Nanomaterials in Food - Current and Future Applications and Regulatory Aspects
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Maria Arena | Karin Aschberger | Hubert Rauscher | Reinhilde Schoonjans | Stefania Gottardo | Agnieszka Mech | Hans Bouwmeester | Valeria Amenta | F. Botelho Moniz | Puck Brandhoff | L. Quiros Pesudo | M. Vittoria Vettori | Ruud J. B. Peters | H. Bouwmeester | L. Pesudo | K. Aschberger | P. Brandhoff | S. Gottardo | A. Mech | H. Rauscher | R. Schoonjans | M. Vettori | R. Peters | M. Arena | F. Moniz | V. Amenta
[1] Li-Xiong Wen,et al. Porous hollow silica nanoparticles as controlled delivery system for water-soluble pesticide , 2006 .
[2] A. V. van Eps,et al. Nanomedicine and veterinary science: the reality and the practicality. , 2012, Veterinary journal.
[3] Masami T Takeuchi,et al. State of the art on the initiatives and activities relevant to risk assessment and risk management of nanotechnologies in the food and agriculture sectors. , 2014, Food research international.
[4] Qasim Chaudhry,et al. Nanotechnologies in food , 2017 .
[5] H. Bouwmeester,et al. Presence and risks of nanosilica in food products , 2011, Nanotoxicology.
[6] Melanie Kah,et al. Nanopesticide research: current trends and future priorities. , 2014, Environment international.
[7] Morten Pedersen,et al. Solid lipid microparticle formulations of the pyrethroid gamma-cyhalothrin-incompatibility of the lipid and the pyrethroid and biological properties of the formulations. , 2003, Journal of controlled release : official journal of the Controlled Release Society.
[8] Melanie Kah,et al. Nanopesticides: State of Knowledge, Environmental Fate, and Exposure Modeling , 2013 .
[9] Poonam Choudhary,et al. Nanobiotechnology can boost crop production and quality: first evidence from increased plant biomass, fruit yield and phytomedicine content in bitter melon (Momordica charantia) , 2013, BMC Biotechnology.