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Articles 1 - 30 of 54
Full-Text Articles in Biotechnology
Scb252 Fundamentals Of Biotechniques Laboratory Manual, Na Xu, Hanqi Ye
Scb252 Fundamentals Of Biotechniques Laboratory Manual, Na Xu, Hanqi Ye
Open Educational Resources
This laboratory manual for SCB252: Fundamentals of Biotechniques provides an integrated, hands-on introduction to core concepts and methods in modern biological research using Drosophila melanogaster as a model organism. The manual emphasizes laboratory safety, research integrity, and responsible conduct of research, alongside foundational experimental skills. Students are guided through key biological techniques including fly husbandry, genetic crosses, mutant analysis, microscopy, DNA extraction, polymerase chain reaction (PCR), gel electrophoresis, sequencing technologies, and bioinformatics tools such as BLAST and genome databases. Advanced modules introduce gene structure annotation, RNA-seq data analysis, and primer design, while fluorescence microscopy and protein analysis techniques further expand …
Hybridization And Introgression In Marine Invertebrates: Population Genomics Of Phymactis Papillosa And Asterias Sea Stars, Christopher J. Dookie
Hybridization And Introgression In Marine Invertebrates: Population Genomics Of Phymactis Papillosa And Asterias Sea Stars, Christopher J. Dookie
Dissertations and Theses
Hybridization and introgression are evolutionary significant processes in marine invertebrates (Sanford & Kelly,2011) yet genome-wide investigations of gene flow in these taxa remain limited relative to vertebrate systems (Marchi et al., 2021). This thesis presents genomic analyses of hybridization and introgression in two marine invertebrates occupying contrasting oceanographic settings and characterized by contrasting genomic datasets: restriction-site associated DNA sequencing (RADseq) SNP data for the eastern Pacific sea anemone Phymactis papillosa and whole genome sequencing (WGS) data for the North Atlantic sea stars Asterias rubens and Asterias forbesi. For each system, I applied coalescent-based species tree inference using CASTER (Zhang …
Dna Barcoding Complements Citizen Science Identifications In An Arthropod Survey At Governors Island, New York, Malky Gestetner
Dna Barcoding Complements Citizen Science Identifications In An Arthropod Survey At Governors Island, New York, Malky Gestetner
Dissertations and Theses
Arthropods are declining worldwide, threatened by habitat loss, climate change, and growing urbanization. Efforts to monitor arthropod biodiversity are crucial for conservation policies and for maintaining the ecosystem services provided by these animals in urban environments. Surveys of arthropods have been attempted in many New York neighborhoods, but no formal assessment has been conducted on Governors Island, which harbors 72-acres of parkland within a short boat ride away from Manhattan. This is a deficiency which this study helps to address. Following student-led collection efforts within four Governors Island sites, DNA barcoding was employed to complement specimen identification based on morphology …
Characterization Of Mannosidases (Man) In Tetrahymena Thermophila Using Bioinformatics Tools, Cynthia Wen
Characterization Of Mannosidases (Man) In Tetrahymena Thermophila Using Bioinformatics Tools, Cynthia Wen
Publications and Research
Mannosidases are a type of glycoside hydrolase (glycosidase) that facilitate the hydrolysis of glycosidic bonds in mannose-containing polysaccharides and glycans, including those found in glycoproteins. Their main role is to cleave specific linkages involving D-mannose residues, effectively trimming or degrading mannose-rich oligosaccharides. These enzymes are crucial in N-glycosylation pathways, which are essential for proper protein folding, glycoprotein maturation, and the regulation of carbohydrate metabolism in eukaryotic cells.
There are two main types of mannosidases: alpha-mannosidases and beta-mannosidases. In humans, several of these enzymes exist, including those found in the endoplasmic reticulum (alpha-mannosidase I), those in the Golgi apparatus (alpha-mannosidase II), …
Ai-Powered Multi-Omics Integration For Predictive Modeling Of Genotype-Environment-Phenotype Relationships, You Wu
Dissertations, Theses, and Capstone Projects
This dissertation presents a series of machine learning frameworks for modeling genotype–environment–phenotype relationships through integrative predictive modeling of multi-omics data. The work addresses three major axes of biological complexity: modeling biological information transmission cross-levels from genes to proteins to phenotypes, predicting molecular features cross-scale from cells to tissues to organisms, and translating phenotypes cross-species from model systems to humans. Each proposed method also tackles key machine learning (ML) challenges in the biomedical domain, including data scarcity, domain shift, out-of-distribution (OOD) generalization, and hierarchical modeling. Specifically, this dissertation introduces five novel deep learning algorithms: MultiDCP predicts drug-induced transcriptomic and viability responses …
Multimodal Imaging Of Protein-Based Biomaterials For Delivering Chemo-Agent Cargo For Glioblastoma Treatment In A Murine Model, Orin Mishkit
Multimodal Imaging Of Protein-Based Biomaterials For Delivering Chemo-Agent Cargo For Glioblastoma Treatment In A Murine Model, Orin Mishkit
Dissertations and Theses
Protein-based self-assembling biomaterials, known as Thermo-Responsive Assembled Proteins (TRAP), present meaningful potential as drug delivery carriers. These materials enable the controlled, slow release of poorly soluble chemotherapeutic agents, such as doxorubicin (Dox), while potentially reducing systemic off-target effects. In collaboration with multiple NYU labs, this study evaluated the efficacy of two TRAP variants—TRAP and F-TRAP—as drug delivery carriers in a xenograft mouse model of glioblastoma multiforme (GBM).
The primary objective was to compare the effectiveness of TRAP-loaded Dox (TRAP-DOX) to free Dox in achieving tumor extravasation and accumulation, facilitating sustained drug release. We hypothesized that the leaky vasculature of GBM …
Explorations Of Dna-Single-Walled Carbon Nanotube Interactions To Develop Multiplexed Molecularly Specific Biosensors For Inflammation, Amelia K. Ryan
Explorations Of Dna-Single-Walled Carbon Nanotube Interactions To Develop Multiplexed Molecularly Specific Biosensors For Inflammation, Amelia K. Ryan
Dissertations and Theses
Inflammatory cytokines such as interleukin-6 (IL-6) and interleukin-12 (IL-12) are central regulators of immune signaling and key biomarkers of disease, yet existing assays for their detection remain slow, invasive, and lack multiplexing ability. This dissertation advances the development of single-walled carbon nanotube (SWCNT) optical nanosensors capable of real-time, multiplexed, and molecularly specific cytokine detection through innovative use of single-stranded DNA (ssDNA) interfaces.
First, an IL-6-specific DNA aptamer was employed as both a dispersing agent and recognition probe for SWCNT fluorescence sensing. Sequence modifications, including anchor domains, truncations, and thermally induced refolding, were systematically tested to optimize sensitivity and selectivity. The …
Assembly Of Ppsu-Oligomers, Mariam Nesterov
Assembly Of Ppsu-Oligomers, Mariam Nesterov
Student Theses and Dissertations
The development of nanostructures for delivering multiple proteins to targeted antibodies has become a promising avenue in biotechnology, driven by advancements in synthetic polymers like poly(propylene sulfone), PPSU. However, the PPSU polymer faces a major limitation - its high insolubility. To address this challenge, this study investigates whether PPSU oligomers can enhance both the solubility and stability of lysozyme, a model protein that is cost-effective and widely accessible. Using dimer, trimer, tetramer, and hexamer configurations, we analyzed the interactions between PPSU oligomer and lysozyme under varying conditions. Our results show that the dimer and trimer are water soluble (no aggregate …
Developing Coexpression Systems To Introduce Hydroxyproline Into Protein Engineered Collagen Peptides Utilizing Hydroxylase From Acanthamoeba Polyphaga Mimivirus, Jennifer Soldatich
Developing Coexpression Systems To Introduce Hydroxyproline Into Protein Engineered Collagen Peptides Utilizing Hydroxylase From Acanthamoeba Polyphaga Mimivirus, Jennifer Soldatich
Theses and Dissertations
A major challenge of developing collagen mimetic peptides (CMPs) by bacterial expression is to include hydroxyproline for biomedical applications. Coexpression of Prolyl-4-hydroxylase from A.mimivirus with CMPs was investigated. Additionally, four expression designs were created for potential applications in mammalian cells to utilize their natural ability of proline-hydroxylation by post-translational modification.
Development Of Collagen Mimetic Mini-Fibrils With Tunable Collagenase Susceptibility, Jui Chaugule
Development Of Collagen Mimetic Mini-Fibrils With Tunable Collagenase Susceptibility, Jui Chaugule
Dissertations, Theses, and Capstone Projects
Collagen fibrils are the primary molecular scaffold of all connective tissues and provide the essential support for cell migration and differentiation. Collagen fibrils represent one of the most complex molecular hierarchies: three polypeptide chains in Gly-Xaa-Yaa repeating amino acid sequences, first form the rod-shaped collagen triple helix. These triple helices further self-assemble laterally in a specific manner to form fibrils having the characteristic 67 nm axially repeating structure known as the D-period. Enzymatic digestion of collagen fibrils by matrix metalloproteinases (MMPs) is critical for several physiological processes and is of particular consequence during wound healing. Many of the mechanisms of …
Mechanistic And Engineering Studies Of Lov Photoreceptors In Yeast, Matthew M. Cleere
Mechanistic And Engineering Studies Of Lov Photoreceptors In Yeast, Matthew M. Cleere
Dissertations, Theses, and Capstone Projects
A variety of cellular biosensors have evolved which can translate electromagnetic radiation from the environment into biological functions. Light-Oxygen-Voltage (LOV) domains in particular, are a group of photoreceptors that respond to blue wavelengths of light and can become a cellular photoswitch by converting this stimulus through their attached effector domains. For instance, the Helix-Turn-Helix (HTH) DNA-binding activity of the bacterial transcription factor EL222 and the Regulator of G-protein Signaling (RGS) in the fungal membrane associating protein BcLOV4 are both induced by blue-light sensing LOV domains. While previous work has provided the field with a structural characterization of LOV proteins in …
Engineered Plga Nanofibers For Drug Delivery, Andrew Mancuso
Engineered Plga Nanofibers For Drug Delivery, Andrew Mancuso
Dissertations, Theses, and Capstone Projects
Poly-lactic-co-glycolic acid (PLGA) polymers are rapidly gaining momentum as a platform for next-generation drug delivery systems due to their ease and low cost of synthesis, favorable biocompatibility and biodegradability, and lack of toxicity. In particular, the application of drug-loaded PLGA nanofibers directly to a target tissue may represent a promising alternative to traditional routes of drug administration (e.g., oral, injectable) as they offer the potential to greatly improve bioavailability, increase efficacy, and reduce off-target toxicity. Furthermore, the use of such a system may potentially allow for greater flexibility in clinical drug development, by enabling the use of compounds which have …
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 …
Effects Of The Otx2ecr2 Enhancer & Prox1 Overexpression In Murine Retina Development, Erick J. Subillaga
Effects Of The Otx2ecr2 Enhancer & Prox1 Overexpression In Murine Retina Development, Erick J. Subillaga
Dissertations and Theses
There is a large subset of retinal progenitor cells that upregulate the OTX2 gene in the developing retina of the mouse. OTX2 is a homeobox transcription factor important for the development of photoreceptors and bipolar cells. If OTX2 is knocked out, photoreceptors and bipolar cells fail to differentiate. In order for OTX2 to be activated in certain retinal populations, it requires the activity of an enhancer called OTX2ECR2. Past studies demonstrated that retinal progenitor cells that had activity of OTX2ECR2 turned into horizontal cells, which require OTX2 for cell genesis and survival, and photoreceptors which require OTX2 for cell …
Deep Learning Prediction Of Chemical-Induced Dose-Dependent And Context-Specific Multiplex Phenotype Responses And Its Application To Personalized Alzheimer’S Disease Drug Repurposing, You Wu, Qiao Liu, Yue Qiu, Lei Xie
Deep Learning Prediction Of Chemical-Induced Dose-Dependent And Context-Specific Multiplex Phenotype Responses And Its Application To Personalized Alzheimer’S Disease Drug Repurposing, You Wu, Qiao Liu, Yue Qiu, Lei Xie
Publications and Research
Predictive modeling of drug-induced gene expressions is a powerful tool for phenotype-based compound screening and drug repurposing. State-of-the-art machine learning methods use a small number of fixed cell lines as a surrogate for predicting actual expressions in a new cell type or tissue, although it is well known that drug responses depend on a cellular context. Thus, the existing approach has limitations when applied to personalized medicine, especially for many understudied diseases whose molecular profiles are dramatically different from those characterized in the training data. Besides the gene expression, dose-depen- dent cell viability is another important phenotype readout and is …
Development Of Optical Nanomaterial For Enhanced Cerenkov Imaging, Qize Zhang
Development Of Optical Nanomaterial For Enhanced Cerenkov Imaging, Qize Zhang
Dissertations, Theses, and Capstone Projects
Cancer is a significant public health problem worldwide and is the second leading cause of death in the United States. Imaging has increasingly been used over the last two decades to improve the diagnosis and guidance of tumor tissue removal surgery. Among the most widely used techniques for in vivo imaging are planar and tomographic fluorescence imaging and bioluminescence imaging. Despite their utility, these techniques are primarily restricted to preclinical use. Factors that have prevented translation from the bench to the bedside include depth-penetration considerations, regulatory issues, and toxicity. A recent development in nuclear imaging has been the ability to …
Reproducibility Of Individual Dna Deposits Detected Through Cellular Fluorescence, Natalee Small-Davidson
Reproducibility Of Individual Dna Deposits Detected Through Cellular Fluorescence, Natalee Small-Davidson
Student Theses
Contact traces are an important part of DNA casework, but the probative value of any identified associations depends on the possibility of passive transfer. There is known individual variation in DNA left behind during contact, this DNA shedding propensity has an effect on whose DNA is detected. This study evaluated this variability using a cell staining approach. Volunteers were asked to deposit a fingerprint on a clean glass slide, then wash their hands and deposit a second fingerprint after a 30-minute wait without touching anything. Three sets of samples were collected over three consecutive weeks. Fingerprints were stained with a …
Tools And Strategies For The Patterning Of Bioactive Molecules And Macromolecules, Daniel J. Valles
Tools And Strategies For The Patterning Of Bioactive Molecules And Macromolecules, Daniel J. Valles
Dissertations, Theses, and Capstone Projects
Hypersurface Photolithography (HP) is a printing method for fabricating structures and patterns composed of soft materials bound to solid surfaces and with ~1 micrometer resolution in the x, y, and z dimensions. This platform leverages benign, low intensity light to perform photochemical surface reactions with spatial and temporal control of irradiation, and, as a result, is particularly useful for patterning delicate organic and biological material. In particular, surface- initiated controlled radical polymerizations can be leveraged to create arbitrary polymer and block- copolymer brush patterns. Chapter 1 will review the advances in instrumentation architectures from our group that have made these …
Water-Responsive, Peptide-Based Crystals, Roxana Piotrowska
Water-Responsive, Peptide-Based Crystals, Roxana Piotrowska
Dissertations, Theses, and Capstone Projects
Water-responsive (WR) materials that exert significant forces in response to changing hydration levels are receiving growing interest due to their potential applications, including use as actuators for energy harvesting devices, artificial muscles, and soft robotics. Reported examples include biological and synthetic materials with abilities to efficiently convert the chemical potential of water into mechanical actuations. However, these systems are typically complex, and consequently, their WR mechanisms are not well-understood thus preventing rational design and optimization. This thesis demonstrates the design and development of WR peptide crystals that mimic and enhance understanding of natural WR systems. The peptide crystals, with intrinsic …
Molecular And Genetic Studies On A Sipd/Ipad-Related Virulence Spike Protein From Immune-Suppressive Particles Of A Drosophila Parasitoid, Carlo Miguel A. Sevilla
Molecular And Genetic Studies On A Sipd/Ipad-Related Virulence Spike Protein From Immune-Suppressive Particles Of A Drosophila Parasitoid, Carlo Miguel A. Sevilla
Dissertations and Theses
Parasitoid wasps are effective biological control agents that have evolved intricate host immune suppression strategies to overcome host immune defenses. The most important anti-parasite defense mechanism is encapsulation, where the host’s blood cells surround the wasp egg. In the Drosophila/Leptopilina host-parasitoid system, extracellular vesicles (EVs) are oviposited along with the wasp egg. The EVs possess spikes and contain hundreds of proteins, some of which enable wasp eggs to escape encapsulation by changing the morphology and function of hemocytes, or killing them. Previous studies have identified an abundant surface/spike protein (SSp40) from Leptopilina heterotoma EVs. While p40, a predicted …
Designed And Biologically Active Protein Lattices, Shih-Ting Wang, Brian Minevich, Jianfang Liu, Honghu Zhang, Dmytro Nykypanchuk, James Byrnes, Wu Liu, Lev Bershadsky, Qun Liu, Tong Wang, Gang Ren, Oleg Gang
Designed And Biologically Active Protein Lattices, Shih-Ting Wang, Brian Minevich, Jianfang Liu, Honghu Zhang, Dmytro Nykypanchuk, James Byrnes, Wu Liu, Lev Bershadsky, Qun Liu, Tong Wang, Gang Ren, Oleg Gang
Advanced Science Research Center
Versatile methods to organize proteins in space are required to enable complex biomaterials, engineered biomolecular scaffolds, cell-free biology, and hybrid nanoscale systems. Here, we demonstrate how the tailored encapsulation of proteins in DNA-based voxels can be combined with programmable assembly that directs these voxels into biologically functional protein arrays with prescribed and ordered two-dimensional (2D) and three-dimensional (3D) organizations. We apply the presented concept to ferritin, an iron storage protein, and its iron-free analog, apoferritin, in order to form single-layers, double-layers, as well as several types of 3D protein lattices. Our study demonstrates that internal voxel design and intervoxel encoding …
Bioscience: How One Industry Won The Pandemic And Will Change Us All, Sonya Swink
Bioscience: How One Industry Won The Pandemic And Will Change Us All, Sonya Swink
Capstones
A video and print capstone about the next great generation of biological sciences as a private industry since 2020. It encompasses the pandemic as the boost the industry needed, discussion of science’s bad reputation and the potential benefits, especially for new workspaces and real estate investors. Colorado is a focus as a burgeoning market. The news value of this story as a primer is how this will be both a beneficial industry and one that must be held to account if it becomes too monopolistic. Comparisons are from the viewpoint that bioscience is like the next Silicon Valley, but statements …
Expression Analyses Of Hippocampal And Cortical Proteins In A Rat Model For Alzheimer’S Disease, Rangon Islam
Expression Analyses Of Hippocampal And Cortical Proteins In A Rat Model For Alzheimer’S Disease, Rangon Islam
Theses and Dissertations
Currently, Alzheimer’s disease (AD) has no cure. Using a rat AD model, we identified aberrantly expressed proteins during pre-pathology as potential biomarkers. The expression of certain biomarkers was reversed by diazoxide, a repurposed hypertension drug. These results suggest that drug repurposing at an early stage of AD has therapeutic potential.
Hur Ubiquitination By Brca1/Bard1 And Its Role In Controlling Gene Expression During Dna Damage Response, Gamage M. Aruggoda
Hur Ubiquitination By Brca1/Bard1 And Its Role In Controlling Gene Expression During Dna Damage Response, Gamage M. Aruggoda
Dissertations, Theses, and Capstone Projects
Despite our understanding of the biochemistry of the BRCA1/BARD1 E3 ligase, we know very little of the mechanism by which its cellular substrates, how they are chosen, how its E3 Ub ligase activity is regulated, which are the cofactors involved in this regulation, and how the substrates are modified during DDR. In this dissertation, I further evaluate BRCA1/BARD1-mediated E3 ligase activity and how CstF-50 and p97 regulate this reaction working as cofactors. My data show that BRCA1/BARD1 is an E3 ligase that ubiquitinates the RNA binding protein Human antigen R(HuR).
HuR is abundant in the nucleus and is transported to …
Feeding The Future Meat Doesn’T Come Cheap, Lukas C. Southard
Feeding The Future Meat Doesn’T Come Cheap, Lukas C. Southard
Capstones
Cultured – or as it is referred to by companies innovating the technology clean – meat is expected to be the next innovation to change the way the world gets its animal protein. Meat from animal cells grown in a lab seems like science fiction but it is around the corner from hitting your supermarket shelves. The technology has been developed but how these companies intend on scaling up their production to meet retail demands remains a mystery. So far companies have relied on seed and early stage investment from venture capital companies and private sources to fund research. Predictions …
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 …
Eugenics In The 21st Century, Jessica Linn Chin
Eugenics In The 21st Century, Jessica Linn Chin
Dissertations, Theses, and Capstone Projects
Eugenics is the science of enhancing the human population through the management of breeding and hereditary traits. This thesis explores the history of eugenics and shows how eugenic practices continue in the 21st century with advancements in technology and positive eugenic goals that can result in adverse effects on the human body and society. When Sir Francis Galton coined the term eugenics in 1883, he intended to improve British society with the use of positive eugenics. Galton used positive eugenics to encourage people with good mental and physical qualities to produce more children. He avoided negative eugenics, which involved …
Renal Specific Rnai Delivery By Fibrillar Nanoparticle Excipients, Sam Wong
Renal Specific Rnai Delivery By Fibrillar Nanoparticle Excipients, Sam Wong
Dissertations, Theses, and Capstone Projects
RNA interference (RNAi) is a powerful tool to manipulate the phenotype of an organism by silencing the expression of specific genes and is viewed as a highly promising platform for treating undruggable targets and disorders where small molecule drugs and antibodies would fail. However, development of RNAi based therapies has faced major barriers including cellular and tissue-specific uptake of the Small Interfering RNA (siRNA). Utilizing different nanoparticles as RNAi excipients, cellular uptake and gene silencing potency can be greatly improved. The research in Dr. McDevitt groups has fibrillar carbon nanotubes (CNT) as carriers for siRNA for gene silencing in vitro …
Design And Application Of Matrix Metalloproteinase-9-Responsive Peptide Nanostructures, Jiye Son
Design And Application Of Matrix Metalloproteinase-9-Responsive Peptide Nanostructures, Jiye Son
Dissertations, Theses, and Capstone Projects
Matrix metalloproteinase (MMP)-responsive materials have been investigated since the late 1990’s as scaffolds for tissue engineering and since then, have evolved into sophisticated nanomaterials for cancer-targeting therapy. In this thesis titled, “Design and Application of Matrix Metalloproteinase-9-Responsive Peptide Nanostructures,” we aim to answer the following key questions: can MMP-responsive nanomaterials improve the efficacy of anti-cancer treatments? How can we achieve specificity towards MMPs using nanomaterials? Finally, what are the advantages in using peptides as building blocks to create MMP-responsive nanostructures? Each chapter in the thesis will address one or more of the key questions and draw conclusions at the end.
Interfacial Stress In The Development Of Biologics: Fundamental Understanding, Current Practice, And Future Perspective, Jinjiang Li, Mary E. Krause, Xiaodong Cheng, Yuan Cheng, Weiguo Dai, John J. Hill, Min Huang, Susan Jordan, Daniel Lacasse, Linda Narhi, Evgenyi Shalaev, Ian C. Shieh, Justin C. Thomas, Raymond Tu, Songyan Zheng, Lily Zhu
Interfacial Stress In The Development Of Biologics: Fundamental Understanding, Current Practice, And Future Perspective, Jinjiang Li, Mary E. Krause, Xiaodong Cheng, Yuan Cheng, Weiguo Dai, John J. Hill, Min Huang, Susan Jordan, Daniel Lacasse, Linda Narhi, Evgenyi Shalaev, Ian C. Shieh, Justin C. Thomas, Raymond Tu, Songyan Zheng, Lily Zhu
Publications and Research
Biologic products encounter various types of interfacial stress during development, manufacturing, and clinical administration. When proteins come in contact with vapor–liquid, solid–liquid, and liquid–liquid surfaces, these interfaces can significantly impact the protein drug product quality attributes, including formation of visible particles, subvisible particles, or soluble aggregates, or changes in target protein concentration due to adsorption of the molecule to various interfaces. Protein aggregation at interfaces is often accompanied by changes in conformation, as proteins modify their higher order structure in response to interfacial stresses such as hydrophobicity, charge, and mechanical stress. Formation of aggregates may elicit immunogenicity concerns; therefore, it …