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1.
CRISPR Directed Targeted Gene Alteration: Mechanism to Application
by Rivera-Torres, Natalia, Ph.D.  University of Delaware. 2019: 238 pages; 13885694.
2.
For the Sensing of Viral DNA: An Integrated Polydimethylsiloxane Accurate CRISPR Detection (IMPACT) System
by Hass, Kenneth N., M.S.  Rochester Institute of Technology. 2020: 78 pages; 27955451.
3.
Molecular mechanisms and applications of RNA targeting CRISPR endonucleases
by Seletsky, Alexandra East, Ph.D.  University of California, Berkeley. 2017: 131 pages; 10279364.
4.
Crystal structures of CRISPR-associated Csx3 reveal a manganese-dependent deadenylation exoribonuclease
by Xinfu, Yan, Ph.D.  National University of Singapore (Singapore). 2015: 137 pages; 10006112.
5.
Novel Use of CRISPR Technology to Investigate Bone Biology
by MacLeod, Ryan Stewart, Ph.D.  University of Arkansas for Medical Sciences. 2019: 103 pages; 22621175.
6.
Predicting CRISPR/Cas9 Negative Selection Outcomes from sgRNA Sequences
by Stanton, TImothy, Master's  Stevens Institute of Technology. 2019: 40 pages; 27669807.
7.
CRISPR Screen in Regulatory T Cells Reveals Modulators of Foxp3
by Cortez, Jessica, Ph.D.  University of California, San Francisco. 2020: 97 pages; 27999415.
8.
Structural identification and characterization of proteins involved in CRISPR-mediated antiviral defence
by Su, Liu, Ph.D.  National University of Singapore (Singapore). 2015: 191 pages; 10006053.
10.
Arsenic Regulation of Chromatin Dynamics
by West, Kirk Leon, Ph.D.  University of Arkansas for Medical Sciences. 2018: 199 pages; 10813581.
11.
Targeted and Unbiased Approaches to Study Chromatin Regulation
by Waldrip, Zachary Jackson, Ph.D.  University of Arkansas for Medical Sciences. 2017: 155 pages; 10280225.
12.
Regulation of Virulence Related Genes by RNA and RNA-Interacting Proteins in Bacteria
by Escalera-Maurer, Andres, Ph.D.  Humboldt Universitaet zu Berlin (Germany). 2019: 94 pages; 27816917.
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Study on Activation of Oct4 Using Engineered TALE and Cas9 Transcription Factors
by Hu, Jiabiao, Ph.D.  The Chinese University of Hong Kong (Hong Kong). 2014: 177 pages; 3691926.
17.
The Role of STING in Cancer
by Mo, Liu, M.S.  National University of Singapore (Singapore). 2015: 83 pages; 10006051.
18.
Technohumanity: Films as a Lens for Examining How Humans and Technology Co-shape the World
by Buffington, Chelsea, Ph.D.  Salve Regina University. 2018: 197 pages; 10808905.
20.
Recruitment of HCFC1 to Chromatin by THAP11 and ZNF143 Transcription Factors
by Vinckevicius, Aurimas, Ph.D.  Northwestern University. 2016: 152 pages; 10117187.
21.
Curriculum Based on Socioscientific Issues: Bringing the Controversy into Science Class
by Davisson, Sarah, M.S.  California State University, Long Beach. 2019: 148 pages; 13812320.
22.
Archaeal host virus interactions
by Wirth, Jennifer Fulton, Ph.D.  Montana State University. 2011: 188 pages; 3468632.
23.
Exploring the Microbiome of the Mediterranean Sponge Aplysina aerophoba by Single-Cell and Metagenomics
by Slaby, Beate Magdalena, Ph.D.  Bayerische Julius-Maximilians-Universitaet Wuerzburg (Germany). 2017: 132 pages; 10664597.
24.
Genetic Engineering of T Cells as a Delivery Vehicle for Protein Replacement Therapy
by Jobson, Jennielle, Ph.D.  Icahn School of Medicine at Mount Sinai. 2019: 126 pages; 22616370.
25.
Design of Robust Feedback Networks From Ultrasensitive Modules
by Cuba Samaniego, Christian Erik, Ph.D.  University of California, Riverside. 2017: 143 pages; 10281181.
26.
Diversity, Form, and Function Within the Marine Mammal Microbiota
by Dudek, Natasha K., Ph.D.  University of California, Santa Cruz. 2018: 203 pages; 10929175.
27.
Zebrafish Mespaa and miR-430 Regulate Signaling Pathways Involved in Heart Development
by Sandoval-Gonzalez, Melissa, Ph.D.  University of California, San Francisco. 2018: 141 pages; 13424689.
28.
Investigating the Effects of Solvent and Spaceflight Exposure on Engineered E. coli
by Wilson, James A. L., M.S.  University of Alaska Anchorage. 2019: 89 pages; 22583175.
29.
Associations and Confounding in High-Dimensional Genomics
by Darnell, Gregory Byer, Ph.D.  Princeton University. 2019: 169 pages; 13865166.
30.
Process Design for Scalable Recombinant Adeno-Associated Virus
by Patel, Tejash Vijay, Ph.D.  The University of North Carolina at Chapel Hill. 2018: 326 pages; 10688389.
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