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Physicochemical Characterization of Bionanomaterials

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Release : 2021
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Book Synopsis Physicochemical Characterization of Bionanomaterials by : Justin Stanley Plaut

Download or read book Physicochemical Characterization of Bionanomaterials written by Justin Stanley Plaut. This book was released on 2021. Available in PDF, EPUB and Kindle. Book excerpt: In the first section of this dissertation, work involving the characterization of membrane-bound bioparticles is presented. Atomic force microscopy (AFM) is preeminent among techniques to characterize the morphological and nanomechanical properties of membrane-bound bioparticles, including extracellular vesicles, platelets, and liposomes. However, due to the sensitivity of the measurements and the fragility of the materials, there are significant challenges that must be overcome for the acquisition of accurate and high-quality data. A variety of commonly encountered issues, such as sample- or probe-related artifacts, are presented along methodological considerations to surpass such challenges. Extracellular vesicles are particularly difficult to characterize by AFM due to their diminutive size, on the order of tens to hundreds of nm, which results in a multitude of sample-specific artifacts. A study applying these methodological considerations to the quantitative, nanomechanical AFM characterization of matrix vesicles (MVs) is presented. MVs, a class of extracellular vesicles involved in physiological and pathological mineralization processes, are approximately 150 nm in diameter and are secreted from mineralization-competent cells, including chondrocytes, osteoblasts, and odontoblasts. These vesicles contain transporters and enzymatic payloads that enable sequestration of calcium cations and inorganic phosphate within the vesicle lumen to form calcium-phosphate minerals, which condense into semi-crystalline hydroxyapatite. AFM, with other physicochemical techniques, was used to measure the physical properties of MVs in both mineralizing and non-mineralizing conditions, which provided new insight into the structure and function of these membrane-bound bioparticles. In future work, MVs or synthetic MV could foreseeably be applied to the treatment of degenerative bone diseases and stronger linkages between pathological processes and MVs can be established. In the second section of this dissertation, work involving designed peptide biomaterials is presented. Oligopeptides, short polymers of amino acids, have a diverse set of naturally occurring chemical functionalities that can be harnessed to develop functional, shape-defined bionanomaterials. Solid-phase peptide synthesis (SPPS) enables the manufacture of peptides of arbitrary sequence and expands the natural chemical functionality through the inclusion of rare or synthetic amino acids, terminal capping, and other modifications. Three studies using N-terminal fluorenylmethyloxycarbonyl (Fmoc)-modified peptides are presented. Fmoc is an aromatic, polycyclic group that promotes peptide self-assembly through [pi]-[pi] stacking and contributes to the formation of hydrophobic pockets within which guest molecules, including diagnostic or therapeutic agents, can be loaded. Since Fmoc is a standard N-terminal protecting for SPPS, it presents as a no-cost modification for which inclusion reduces the complexity of the peptide synthesis. In each study, AFM was used to characterize the morphology of the peptide bionanomaterials. In the first study, a series of cell-penetrating triblock peptides, composed of a Fmoc-Fx hydrophobic block, a RADARADA amphiphilic block, and terminated with the HIV TAT 48-59 sequence, was developed. By varying the number of N-terminal phenylalanine residues, nanodrills of different morphologies and secondary structures were produced. An assembly model was developed with support by simulations in silico. The nanodrills were demonstrated to be effective vehicles for the enhanced intracellular delivery of hydrophobic molecules. In future work, the lessons learned from this study can help guide the design of simpler and more effective supramolecular delivery vehicles. In the second study, a series of triblock peptides, composed of an Fmoc-F assembly block, a permutated K,F,E amphiphilic block, and an R-G-D-amide cell-binding functional block, were developed through rational design and sequence permutation to identify a peptide suited for hydrogelation, P3. Since hydrogels produced from this peptide exhibit spontaneous gelation at 37oC, molecular-loading capability, and delayed drug release, P3 shows promise as an injectable hydrogel for drug or antigen delivery. Ongoing work will rigorously investigate the in situ hydrogelation and delivery functionality of these hydrogels. In the third study, a label-free protease sensor was developed by exchanging the functional block of P3 for the recognition site (AAN/G) for legumain, a cancer-associated protease, and a solubilizing unit (EEGSGEE). Upon cleavage of the peptide by legumain, the liberated Fmoc-FKFEAAN peptide self-assembles into [beta]-sheeted nanoplatelets that can be stained with thioflavin T for fluorescent signal amplification. The performance of the resulting label-free protease assay was then optimized in both buffer and human plasma. This assay can be adapted, in principle, to any protease of interest by changing the recognition sequence. Ultimately, this simple, inexpensive, and highly adaptable technology shows promise as a diagnostic assay for disease-associated protease biomarkers. In future work, more elaborate detection schemes, such as multiplexing of protease detection, or an adaptation to intracellular or cell-surface protease detection could be implemented. Ultimately, the distinct applications of the peptides in these studies serve as an illustration of the diverse structural and functional properties achievable with designed peptide bionanomaterials.

Fundamentals of Bionanomaterials

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Release : 2022-01-26
Genre : Technology & Engineering
Kind : eBook
Book Rating : 489/5 ( reviews)

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Book Synopsis Fundamentals of Bionanomaterials by : Ahmed Barhoum

Download or read book Fundamentals of Bionanomaterials written by Ahmed Barhoum. This book was released on 2022-01-26. Available in PDF, EPUB and Kindle. Book excerpt: Bionanomaterials are molecular materials composed partially or completely of biological molecules, key biological structures, such as proteins, enzymes, viruses, DNA, biopolymers as well as metal, metal oxides, and carbon nanomaterials with characteristic bioactivity. Bionanomaterials have drawn much attention for their use in a wide range of industrial applications from scaffolds, dental implants, drug delivery, dialysis, biobatteries, biofuel cells, air purification, and water treatment. Therefore, the intensive current research in this area is driven towards the designing and functionalization of bionanomaterials for industrial applications. Fundamentals of Bionanomaterials covers the fundamental aspects, experimental setup, synthesis, properties, and characterization of the different types of bionanomaterial. It discusses the different structure and unique properties of bionanomaterials that can be obtained by modifying their morphology and composition, highlighting a wide range of fabrication techniques of bionanomaterials and critical processing parameters. This is an important reference source for all those seeking to gain a solid understanding of the characterization, properties and processing a variety of bionanomaterial classes. Explains the major properties and characterization techniques for a range of bionanomaterial classes Discusses the commercialization of different types of bionanomaterials for a variety of industry sectors Highlights the challenges and interdisciplinary perspective of bionanomaterials in science, biology, engineering, medicine, and technology, incorporating both fundamentals and applications

Advances in Bionanomaterials II

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Release : 2020-05-29
Genre : Technology & Engineering
Kind : eBook
Book Rating : 053/5 ( reviews)

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Book Synopsis Advances in Bionanomaterials II by : Stefano Piotto

Download or read book Advances in Bionanomaterials II written by Stefano Piotto. This book was released on 2020-05-29. Available in PDF, EPUB and Kindle. Book excerpt: This book presents multidisciplinary research focusing on the analysis, synthesis, and design of bio and nanomaterials. Merging biophysics, biochemistry, and bioengineering perspectives, it discusses the basic properties of materials and their interaction with biological systems; the development of new medical devices, such as implantable systems; and new algorithms and methods for modeling the mechanical, physical, and biological properties of biomaterials. The book gathers the proceedings of the 3rd International Conference on Bio and Nanomaterials, held on September 29–October 3, 2019, on an MSC cruise ship navigating the Mediterranean Sea. It particularly highlights Horizon 2020 projects, covering topics such as novel synthetic strategies for nanomaterials, the implementation of bio- and smart materials for pharmacological and medical purposes, as well as environmental applications. Intended for a broad audience of academics and professionals, it offers a comprehensive and timely snapshot of the field of biomaterials. In addition to a set of innovative theories together with the necessary practical tools for their implementation, it also addresses the current challenges in the field, fostering new discussions and possible future collaborations between diverse groups.

Nanoparticle Drug Delivery Systems for Cancer Treatment

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Release : 2020-02-19
Genre : Medical
Kind : eBook
Book Rating : 416/5 ( reviews)

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Book Synopsis Nanoparticle Drug Delivery Systems for Cancer Treatment by : Hala Gali-Muhtasib

Download or read book Nanoparticle Drug Delivery Systems for Cancer Treatment written by Hala Gali-Muhtasib. This book was released on 2020-02-19. Available in PDF, EPUB and Kindle. Book excerpt: In recent years, nanoparticles—bionanomaterials with specific physicochemical properties—have gained a great deal of scientific interest owing to their unique structure. Nanoparticle-based drugs are now widely regarded as a safer, more precise, and more effective mode of cancer therapy, considering their ability to enhance drug bioavailability, improve site-specific drug delivery, and protect nontarget tissues from toxic therapeutic drugs. This book compiles and details cutting-edge research in nanomedicine from an interdisciplinary team of international cancer researchers who are currently revolutionizing drug delivery techniques through the development of nanomedicines and nanotheranostics. Edited by Hala Gali-Muhtasib and Racha Chouaib, two prominent cancer researchers, this book will appeal to anyone involved in nanotechnology, cancer therapy, or drug delivery research.

Bionanomaterials

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Release : 2021
Genre : Biomedical materials
Kind : eBook
Book Rating : 670/5 ( reviews)

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Book Synopsis Bionanomaterials by : Ravindra Pratap Singh

Download or read book Bionanomaterials written by Ravindra Pratap Singh. This book was released on 2021. Available in PDF, EPUB and Kindle. Book excerpt: This reference text brings together comprehensive reviews of the latest research in the field of bionanomaterials, with a focus on fundamentals and biomedical applications. Detailed coverage of the classification, properties and synthesis of bionanomaterials is provided to enhance readers' understanding. The book combines new ideas to uplift the advancement of bionanomaterials in biomedical research and provides a valuable reference for researchers and advanced students in the fields of biomaterials, bionanotechnology and bioengineering. The major applications covered include nanobiosensing, nanomedicine, diagnostics, therapeutics, tissue engineering and green bionanotechnology. The properties and applications of synthetic bionanomaterials and molecularly-imprinted polymer-based bionanomaterials are also included.

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