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NTIS 바로가기Journal of biomedical optics, v.19 no.10, 2014년, pp.106006 -
Choi, Sanghoon (Kyungpook National University, College of Engineering, School of Mechanical Engineering, 80 Daehak-ro Buk-gu, Daegu 702-701, Republic of Korea) , Kim, Jin Woong (Hanyang University, Department of Applied Chemistry, 55 Hanyangdaehak-ro, Sangnok-gu, Ansan 426-791, Republic of KoreacHanyang University, Department of Bionano Technology, 55 Hanyangdaehak-ro, Sangnok-gu, Ansan, 426-791, Republic of Korea) , Lee, Yong Joong (Kyungpook National University, College of Engineering, School of Mechanical Engineering, 80 Daehak-ro Buk-gu, Daegu 702-701, Republic of Korea) , Delmas, Thomas (Capsum SAS, Heliopolis Batiment C, 3 allé) , Kim, Changhwan (e des Maraichers, 13013 Marseille, France) , Park, Soyeun (Kyungpook National University, College of Engineering, School of Mechanical Engineering, 80 Daehak-ro Buk-gu, Daegu 702-701, Republic of Korea) , Lee, Ho (Keimyung University, College of Pharmacy, 1095 Dalgubeol-daero Dalseo-gu, Daegu 704-701, Republic of Korea)
This study experimentally evaluates the self-targeting ability of asiaticoside-loaded nanoemulsions compared with nontargeted nanoemulsions in ex vivo experiments with porcine skin samples. Homebuilt two-photon and confocal laser-scanning microscopes were employed to noninvasively examine the transd...
Elias Stratum corneum defensive functions: an integrated view 183 2005
Sakurai, H., Takahashi, Y., Machida, Y.. Influence of low-frequency massage device on transdermal absorption of ionic materials. International journal of pharmaceutics, vol.305, no.1, 112-121.
Lavon, Ilana, Kost, Joseph. Ultrasound and transdermal drug delivery. Drug discovery today, vol.9, no.15, 670-676.
Ng, Ka-Yun. Enhancing transdermal drug transport with low-frequency ultrasound. Drug discovery today, vol.9, no.21, 913-913.
Brown, Marc, Martin, Gary, Jones, Stuart, Akomeah, Franklin. Dermal and Transdermal Drug Delivery Systems: Current and Future Prospects. Drug delivery, vol.13, no.3, 175-187.
Prausnitz, Mark R. Microneedles for transdermal drug delivery. Advanced drug delivery reviews, vol.56, no.5, 581-587.
Naik, Aarti, Kalia, Yogeshvar N., Guy, Richard H.. Transdermal drug delivery: overcoming the skin’s barrier function. Pharmaceutical science & technology today, vol.3, no.9, 318-326.
Kogan, Anna, Garti, Nissim. Microemulsions as transdermal drug delivery vehicles. Advances in colloid and interface science, vol.123, 369-385.
Delmas Nanoemulsion: preparation, stability and application in biosciences 1 2013
Atrux‐Tallau, N., Delmas, T., Han, S.‐H., Kim, J.‐W., Bibette, J.. Skin cell targeting with self‐assembled ligand addressed nanoemulsion droplets. International journal of cosmetic science, vol.35, no.3, 310-318.
Goutayer, M., Dufort, S., Josserand, V., Royere, A., Heinrich, E., Vinet, F., Bibette, J., Coll, J.L., Texier, I.. Tumor targeting of functionalized lipid nanoparticles: Assessment by in vivo fluorescence imaging. European journal of pharmaceutics and biopharmaceutics : official journal of Arbeitsgemeinschaft für Pharmazeutische Verfahrenstechnik e.V, vol.75, no.2, 137-147.
Qian, C., McClements, D.J.. Formation of nanoemulsions stabilized by model food-grade emulsifiers using high-pressure homogenization: Factors affecting particle size. Food hydrocolloids, vol.25, no.5, 1000-1008.
Yuan, Y., Gao, Y., Zhao, J., Mao, L.. Characterization and stability evaluation of β-carotene nanoemulsions prepared by high pressure homogenization under various emulsifying conditions. Food research international, vol.41, no.1, 61-68.
Leong, T.S.H., Wooster, T.J., Kentish, S.E., Ashokkumar, M.. Minimising oil droplet size using ultrasonic emulsification. Ultrasonics sonochemistry, vol.16, no.6, 721-727.
Kentish, S., Wooster, T.J., Ashokkumar, M., Balachandran, S., Mawson, R., Simons, L.. The use of ultrasonics for nanoemulsion preparation. Innovative food science & emerging technologies : IFSET : the official scientific journal of the European Federation of Food Science and Technology, vol.9, no.2, 170-175.
Jafari, Seid Mahdi, He, Yinghe, Bhandari, Bhesh. Production of sub-micron emulsions by ultrasound and microfluidization techniques. Journal of food engineering, vol.82, no.4, 478-488.
Izquierdo, P., Esquena, J., Tadros, Th. F., Dederen, C., Garcia, M. J., Azemar, N., Solans, C.. Formation and Stability of Nano-Emulsions Prepared Using the Phase Inversion Temperature Method. Langmuir : the ACS journal of surfaces and colloids, vol.18, no.1, 26-30.
Fernandez, Patrick, André, Valérie, Rieger, Jens, Kühnle, Angelika. Nano-emulsion formation by emulsion phase inversion. Colloids and surfaces. A, Physicochemical and engineering aspects, vol.251, no.1, 53-58.
Rao, Jiajia, McClements, David Julian. Stabilization of Phase Inversion Temperature Nanoemulsions by Surfactant Displacement. Journal of agricultural and food chemistry, vol.58, no.11, 7059-7066.
Trimaille, T., Chaix, C., Delair, T., Pichot, C., Teixeira, H., Dubernet, C., Couvreur, P.. Interfacial deposition of functionalized copolymers onto nanoemulsions produced by the solvent displacement method. Colloid and polymer science, vol.279, no.8, 784-792.
Maestro, A., Sole, I., Gonzalez, C., Solans, C., Gutierrez, J.M.. Influence of the phase behavior on the properties of ionic nanoemulsions prepared by the phase inversion composition method. Journal of colloid and interface science, vol.327, no.2, 433-439.
Hessien, Manal, Singh, Nigel, Kim, ChonHoon, Prouzet, Eric. Stability and Tunability of O/W Nanoemulsions Prepared by Phase Inversion Composition. Langmuir : the ACS journal of surfaces and colloids, vol.27, no.6, 2299-2307.
Boukamp, P, Petrussevska, R T, Breitkreutz, D, Hornung, J, Markham, A, Fusenig, N E. Normal keratinization in a spontaneously immortalized aneuploid human keratinocyte cell line. The Journal of cell biology, vol.106, no.3, 761-771.
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