The inclusive goal of MARC U*STAR Program at JSU is to increase the number of baccalaureates in Biology, Chemistry and Psychology who go on to earn Ph.D. degrees in the biomedical sciences. To achieve this, JSU will select students meeting certain criteria and implement a program of undergraduate research training, including instruction in responsible conduct of research; curriculum enhancement; and graduate bridging activities. The undergraduate research training will begin during an initial summer of intramural research with JSU faculty members and continue during the following two academic years. TraineesTwo workshops will be conducted during the intramural summer program. On Friday mornings, a GRE workshop will be given and on Friday afternoons, a doctoral preparation workshop will be given. Responsible conduct of research will be introduced in the afternoon workshops and continued during the academic year. An extramural summer research internship with research faculty of outstanding research universities will occur in the second summer of the two-year MARC traineeship. An Honors colloquia will be offered for each term of the four semester program. Each trainee will be required to successfully take the GRE and apply to five graduate programs leading to the Ph.D. degree. A Pre-MARC Young Scientists Program will be implemented to identify and introduce freshmen and sophomores to the MARC U*STAR program and to biomedical research as a career and educational goal. The students will be introduced to the tools of research and will attend biomedical research seminars, while developing their research interests. ? ? The program evaluation will consist of two components, an external evaluation and an internal evaluation. The summative external evaluation will provide the faculty and institutional executive staff an independent review of the strengths, values and potential impact of overall program accomplishments. It will also provide valuable information on expansion possibilities, program improvement and enhancing benefits to students. This evaluation will serve as a means for measuring faculty and student growth and the progress of the JSU's unified plan to strengthen its biomedical research capacity. It will focus on faculty productivity, namely, whether the project increases the number of faculty publications, faculty presentations, and faculty submissions of research grant applications to NIH and/or other funding agencies. The formative internal evaluation will use a Program Effectiveness Model, which insures that the planning loop is closed and that evaluative results are used for program improvements. ? ?

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
MARC Undergraduate NRSA Institutional Grants (T34)
Project #
5T34GM007672-29
Application #
7454142
Study Section
Minority Programs Review Committee (MPRC)
Program Officer
Rivera-Rentas, Alberto L
Project Start
1977-09-01
Project End
2010-05-31
Budget Start
2008-06-01
Budget End
2010-05-31
Support Year
29
Fiscal Year
2008
Total Cost
$206,360
Indirect Cost
Name
Jackson State University
Department
Type
Schools of Engineering
DUNS #
044507085
City
Jackson
State
MS
Country
United States
Zip Code
39217
Horne, Toyketa V; Haque, Syed A; Barton, Adrianne et al. (2015) Crystal structure of 5,5'-bis-(di-methyl-amino)-N,N'-(3-methyl-3-aza-pentane-1,5-di-yl)di(naphthalene-1-sulfonamide). Acta Crystallogr E Crystallogr Commun 71:o959-60
Fan, Zhen; Dai, Xuemei; Lu, Yuefeng et al. (2014) Enhancing targeted tumor treatment by near IR light-activatable photodynamic-photothermal synergistic therapy. Mol Pharm 11:1109-16
Fan, Zhen; Shelton, Melanie; Singh, Anant Kumar et al. (2012) Multifunctional plasmonic shell-magnetic core nanoparticles for targeted diagnostics, isolation, and photothermal destruction of tumor cells. ACS Nano 6:1065-73
Stevens, Jacqueline J; Graham, Barbara; Walker, Alice M et al. (2010) The effects of arsenic trioxide on DNA synthesis and genotoxicity in human colon cancer cells. Int J Environ Res Public Health 7:2018-32
Wang, Jing; Gu, Jiande; Leszczynski, Jerzy (2008) Theoretical modeling study for the phosphonylation mechanisms of the catalytic triad of acetylcholinesterase by sarin. J Phys Chem B 112:3485-94
Wang, Jing; Gu, Jiande; Leszczynski, Jerzy et al. (2007) Oxime-induced reactivation of sarin-inhibited AChE: a theoretical mechanisms study. J Phys Chem B 111:2404-8
Wang, Jing; Gu, Jiande; Leszczynski, Jerzy (2006) Phosphonylation mechanisms of sarin and acetylcholinesterase: a model DFT study. J Phys Chem B 110:7567-73
Zhao, S; Liu, Y M (2001) Electrophoretic separation of tryptophan enantiomers in biological samples. Electrophoresis 22:2769-74
Zhao, S; Prasad, C; Robertson, H J et al. (2001) Determination of enterostatin in human cerebrospinal fluid by capillary electrophoresis with laser induced fluorescence detection. Fresenius J Anal Chem 369:220-4
Zhao, S; Feng, Y; LeBlanc, M H et al. (2001) Determination of free aspartic acid enantiomers in rat brain by capillary electrophoresis with laser-induced fluorescence detection. J Chromatogr B Biomed Sci Appl 762:97-101

Showing the most recent 10 out of 11 publications