Small-Scale Systems For In Vivo Drug Delivery

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Small-scale systems for in vivo drug delivery Nature ...

    https://www.nature.com/articles/nbt876
    Sep 30, 2003 · As a long-term goal for small-scale drug delivery technologies is to develop methods that can autonomously treat diseases, we also consider the implications of recent advances in drug...Author: David A LaVan, Terry McGuire, Robert Langer

Small-Scale Systems for In Vivo Drug Delivery Request PDF

    https://www.researchgate.net/publication/9071813_Small-Scale_Systems_for_In_Vivo_Drug_Delivery
    Small-Scale Systems for In Vivo Drug Delivery. ... Current challenges include the need to balance the small scale of the devices with the quantities of drugs that are clinically necessary, the ...

SID.ir SMALL-SCALE SYSTEMS FOR IN VIVO DRUG DELIVERY

    https://www.sid.ir/En/Journal/ViewPaper.aspx?ID=425383
    Download Free Full-Text of an article SMALL-SCALE SYSTEMS FOR IN VIVO DRUG DELIVERYAuthor: David A LaVan, Terry McGuire, Robert Langer

Micromotors for drug delivery in vivo: The road ahead ...

    https://www.sciencedirect.com/science/article/pii/S0169409X18302254
    (7) While being a ‘motor’ certainly enhances some properties, in terms of drug delivery in vivo, microscale (<100 μm) DDS may find greater relevance towards delivery of APIs required in low quantities (like hormones, enzymes, nucleic acids etc.). The tight interconnection between what can be termed as a nano/micromotor (including exogenous control schemes), and associated …Author: Sarvesh Kumar Srivastava, Gael Clergeaud, Thomas L. Andresen, Anja Boisen

In vivo release from a drug delivery MEMS device ...

    https://www.sciencedirect.com/science/article/pii/S0168365904003827
    A drug delivery microelectromechanical systems (MEMS) device was designed to release complex profiles of multiple substances in order to maximize the effectiveness of drug therapies. The device is based on micro-reservoirs etched into a silicon substrate that contain individual doses of drug.Author: Yawen Li, Rebecca S. Shawgo, Betty Mae Tyler, Paul T. Henderson, John S. Vogel, Aron Rosenberg, Phil...

An in vitro dissolution–digestion–permeation assay for the ...

    https://www.sciencedirect.com/science/article/pii/S0939641120300217
    The µFLUX system is a small-scale dissolution-permeation setup that builds on the µDISS Profiler and allows close monitoring to time sensitive events, including supersaturation and precipitation, through in situ UV measurements of drug concentrations.Author: Caroline Alvebratt, Janneke Keemink, Khadijah Edueng, Ocean Cheung, Maria Strømme, Christel A.S. Ber...

Nanotechnology: from In Vivo Imaging System to Controlled ...

    https://link.springer.com/article/10.1186/s11671-017-2249-8
    Aug 17, 2017 · Different systems for drug delivery are costumed for the delivery of drug through the ocular route. The chief goal of all the drug delivery systems is to improve the residence period, enhance the corneal permeability, and liberate the drug at posterior chamber of eye, leading to increased bioavailability and improved patient compliance .Author: Maria Mir, Saba Ishtiaq, Samreen Rabia, Maryam Khatoon, Ahmad Zeb, Gul Majid Khan, Asim ur Rehman, F...

Drug Delivery Systems ScienceDirect

    https://www.sciencedirect.com/book/9780128144879/drug-delivery-systems
    In drug delivery, colloidal system and polymeric micelles have attracted great attention in the recent three decades. Generally, polymeric micelles have high stability than surfactant-based micelles. These carriers have recently been advanced as newer and effective drug delivery system for targeting of amphiphilic and poorly water-soluble drug(s).

Artificial cells: building bioinspired systems using small ...

    https://www.sciencedirect.com/science/article/pii/S0167779907002909
    Transport, one of the most important components for pursuing a biologically-inspired, small-scale system or ‘nanofactory’, is discussed in the following section. We believe that using small-scale biological inspiration for artificial cell systems has the potential to be successful in the future despite being in its infancy at this point in ...Author: Ying Zhang, Warren C. Ruder, Philip R. LeDuc

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