnetic Nanoparticles
Rogers, Hunter B⋅Anani, Tareq⋅Choi, Young Suk⋅Beyers, Ronald J and David, Allan E
International journal of molecular sciences, vol. 16, (no. 8), pp. 20019, 2015-Aug-21. | Journal Article
PTD-Modified ATTEMPTS for Enhanced Toxin-based Cancer Therapy: An In Vivo Proof-of-Concept StudyShin, Meong Cheol⋅Shin, Meong⋅Zhang, Jian⋅Zhang, Jian⋅Min, Kyoung⋅Min, Kyoung Ah⋅He, Huining⋅He, Huining⋅David, Allan E⋅David, Allan⋅Huang, Yongzhuo⋅Huang, Yongzhuo⋅Yang, Victor C and Yang, VictorPharmaceutical Research, vol. 32, (no. 8), pp. 2703, 20150800.
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Scaffold materials from glycosylated and PEGylated bovine serum albuminWang, Kai⋅Wang, Kai⋅David, Allan E⋅David, Allan E⋅Choi, Young-Suk⋅Choi, Young-Suk⋅Wu, Yonnie⋅Wu, Yonnie⋅Buschle-Diller, Gisela and Buschle Diller, GiselaJournal of Biomedical Materials Research Part A, vol. 103, (no. 9), pp. 2846, 2015-09-00.
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2014
Cell‐penetrating peptides: Achievements and challenges in application for cancer treatmentShin, Meong C⋅Shin, Meong Cheol⋅Zhang, Jian⋅Zhang, Jian⋅Min, Kyoung A⋅Min, Kyoung Ah⋅Lee, Kyuri⋅Lee, Kyuri⋅Byun, Youngro⋅Byun, Youngro⋅David, Allan E⋅David, Allan E⋅He, Huining⋅He, Huining⋅Yang, Victor C and Yang, Victor CJournal of Biomedical Materials Research Part A, vol. 102, (no. 2), pp. 587, February 2014.
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Cell Penetrating Peptides and the Mechanisms for Intracellular Entry
Choi, Young and David, Allan
Current Pharmaceutical Biotechnology, vol. 15, (no. 3), pp. 199, 2014-March. | Journal Article
Nanoparticles for gene delivery: therapeutic and toxic effects
Choi, Young⋅Lee, Mi⋅David, Allan and Park, Yoon
Molecular & Cellular Toxicology, vol. 10, (no. 1), pp. 8, 20140300. | Journal Article
2013
Chemically and biologically synthesized CPP-modified gelonin for enhanced anti-tumor activityShin, Meong Cheol⋅Shin, Meong C⋅Zhang, Jian⋅Zhang, Jian⋅David, Allan E⋅David, Allan E⋅Trommer, Wolfgang E⋅Trommer, Wolfgang E⋅Kwon, Young Min⋅Kwon, Young Min⋅Min, Kyoung Ah⋅Min, Kyoung A⋅Kim, Jin H⋅Kim, Jin H⋅Yang, Victor C and Yang, Victor CJournal of Controlled Release, vol. 172, (no. 1), pp. 178, 2013-11-28.
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Controlled Release of Simvastatin from In situ Forming Hydrogel Triggers Bone Formation in MC3T3-E1 CellsPark, Yoon⋅Park, Yoon⋅Park, Yoon S⋅David, Allan E⋅David, Allan⋅David, Allan⋅Park, Kyung⋅Park, Kyung M⋅Park, Kyung⋅Lin, Chia-Ying⋅Lin, Chia-Ying⋅Lin, Chia Ying⋅Than, Khoi D⋅Than, Khoi⋅Than, Khoi⋅Lee, Kyuri⋅Lee, Kyuri⋅Lee, Kyuri⋅Park, Jun⋅Park, Jun B⋅Park, Jun⋅Jo, Inho⋅Jo, Inho⋅Jo, Inho⋅Park, Ki D⋅Park, Ki⋅Park, Ki⋅Yang, Victor C⋅Yang, Victor and Yang, VictorThe AAPS Journal, vol. 15, (no. 2), pp. 376, 20130400.
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Long-Circulating Heparin-Functionalized Magnetic Nanoparticles for Potential Application as a Protein Drug Delivery PlatformZhang, Jian⋅Zhang, Jian⋅Shin, Meong C⋅Shin, Meong Cheol⋅David, Allan E⋅David, Allan E⋅Zhou, Jie⋅Zhou, Jie⋅Lee, Kyuri⋅Lee, Kyuri⋅He, Huining⋅He, Huining⋅Yang, Victor C and Yang, Victor CMolecular Pharmaceutics, vol. 10, (no. 10), pp. 3902, 20131007.
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Magnetic Nanoparticles for Tumor Imaging and Therapy: A So-Called Theranostic SystemHe, Huining⋅He, Huining⋅David, Allan⋅David, Allan⋅Chertok, Beata⋅Chertok, Beata⋅Cole, Adam J⋅Cole, Adam⋅Lee, Kyuri⋅Lee, Kyuri⋅Zhang, Jian⋅Zhang, Jian⋅Wang, Jianxin⋅Wang, Jianxin⋅Huang, Yongzhuo⋅Huang, Yongzhuo⋅Yang, Victor and Yang, Victor CPharmaceutical Research, vol. 30, (no. 10), pp. 2458, 20131000.
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Magnetic tumor targeting of β-glucosidase immobilized iron oxide nanoparticlesZhou, Jie⋅Zhou, Jie⋅Zhang, Jian⋅Zhang, Jian⋅David, Allan E⋅David, Allan E⋅Yang, Victor C and Yang, Victor CNanotechnology, vol. 24, (no. 37), pp. 375102, 2013-Sep-20.
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Pulsed Magnetic Field Improves the Transport of Iron Oxide Nanoparticles through Cell BarriersMin, Kyoung Ah⋅Min, Kyoung A⋅Shin, Meong Cheol⋅Shin, Meong C⋅Yu, Faquan⋅Yu, Faquan⋅Yang, Meizhu⋅Yang, Meizhu⋅David, Allan E⋅David, Allan E⋅Yang, Victor C⋅Yang, Victor C⋅Rosania, Gustavo R and Rosania, Gus RACS Nano, vol. 7, (no. 3), pp. 2171, 20130326.
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The use of low molecular weight protamine chemical chimera to enhance monomeric insulin intestinal absorptionHe, Huining⋅He, Huining⋅Sheng, Jianyong⋅Sheng, Jianyong⋅David, Allan⋅David, Allan E⋅Kwon, Young Min⋅Kwon, Young⋅Zhang, Jian⋅Zhang, Jian⋅Huang, Yongzhuo⋅Huang, Yongzhuo⋅Wang, Jianxin⋅Wang, Jianxin⋅Yang, Victor C and Yang, VictorBiomaterials, vol. 34, (no. 31), pp. 7743, 2013.
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2012
Immobilized thermolysin for highly efficient production of low‐molecular‐weight protamine—An attractive cell‐penetrating peptide for macromolecular drug delivery applicationsDavid, Allan E⋅David, Allan E⋅Gong, Junbo⋅Gong, Junbo⋅Chertok, Beata⋅Chertok, Beata⋅Domszy, Roman C⋅Domszy, Roman C⋅Moon, Cheol⋅Moon, Cheol⋅Park, Yoon Shin⋅Park, Yoon S⋅Wang, Nam Sun⋅Wang, Nam S⋅Yang, Arthur J⋅Yang, Arthur J⋅Yang, Victor C and Yang, Victor CJournal of Biomedical Materials Research Part A, vol. 100A, (no. 1), pp. 219, January 2012.
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