Computational Insights Into Nucleosome Dynamics In Epigenetics Using Molecular Dynamics Simulations,
2026
The Graduate Center, City University of New York
Computational Insights Into Nucleosome Dynamics In Epigenetics Using Molecular Dynamics Simulations, Rutika Patel
Dissertations, Theses, and Capstone Projects
Nucleosome core particles (NCP) are the building blocks that form a highly organized and compact chromatin structure. Nucleosomes package DNA in the nucleus of eukaryotic cells. The NCP consists of about 147 base pairs of DNA wrapped around the histone octamer, with 1.65 superhelical turns in a left-handed manner. The histone octamer is composed of two copies of H3, H4, H2A, and H2B. Together with histone H1 and linker DNA, they further assemble into a higher-order chromatin structure. The nucleosome complex is stabilized by electrostatic interactions between positively charged histone residues and the negatively charged DNA backbone. To effectively access …
Dna Strand Breaks By Small Molecules: From Genomic Hazard To Therapeutic Strategy,
2026
University of Connecticut
Dna Strand Breaks By Small Molecules: From Genomic Hazard To Therapeutic Strategy, Clerin John
Honors Scholar Theses
DNA strand breaks are among the most critical forms of genomic damage, arising from endogenous metabolic activity, environmental stress, radiation, and diverse chemical agents. Single-strand breaks and double-strand breaks contribute to genome instability, mutagenesis, carcinogenesis, and neurodegenerative disorders. Cells rely on DNA repair pathways to detect these breaks and initiate repair. In this review, we conducted a comprehensive literature review to systematically compile and examine the mechanisms underlying small-molecule-induced DNA strand breaks. This review highlights the underlying mechanisms by which these molecules interact with DNA and trigger damage. We further discussed the current methods used for detection and quantification of …
Reverse Micelles Produce Hydroxyapatite Nanoparticles As More Efficient Gene Delivery Carriers Than Regular Micelles,
2026
Chapman University
Reverse Micelles Produce Hydroxyapatite Nanoparticles As More Efficient Gene Delivery Carriers Than Regular Micelles, Vuk Uskoković
Administration and Staff Articles and Research
Hydroxyapatite (HAp) is an effective inorganic gene delivery carrier due to its ability to transport genetic cargo across cell membranes, protect it from proteolysis, and enable escape from late endosomes via pH-controlled dissolution. However, its transfection efficiency remains lower than that of viral agents, prompting studies of hybrids with cationic molecules or phases to enhance the gene delivery performance. This study reports on the synthesis of HAp in regular and reverse micellar regions of a ternary microemulsion system composed of cetyltrimethylammonium bromide (CTAB), 1-hexanol and water. Spectroscopic characterization revealed that CTAB headgroups adopted more ordered supramolecular conformations in reverse micelles …
Defining Rna Oligonucleotides That Reverse Deleterious Phase Transitions Of Rna-Binding Proteins With Prion-Like Domains.,
2026
Thomas Jefferson University
Defining Rna Oligonucleotides That Reverse Deleterious Phase Transitions Of Rna-Binding Proteins With Prion-Like Domains., Lin Guo, Jacob Mann, Jocelyn Mauna, Katie Copley, Hejia Wang, Jack Rubien, Cristian Bergmann, Jenny Carey, Jessica Merjane, Marilyn Ngo, Jiazhen Xu, Hana Odeh, Jiabei Lin, Bo Lim Lee, Laura Ganser, Emma Robinson, Kevin Kim, Anastasia Murthy, Tapas Paul, Bede Portz, Amanda Gleixner, Zamia Diaz, Ashleigh Smirnov, George Padilla, Ellen Lavorando, Carolann Espy, Yulei Shang, Eric Huang, Alessandra Chesi, Nicolas Fawzi, Sua Myong, Christopher Donnelly, James Shorter
Department of Biochemistry and Molecular Biology Faculty Papers
RNA-binding proteins (RBPs) with prion-like domains (PrLDs), such as FUS and TDP-43, condense into functional liquids, which can transform into pathological fibrils that underpin fatal neurodegenerative disorders, including amyotrophic lateral sclerosis (ALS)/frontotemporal dementia (FTD). Here, we define short RNAs that prevent FUS fibrillization by promoting liquid phases and distinct short RNAs that prevent and reverse FUS condensation and fibrillization. These activities require interactions with multiple RNA-binding domains of FUS and are encoded by RNA sequence, length, and structure. We define a short RNA that dissolves cytoplasmic FUS aggregates, restores nuclear FUS, and mitigates FUS toxicity in optogenetic models and ALS …
Micrornas In Prostate Cancer Liquid Biopsies: Early Detection, Prognosis, And Treatment Monitoring,
2026
Thomas Jefferson University
Micrornas In Prostate Cancer Liquid Biopsies: Early Detection, Prognosis, And Treatment Monitoring, Seyyed Mohammad Yaghoubi, Erfan Zare, Sina Jafari Dargahlou, Maryam Jafari, Mahdiye Azimi, Maedeh Khoshnazar, Solmaz Shirjang, Behzad Mansoori
Student Papers, Posters & Projects
Prostate cancer (PCa) is a common malignancy in men worldwide, with incidence projected to rise in the coming years. Traditional screening and diagnostic methods, such as prostate-specific antigen (PSA) testing and biopsy, face limitations in specificity and invasiveness. Circulating microRNAs (miRNAs) have emerged as stable, non-invasive biomarkers obtainable via liquid biopsies (blood, urine, semen) that could transform PCa management. These small regulatory RNAs reflect underlying tumor biology and are detectable at early disease stages, enabling improved early detection when used alongside or in place of PSA. Distinct miRNA expression patterns correlate with tumor aggressiveness. For example, miR-141 and miR-375 are …
Effects Of Dietary Perfluorobutane Sulfonate (Pfbs) On Adipose Tissue,
2026
Georgia Southern University
Effects Of Dietary Perfluorobutane Sulfonate (Pfbs) On Adipose Tissue, Hannah Olofintuyi, Eric Gato
Honors College Theses
Per- and polyfluoroalkyl substances (PFAS) are chemical substances used in a variety of industrial applications and consumer products. Perfluorobutane sulfonate (PFBS) is often used as a replacement for the more harmful (Perfluoroalkyl sulfonate) PFAS chemicals that have been around longer. It is believed that PFBS does not remain in the body as long as other PFAS compounds; however, there is a rising concern that it has the potential to cause damage to human health. This study focused on understanding how dietary PFBS exposure affects metabolism-related processes in adipose tissues in rats. To accomplish study objectives, Sprague Dawley rats were exposed …
Photo And Spatial Control Of Rna Structures And Functions: Exploring Positional Effects And Photo-Responsiveness Of Azobenzene Modified Nucleotides,
2026
University at Albany, State University of New York
Photo And Spatial Control Of Rna Structures And Functions: Exploring Positional Effects And Photo-Responsiveness Of Azobenzene Modified Nucleotides, Jinxi Du
Electronic Theses & Dissertations (2024 - present)
RNA molecules perform many important biological functions by forming complex three-dimensional structures stabilized by base pairing, tertiary interactions, and metal ion coordination. Because RNA function depends strongly on its structure, methods that allow reversible control of RNA conformation and activity are important for understanding RNA behavior and for potential therapeutic applications. However, achieving reversible and site-specific control of RNA structure, especially at the single-nucleotide level, remains challenging. In this dissertation, I developed and applied azobenzene-modified nucleotides as a chemical tool to enable optical and spatial control of RNA structure and function.
The first part of this dissertation focuses on establishing …
Absolute Quantification And Identification Of Rna From Rna-Lipid Nanoparticles Using High Resolution Mass Spectrometry,
2026
Virginia Commonwealth University
Absolute Quantification And Identification Of Rna From Rna-Lipid Nanoparticles Using High Resolution Mass Spectrometry, Jason C. Funderburk, Yasir A. Alshehry, Matthew S. Halquist Phd, Sandro R.P. Da Rocha Phd
Graduate Research Posters
Background
RNA therapeutics are a rising drug category with potential use for a range of conditions encompassing infectious diseases to therapies for cancer, diseases, and genetic disorders. RNA-lipid nanoparticles (RNA-LNPs) are the prominent delivery method for these therapeutics approved products include mRNA vaccines and polyneuropathy treatments. The emergency use authorizations and orphan drug status of current RNA-LNP drugs has allowed approval without finalization of the regulatory analytical procedures for quality monitoring. The objective of the study was to develop an LC-MS assay to simultaneously measure identity and concentration of two therapeutically relevant intact RNA constructs extracted from RNA-LNPs to enhance …
Absolute Quantification And Identification Of Rna From Rna-Lipid Nanoparticles Using High Resolution Mass Spectrometry,
2026
Virginia Commonwealth University
Absolute Quantification And Identification Of Rna From Rna-Lipid Nanoparticles Using High Resolution Mass Spectrometry, Jason C. Funderburk
Theses and Dissertations
RNA therapeutics are a rising drug category with potential use for a range of conditions encompassing infectious diseases to therapies for cancer, diseases, and genetic disorders. RNA-lipid nanoparticles (RNA-LNPs) are the prominent delivery method for these therapeutics approved products include mRNA vaccines and polyneuropathy treatments. The emergency use authorizations and orphan drug status of current RNA-LNP drugs has allowed approval without finalization of the regulatory analytical procedures for quality monitoring. The objective of the study was to develop an LC-MS assay to simultaneously measure identity and concentration of two therapeutically relevant intact RNA constructs extracted from RNA-LNPs to enhance quality …
Optimizing Endothelial Cell Specific Polymersome-Based Atheroprotective Therapies,
2025
Clemson University
Optimizing Endothelial Cell Specific Polymersome-Based Atheroprotective Therapies, Ally C. Brawner
All Theses
Atherosclerotic cardiovascular disease is the number one cause of death in the United States and the world. Every year, billions of dollars are spent in the US alone for direct treatments of this disease, especially on prescription medicines like statins. However, these medications have been unable to curtail global mortality rates, partially because they do not target the entirety of atherosclerotic pathophysiology. A key area of this pathophysiology is that atheroprone arteries typically include pro-inflammatory endothelial cells that exhibit decreased levels of apoAI-mediated cholesterol efflux and an increased release of adhesion molecules, such as VCAM-1. The objective of my project …
Overview Of Huntington's Disease And Emerging Treatment Strategies: A Narrative Review,
2025
Tulane University, New Orleans, LA
Overview Of Huntington's Disease And Emerging Treatment Strategies: A Narrative Review, Alexis J. Vega, Gabriel V. Hernandez, Pearse A. O'Malley, Connor J. Robin, Amanda N. Parra, Giustino Varrassi, Sahar Shekoohi, Alan D. Kaye
School of Medicine Faculty Publications
Huntington's disease (HD) is an autosomal dominant, progressive neurodegenerative disorder caused by a cytosine-adenine-guanine trinucleotide repeat expansion in the huntingtin (HTT) gene. The symptoms of HD include severe motor dysfunction, cognitive issues, and emotional dysregulation. These combined issues are not only debilitating but also lead to depression/anxiety, increased suicide rates, and caregiver burnout. Our narrative review summarizes several recent studies examining the efficacy and differences among emerging treatment strategies for HD. A systematic search of peer-reviewed literature was conducted, focusing on recent studies that describe molecular genetic manipulation of the HTT gene/huntingtin protein. The results of our narrative review reveal …
Dna Extrusion Size Determines Pathway Choice During Cag Repeat Expansion,
2025
Thomas Jefferson University
Dna Extrusion Size Determines Pathway Choice During Cag Repeat Expansion, Mayuri Bhatia, Ashutosh S. Phadte, Anna Lakhina, Anthony R. Monte Carloi Iii, Sarah Barndt, Anna Pluciennik
Department of Biochemistry and Molecular Biology Faculty Papers
DNA triplet repeat expansion causes several primarly neurological disorders like Huntington's disease, myotonic dystrophy type 1, and fragile-X related disorders. There is general consensus that recognition of extrahelical extrusions or hairpin-loop structures (formed by strand slippage) by the DNA mismatch repair protein MutSβ leads to repeat expansion by a mutagenic process. By contrast, the FAN1 nuclease attenuates triplet repeat expansion, the molecular basis of which was explained by our recent finding that FAN1 nuclease cleaves and initiates removal of extrahelical extrusions. Here we show that extrusions containing two or more triplet repeats are subject to recognition and processing by either …
Her3 Promotes Triple-Negative Breast Cancer Progression By Upregulating Phf8 Via Mir-34b-5p-Dependent Mechanism,
2025
LSU Health Sciences Center - New Orleans
Her3 Promotes Triple-Negative Breast Cancer Progression By Upregulating Phf8 Via Mir-34b-5p-Dependent Mechanism, Hui Lyu, Cong Cong Tan, Yakun Wu, Margaret E. Larsen, Qingzhao Yu, Guobin Kang, Charles Wood, Shou Ching Tang, Bolin Liu
School of Graduate Studies Faculty Publications
Triple-negative breast cancer (TNBC) is one of the most aggressive subtypes of breast cancer, with limited targeted treatment options and poor clinical outcomes. HER3 has recently emerged as a promising therapeutic target, with HER3-directed antibody–drug conjugates advancing to Phase III clinical trials for non-small cell lung cancer. However, the downstream molecular mechanisms by which HER3 promotes TNBC progression remain poorly defined. In this study, we uncovered a previously unrecognized HER3/miR-34b-5p/PHF8 signaling axis that drives TNBC cell proliferation and tumor growth. Mechanistically, HER3 activation suppresses the tumor-suppressive microRNA miR-34b-5p, resulting in the upregulation of the histone demethylase PHF8 (KDM7B), which in …
The Non-Coding Rna Journal Club: Highlights On Recent Papers-14,
2025
Sorbonne Université, Paris, France
The Non-Coding Rna Journal Club: Highlights On Recent Papers-14, El Cheima Mhamedi, Florent Hubé, Suresh K. Alahari, Francisco J. Enguita, Barbara Pardini, Mark W. Feinberg, Laura Poliseno, Beshoy Armanios, Jing Jin, Xiao-Bo Zhong, Nikolaos Sideris, Salih Bayraktar, Leandro Castellano, Gaetano Santulli, Stanislovas S. Jankauskas, Will S. Plewa, Simon J. Conn, Ling Yang, Patrick K. Shiu, Abhishek Kaushik, Alexander Serganov, Gentile, Giuseppe Viglietto, Nicola Amodio, Tijana Mitić, Andrea Caporali
School of Graduate Studies Faculty Publications
The field of non-coding RNA research is advancing at a breathtaking pace, continually uncovering new layers of regulatory complexity and functional diversity [...].
Overview Of Exosomal Non-Coding Rnas In Cardiovascular Disease Using High Throughput Sequencing,
2025
University of Tabriz, Tabriz, Iran
Overview Of Exosomal Non-Coding Rnas In Cardiovascular Disease Using High Throughput Sequencing, Mortaza Eivazi, Leila Abkhooie, Kamran Hosseini, Parnia Mobasheran, Tahereh Ebrahimi, Vahideh Tarhriz, Eric Lazartigues
School of Graduate Studies Faculty Publications
Non-coding RNAs including miRNAs, long-ncRNAs, and circular RNAs play crucial roles in cell-to-cell communication and epigenetic regulation. They control gene expression at multiple levels, including transcriptional, post-transcriptional, and translational, thereby influencing associated signaling pathways. Encapsulated within exosomes, micro-vesicles, and apoptotic bodies, ncRNAs can be transported between cells while being protected from harsh environmental conditions. Studies have shown various expression patterns across different cell types and in various physiological and pathological states. However, the precise correlations and extent of their contribution to diseases are still under investigation. Recent studies have reported the involvement of extracellular vesicle-associated ncRNAs in the pathogenesis of …
Fine Mapping Regulatory Variants By Characterizing Native Cpg Methylation With Nanopore Long-Read Sequencing,
2025
Moffitt Cancer Center, Tampa, FL
Fine Mapping Regulatory Variants By Characterizing Native Cpg Methylation With Nanopore Long-Read Sequencing, Yijun Tian, Shannon K. Mcdonnell, Lang Wu, Nicholas B. Larson, Liang Wang
School of Medicine Faculty Publications
5-Methylcytosine (5mC) is the most common DNA modification in the human genome. Bisulfite conversion combined with short-read sequencing captures this modification at single-nucleotide resolution but introduces PCR duplication bias and limits co-methylation analysis between distant cytosines. To resolve these limitations, we used nanopore long-read sequencing to profile human methylation and performed long-range co-methylation analysis with native DNA modification information. We analyzed the nanopore demo data in the adaptive sampling sequencing targeting the CpG islands and applied the linkage disequilibrium (LD) R to identified methylation haplotype blocks (MHBs). We found that the cancer genome exhibited significantly smaller MHBs, higher CpG density, …
Dynamic Rewiring Of Microrna Networks In The Brainstem Autonomic Control Circuits During Hypertension Development In The Female Spontaneously Hypertensive Rat,
2025
Thomas Jefferson University
Dynamic Rewiring Of Microrna Networks In The Brainstem Autonomic Control Circuits During Hypertension Development In The Female Spontaneously Hypertensive Rat, Alison Moss, Ankita Srivastava, Lakshmi Kuttippurathu, James S. Schwaber, Rajanikanth Vadigepalli
Department of Pathology, Anatomy, and Cell Biology Faculty Papers
We describe global microRNA (miRNA) changes in the central autonomic control circuits during the development of neurogenic hypertension. Using the female spontaneously hypertensive rat (SHR) and the normotensive Wistar Kyoto (WKY), we analyzed the dynamic miRNA expression changes in three brainstem regions-the nucleus of the solitary tract, caudal ventrolateral medulla, and rostral ventrolateral medulla-as a time series beginning at 8 wk of age before hypertension onset through to extended chronic hypertension. Our analysis yielded nine miRNAs that were significantly differentially regulated in all three regions between SHR and WKY over time. We collated computationally predicted gene targets of these nine …
Engineering Lipid–Polymer Nanoparticles For Sirna Delivery To Cancer Cells,
2025
Chapman University
Engineering Lipid–Polymer Nanoparticles For Sirna Delivery To Cancer Cells, Arthur Manda, Abdulelah Alhazza, Hasan Uludağ, Hamidreza Montazeri Aliabadi
Pharmacy Faculty Articles and Research
Background: RNA interference (RNAi) is a powerful tool that can target many proteins without the expensive and time-consuming drug development studies. However, due to the challenges in delivering RNA molecules, the potential impact of RNAi approaches is yet to be fully realized in clinical settings. Lipid nanoparticles (LNPs) have been the most successful delivery system for nucleic acids, but targeted delivery to a solid tumor still eludes the developed LNPs. We hypothesized that specially designed low-molecular-weight PEIs can partially or completely replace the ionizable lipids for more accommodating vehicles due to the structural flexibility offered by polymers, which could …
An Exploratory Pharmacogenetic Pilot Study Of Two Reverse Transcriptase Inhibitors, Tenofovir Alafenamide Fumarate And Tenofovir Disoproxil Fumarate,
2025
East Tennessee State University
An Exploratory Pharmacogenetic Pilot Study Of Two Reverse Transcriptase Inhibitors, Tenofovir Alafenamide Fumarate And Tenofovir Disoproxil Fumarate, Derek E. Murrell, Benjamin C. Kennard, Maria E. Bertoni, David B. Cluck, Jonathan P. Moorman, Stacy D. Brown, Keshang Wang, Michelle M. Duffourc, Sam Harirforoosh
Pharmacy Faculty Articles and Research
Background and Objectives
The nucleoside reverse transcriptase inhibitors tenofovir alafenamide fumarate and tenofovir disoproxil fumarate are frequently employed in treating human immunodeficiency virus. Further, each form of tenofovir requires laboratory monitoring to determine efficacy and tolerability among patients. This study sought to investigate the relationship, if any, of single nucleotide polymorphisms (SNPs) and selected clinical parameters.
Methods
The study population, predominantly Caucasian males with a median age of 53.0 years [interquartile range 46.0–59.0], was assayed for genetic variations using an iPLEX ADME PGx Pro v1.0 Panel.
Results
Although several SNP relationships were found with both forms of tenofovir, many of …
Biophysical Studies Of Nucleic Acid - Small Molecule Recognition,
2025
Clemson University
Biophysical Studies Of Nucleic Acid - Small Molecule Recognition, Andrea Conner
All Dissertations
The presented work is a collection of studies performed to examine small molecule recognition of nucleic acids. Recognition of nucleic acids was examined using two types of small molecules: aminoglycosides and Hoechst dyes. Chapter One focuses on established experimental techniques (i.e. absorbance, isothermal titration calorimetry, flow cytometry, cell microscopy, etc.) in small molecule recognition of nucleic acids. The emphasis of studies in the group has been on two focus areas. (i) Thermodynamic characterization of mixed A-form and B-form DNA or RNA conformation with aminoglycosides, particularly neomycin-class. (ii) Characterization of new Hoechst-morpholine (HT-MO) derivatives’ interactions with nucleic acids.
Focus area (i) …
