Open Access. Powered by Scholars. Published by Universities.®

Genetic Structures Commons

Open Access. Powered by Scholars. Published by Universities.®

433 Full-Text Articles 5,667 Authors 101,926 Downloads 61 Institutions

All Articles in Genetic Structures

Faceted Search

433 full-text articles. Page 21 of 21.

Biomimetic Precipitation Of Uniaxially Grown Calcium Phosphate Crystals From Full-Length Human Amelogenin Sols, Vuk Uskoković, Wu Li, Stefan Habelitz 2011 Chapman University

Biomimetic Precipitation Of Uniaxially Grown Calcium Phosphate Crystals From Full-Length Human Amelogenin Sols, Vuk Uskoković, Wu Li, Stefan Habelitz

Pharmacy Faculty Articles and Research

Human dental enamel forms over a period of 2 – 4 years by substituting the enamel matrix, a protein gel mostly composed of a single protein, amelogenin with fibrous apatite nanocrystals. Self-assembly of a dense amelogenin matrix is presumed to direct the growth of apatite fibers and their organization into bundles that eventually comprise the mature enamel, the hardest tissue in the mammalian body. This work aims to establish the physicochemical and biochemical conditions for the synthesis of fibrous apatite crystals under the control of a recombinant fulllength human amelogenin matrix in combination with a programmable titration system. The growth …


Efficient Replication Of Over 180 Genetic Associations With Self-Reported Medical Data, Joyce Y. Tung, Chuong B. Do, David A. Hinds, Amy K. Kiefer, J. Michael Macpherson, Arnab B. Chowdry, Uta Francke, Brian Naughton, Joanna Mountain, Anne Wojcicki, Nicholas Eriksson 2011 23andMe

Efficient Replication Of Over 180 Genetic Associations With Self-Reported Medical Data, Joyce Y. Tung, Chuong B. Do, David A. Hinds, Amy K. Kiefer, J. Michael Macpherson, Arnab B. Chowdry, Uta Francke, Brian Naughton, Joanna Mountain, Anne Wojcicki, Nicholas Eriksson

Biology, Chemistry, and Environmental Sciences Faculty Articles and Research

While the cost and speed of generating genomic data have come down dramatically in recent years, the slow pace of collecting medical data for large cohorts continues to hamper genetic research. Here we evaluate a novel online framework for obtaining large amounts of medical information from a recontactable cohort by assessing our ability to replicate genetic associations using these data. Using web-based questionnaires, we gathered self-reported data on 50 medical phenotypes from a generally unselected cohort of over 20,000 genotyped individuals. Of a list of genetic associations curated by NHGRI, we successfully replicated about 75% of the associations that we …


Teratology Primer-2nd Edition (7/9/2010), Sura Alwan, Steven B. Bleyl, Robert L. Brent, Christina D. Chambers, George P. Daston, Elaine M. Faustman, Richard H. Finnell, F. Clarke Fraser, Jan M. Freidman, Adriane Fugh-Berman, John M. Graham, Jr., Barbara F. Hales, Deborah K. Hansen, Lewis B. Holmes, Ronald D. Hood, Robert J. Kavlock, Thomas B. Knudsen, Joseph Lary, Donald R. Mattison, Richard K. Miller, James L. Mills, Janine E. Polifka, Sonja A. Rasmussen, Bernard Robaire, John M. Rogers, Gary C. Schoenwolf, Anthony R. Scialli, Gary M. Shaw, Amar V. Singh, William Slikker, Jr., Ann P. Streissguth, Melissa S. Tassinari, Janet Uriu-Adams, Charles V. Vorhees, Elora J. Weringer 2010 University of British Columbia

Teratology Primer-2nd Edition (7/9/2010), Sura Alwan, Steven B. Bleyl, Robert L. Brent, Christina D. Chambers, George P. Daston, Elaine M. Faustman, Richard H. Finnell, F. Clarke Fraser, Jan M. Freidman, Adriane Fugh-Berman, John M. Graham, Jr., Barbara F. Hales, Deborah K. Hansen, Lewis B. Holmes, Ronald D. Hood, Robert J. Kavlock, Thomas B. Knudsen, Joseph Lary, Donald R. Mattison, Richard K. Miller, James L. Mills, Janine E. Polifka, Sonja A. Rasmussen, Bernard Robaire, John M. Rogers, Gary C. Schoenwolf, Anthony R. Scialli, Gary M. Shaw, Amar V. Singh, William Slikker, Jr., Ann P. Streissguth, Melissa S. Tassinari, Janet Uriu-Adams, Charles V. Vorhees, Elora J. Weringer

Department of Pediatrics Faculty Papers

Foreword:

What is Teratology?

“What a piece of work is an embryo!” as Hamlet might have said. “In form and moving how express and admirable! In complexity how infinite!” It starts as a single cell, which by repeated divisions gives rise to many genetically identical cells. These cells receive signals from their surroundings and from one another as to where they are in this ball of cells —front or back, right or left, headwards or tailwards, and what they are destined to become. Each cell commits itself to being one of many types; the cells migrate, combine into tissues, or …


Prospects And Pits On The Path Of Biomimetics: The Case Of Tooth Enamel, Vuk Uskoković 2010 Chapman University

Prospects And Pits On The Path Of Biomimetics: The Case Of Tooth Enamel, Vuk Uskoković

Pharmacy Faculty Articles and Research

This review presents a discourse on challenges in understanding and imitating the process of amelogenesis in vitro on the molecular scale. In light of the analysis of imitation of the growth of dental enamel, it also impends on the prospects and potential drawbacks of the biomimetic approach in general. As the formation of enamel proceeds with the protein matrix guiding the crystal growth, while at the same time conducting its own degradation and removal, it is argued that three aspects of amelogenesis need to be induced in parallel: a) crystal growth; b) protein assembly; c) proteolytic degradation. A particular emphasis …


Digital Commons powered by bepress