Biomedical Applications Of Microencapsulation


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Biomedical Applications of Microencapsulation


Biomedical Applications of Microencapsulation

Author: Franklin Lim

language: en

Publisher: CRC Press

Release Date: 2019-06-12


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Published in 1984: For this volume the publishers at CRC Press have chosen to present information on just one important area, namely the biomedical field, where much progress in the application of microencapsulation has been made in recent years.

Microcapsules and Nanoparticles in Medicine and Pharmacy


Microcapsules and Nanoparticles in Medicine and Pharmacy

Author: Max Donbrow

language: en

Publisher: CRC Press

Release Date: 2020-04-15


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First published in 1992: This book provides a comprehensive look at the design and production of microcapsules, microspheres, and nanoparticles. It discusses the diverse aspects and skills that must be mastered to prepare and test products that will work correctly and be clinically acceptable for human or animal use.

Therapeutic Applications of Cell Microencapsulation


Therapeutic Applications of Cell Microencapsulation

Author: Jose Luis Pedraz

language: en

Publisher: Springer Science & Business Media

Release Date: 2010-12-31


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The advancement of science is ever more contingent upon the interaction of experts vast amount of scientific information being gathered every day that exceeds the ability of any one scientist to acquire. As an illustration of the frantic pace of scientific disc- more acute in the case of scientific fields at the interface of different and seemingly distant areas of study. Amidst these, the field of cell encapsulation brings together an array of diverse disciplines such as molecular biology and biopolymers, gene therapy and inorganic membranes, stem cell biology and physicochemistry, immunology and nanotechnology. Clearly, such range of topics is too broad for any individual scientist the state-of-the-art in the field of cell encapsulation. At the core of this technology, there is an interaction of physicochemical and biological elements forming three distinct layers of complexity. First, the chemistry of the biopolymer dictates the degree of protein adsorption, vascularization, tox- ity and biocompatibility of the microcapsules. Advances in biopolymer science are providing solutions to overcome existing challenges and to improve microcapsules as delivery vehicles. Second, the choice of cells, and more precisely the plethora of in determining the immune response elicited by the host to implanted microcapsules.