Proceedings / JMMM
After every meeting we publish a special journal issue that contains the most-up-to date research in our area. In 2018, like in many other years, we did it in the Journal of Magnetism and Magnetic Materials (IF = 2.63).
Below, you will find the titles listed of our special issue. The official link to get to the JMMM Website with all the articles is here.
And if you want to sit down in peace and look through the entire special issue, then download the entire issue from this link. You will learn many new things by taking just a few hours on the weekend and browsing through our colleagues’ papers. It is well worth the time. Enjoy!
12th International Conference on the Scientific and Clinical Applications of Magnetic Carriers | |
Edited by Urs Hafeli, Maciej Zborowski, Silvio Dutz | |
Magnetic particles of nano- and micro-sized dimensions are an area of intense research. To bring together scientists from chemistry, physics, medicine, biology, engineering and materials sciences and discuss in a collaborative manner the applications in technology, preclinical research and diagnostic and therapeutic medicine, we organize a conference about this field now already for the 12th time. In 2018, this conference will take place in Copenhagen, Denmark from May 22-26. This special issue of JMMM will accept submissions from meeting participants and will cover the scientific applications of magnetic particles in particle imaging, molecular biology, cell and other magnetic separations. Clinical applications including cancer treatment, hyperthermia, magnetic resonance contrast enhancement and drug delivery will also be discussed. Furthermore, the synthesis, modification and analysis of all types of magnetic particles will be a focus. Finally, modern nanotechnology applications will also be discussed and include self-assembly of particulate systems and micromechanical (MEMS) systems. | |
1. Editorial | |
0 | Preface magnetic carriers conference 2018 |
Urs Häfeli, Silvio Dutz, Maciej Zborowski, Wolfgang Schütt | |
2. Magnetic Particle Synthesis | |
1 | Optimisation of saturation magnetisation of iron nanoparticles synthesized by hydrogen reduction: Taguchi technique, response surface method, and multiple linear and quadratic regression analyses |
Oznur Karaagac, Hakan Köçkar | |
2 | A simple way to synthesize tartaric acid, ascorbic acid and their mixture coated superparamagnetic iron oxide nanoparticles with high saturation magnetisation and high stability against oxidation: Characterizations and their biocompatibility studies |
Fatmahan Özel, Oznur Karaagac, Esra Tokay, Feray Köçkar, Hakan Köçkar | |
3 | The influence of synthesis parameters on one-step synthesized superparamagnetic cobalt ferrite nanoparticles with high saturation magnetization |
Oznur Karaagac, Busra Bilir Yildiz, Hakan Köçkar | |
4 | Evidence of exchange coupling in τ-MnAlC/FeCo system |
H. Martínez Sánchez, L.E. Zamora Alfonso, J.S. Trujillo Hernandez, G.A. Pérez Alcázar | |
5 | Poly-L-lysine designed magnetic nanoparticles for combined hyperthermia, magnetic resonance imaging and cancer cell detection |
M. Kubovcikova, M. Koneracka, O. Strbak, M. Molcan, ... P. Kopcansky | |
6 | Chitosan-stabilized iron oxide nanoparticles for magnetic resonance imaging |
Iryna Khmara, Oliver Strbak, Vlasta Zavisova, Martina Koneracka, ... Peter Kopcansky | |
7 | Enhanced magnetic properties of Zn doped Fe3O4 nano hollow spheres for better bio-medical applications |
Priyanka Saha, Rupali Rakshit, Kalyan Mandal | |
8 | 3D-printing of novel magnetic composites based on magnetic nanoparticles and photopolymers |
Norbert Löwa, Josephine-Marie Fabert, Dirk Gutkelch, Hendrik Paysen, ... Frank Wiekhorst | |
9 | Superparamagnetic zinc ferrite: A correlation between high magnetizations and nanoparticle sizes as a function of reaction time via hydrothermal process |
Caner Hasirci, Oznur Karaagac, Hakan Köçkar | |
10 | Effects of biocompatible surfactants on structural and corresponding magnetic properties of iron oxide nanoparticles coated by hydrothermal process |
Hakan Köçkar, Oznur Karaagac, Fatmahan Özel | |
11 | Estimating saturation magnetization of superparamagnetic nanoparticles in liquid phase |
Kai Wu, Diqing Su, Jinming Liu, Jian-Ping Wang | |
12 | Wetchemical synthesis of FePt nanoparticles: Tuning of magnetic properties and biofunctionalization for hyperthermia therapy |
Madhuri Mandal Goswami, Arpita Das, Debarati De | |
13 | Mn-Zn ferrite nanoparticles coated with mesoporous silica as core material for heat-triggered release of therapeutic agents |
Janja Stergar, Zden%u011Bk Jirák, Pavel Veverka, Lenka Kubí%u010Dková, ... Ond%u0159ej Kaman | |
14 | Study of Brownian motion of magnetic nanoparticles in viscous media by Mössbauer spectroscopy |
Raul Gabbasov, Anton Yurenya, Alexey Nikitin, Valery Cherepanov, ... Vladislav Panchenko | |
15 | Synthesis of iron oxide nanorods for enhanced magnetic hyperthermia |
Aleksey Nikitin, Maxim Khramtsov, Anastasiia Garanina, Pavel Mogilnikov, ... Alexander Majouga | |
16 | Synthesis of peroxy-functionalized magnetic mesoporous silica for epoxidation of vinyl acetate |
Wishulada Injumpa, Tanatorn Khotavivattana, Numpon Insin | |
17 | Towards optimized MRI contrast agents for implant engineering: Clustering and immobilization effects of magnetic nanoparticles |
Benedikt Mues, Eva M. Buhl, Thomas Schmitz-Rode, Ioana Slabu | |
18 | Field effect in the viscosity of magnetic colloids studied by multi-particle collision dynamics |
Dmitry Zablotsky | |
19 | Microfluidic approaches for the production of monodisperse, superparamagnetic microspheres in the low micrometer size range |
Reka Geczy, Monica Agnoletti, Mikkel F. Hansen, Jörg P. Kutter, ... Urs O. Häfeli | |
20 | Investigation on the self-assembly of magnetic core-shell nanoparticles under soft-magnet element by using discrete element method |
Zongqian Shi, Jiajia Sun, Shuang Chen, Shenli Jia | |
21 | Nanorheological studies of xanthan/water solutions using magnetic nanoparticles |
Thana Sriviriyakul, Sara Bogren, Vincent Schaller, Christian Jonasson, ... Christer Johansson | |
3. Magnetic Forces / Magnetic Separation | |
22 | Clinical experimental study of GoldMag® immunochromatography in high sensitive C reactive protein detection from whole blood and plasma |
Lixia Zhang, Qinlu Zhang, Min Gao, Zhiyi Luo, ... Yali Cui | |
23 | Force acting on a cluster of magnetic nanoparticles in a gradient field: A Langevin dynamics study |
Andrey A. Kuznetsov | |
24 | Experimental and numerical analysis of the magnetophoresis of magnetic nanoparticles under the influence of cylindrical permanent magnet |
Jiajia Sun, Zongqian Shi, Shuang Chen, Shenli Jia | |
25 | Study of anisotropy of magnetic noise, generated by magnetic particles in geomagnetic field |
M.A. Polikarpov, M.N. Ustinin, S.D. Rykunov, A.Y. Yurenya, ... V.Y. Panchenko | |
26 | Measurement of the magnetophoretic velocity of different superparamagnetic beads |
Stefan Achtsnicht, Kristina Schönenborn, Andreas Offenhäusser, Hans-Joachim Krause | |
27 | Electroactive magnetic nanoparticles under magnetic attraction on a microchip electrochemical device |
Feixiong Chen, Naoufel Haddour, Marie Frenea-Robin, Yann Chevolot, Virginie Monnier | |
28 | Magnetic detection of nanoparticle sedimentation in magnetized ferrofluids |
Alex van Silfhout, Ben Erné | |
29 | Single cell magnetometry by magnetophoresis vs. bulk cell suspension magnetometry by SQUID-MPMS – A comparison |
Wei Xue, Lee R. Moore, Naruhiko Nakano, Jeffrey J. Chalmers, Maciej Zborowski | |
4. Magnetic Sensors | |
30 | Large-area GMR bio-sensors based on reverse nucleation switching mechanism |
Diqing Su, Kai Wu, Jian-Ping Wang | |
31 | Development of an optical pumped gradiometric system to detect magnetic relaxation of magnetic nanoparticles |
O. Baffa, R.H. Matsuda, S. Arsalani, A. Prospero, ... R.T. Wakai | |
32 | Multi-spectral Magnetic Particle Spectroscopy for the investigation of particle mixtures |
T. Viereck, S. Draack, M. Schilling, F. Ludwig | |
5. Biological Applications of Magnetic Particles | |
33 | Combined antitumor effect of surface-modified superparamagnetic maghemite nanoparticles and a vitamin E derivative on experimental Walker-256 mammary gland carcinosarcoma |
Beata A. Zaso%u0144ska, Vitaliy Igorovych Pustovyy, Andriy Valeriyovich Babinskiy, Olga Mikhailovna Palyvoda, ... Daniel Horák | |
34 | Magnetic parameters evaluation of magnetic nanoparticles for use in biomedical applications |
Ahmed L. Elrefai, Takashi Yoshida, Keiji Enpuku | |
35 | Antioxidant polymer-modified maghemite nanoparticles |
Vitalii Patsula, Maksym Moskvin, Wei Xiong Siow, Rafal Konefal, ... Daniel Horák | |
36 | Functionalization of T lymphocytes for magnetically controlled immune therapy: Selection of suitable superparamagnetic iron oxide nanoparticles |
Marina Mühlberger, Christina Janko, Harald Unterweger, Eveline Schreiber, ... Rainer Tietze | |
37 | Self-assembly of hen egg white lysozyme fibrils doped with magnetic particles |
Jozefína Majorošová, Natália Tomašovi%u010Dová, Veronika Gdovinová, Chih-Wen Yang, ... Peter Kop%u010Danský | |
38 | Dual targeted magnetic photosensitive liposomes for photothermal/photodynamic tumor therapy |
T.S. Anilkumar, Yu-Jen Lu, Huai-An Chen, Hao-Lung Hsu, ... Jyh-Ping Chen | |
39 | The effect of rotating magnetic field on bioethanol production by yeast strain modified by ferrimagnetic nanoparticles |
Anna Konopacka, Rafa%u0142 Rakoczy, Maciej Konopacki | |
40 | Physical characterization and uptake of iron oxide nanoparticles of different prostate cancer cells |
Maryam Youhannayee, Saeideh Nakhaei-Rad, Fereshteh Haghighi, Karsten Klauke, ... Mathias Getzlaff | |
41 | Destroying activity of glycine coated magnetic nanoparticles on lysozyme, α-lactalbumin, insulin and α-crystallin amyloid fibrils |
Andrea Antosova, Zuzana Bednarikova, Martina Koneracka, Iryna Antal, ... Zuzana Gazova | |
42 | Magnetically modified electrospun nanotextile exhibiting peroxidase-like activity |
Jitka Prochazkova, Kristyna Pospiskova, Ivo Safarik | |
43 | Disruption of amyloid aggregates by artificial ferritins |
L. Balej%u010Díková, V.I. Petrenko, M. Ba%u0165ková, K. Šipošová, ... P. Kop%u010Danský | |
44 | Metalloporphyrins-sensitized titania-silica-iron oxide nanocomposites with high photocatalytic and bactericidal activities under visible light irradiation |
Padtaraporn Chanhom, Nisanart Charoenlap, Chonnavee Manipuntee, Numpon Insin | |
45 | Effect of nanoparticles coated with different modifications of dextran on lysozyme amyloid aggregation |
Zuzana Bednarikova, Jozef Marek, Erna Demjen, Silvio Dutz, ... Zuzana Gazova | |
46 | Synthesis and Mössbauer study of 57Fe-based nanoparticles biodegradation in living cells |
A. Yurenya, A. Nikitin, A. Garanina, R. Gabbasov, ... V. Panchenko | |
47 | Development of a protocol to assess cell internalization and tissue uptake of magnetic nanoparticles by AC Biosusceptometry |
Caio C. Quini, André G. Próspero, Bethany R. Kondiles, Lesley Chaboub, ... José R.A. Miranda | |
48 | Effect of magnetic nanoparticles coating on cell proliferation and uptake |
Vlasta Zavisova, Martina Koneracka, Alena Gabelova, Barbora Svitkova, ... Peter Kopcansky | |
49 | Renal perfusion assessment using magnetic nanoparticles with 7T dynamic susceptibility contrast MRI in rats |
Yen-Ling Lin, Yu-Chun Lin, Li-Jen Wang, Sin-Ting Ngo, Yunn-Hwa Ma | |
6. Magnetic Drug Delivery / Magnetic Drug Targeting | |
50 | Drug targeting investigation in the critical region of the arterial bypass graft |
Sandor I. Bernad, Daniela Susan-Resiga, Ladislau Vekas, Elena S. Bernad | |
51 | Using the ‘dispersion-retention-formulation method’ to estimate clinical and preclinical dosage limits for interstitial nanomedicines or agents |
Paul Southern, Quentin A. Pankhurst | |
52 | Cetuximab and Doxorubicin loaded dextran-coated Fe3O4 magnetic nanoparticles as novel targeted nanocarriers for non-small cell lung cancer |
Qinlu Zhang, Qian Liu, Menghan Du, Alphons Vermorken, ... Mingwei Chen | |
53 | Magnetic drilling enhances intra-nasal transport of particles into rodent brain |
Sahar Jafari, Lamar O. Mair, Irving N. Weinberg, James Baker-McKee, ... Danica Sun | |
54 | The use of magnetic targeting for drug delivery into cardiac myocytes |
Byung-Kwan Lim, Elyse C. Tighe, Seong Deok Kong | |
55 | Hyaluronic acid modified bubble-generating magnetic liposomes for targeted delivery of doxorubicin |
Gils Jose, Yu-Jen Lu, Huai-An Chen, Hao-Lung Hsu, ... Jyh-Ping Chen | |
56 | Self-assembling nanoparticles biofunctionalized with magnetite-binding protein for the targeted delivery to HER2/neu overexpressing cancer cells |
Victoria O. Shipunova, Polina A. Kotelnikova, Ulkar F. Aghayeva, Oleg A. Stremovskiy, ... Sergey M. Deyev | |
7. Magnetic Hyperthermia | |
57 | Excitation frequency dependence of temperature resolution in magnetic nanoparticle temperature imaging with a scanning magnetic particle spectrometer |
Jing Zhong, Meinhard Schilling, Frank Ludwig | |
58 | Magneto-ultrasonic heating with nanoparticles |
K. Kaczmarek, T. Hornowski, I. Antal, M. Timko, A. Józefczak | |
59 | Predicting size-dependent heating efficiency of magnetic nanoparticles from experiment and stochastic Néel-Brown Langevin simulation |
Ulrich M. Engelmann, Carolyn Shasha, Eric Teeman, Ioana Slabu, Kannan M. Krishnan | |
60 | Specific loss power measurements by calorimetric and thermal methods on γ-Fe2O3 nanoparticles for magnetic hyperthermia |
Marco Coïsson, Gabriele Barrera, Carlo Appino, Federica Celegato, ... Paola Tiberto | |
61 | Temperature controlled camptothecin release from biodegradable magnetic PLGA microspheres |
Diana Zahn, Andreas Weidner, Zeynab Nosrati, Lucas Wöckel, ... Silvio Dutz | |
62 | Long-term stable measurement phantoms for magnetic particle imaging |
Lucas Wöckel, James Wells, Olaf Kosch, Stefan Lyer, ... Silvio Dutz | |
63 | In-gel study of the effect of magnetic nanoparticles immobilization on their heating efficiency for application in Magnetic Fluid Hyperthermia |
Matteo Avolio, Andrea Guerrini, Francesca Brero, Claudia Innocenti, ... Alessandro Lascialfari | |
64 | DNA engineered magnetically tuned cobalt ferrite for hyperthermia application |
Arpita Das, Debarati De, Ajay Ghosh, Madhuri Mandal Goswami | |
65 | Enhanced specific loss power from Resovist® achieved by aligning magnetic easy axes of nanoparticles for hyperthermia |
Guannan Shi, Ryoji Takeda, Suko Bagus Trisnanto, Tsutomu Yamada, ... Yasushi Takemura | |
66 | Heating efficiency of magnetic nanoparticles decreases with gradual immobilization in hydrogels |
Ulrich M. Engelmann, Julian Seifert, Benedikt Mues, Stefan Roitsch, ... Ioana Slabu | |
67 | Modelling the effect of different core sizes and magnetic interactions inside magnetic nanoparticles on hyperthermia performance |
Christian Jonasson, Vincent Schaller, Lunjie Zeng, Eva Olsson, ... Christer Johansson | |
68 | Heating behavior of magnetic iron oxide nanoparticles at clinically relevant concentration |
Philipp Lemal, Sandor Balog, Christoph Geers, Patricia Taladriz-Blanco, ... Alke Petri-Fink | |
69 | Effect of viscosity on the AC magnetization of magnetic nanoparticles under different AC excitation fields |
Takashi Yoshida, Takuru Nakamura, Oji Higashi, Keiji Enpuku | |
8. Magnetic Particle Imaging (MPI) | |
70 | Probing particle-matrix interactions during magnetic particle spectroscopy |
James Wells, Norbert Löwa, Hendrik Paysen, Uwe Steinhoff, Frank Wiekhorst | |
71 | Effects of size and anisotropy of magnetic nanoparticles associated with dynamics of easy axis for magnetic particle imaging |
Satoshi Ota, Yuki Matsugi, Takeru Nakamura, Ryoji Takeda, ... Keiji Enpuku | |
72 | Evaluation of a separate-receive coil by magnetic particle imaging of a solid phantom |
Olaf Kosch, Hendrik Paysen, James Wells, Felix Ptach, ... Frank Wiekhorst | |
73 | Determination of dominating relaxation mechanisms from temperature-dependent Magnetic Particle Spectroscopy measurements |
S. Draack, T. Viereck, F. Nording, K.-J. Janssen, ... F. Ludwig | |
74 | Actuation and visualization of a magnetically coated swimmer with magnetic particle imaging |
Anna C. Bakenecker, Anselm von Gladiss, Thomas Friedrich, Ulrich Heinen, ... Thorsten M. Buzug | |
75 | Imaging and quantification of magnetic nanoparticles: Comparison of magnetic resonance imaging and magnetic particle imaging |
Hendrik Paysen, Norbert Loewa, Karol Weber, Olaf Kosch, ... Frank Wiekhorst |
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