L
Lajos P. Balogh
Researcher at Roswell Park Cancer Institute
Publications - 117
Citations - 7055
Lajos P. Balogh is an academic researcher from Roswell Park Cancer Institute. The author has contributed to research in topics: Dendrimer & Poly(amidoamine). The author has an hindex of 36, co-authored 114 publications receiving 6575 citations. Previous affiliations of Lajos P. Balogh include University of Massachusetts Lowell & California Institute of Technology.
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Journal ArticleDOI
Diverse Applications of Nanomedicine
Beatriz Pelaz,Christoph Alexiou,Ramon A. Alvarez-Puebla,Frauke Alves,Frauke Alves,Anne M. Andrews,Sumaira Ashraf,Lajos P. Balogh,Laura Ballerini,Alessandra Bestetti,Cornelia Brendel,Susanna Bosi,Mónica Carril,Warren C. W. Chan,Chunying Chen,Xiaodong Chen,Xiaoyuan Chen,Zhen Cheng,Daxiang Cui,Jianzhong Du,Christian Dullin,Alberto Escudero,Alberto Escudero,Neus Feliu,Mingyuan Gao,Michael D. George,Yury Gogotsi,Arnold Grünweller,Zhongwei Gu,Naomi J. Halas,Norbert Hampp,Roland K. Hartmann,Mark C. Hersam,Patrick Hunziker,Ji Jian,Xingyu Jiang,Philipp Jungebluth,Pranav Kadhiresan,Kazunori Kataoka,Ali Khademhosseini,Jindřich Kopeček,Nicholas A. Kotov,Harald F. Krug,Dong Soo Lee,Claus-Michael Lehr,Kam W. Leong,Xing-Jie Liang,Mei Ling Lim,Luis M. Liz-Marzán,Xiaowei Ma,Paolo Macchiarini,Huan Meng,Helmuth Möhwald,Paul Mulvaney,Andre E. Nel,Shuming Nie,Peter Nordlander,Teruo Okano,Jose Oliveira,Tai Hyun Park,Reginald M. Penner,Maurizio Prato,Maurizio Prato,Víctor F. Puntes,Vincent M. Rotello,Amila Samarakoon,Raymond E. Schaak,Youqing Shen,Sebastian Sjöqvist,Andre G. Skirtach,Andre G. Skirtach,Mahmoud Soliman,Molly M. Stevens,Hsing-Wen Sung,Ben Zhong Tang,Rainer Tietze,Buddhisha Udugama,J. Scott VanEpps,Tanja Weil,Tanja Weil,Paul S. Weiss,Itamar Willner,Yuzhou Wu,Yuzhou Wu,Lily Yang,Zhao Yue,Qian Zhang,Qiang Zhang,Xian-En Zhang,Yuliang Zhao,Xin Zhou,Wolfgang J. Parak +91 more
TL;DR: An overview of recent developments in nanomedicine is provided and the current challenges and upcoming opportunities for the field are highlighted and translation to the clinic is highlighted.
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Nanoparticle targeting of anticancer drug improves therapeutic response in animal model of human epithelial cancer
Jolanta F. Kukowska-Latallo,Kimberly A. Candido,Zhengyi Cao,Shraddha S. Nigavekar,Istvan J. Majoros,Thommey P. Thomas,Lajos P. Balogh,Mohamed K. Khan,James R. Baker +8 more
TL;DR: Targeting methotrexate increased its antitumor activity and markedly decreased its toxicity, allowing therapeutic responses not possible with a free drug, and modified PAMAM dendritic polymers were employed as carriers.
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Poly(Amidoamine) Dendrimer-Templated Nanocomposites. 1. Synthesis of Zerovalent Copper Nanoclusters
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Interaction of poly(amidoamine) dendrimers with supported lipid bilayers and cells: hole formation and the relation to transport.
Seungpyo Hong,Anna U. Bielinska,Almut Mecke,Balazs Keszler,James L. Beals,Xiangyang Shi,Lajos P. Balogh,Bradford G. Orr,James R. Baker,Mark M. Banaszak Holl +9 more
TL;DR: A hole formation mechanism is consistent with the observations of dendrimer internalization, cytosolic proteins can diffuse out of the cell via these holes, and dye molecules can be detected diffusing into the cell or out ofThe cell through the same membrane holes.
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Dendrimer−Silver Complexes and Nanocomposites as Antimicrobial Agents
TL;DR: Both PAMAM silver salts and nanocomposites displayed considerable antimicrobial activity without the loss of solubility and activity, even in the presence of sulfate or chloride ions.