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[Illinois] Nanotechnology meets Biology in the Cancer Cell: Applications in Medicine, Drug Delivery, and Determining Drug Efficacy
04 Feb 2016 | | Contributor(s):: Mostafa El-Sayed
[Illinois] Microcapsules for Luminescent Tracking and Controlled Drug Delivery
16 Dec 2013 | | Contributor(s):: Yulia Maximenko
Polyelectrolyte microcapsules are formed on porous calcium carbonate templates that are impregnated and coated with 2.9 nanometer luminescent silicon nanoparticles. The complexes are characterized in suspension as well as in thin films using fluorescence microscopy, optical microscopy, and x-ray...
The Importance of Zeta Potential for Drug/Gene Delivery in Nanomedicine
11 Apr 2012 | | Contributor(s):: James Leary
KIST/PU Theragnosis – A New Paradigm of Personalized Medicine
06 Dec 2011 | | Contributor(s):: Ick Chan Kwon
Companion Diagnosis, based on pharmacogenomics, has been recognized as one of most important key representatives of personalized medicine. However, Companion Diagnosis does not provide any clues in developing new ways of therapeutics but it only provides a best choice of drugs based on given...
Illinois BioNanotechnology Seminar Series Fall 2011: Precisely Size Controlled Drug-silica Nanoconjugate for Cancer Therapy
05 Dec 2011 | | Contributor(s):: Li Tang
Drug delivery nanomedicine, exemplified by micelles and nanoparticles roughly in the size range of 1-200 nm, have attracted much interest in the past 2-3 decades as alternative modalities for cancer treatment. The size of these drug delivery vehicles has been strongly correlated with their in...
BME 695L Special Lecture 3: In vivo Model Systems to Study Nanomedical Approaches to Cancer Detection and Intervention
02 Dec 2011 | | Contributor(s):: Deborah W Knapp
Guest lecturer: Deborah Knapp.
BME 695L Lecture 15: GMP and Issues of Quality Control Manufacture of Nanodelivery Systems
02 Dec 2011 | | Contributor(s):: James Leary
See references below for related reading.15.1 Overview15.1.1 What does cGMP mean?15.1.2 Why GMP? Controlling processes means more predictable...
BME 695L Lecture 12: Assessing Drug Efficacy and Nanotoxicity at the Single Cell Level
22 Nov 2011 | | Contributor(s):: James Leary
See references below for related reading.12.1 Introduction to measures of efficacy for nanomedicine12.1.1 for evaluation purposes, does structure/size reveal function?12.1.2 nanomedical treatment at the single cell...
BME 695L Lecture 13: Designing Nanomedical Systems (NMS) for In-vivo Use
See references below for related reading.13.1 Bringing in-vivo considerations into NMS design13.1.1 the in-vitro to ex-vivo to in-vivo paradigm 184.108.40.206 In-vitro - importance of choosing...
BME 695L Lecture 14: Designing and Testing Integrated Nanomedical Systems
See references below for related reading.14.1 Introduction to integrated designs14.1.1 “Total design” but there is some order in the design process14.1.2 A brief outline of the total design...
BME 695L Lecture 11: Assessing Nanotoxicity at the Single Cell Level
27 Oct 2011 | | Contributor(s):: James Leary
See references below for related reading.11.1 Need for single cell measures of nanotoxicity11.1.1 There is more than one way for a cell to die...11.1.2 "Necrosis" vs. "Apoptosis"11.1.3 There...
BME 695L Lecture 10: Nanodelivery of Therapeutic Genes and Molecular Biosensor Feedback Control Systems
26 Oct 2011 | | Contributor(s):: James Leary
See references below for related reading.10.1 Introduction and overview10.1.1 Some of the advantages of therapeutic genes10.1.2 Some of the advantages of molecular biosensor feedback control...
BME 695L Lecture 9: Challenges of Proper Drug Dosing with Nanodelivery Systems
19 Oct 2011 | | Contributor(s):: James Leary
See references below for related reading.9.1 Overview of drug dosing problem9.1.1 Problems of scaling up doses from animal systems9.1.2 Basing dosing on size, area, weight of...
Strategies for Preparation and Manufacture of Polymer-based Nanoparticulate Formulations
out of 5 stars
21 Jul 2008 | | Contributor(s):: Stephen R. Byrn
Nanoparticles hold great promise for drug delivery applications. Several polymer-based formulations containing nanoparticles are in late phase development or on the market. In fact, polymer dispersions provide one of the best methods to prepare nanoparticles of small-molecule organic drugs....
Development of Highly Porous Large Polymeric Microparticles for Sustained Local Drug Delivery to the Lung
10 Jul 2008 | | Contributor(s):: Yoon Yeo
In this presentation, I will introduce a new way of making highly porous large polymeric microparticles recently developed in my lab. These microparticles exhibited desirable aerodynamic properties, reduced macrophage uptake, encapsulated a drug efficiently, and provided sustained drug release...
Design of Multi-Component, Multi-Functional Nanomedical Systems for Drug/Gene Delivery and Theragnostics
02 Jul 2008 | | Contributor(s):: James Leary
Multi-component and multifunctional nanoparticles hold great promise for drug/gene delivery and simultaneous diagnostics and therapeutics ("theragnostics"). Sophisticated multi-component systems can employ collections of specialized molecules in a nanodelivery system whose actions can be...
Functionalized Nanomaterials at the Interface of Biology and Technology
24 Apr 2008 | | Contributor(s):: Dean Ho, National Center for Learning & Teaching in Nanoscale Science & Engineering
Nanomaterials, such as block copolymeric membranes and nanodiamonds, can be engineered for a broad range of applications in energy and medicine. This presentation will highlight the relevance of these materials as foundations for device fabrication across the spectrum of biology and technology....
KIST/PU A bi-functional block copolymer hydrogels and micelles for protein and drug delivery
28 Nov 2007 | | Contributor(s):: Doo Sung Lee
Novel biodegradable & injectable poly(Î²-amino ester)-poly(Îµ-caprolactone)-poly(ethylene glycol)-poly(Îµ-caprolactone)-poly(Î²-amino ester)(PAE-PCL-PEG-PCL-PAE) bi-functional, pH/temperature-sensitive, block copolymer hydrogels were prepared and applied to protein and drug delivery. In this...
BME 695N Lecture 19: In vivo model systems to study nanomedical approaches to cancer detection and intervention
27 Nov 2007 | | Contributor(s):: Deborah W Knapp
With Deborah Knapp as guest lecturer.
Engineering Nanomedical Systems
16 Nov 2007 | | Contributor(s):: James Leary
This tutorial will cover general problems and approaches to the design of engineered nanomedical systems. An example to be covered is the engineering design of programmable multilayered nanoparticles (PMNP) to control a multi-sequence process of targeting to rare cells in-vivo, re-targeting to...