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Full-Text Articles in Medicine and Health Sciences

Rilpivirine-Associated Aggregation-Induced Emission Enables Cell-Based Nanoparticle Tracking, Insiya Mukadam Dec 2020

Rilpivirine-Associated Aggregation-Induced Emission Enables Cell-Based Nanoparticle Tracking, Insiya Mukadam

Theses & Dissertations

Antiretroviral therapy (ART) has improved the quality and duration of life for people living with human immunodeficiency virus (HIV) infection. However, limitations in drug efficacy, the emergence of viral mutations and the paucity of cell-tissue targeting remain. We posit that to maximize ART potency and therapeutic outcomes newer drug formulations that reach HIV cellular reservoirs need to be created. In a step towards achieving this goal we discovered the aggregation-induced emission (AIE) property of the non-nucleoside reverse transcriptase inhibitor Rilpivirine (RPV) and used it as a platform for drug cell and subcellular tracking. RPV nanocrystals were created with endogenous AIE …


Long-Acting Nanoformulated Antivirals For The Treatment And Prevention Of Hiv-1 And Hbv Infections, Dhruvkumar M. Soni Dr. Dec 2020

Long-Acting Nanoformulated Antivirals For The Treatment And Prevention Of Hiv-1 And Hbv Infections, Dhruvkumar M. Soni Dr.

Theses & Dissertations

While antiretroviral therapy (ART) has revolutionized treatment and prevention of human immunodeficiency virus type one (HIV-1) infection, regimen adherence, viral mutations, drug toxicities, stigma and pill fatigue are limitations. These have led to the development of long acting (LA) ART. These include, but are not limited to, implantable devices, new chemical entities, prodrug modifications and nanoformulations. To these ends, this thesis focues on the transformation of nucleoside reverse transcriptase inhibitors (NRTIs) into LA parenterals, While elusive, data from our laboratories demonstrated that modifications to the PROdrug and nucleoTide technology (ProTide) enables improvements in drug apparent half-life and tissue and cell …


Development Of Cxcr4-Inhibiting Rna Delivery Vectors For The Treatment Of Metastatic Pancreatic Cancer, Yu Hang Aug 2020

Development Of Cxcr4-Inhibiting Rna Delivery Vectors For The Treatment Of Metastatic Pancreatic Cancer, Yu Hang

Theses & Dissertations

Pancreatic ductal adenocarcinoma (PDAC) is a growing medical problem associated with extensive metastasis and high mortality. Late diagnosis and complexity of the tumor microenvironment (TME) with severe hypoxia, desmoplasia, and hypovascular nature contributes to poor effectiveness of conventional chemotherapies. RNA interference (RNAi) holds great potential in the treatment of multiple genetic and acquired diseases, including PDAC. CXCR4/CXCL12 chemokine axis plays a pivotal role in PDAC TME remodeling to promote tumor proliferation, angiogenesis, metastasis, and chemoresistance. This project developed polymeric AMD3100 (PAMD) derivatives as dual-function vectors capable of simultaneously delivering small RNAs and blocking CXCR4/CXCL12 signaling.

Administration route plays pivotal role …


Ligand-Installed Polymeric Nanocarriers For Combination Chemotherapy, Xinyuan Xi Aug 2020

Ligand-Installed Polymeric Nanocarriers For Combination Chemotherapy, Xinyuan Xi

Theses & Dissertations

Combination chemotherapy remains the mainstay of cancer treatment because such strategy targets different cell signaling pathways to decrease the likelihood of developing protective mechanisms by cancer cells, thereby delaying the onset of recurrence and prolonging the survival. The co-delivery of binary drug combination via a single nanocarrier provides benefits in reducing dose-limiting toxicities, improving the pharmacokinetic properties of the cargo, spatial-temporal synchronization of drug exposure, and synergistic therapeutic effects. Rational design of such regimen is crucial for maximizing the therapeutic effects since only certain drug ratios exposed to the target might be synergistic while other ratios exert additive or even …


Exosomes Secreted Under Hypoxia Enhance Stemness In Ewing’S Sarcoma And Transform Microenvironment Cells, Matthew J. Kling Aug 2020

Exosomes Secreted Under Hypoxia Enhance Stemness In Ewing’S Sarcoma And Transform Microenvironment Cells, Matthew J. Kling

Theses & Dissertations

Intercellular communication between tumor cells and stroma within the hypoxic microenvironment promote aggressiveness and poor patient prognoses in ways that remain unclear. Here we show that hypoxic Ewing’s sarcoma (EWS) cells release exosomes that promote sphere formation, a stem-like phenotype, in EWS cells by enhancing survival and a cancer-associated phenotype in fibroblasts (CAFs). Given that hypoxia enriches for stem-like cells, we exposed EWS cells to hypoxia and hypoxic EWS-derived exosomes and assessed the stem cell phenotype. Hypoxia and hypoxic EWS-derived exosomewere found to enhance TIC formation in vitro and in vivo by reprogramming EWS cells. Analysis of the hypoxic exosomal …


Development Of Fluorescent Hyaluronic Acid Nanoparticles For Intraoperative Tumor Detection, Nicholas E. Wojtynek May 2020

Development Of Fluorescent Hyaluronic Acid Nanoparticles For Intraoperative Tumor Detection, Nicholas E. Wojtynek

Theses & Dissertations

Surgical resection remains to be the primary treatment for the majority of solid tumors, including breast cancer. The complete removal of the primary tumor, local metastases, and metastatic lymph nodes dramatically improve a patient’s treatment outcome and prognosis. Nevertheless, surgeons are limited to tactile and visual cues in distinguishing malignant and healthy tissue. This can result in a positive surgical margin (PSM), which occurs when tumor goes undetected and is left behind in the surgical cavity. PSMs decreases a patient’s prognosis and necessitate additional treatment in the form of surgery, radiation, and chemotherapy. An emerging imaging modality, known as fluorescence-guided …