Studies on Collagen Stability and Mechanical Properties in Tissue Engineering Applications

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ISBN 13 :
Total Pages : 0 pages
Book Rating : 4.:/5 (141 download)

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Book Synopsis Studies on Collagen Stability and Mechanical Properties in Tissue Engineering Applications by : Selene Pellizzoni

Download or read book Studies on Collagen Stability and Mechanical Properties in Tissue Engineering Applications written by Selene Pellizzoni and published by . This book was released on 2014 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt: Objective: This project aims to measure the stiffness of collagen based gel matrix. This work provides mechanical study of 0.3 % collagen hydrogel monolayer properties under compression. In order to understand how the collagen gel properties change in relation with time and cell concentrations, the mechanical analysis was performed with different cell densities and time rates. They have been analysed before the culture (to report the stiffness characteristics of non-altered collagen gel) and during the culture, with the influence of the cells. Background: Cells are profoundly affected by the physical properties of the environment, including the stiffness of the matrix. The stiffness of cell adhesion substrates is increasingly appreciated as an important mediator of cell behaviour; it can regulate cell signalling broadly, with effects on growth, survival, differentiation and motility. The stiffness of ECM-based collagen gels can be manipulated, and so varied to be suitable for growing cells derived from soft tissues. However, the cells are capable of remodelling the gel, altering its stiffness during culture; this could damage the final culture characteristics, leading to altered cell properties. Methodology: The 0.3 % collagen hydrogel was prepared from collagen type I, obtained from rat tail tendons; it was then placed in the wells of a standard 24-well plate. The collagen gel monolayer was seeded with human hepatoma cells (HepG2) at different densities: 105, 5*104, 2.5*104, 104 and 0.5*104. Before testing the wells, the viability of the cells was ensured with the MTT assay. The normal sample was represented by a single well of collagen hydrogel which was not seeded with cells, but left for the same period of the culture filled with medium in the same incubator as the samples. The confined compression strength was measured through BOSE ElectroForce machine together with the WinTest software. The data acquired were analysed with Matlab software in order to evaluate the Aggregate Modulus (HA), Hydraulic Permeability (k), Coefficient of Permeability and Correlation Coefficient (r). Results and Conclusions: The data showed that the Aggregate Modulus has a general trend of increasing with culture time, except for the collagen gel without cells; the differences between culture durations are statistically significant just for the cases of 0.5*104 and 105 cells per cm2 cultures. Cells grow and increase in number during culture time, indeed cells in gels cultured for one day present a smaller cell concentration than the ones cultured for 5 days. The increase in number can contribute to increase in the Aggregate Modulus, therefore in the stiffness, since, as showed in the literature, the stiffness tends to increase with cells because they add resistance to the gel (Saddiq et al., 2008). It is generally true that cells act to weaken the collagen gel, but the rate in which they make it soft (by causing the secretion of degradative enzymes and by exerting mechanical forces) could be probably lower than the rate of cells growth, in the specific case of HepG2 cells. For this reason, the cell growth effect outweighs the effect of weakness. Seeding cells on collagen gels will usually lead to one of two possible effects on the Aggregate Modulus: the Aggregate Modulus can reduce which will be due to cells weakening the gels or the Aggregate Modulus can increase which can be due to physical presence of cells contributing to higher stiffness measurements. However, for HepG2 cell line, the increase in stiffness seems to be the predominant action. On the other hand, regarding the changes in stiffness during the different cell densities, the data acquired do not show a trend which can be interpreted with logical deductions.

Collagen

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Publisher : Springer Science & Business Media
ISBN 13 : 0387739068
Total Pages : 516 pages
Book Rating : 4.3/5 (877 download)

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Book Synopsis Collagen by : Peter Fratzl

Download or read book Collagen written by Peter Fratzl and published by Springer Science & Business Media. This book was released on 2008-05-10 with total page 516 pages. Available in PDF, EPUB and Kindle. Book excerpt: Not only does this book provide a comprehensive review of current research advances in collagen structure and mechanics, it also explores this biological macromolecule’s many applications in biomaterials and tissue engineering. Readers gain an understanding of the structure and mechanical behavior of type I collagen and collagen-based tissues in vertebrates across all length scales, from the molecular (nano) to the organ (macro) level.

Orthopedic Biomaterials

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Publisher : Springer
ISBN 13 : 3319736647
Total Pages : 614 pages
Book Rating : 4.3/5 (197 download)

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Book Synopsis Orthopedic Biomaterials by : Bingyun Li

Download or read book Orthopedic Biomaterials written by Bingyun Li and published by Springer. This book was released on 2018-03-22 with total page 614 pages. Available in PDF, EPUB and Kindle. Book excerpt: This book covers the latest advances, applications, and challenges in orthopedic biomaterials. Topics covered include materials for orthopedic applications, including nanomaterials, biomimetic materials, calcium phosphates, polymers, biodegradable metals, bone grafts/implants, and biomaterial-mediated drug delivery. Absorbable orthopedic biomaterials and challenges related to orthopedic biomaterials are covered in detail. This is an ideal book for graduate and undergraduate students, researchers, and professionals working with orthopedic biomaterials and tissue engineering. This book also: Describes biodegradable metals for orthopedic applications, such as Zn-based medical implants Thoroughly covers various materials for orthopedic applications, including absorbable orthopedic biomaterials with a focus on polymers Details the state-of-the-art research on orthopedic nanomaterials and nanotechnology

Manipulating the Mechanical Strength and Biological Stability of Collagen-based Scaffolds for Tissue Engineering

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ISBN 13 :
Total Pages : 0 pages
Book Rating : 4.:/5 (141 download)

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Book Synopsis Manipulating the Mechanical Strength and Biological Stability of Collagen-based Scaffolds for Tissue Engineering by : Grahame Busby

Download or read book Manipulating the Mechanical Strength and Biological Stability of Collagen-based Scaffolds for Tissue Engineering written by Grahame Busby and published by . This book was released on 2013 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt: Collagen, the most abundant structural protein in the body, has become the most widely used matrix for tissue engineering. Implanted collagen undergoes a constant process of remodelling, and it is the balance of collagen synthesis and its gradual breakdown by the cells of the body that will determine its strength and effectiveness as a scaffold. It has been shown that collagen for implantation is degraded more quickly than cells are able to synthesise new collagen, resulting in a rapid reduction in matrix strength. The collagen is broken down by tissue/cell derived collagenases, which are members of the matrix metalloproteinase (MMP) family of enzymes. Angiotensin converting enzyme (ACE) inhibitors have long been used successfully to treat hypertension. More recently, some ACE inhibitors have also been shown to inhibit certain MMPs. The purpose of this thesis was to investigate the potential of the ACE inhibitors captopril and enalapril to inhibit enzymatic collagen degradation, and ultimately slow down the rate at which collagen is degraded by cells of the body. Both captopril and enalapril were shown to inhibit enzymatic collagen degradation in a dose-dependent manner, at concentrations that are non-toxic to cells in culture. To determine whether the ACE inhibitors were able to affect the mechanical properties of fibroblast-populated collagen lattices (FPCLs), a technique was developed for the characterisation of their time-dependent properties. The technique, which facilitates estimation of the stiffness and hydraulic permeability of hydrogel samples via confined compression and biphasic theory, may also be suitable for characterising other inherently weak hydrated tissues, and therefore may be of great value to anyone interested in doing so. Having demonstrated that the technique was sensitive to small variations in collagen content, it was used to compare the mechanical properties of FPCLs, where it was shown that FPCLs treated with captopril or enalapril were stiffer than control FPCLs after 6 days in culture. It seems likely that the retention of matrix stiffness is attributable to a reduction in the rate of substrate degradation by collagenolytic enzymes, which in turn can be attributed to their inhibition by the ACE inhibitors, though the mechanism of inhibition is still not fully understood. The potential to manipulate the strength and stability of collagen implants by treating them with ACE inhibitors has major implications throughout the fields of tissue engineering, regenerative medicine and cosmetic surgery.

Bone Tissue Engineering

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Publisher : CRC Press
ISBN 13 : 1135501912
Total Pages : 500 pages
Book Rating : 4.1/5 (355 download)

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Book Synopsis Bone Tissue Engineering by : Jeffrey O. Hollinger

Download or read book Bone Tissue Engineering written by Jeffrey O. Hollinger and published by CRC Press. This book was released on 2004-10-14 with total page 500 pages. Available in PDF, EPUB and Kindle. Book excerpt: Focusing on bone biology, Bone Tissue Engineering integrates basic sciences with tissue engineering. It includes contributions from world-renowned researchers and clinicians who discuss key topics such as different models and approaches to bone tissue engineering, as well as exciting clinical applications for patients. Divided into four sections, t

Tissue Engineering and Regenerative Medicine

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Publisher : Springer
ISBN 13 : 303019857X
Total Pages : 225 pages
Book Rating : 4.0/5 (31 download)

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Book Synopsis Tissue Engineering and Regenerative Medicine by : Phuc Van Pham

Download or read book Tissue Engineering and Regenerative Medicine written by Phuc Van Pham and published by Springer. This book was released on 2019-08-14 with total page 225 pages. Available in PDF, EPUB and Kindle. Book excerpt: This new series, based on a bi-annual conference and its topics, represents a major contribution to the emerging science of cancer research and regenerative medicine. Each volume brings together some of the most pre-eminent scientists working on cancer biology, cancer treatment, cancer diagnosis, cancer prevention and regenerative medicine to share information on currently ongoing work which will help shape future therapies. These volumes are invaluable resources not only for already active researchers or clinicians but also for those entering these fields, plus those in industry. Tissue Engineering and Regenerative Medicine is a proceedings volume which reflects papers presented at the 3rd bi-annual Innovations in Regenerative Medicine and Cancer Research conference; taken with its companion volume Stem Cells: Biology and Engineering it provides a complete overview of the papers from that meeting of international experts.

Studies on Ionic Liquids Effect of Collagen Matrices

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Publisher : Independent Author
ISBN 13 : 9781805307563
Total Pages : 0 pages
Book Rating : 4.3/5 (75 download)

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Book Synopsis Studies on Ionic Liquids Effect of Collagen Matrices by : V. Tarannu Aafiya S

Download or read book Studies on Ionic Liquids Effect of Collagen Matrices written by V. Tarannu Aafiya S and published by Independent Author. This book was released on 2023-06-15 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt: Ionic liquids have emerged as an innovative material for various applications due to their unique physicochemical properties. Collagen matrices have been used as a scaffold in tissue engineering and regenerative medicine due to their excellent biocompatibility and biodegradability. The combination of these two materials has attracted much attention in recent years. The studies on ionic liquids effect on collagen matrices have been carried out to investigate the potential applications of these materials. The effects of ionic liquids on collagen matrices have been studied in terms of their chemical modification, physical properties, mechanical properties, rheological properties, swelling behavior, gelation, and crosslinking. The ionic strength of the solution has been shown to play a crucial role in the properties of the collagen matrices. Cytotoxicity studies have been performed to evaluate the biocompatibility of these materials. In vitro and in vivo studies have been carried out to investigate the cell culture, cell proliferation, cell adhesion, cell differentiation, and extracellular matrix formation of the collagen-ionic liquid composite materials. The potential applications of these materials include wound healing, drug delivery, tissue engineering, and regenerative medicine. Electrospinning has been used to produce electrospun fibers and nanofiber scaffolds of collagen-ionic liquid composites for biomedical applications. The surface modification of these materials has also been studied to improve their properties for various biomedical applications. The studies on ionic liquids effect on collagen matrices have the potential to provide new insights into the development of novel materials for various biomedical applications. The chemical synthesis, analytical methods, and characterization of these materials are crucial to understanding the molecular interactions and interfacial phenomena that occur in these systems. The interdisciplinary field of polymer science, polymer chemistry, biophysics, and biomechanics is essential in advancing the development of collagen-ionic liquid composites for various biomedical applications.

Cellulose-Based Superabsorbent Hydrogels

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Publisher : Springer
ISBN 13 : 9783319778297
Total Pages : 0 pages
Book Rating : 4.7/5 (782 download)

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Book Synopsis Cellulose-Based Superabsorbent Hydrogels by : Md. Ibrahim H. Mondal

Download or read book Cellulose-Based Superabsorbent Hydrogels written by Md. Ibrahim H. Mondal and published by Springer. This book was released on 2019-02-22 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt: With the prospect of revolutionizing specific technologies, this book highlights the most exciting and impactful current research in the fields of cellulose-based superabsorbent hydrogels with their smart applications. The book assembles the newest synthetic routes, characterization methods, and applications in the emergent area. Leading experts in the field have contributed chapters representative of their most recent research results, shedding light on the enormous potential of this field and thoroughly presenting cellulose-based hydrogel functioning materials. The book is intended for the polymer chemists, academic and industrial scientists and engineers, pharmaceutical and biomedical scientists and agricultural engineers engaged in research and development on absorbency, absorbent products and superabsorbent hydrogels. It can also be supportive for undergraduate and graduate students.

Cutting-Edge Enabling Technologies for Regenerative Medicine

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Publisher : Springer
ISBN 13 : 9811309507
Total Pages : 490 pages
Book Rating : 4.8/5 (113 download)

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Book Synopsis Cutting-Edge Enabling Technologies for Regenerative Medicine by : Heung Jae Chun

Download or read book Cutting-Edge Enabling Technologies for Regenerative Medicine written by Heung Jae Chun and published by Springer. This book was released on 2018-10-24 with total page 490 pages. Available in PDF, EPUB and Kindle. Book excerpt: This book explores in depth the latest enabling technologies for regenerative medicine. The opening section examines advances in 3D bioprinting and the fabrication of electrospun and electrosprayed scaffolds. The potential applications of intelligent nanocomposites are then considered, covering, for example, graphene-based nanocomposites, intrinsically conductive polymer nanocomposites, and smart diagnostic contact lens systems. The third section is devoted to various drug delivery systems and strategies for regenerative medicine. Finally, a wide range of future enabling technologies are discussed. Examples include temperature-responsive cell culture surfaces, nanopatterned scaffolds for neural tissue engineering, and process system engineering methodologies for application in tissue development. This is one of two books to be based on contributions from leading experts that were delivered at the 2018 Asia University Symposium on Biomedical Engineering in Seoul, Korea – the companion book examines in depth novel biomaterials for regenerative medicine.

Engineering 3D Collagen Tunable Platforms for Mechanobiology Studies

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Publisher :
ISBN 13 :
Total Pages : 102 pages
Book Rating : 4.:/5 (14 download)

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Book Synopsis Engineering 3D Collagen Tunable Platforms for Mechanobiology Studies by : Yifan Li

Download or read book Engineering 3D Collagen Tunable Platforms for Mechanobiology Studies written by Yifan Li and published by . This book was released on 2017 with total page 102 pages. Available in PDF, EPUB and Kindle. Book excerpt: Construction of scaffolds is crucial for tissue engineering applications. Three dimensional (3D) scaffolds provide extracellular matrix analogs that function as suitable platforms for cell infiltration and physical supports to guide their differentiation and proliferation into the targeted functional tissue or organ. An ideal scaffold used for tissue engineering should possess excellent biocompatibility, microstructure and porosity adapted to cell invasion, controllable biodegradability, and suitable mechanical properties. Collagen is among the most promising biological materials for scaffold fabrication. It has numerous applications in tissue engineering such as nerve, bone, cartilage, tendon, ligament, blood vessel, and skin repair. In this study, we report the design, synthesis, and characterization of porous and bioactive type I collagen scaffolds via an ice-templating method, and we detail how mechanics, morphology, and protein contents of the scaffolds were tuned to make them suitable for mechanobiology studies. Scaffolds were generated by varying collagen concentration, freezing temperature, and mold material/shape. Their morphological and mechanical properties were assessed via Scanning Electron Microscopy, Hg Porosimetry, and Dynamic Mechanical Thermal Analysis. Our data indicate that the best control over scaffolds properties was achieved when using the Teflon rectangular molds and freezing temperatures of -10 Celcius while varying collagen concentration: Average pore size decreased from 214 microm to 35 microm and compressive modulus increased from 154 Pa to 1720 Pa when collagen concentration was increased from 0.5 wt.% to 1.25 wt.%. This trend tended to less pronounced when lower freezing temperatures were tested. Additionally, the scaffolds were coated with fibronectin (a protein from the extracellular matrix that promotes cell adhesion) to investigate the additional effect of molecular conformation on cell behavior. Collectively these data suggest that cell adhesion and proliferation can be coarsely controlled by scaffold morphology and mechanics and then finely tuned by protein conformation. Our research lays the groundwork for future investigation of the different methods to fabricate tunable collagen scaffolds and control the synergistic effects of collagen with other proteins present in the cellular/tissue micro-environment, which are crucial to govern cell-matrix interactions in mechanobiology studies.

Amorphous Solid Dispersions

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Publisher : Springer
ISBN 13 : 1493915983
Total Pages : 702 pages
Book Rating : 4.4/5 (939 download)

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Book Synopsis Amorphous Solid Dispersions by : Navnit Shah

Download or read book Amorphous Solid Dispersions written by Navnit Shah and published by Springer. This book was released on 2014-11-21 with total page 702 pages. Available in PDF, EPUB and Kindle. Book excerpt: This volume offers a comprehensive guide on the theory and practice of amorphous solid dispersions (ASD) for handling challenges associated with poorly soluble drugs. In twenty-three inclusive chapters, the book examines thermodynamics and kinetics of the amorphous state and amorphous solid dispersions, ASD technologies, excipients for stabilizing amorphous solid dispersions such as polymers, and ASD manufacturing technologies, including spray drying, hot melt extrusion, fluid bed layering and solvent-controlled micro-precipitation technology (MBP). Each technology is illustrated by specific case studies. In addition, dedicated sections cover analytical tools and technologies for characterization of amorphous solid dispersions, the prediction of long-term stability, and the development of suitable dissolution methods and regulatory aspects. The book also highlights future technologies on the horizon, such as supercritical fluid processing, mesoporous silica, KinetiSol®, and the use of non-salt-forming organic acids and amino acids for the stabilization of amorphous systems. Amorphous Solid Dispersions: Theory and Practice is a valuable reference to pharmaceutical scientists interested in developing bioavailable and therapeutically effective formulations of poorly soluble molecules in order to advance these technologies and develop better medicines for the future.

Mechanical Studies of Single Collagen Molecules Using Imaging and Force Spectroscopy

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Publisher :
ISBN 13 :
Total Pages : 97 pages
Book Rating : 4.:/5 (112 download)

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Book Synopsis Mechanical Studies of Single Collagen Molecules Using Imaging and Force Spectroscopy by : Naghmeh Rezaei

Download or read book Mechanical Studies of Single Collagen Molecules Using Imaging and Force Spectroscopy written by Naghmeh Rezaei and published by . This book was released on 2016 with total page 97 pages. Available in PDF, EPUB and Kindle. Book excerpt: Collagen is a key component of the extracellular matrix and is the most abundant protein in vertebrates. Collagen is found in almost every connective tissue of the body including skin, bone, tendon, cartilage, arteries and cornea, where it plays a crucial role in providing structural support. Collagen molecules self-assemble to form hierarchical structures, from single molecules to fibrils to fibers and tissues. Structural and mechanical changes at the molecular level may affect self-assembly of the molecules and the resulting tissue. Despite its significance, the mechanics of collagen and its flexibility at the molecular level remain contentious, and collagen has been variously described as a flexible polymer to a semi-rigid rod. In this thesis, I present my work developing and utilizing experimental and analytical tools to study the mechanical proprieties of molecular collagen. I carefully designed and controlled a wide variety of experimental conditions, such as different collagen types and sources, solution pH and salt concentrations, and analysed the results in search of potential reasons for inconsistency in reported results of collagen flexibility at the basic molecular level. Atomic force microscopy (AFM) imaging is used to study effect of environmental factors such as ionic strength and pH on molecular conformations and flexibility of single collagen molecules. In addition, molecular conformations of different types of collagen from different sources are compared using AFM imaging. I measure persistence length of collagen molecules, a measure of flexibility, arising due to the conformational sampling of collagen. My results link the bending energy of collagen molecules to how tightly the helix is wound. In order to analyse AFM images of collagen, I developed an image and statistical analysis algorithm, SmarTrace, optimized for my images of collagen. The program was validated using images of DNA with known persistence length, then applied to collagen molecules. Analysis of different types of collagen in two different solutions and type I collagen in solutions of different ionic strength and pH show that collagen's flexibility depends strongly on ionic strength and pH. In addition, it shows that different types of collagen show similar average conformational characteristics in a given solution environment. In addition, mechanical properties and force-response of single collagen and procollagen molecules are studied using optical tweezers. I discuss the challenges of stretching single collagen proteins, whose length is much less than the size of the microspheres used as manipulation handles, and show how instrumental design and biochemistry can be used to overcome these challenges. The result of this work is an improved understanding of the sensitivity of molecular flexibility, stability and response of collagen to environmental factors. This can shed light on identifying underlying mechanisms of collagen-related diseases as well as designing and producing improved engineered biomaterials with tunable properties.

Scaffolds in Tissue EngineeringMaterials, Technologies and Clinical Applications

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Publisher : BoD – Books on Demand
ISBN 13 : 9535136410
Total Pages : 334 pages
Book Rating : 4.5/5 (351 download)

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Book Synopsis Scaffolds in Tissue EngineeringMaterials, Technologies and Clinical Applications by : Francesco Baino

Download or read book Scaffolds in Tissue EngineeringMaterials, Technologies and Clinical Applications written by Francesco Baino and published by BoD – Books on Demand. This book was released on 2017-12-13 with total page 334 pages. Available in PDF, EPUB and Kindle. Book excerpt: Biomaterials are often designed to act as scaffolds, i.e., 3D porous templates that support and stimulate the growth of healthy tissue and then safely dissolve once they have performed their functions. This book provides a picture of the current state of the art in the field of scaffolds for tissue engineering, highlighting the potential associated to the latest scientific and technological advancements. The former part of the book focuses on the repair of "hard" tissues (primarily bone) by means of bioceramic/glass scaffolds, and the latter deals with the applications of polymeric scaffolds for regenerating "soft" tissues and structures including the peripheral nerve, heart, gastric mucosa and pancreas. Special emphasis is given to the challenges associated to scaffold manufacturing, biomimetic properties and cell-scaffold interactions.

Tissue Regeneration

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Publisher : BoD – Books on Demand
ISBN 13 : 1789232600
Total Pages : 207 pages
Book Rating : 4.7/5 (892 download)

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Book Synopsis Tissue Regeneration by : Hussein Abdelhay Essayed Kaoud

Download or read book Tissue Regeneration written by Hussein Abdelhay Essayed Kaoud and published by BoD – Books on Demand. This book was released on 2018-06-06 with total page 207 pages. Available in PDF, EPUB and Kindle. Book excerpt: Tissue regeneration is a vast subject, with many different important aspects to consider. Regenerative medicine is a new branch of medicine that tries to change the course of chronic diseases and, in many cases, regenerates the organ systems that fail due to age, disease, damage, or genetic defects. The main purpose of this book is to point out the interest of some important topics of tissue regeneration and the progress in this field as well as the variety of different surgical fields and operations. This book includes 7 sections and 11 chapters that provide an overview of the essentials in tissue regeneration science and their potential applications in surgery. The authors of each chapter have given consolidated information on ground realities and attempted to provide a comprehensive knowledge of tissue engineering and regeneration. This book will be useful to researchers and students of biological and biomedical sciences (medical and veterinarian researchers).

Collagen Biografts for Tunable Drug Delivery

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Publisher : Springer Nature
ISBN 13 : 3030638170
Total Pages : 116 pages
Book Rating : 4.0/5 (36 download)

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Book Synopsis Collagen Biografts for Tunable Drug Delivery by : Rucha Joshi

Download or read book Collagen Biografts for Tunable Drug Delivery written by Rucha Joshi and published by Springer Nature. This book was released on 2021-01-31 with total page 116 pages. Available in PDF, EPUB and Kindle. Book excerpt: This book reviews collagen-based biomaterials that have been applied broadly to tissue engineering and local drug delivery applications and lays out a landscape for developing a multifunctional biograft material from collagen polymers. The book also discusses current shortcomings in collagen based drug delivery opportunities, including poor mechanical properties, rapid proteolytic degradation, and cursory control over physical properties and molecular release profiles. Finally, a review of application of the collagen biograft materials for promoting neovascularization and tissue regeneration is presented, using examples of established in-vivo chicken egg chorioallantoic membrane (CAM) model. Use of heparin for affinity-based vascular endothelial growth factor (VEGF) retention in collagen constructs is also discussed for promoting neovascularization. Reviews state-of-the-art strategies for drug incorporation and retention in collagen​; Covers collagen based material applications for improving vascularization and tissue regeneration; Illustrates how to tailor collagen architecture for soft tissue engineering and controlled drug delivery.

Type I Collagen

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Publisher : Nova Science Publishers
ISBN 13 : 9781622576258
Total Pages : 0 pages
Book Rating : 4.5/5 (762 download)

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Book Synopsis Type I Collagen by : Maria Eduarda Henriques

Download or read book Type I Collagen written by Maria Eduarda Henriques and published by Nova Science Publishers. This book was released on 2013 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt: Type I collagen is a popular biomaterial for use in tissue engineering and regenerative medicine applications owing to its abundance in natural tissues and its natural functions within the body as a scaffold material with favourable cell-interactive properties. In this book, the authors present current research in the study of the biological functions, synthesis and medicinal applications of Type I collagen. Topics discussed include collagen type I as a candidate for in vivo delivery systems for cells, proteins, and drugs; degradation of type I collagen and the pathogenesis of infectious diseases; Type I collagen's synthesis, biological functions and medical applications during systemic inflammation; using collagen-based scaffolds in tissue engineering and repair; type I collagens from marine sources; and the role of extracellular matrix in the wound repair process.

Biomaterials for Tissue Engineering Applications

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Publisher : Springer Science & Business Media
ISBN 13 : 3709103851
Total Pages : 562 pages
Book Rating : 4.7/5 (91 download)

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Book Synopsis Biomaterials for Tissue Engineering Applications by : Jason A. Burdick

Download or read book Biomaterials for Tissue Engineering Applications written by Jason A. Burdick and published by Springer Science & Business Media. This book was released on 2010-12-07 with total page 562 pages. Available in PDF, EPUB and Kindle. Book excerpt: A concise overview of tissue engineering technologies and materials towards specific applications, both past and potential growth areas in this unique discipline is provided to the reader. The specific area of the biomaterial component used within the paradigm of tissue engineering is examined in detail. This is the first work to specifically covers topics of interest with regards to the biomaterial component. The book is divided into 2 sections: (i) general materials technology (e.g., fibrous tissue scaffolds) and (ii) applications in the engineering of specific tissues (e.g., materials for cartilage tissue engineering). Each chapter covers the fundamentals and reflects not only a review of the literature, but also addresses the future of the topic. The book is intended for an audience of researchers in both industry and academia that are interested in a concise overview regarding the biomaterials component of tissue engineering, a topic that is timely and only growing as a field.