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Mesenchymal Stem Cell in Veterinary Sciences

Mesenchymal Stem Cell in Veterinary Sciences
Author: Mudasir Bashir Gugjoo
Publisher: Springer Nature
Total Pages: 347
Release: 2020-11-09
Genre: Science
ISBN: 9811560374

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This book focuses on mesenchymal stem cells (MSCs) of animal origin, including their isolation, characterization, and clinical applications. After briefly discussing the historical development of the field of stem cell research, it describes the basic properties and nature of stem cells particularly in relation to MSCs. In turn, it reviews materials and methods used to isolate MSCs from various sources, culture expansion, characterization and long-term storage. It also explores the therapeutic efficacy, immunomodulation and anti-inflammatory, and differentiation properties of MSCs. Importantly, the book discusses the applications of genetic engineering to enhance the efficacy and potential of MSCs in regenerative medicine. The book largely addresses the potential applications of mesenchymal stem cells in therapies for important species of domesticated animals including sheep, goats, cattle, buffalo, cats, dogs and horses. Finally, the book presents an abridgement of challenges and future prospects of stem cell research and application in medicine, in general and veterinary sciences, in particular.


Isolation, Characterization, and in Vitro Proliferation of Canine Bone Marrow, Adipose Tissue, Muscle, and Periosteum-derived Mesenchymal Stem Cells

Isolation, Characterization, and in Vitro Proliferation of Canine Bone Marrow, Adipose Tissue, Muscle, and Periosteum-derived Mesenchymal Stem Cells
Author: Agatha H. Kisiel
Publisher:
Total Pages:
Release: 2012
Genre:
ISBN:

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Procedures: Characterization of MSCs was based on their plastic adherence and morphology, immunofluorescence of MSC-associated cell surface markers, and expression of pluripotency-associated transcription factors. Morphological and histochemical methods were used to evaluate differentiation of MSCs cultured in adipogenic, osteogenic, and chondrogenic media. Passage one MSCs, cultured in triplicate, were counted at 24, 48, 72, and 96 hours to determine tissue specific-MSC proliferative capacity. Mesenchymal stem cell yield/gram of tissue was calculated for confluent passage one MSCs.


Isolation of Canine Adipose-derived Mesenchymal Stem Cells from Falciform Tissue Obtained Via Laparoscopic Morcellation

Isolation of Canine Adipose-derived Mesenchymal Stem Cells from Falciform Tissue Obtained Via Laparoscopic Morcellation
Author: Christine DePompeo
Publisher:
Total Pages:
Release: 2019
Genre: Stem cells
ISBN:

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Objective: To evaluate feasibility of stem cell isolation from falciform fat harvested via laparoscopic morcellation. Study Design: Pilot study. Animals: 11 client-owned dogs. Methods: Falciform was harvested traditionally via laparotomy, and laparoscopically via tissue morcellation. Harvested tissue was processed to obtain a stromal vascular fraction (SVF) using a commercially available adipose tissue dissociation kit. Cells were subsequently labelled for CD90, CD45, and CD44 cell surface antigens using magnetic-activated cell sorting (MACS) and fluorescence-activate cell sorting (FACS) flow cytometry. CD90 positive cells were quantified and their viability assessed using a hemocytometer and trypan blue exclusion test of cell viability. Results: No peri-operative complications occurred in patients undergoing laparoscopic morcellation. Laparoscopically and traditionally harvested samples yielded an average of 0.39 (+/- 0.1) x 106 and 0.33 (+/- 0.1) x 106 CD90+ cells per 10 million SVF cells, respectively. CD90+ cell viability following MACS was 89% (+/- 11%) for morcellated and 86% (+/- 7%) for traditionally harvested samples. Neither CD90+ cell quantity nor viability was significantly different between samples obtained via traditional laparotomy versus laparoscopic morcellation (p = 0.38 and p = 0.63, respectively). Populations of CD90+ cells isolated using each harvest technique had similar CD44 and CD45 expression profiles. Conclusion: Viable populations of CD90+ cells with similar CD44/CD45 expression profiles could be isolated from laparoscopically morcellated and traditionally harvested falciform tissue. No appreciable morbidity was associated with laparoscopic falciform morcellation. Clinical Significance: Laparoscopic morcellation is a safe and effective minimally invasive means of falciform tissue harvest for AD-MSC isolation.


Mesenchymal Stem Cells

Mesenchymal Stem Cells
Author: Phuc Van Pham
Publisher: BoD – Books on Demand
Total Pages: 302
Release: 2017-11-29
Genre: Science
ISBN: 9535136151

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Mesenchymal Stem Cells: Isolation, Characterization, and Applications thoroughly presents the isolation, characterization, and some applications of mesenchymal stem cells in the clinic. The book has two parts: "Isolation and Characterization" and "Clinical Perspectives and Applications." In Part I, the subsequent chapters introduce some techniques in isolation, characterization, and purification of mesenchymal stem cells in different tissues. In Part II, some applications of mesenchymal stem cells in the popular diseases, which include cartilage regeneration, spinal cord injury, and osteoarthritis, are discussed. This book provides a succinct yet comprehensive overview of mesenchymal stem cells for advanced students, graduate students, and researchers.


Mesenchymal Stem Cell Therapy

Mesenchymal Stem Cell Therapy
Author: Lucas G. Chase
Publisher: Springer Science & Business Media
Total Pages: 458
Release: 2012-12-12
Genre: Science
ISBN: 1627032002

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Over the past decade, significant efforts have been made to develop stem cell-based therapies for difficult to treat diseases. Multipotent mesenchymal stromal cells, also referred to as mesenchymal stem cells (MSCs), appear to hold great promise in regards to a regenerative cell-based therapy for the treatment of these diseases. Currently, more than 200 clinical trials are underway worldwide exploring the use of MSCs for the treatment of a wide range of disorders including bone, cartilage and tendon damage, myocardial infarction, graft-versus-host disease, Crohn’s disease, diabetes, multiple sclerosis, critical limb ischemia and many others. MSCs were first identified by Friendenstein and colleagues as an adherent stromal cell population within the bone marrow with the ability to form clonogenic colonies in vitro. In regards to the basic biology associated with MSCs, there has been tremendous progress towards understanding this cell population’s phenotype and function from a range of tissue sources. Despite enormous progress and an overall increased understanding of MSCs at the molecular and cellular level, several critical questions remain to be answered in regards to the use of these cells in therapeutic applications. Clinically, both autologous and allogenic approaches for the transplantation of MSCs are being explored. Several of the processing steps needed for the clinical application of MSCs, including isolation from various tissues, scalable in vitro expansion, cell banking, dose preparation, quality control parameters, delivery methods and numerous others are being extensively studied. Despite a significant number of ongoing clinical trials, none of the current therapeutic approaches have, at this point, become a standard of care treatment. Although exceptionally promising, the clinical translation of MSC-based therapies is still a work in progress. The extensive number of ongoing clinical trials is expected to provide a clearer path forward for the realization and implementation of MSCs in regenerative medicine. Towards this end, reviews of current clinical trial results and discussions of relevant topics association with the clinical application of MSCs are compiled in this book from some of the leading researchers in this exciting and rapidly advancing field. Although not absolutely all-inclusive, we hope the chapters within this book can promote and enable a better understanding of the translation of MSCs from bench-to-bedside and inspire researchers to further explore this promising and quickly evolving field.


Adipose-Derived Stem Cells

Adipose-Derived Stem Cells
Author: Jeffrey M. Gimble
Publisher: Humana Press
Total Pages: 474
Release: 2011-08-24
Genre: Science
ISBN: 9781617379611

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During the past decade, a wide range of scientific disciplines have adopted the use of adipose-derived stem/stromal cells (ASCs) as an important tool for research and discovery. In Adipose-Derived Stem Cells: Methods and Protocols, experts from the field, including members of the esteemed International Federation of Adipose Therapeutics and Science (IFATS), provide defined and established protocols in order to further codify the utilization of these powerful and accessible cells. With chapters organized around approaches spanning the discovery, pre-clinical, and clinical processes, much of the emphasis is placed on human ASC, while additional techniques involving small and large animal species are included. As a volume in the highly successful Methods in Molecular BiologyTM series, the detailed contributions include introductions to their respective topics, lists of the necessary materials and reagents, step-by-step, readily reproducible laboratory protocols, and notes on troubleshooting and avoiding known pitfalls. Comprehensive and cutting-edge, Adipose-Derived Stem Cells: Methods and Protocols serves as a vital reference text for experienced researchers as well as new students on the path to further exploring the incredible potential of ASCs.


Animal Models for Stem Cell Therapy

Animal Models for Stem Cell Therapy
Author: Bruno Christ
Publisher: Humana Press
Total Pages: 0
Release: 2014-09-01
Genre: Science
ISBN: 9781493914524

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In Animal Models for Stem Cell Therapy: Methods and Protocols, expert researchers in the field detail disease models of hepatic, cardiovascular, neurological diseases, connective and contractile tissue. Chapters focus on a wide range of diseases and application of different kinds of stem cells and reprogrammed tissue cells (iPS). Written in the highly successful Methods in Molecular Biology series format, chapters include introductions to their respective topics, lists of the necessary materials and reagents, step-by-step, readily reproducible laboratory protocols and key tips on troubleshooting and avoiding known pitfalls. Authoritative and practical, Animal Models for Stem Cell Therapy: Methods and Protocols, covers interest of basic scientists and clinicians to assess the biological as well as the therapeutic potential of stem cell therapy.


Human Mesenchymal Stem Cells

Human Mesenchymal Stem Cells
Author: Mitchell Khan
Publisher: Nova Science Publishers
Total Pages: 134
Release: 2021
Genre: Science
ISBN: 9781536192247

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"In Chapter 1, the COVID-19 pandemic and the damage mechanisms on the cellular level which can be ameliorated with the cellular therapies is thoroughly evaluated. Previous and ongoing stem cell clinical trial data from diseases with similar symptoms is gathered. All this accumulated data and current clinical trial results indicate that the cellular therapies could be the most effective treatment option for COVID-19 patients to ameliorate the damaged tissues and save lives. In Chapter 2, the authors examine activated mesenchymal stem cells for stroke repair. Stem Cell treatment has shown recovery in animal models of stroke, indicating an improved regenerative and repair potential. Though stem cells are still being used in clinical trials, there is no evidence that they enhance recovery in ischemic stroke patients. Nevertheless, the multipotent mesenchymal stem has widely been explored for stroke recovery. An'Activated MSC' as a therapeutic alternative to tackling ischemic stroke is proposed, thereby the activation of MSCs by cytokines, growth factors, hypoxia, pharmacological drugs, etc., could be a novel approach to improving stroke patients' responses to receiving MSCs. In Chapter 3, the potential benefits of in vitro culture of therapeutic stem cells in the presence of HB along with the ketogenic diet, whereby higher physiological concentrations of ketone bodies can be achieved in vivo, as an adjuvant to stem cell transplantation is assessed"--