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1.
Am J Pharm Educ ; 77(4): S2, 2013 May 13.
Article in English | MEDLINE | ID: mdl-23716757

ABSTRACT

Despite pharma's recent sea change in approach to drug discovery and development, U.S. pharmaceutical sciences graduate programs are currently maintaining traditional methods for master's and doctoral student education. The literature on graduate education in the biomedical sciences has long been advocating educating students to hone soft skills like communication and teamwork, in addition to maintaining excellent basic skills in research. However, recommendations to date have not taken into account the future trends in the pharmaceutical industry. The AACP Graduate Education Special Interest Group has completed a literature survey of the trends in the pharmaceutical industry and graduate education in order to determine whether our graduate programs are strategically positioned to prepare our graduates for successful careers in the next few decades. We recommend that our pharmaceutical sciences graduate programs take a proactive leadership role in meeting the needs of our future graduates and employers. Our graduate programs should bring to education the innovation and collaboration that our industry also requires to be successful and relevant in this century.


Subject(s)
Drug Industry/trends , Education, Pharmacy, Graduate/trends , Societies, Pharmaceutical/trends , Cooperative Behavior , Curriculum , Diffusion of Innovation , Drug Industry/standards , Education, Pharmacy, Graduate/standards , Forecasting , Guidelines as Topic , Humans , Interdisciplinary Communication , Interinstitutional Relations , Leadership , Societies, Pharmaceutical/standards
4.
J Pharm Sci ; 92(8): 1559-73, 2003 Aug.
Article in English | MEDLINE | ID: mdl-12884243

ABSTRACT

Oligonucleotides (ONs) are a new class of therapeutic compounds under investigation for the treatment of a variety of disease states, such as cancer and HIV, and for FDA approval of an anti-CMV retinitis antisense molecule (Vitravene trade mark, Isis Pharmaceuticals). However, these molecules are limited not only by poor cellular uptake, but also by a general lack of understanding regarding the mechanism(s) of ON cellular uptake. As a result, various delivery vehicles have been developed that circumvent the proposed mechanism of uptake, endocytosis, while improving target specific delivery and/or drug stability. This review describes various traditional and novel delivery mechanisms that have been employed to improve ON cellular delivery, cost effectiveness, and therapeutic efficacy.


Subject(s)
Drug Delivery Systems/methods , Oligonucleotides/administration & dosage , Animals , Humans , Oligonucleotides/chemistry
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