Open Access. Powered by Scholars. Published by Universities.®
Medicinal Chemistry and Pharmaceutics Commons™
Open Access. Powered by Scholars. Published by Universities.®
- Discipline
-
- Amino Acids, Peptides, and Proteins (3)
- Chemicals and Drugs (3)
- Analytical, Diagnostic and Therapeutic Techniques and Equipment (2)
- Biotechnology (2)
- Nanotechnology (2)
-
- Therapeutics (2)
- Translational Medical Research (2)
- Bioinformatics (1)
- Biomedical and Dental Materials (1)
- Biophysics (1)
- Chemistry (1)
- Computational Chemistry (1)
- Enzymes and Coenzymes (1)
- Macromolecular Substances (1)
- Medicinal and Pharmaceutical Chemistry (1)
- Molecular Biology (1)
- Nanomedicine (1)
- Other Chemicals and Drugs (1)
- Pharmaceutical Preparations (1)
- Pharmaceutics and Drug Design (1)
- Pharmacy and Pharmaceutical Sciences (1)
- Physical Chemistry (1)
- Physical Sciences and Mathematics (1)
- Keyword
-
- Radiotherapy (2)
- Auger (1)
- Bioorthogonal (1)
- Computer-Aided Drug Design (1)
- Disassembly (1)
-
- Drug delivery (1)
- Dual-variable domain antibody (1)
- Enzyme-responsive materials (1)
- Expanded genetic code (1)
- Glioblastoma (1)
- Matrix metalloproteinase (1)
- Olaparib (1)
- P22 bacteriophage (1)
- PARP (1)
- Peptide delivery (1)
- Peptides (1)
- Pharmacophore (1)
- ROMP (1)
- Site-specific bioconjugation (1)
- Solvation (1)
- Theranostic (1)
- Thermodynamics (1)
- VLP (1)
- Virus-like particle (1)
Articles 1 - 4 of 4
Full-Text Articles in Medicinal Chemistry and Pharmaceutics
Incorporating Solvation Thermodynamic Mapping In Computer-Aided Drug Design, Yeonji Ji
Incorporating Solvation Thermodynamic Mapping In Computer-Aided Drug Design, Yeonji Ji
Dissertations, Theses, and Capstone Projects
Advancements in computational techniques have revolutionized structure-based drug design, substantially improving the efficiency and effectiveness of the drug discovery process by reducing time, costs, and labor requirements. These advancements include various methods, such as investigating small molecule ligands binding to proteins, exploring alternative protein conformations, and solvation mapping on the protein surfaces. Among these methods, understanding the correlation between protein-ligand binding and the role of solvation is important.
A fundamental concept in protein-ligand binding is shape and electrostatic complementarity, which is complicated by the inherent flexibility of proteins. In the absence of small molecule ligands, proteins are complementary to surface …
Leveraging Bio-Inspired Molecules For Cancer Theranostics, Douglas S. Macpherson
Leveraging Bio-Inspired Molecules For Cancer Theranostics, Douglas S. Macpherson
Dissertations, Theses, and Capstone Projects
A variety of molecules can be radiolabeled and delivered to a cancer site for the purposes of diagnostics and therapy. Among the most promising of tumor targeting molecules are peptides and antibodies. These bio-inspired molecules can be designed and synthesized to target and respond to cancer cells based on the properties of those cells. Matrix metalloproteinase (MMP) enzymes are over-expressed by some metastatic cancers, in which they are responsible for the degradation and remodeling of the extracellular matrix. In recent years, MMPs have emerged as promising targets for enzyme-responsive diagnostic probes because oligopeptides can be designed to be selectively hydrolyzed …
Parp1-Targeted Radiotherapies, Stephen Jannetti
Parp1-Targeted Radiotherapies, Stephen Jannetti
Dissertations, Theses, and Capstone Projects
Poly-ADP-ribosylation reactions were first reported by Chambon in 1963 as enzymatic activity that increases incorporation of ATP in the presence of nicotinamide mononucleotide. In the decades since that publication, Poly(ADP-ribose)polymerase 1 (PARP1) and the PARP family enzymes have been widely studied. PARP enzymes are currently known to play various roles in mammals, including anti-aging processes, interactions with Breast Cancer Suppressor Protein-1 (BRCA1), and DNA damage repair. A significant focus of PARP1 research has been elucidating its role in DNA damage repair. PARP1 is recruited to repair single strand DNA (ssDNA) breaks, which can become double stranded DNA (dsDNA) breaks if …
Developing A Dissociative Nanocontainer For Peptide Drug Delivery, Michael Patrick Kelly
Developing A Dissociative Nanocontainer For Peptide Drug Delivery, Michael Patrick Kelly
Dissertations, Theses, and Capstone Projects
The potency and specificity of bioactive peptides have propelled these agents to the forefront of pharmacological research. However, delivery of peptides to their molecular target in cells is a major obstacle to their widespread application. A Trojan Horse strategy of packaging a bioactive peptide within a modified protein cage to protect it during transport, and releasing it at the target site, is a promising delivery method. Recent work has demonstrated that the viral capsid of the P22 bacteriophage can be loaded with an arbitrary, genetically-encoded peptide, and externally decorated with a cell-penetrating peptide, such as HIV-Tat, to translocate across in …