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546 IEEE TRANSACTIONS ON NANOTECHNOLOGY, VOL. 11, NO. 3, MAY 2012 PLGA Micro- and Nanoparticles Loaded Into Gelatin Scaffold for Controlled Drug Release
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Document Date: 2012-05-24 17:45:51


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City

BSA / electrical engineering / Pune / Nanded / Haroonabad / Rockford / Sahiwal / Arlington / Shanghai / New York / Karachi / Dhaka / /

Company

Shanghai Bio Corporation / J. Pharm / Hitachi / Bajaj / C. M. Malata S. A. / Drug Delivery Laboratory / /

Country

Netherlands / Bahrain / Pakistan / China / India / Germany / Bangladesh / United States / /

Currency

USD / /

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Event

Product Release / /

Facility

University of Pune / Such scaffold / Southeast University / Teaching Facility / Pravara Rural Engineering College / Gelatin scaffold / NED University of Engineering / University of Texas / Purdue University / Bangladesh University of Engineering / University of Texas Characterization Center / The University of Texas Southwestern Medical Center / University of Engineering / University of Texas Southwestern Medical Center / Nanoparticles Loaded Into Gelatin Scaffold / University of Minnesota / Rice University / University of Central Punjab / /

IndustryTerm

glutaraldehyde solution / chemical hood / treatment for breast cancer / resultant solution / imaging / Water-in-oil-in-water double emulsion / water-in-oil-in-water / treatment of breast cancer / controlled release systems / tissue engineering applications / nanotechnology research / tissue culture applications / biotechnology / chemical engineering / protein pharmaceuticals / oil phase / biomedical applications / gene therapy delivery systems / oil / free-form fabrication systems / chemical species / phase solution / water phase solution / treatment of not only breast cancer / gelatin solution / therapy for the treatment of localized breast cancer / aqueous solutions / oil phase solution / dispersed oil globules / /

MedicalCondition

cosmetic deformity / breast cancer / tumor / early-stage breast cancer / cancer / localized breast cancer / I. INTRODUCTION REAST tumor / malignant cancer / minimal tissue irritation / cystic fibrosis / /

MedicalTreatment

radiotherapy / breast implants / Nanocapsule / plastic surgery / surgery / drug delivery systems / mastectomy / lumpectomy / radiation therapy / drug delivery system / chemoprevention / chemotherapy / gene therapy / breast reconstruction / mammaplasty / /

Organization

UT-Arlington / University of Texas Southwestern Medical Center / Dallas / Nano-Bio Lab / Faculty of Engineering / University of Minnesota / Minneapolis / Department of Electrical Engineering and the Consortium for Nanomaterials for Aerospace Commerce and Technology / University of Texas Southwestern Medical Center at Dallas / Department of Bioengineering / University of Engineering / Joint Graduate Studies Committee of the Bioengineering Program / University of Pune / Department of Electrical Engineering / University of Texas at Arlington / Rice University / Houston / National Science Foundation / University of Central Punjab / Lahore / University of Texas Characterization Center for Materials and Biology / Purdue University / Biomedical Engineering Society / University of Engineering and Technology / Lahore / Phi Kappa Phi and Tau Beta Pi / Southeast University / Nanjing / American Heart Association / Pravara Rural Engineering College / /

Person

Samir M. Iqbal / P. Jo Lewis / S. M. Iqbal / C. C. Chu / Kytai T. Nguyen / Aniket S. Wadajkar / X. Z. Zhang / Waseem Asghar / Yuan Wan / J. Li / Muhymin Islam / Azhar Ilyas / K. Nguyen / /

Position

Physician / Research Associate / author / Associate Professor / Editor / corresponding author / Supervisor of R&D Department / Assistant Professor / member / /

Product

glycine / Controlled Drug / /

ProvinceOrState

Minnesota / Texas / Punjab / /

Technology

radiation / proteomics / Nanocapsule technology / stem cells / apoptosis / Drug Discovery / Biomaterials / tissue engineering / drug delivery system / chemotherapy / spectroscopy / biosensors / biotechnology / polymerization / Microwave / transplantation / gene therapy / laser / Digital Object Identifier / quantified using 450 nm laser spectroscopy / /

URL

http /

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