Karen Christman
#177,206
Most Influential Person Now
American bioengineer and academic
Karen Christman's AcademicInfluence.com Rankings
Karen Christmanengineering Degrees
Engineering
#8213
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#9712
Historical Rank
Bioengineering
#102
World Rank
#104
Historical Rank
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Engineering
Karen Christman's Degrees
- PhD Bioengineering University of California, Berkeley
- Masters Bioengineering University of California, Berkeley
- Bachelors Bioengineering University of California, Berkeley
Why Is Karen Christman Influential?
(Suggest an Edit or Addition)According to Wikipedia, Karen Leigh Christman is an American bioengineer who is the Associate Dean for Faculty Affairs and the Pierre Galletti Endowed Chair for Bioengineering Innovation at University of California, San Diego. Her research considers regenerative medicine and tissue engineering. She was elected a Fellow of the National Academy of Inventors in 2023.
Karen Christman's Published Works
Published Works
- Injectable fibrin scaffold improves cell transplant survival, reduces infarct expansion, and induces neovasculature formation in ischemic myocardium. (2004) (541)
- Naturally derived myocardial matrix as an injectable scaffold for cardiac tissue engineering. (2009) (487)
- Fibrin glue alone and skeletal myoblasts in a fibrin scaffold preserve cardiac function after myocardial infarction. (2004) (413)
- Biomaterials for the treatment of myocardial infarction. (2006) (399)
- Safety and Efficacy of an Injectable Extracellular Matrix Hydrogel for Treating Myocardial Infarction (2013) (377)
- Catheter-deliverable hydrogel derived from decellularized ventricular extracellular matrix increases endogenous cardiomyocytes and preserves cardiac function post-myocardial infarction. (2012) (317)
- Epicardial application of cardiac progenitor cells in a 3D-printed gelatin/hyaluronic acid patch preserves cardiac function after myocardial infarction. (2015) (239)
- Simple and High Yielding Method for Preparing Tissue Specific Extracellular Matrix Coatings for Cell Culture (2010) (225)
- Biomaterials for the treatment of myocardial infarction: a 5-year update. (2011) (222)
- Decellularized porcine brain matrix for cell culture and tissue engineering scaffolds. (2011) (204)
- Nanopatterning proteins and peptides. (2006) (193)
- Stimulation of adipogenesis of adult adipose-derived stem cells using substrates that mimic the stiffness of adipose tissue. (2013) (189)
- Injectable hydrogel therapies and their delivery strategies for treating myocardial infarction (2013) (187)
- Design and characterization of an injectable pericardial matrix gel: a potentially autologous scaffold for cardiac tissue engineering. (2010) (187)
- Enzyme‐Responsive Nanoparticles for Targeted Accumulation and Prolonged Retention in Heart Tissue after Myocardial Infarction (2015) (179)
- Injectable hydrogel scaffold from decellularized human lipoaspirate. (2011) (175)
- Extracellular matrix hydrogel therapies: In vivo applications and development. (2017) (170)
- Injectable Materials for the Treatment of Myocardial Infarction and Heart Failure: The Promise of Decellularized Matrices (2010) (161)
- Injectable extracellular matrix derived hydrogel provides a platform for enhanced retention and delivery of a heparin-binding growth factor. (2012) (155)
- Antibacterial and cell-adhesive polypeptide and poly(ethylene glycol) hydrogel as a potential scaffold for wound healing. (2012) (146)
- A Bioprinted Cardiac Patch Composed of Cardiac‐Specific Extracellular Matrix and Progenitor Cells for Heart Repair (2018) (136)
- A naturally derived cardiac extracellular matrix enhances cardiac progenitor cell behavior in vitro. (2012) (132)
- Injectable skeletal muscle matrix hydrogel promotes neovascularization and muscle cell infiltration in a hindlimb ischemia model. (2012) (131)
- First-in-Man Study of a Cardiac Extracellular Matrix Hydrogel in Early and Late Myocardial Infarction Patients (2019) (129)
- Positioning multiple proteins at the nanoscale with electron beam cross-linked functional polymers. (2009) (127)
- Decellularized myocardial matrix hydrogels: In basic research and preclinical studies. (2016) (121)
- Evidence for Mechanisms Underlying the Functional Benefits of a Myocardial Matrix Hydrogel for Post-MI Treatment. (2016) (115)
- Controlling stem cell behavior with decellularized extracellular matrix scaffolds. (2016) (114)
- Myocardial matrix–polyethylene glycol hybrid hydrogels for tissue engineering (2014) (102)
- Materials science and tissue engineering: repairing the heart. (2013) (102)
- Oxime Cross‐Linked Injectable Hydrogels for Catheter Delivery (2013) (101)
- Concise Review: Injectable Biomaterials for the Treatment of Myocardial Infarction and Peripheral Artery Disease: Translational Challenges and Progress (2014) (101)
- Restoration of left ventricular geometry and improvement of left ventricular function in a rodent model of chronic ischemic cardiomyopathy. (2009) (101)
- Increased Infarct Wall Thickness by a Bio-Inert Material Is Insufficient to Prevent Negative Left Ventricular Remodeling after Myocardial Infarction (2011) (101)
- Enhanced neovasculature formation in ischemic myocardium following delivery of pleiotrophin plasmid in a biopolymer. (2005) (99)
- Fabrication and characterization of injectable hydrogels derived from decellularized skeletal and cardiac muscle. (2015) (98)
- Human versus porcine tissue sourcing for an injectable myocardial matrix hydrogel. (2014) (96)
- Nanoscale growth factor patterns by immobilization on a heparin-mimicking polymer. (2008) (94)
- Tailoring material properties of a nanofibrous extracellular matrix derived hydrogel (2011) (94)
- Quantification of decellularized human myocardial matrix: A comparison of six patients (2016) (86)
- Delivery of an engineered HGF fragment in an extracellular matrix-derived hydrogel prevents negative LV remodeling post-myocardial infarction. (2015) (84)
- Fund Black scientists (2021) (78)
- Modulation of material properties of a decellularized myocardial matrix scaffold. (2011) (77)
- Extracellular Matrix Hydrogel Promotes Tissue Remodeling, Arteriogenesis, and Perfusion in a Rat Hindlimb Ischemia Model (2016) (72)
- Site-specific protein immobilization through N-terminal oxime linkages (2007) (65)
- Injectable biomaterials for adipose tissue engineering (2012) (59)
- Cardiac-Derived Extracellular Matrix Enhances Cardiogenic Properties of Human Cardiac Progenitor Cells (2016) (59)
- Submicron streptavidin patterns for protein assembly. (2006) (59)
- Self-Assembled Colloidal Gel Using Cell Membrane-Coated Nanosponges as Building Blocks. (2017) (58)
- Humanized mouse model for assessing the human immune response to xenogeneic and allogeneic decellularized biomaterials. (2017) (58)
- Pleiotrophin induces formation of functional neovasculature in vivo. (2005) (57)
- Effects of resveratrol on the autophosphorylation of phorbol ester-responsive protein kinases: inhibition of protein kinase D but not protein kinase C isozyme autophosphorylation. (2000) (57)
- Engineering an Injectable Muscle-Specific Microenvironment for Improved Cell Delivery Using a Nanofibrous Extracellular Matrix Hydrogel. (2017) (56)
- Award winner for outstanding research in the PhD category, 2014 Society for Biomaterials annual meeting and exposition, Denver, Colorado, April 16-19, 2014: Decellularized adipose matrix hydrogels stimulate in vivo neovascularization and adipose formation. (2014) (55)
- Biomaterials for tissue repair (2019) (55)
- Designing Acellular Injectable Biomaterial Therapeutics for Treating Myocardial Infarction and Peripheral Artery Disease (2017) (52)
- Protein micropatterns using a pH-responsive polymer and light. (2005) (50)
- Enzyme-responsive progelator cyclic peptides for minimally invasive delivery to the heart post-myocardial infarction (2019) (48)
- Electrochemically controllable conjugation of proteins on surfaces. (2007) (48)
- Tunable protein release from acetalated dextran microparticles: a platform for delivery of protein therapeutics to the heart post-MI. (2013) (47)
- Modulating In Vivo Degradation Rate of Injectable Extracellular Matrix Hydrogels. (2016) (46)
- Developing injectable nanomaterials to repair the heart. (2015) (46)
- Evaluation of different decellularization protocols on the generation of pancreas-derived hydrogels. (2018) (45)
- Micro- and Nanoparticles for Treating Cardiovascular Disease. (2015) (42)
- Patient-to-Patient Variability in Autologous Pericardial Matrix Scaffolds for Cardiac Repair (2011) (40)
- Fibroblasts influence muscle progenitor differentiation and alignment in contact independent and dependent manners in organized co-culture devices (2013) (38)
- Injectable ECM scaffolds for cardiac repair. (2014) (32)
- Protein nanopatterns by oxime bond formation. (2011) (29)
- In vivo response to dynamic hyaluronic acid hydrogels. (2013) (28)
- Intramyocardial injection of hydrogel with high interstitial spread does not impact action potential propagation. (2015) (27)
- Decellularized skeletal muscle as an in vitro model for studying drug-extracellular matrix interactions. (2015) (27)
- Degradable acetalated dextran microparticles for tunable release of an engineered hepatocyte growth factor fragment. (2016) (25)
- Decellularized Extracellular Matrix Hydrogels as a Delivery Platform for MicroRNA and Extracellular Vesicle Therapeutics (2018) (25)
- Fibronectin and Cyclic Strain Improve Cardiac Progenitor Cell Regenerative Potential In Vitro (2016) (24)
- Manufacturing Considerations for Producing and Assessing Decellularized Extracellular Matrix Hydrogels. (2020) (24)
- Surface initiated actin polymerization from top-down manufactured nanopatterns. (2007) (24)
- Quantitation of S-adenosylmethionine decarboxylase protein. (1985) (23)
- Differential β3 Integrin Expression Regulates the Response of Human Lung and Cardiac Fibroblasts to Extracellular Matrix and Its Components. (2015) (21)
- A co-culture device with a tunable stiffness to understand combinatorial cell-cell and cell-matrix interactions. (2013) (20)
- Preventing post-surgical cardiac adhesions with a catechol-functionalized oxime hydrogel (2020) (17)
- Fabrication of biologically derived injectable materials for myocardial tissue engineering. (2010) (17)
- Binding of Anticell Adhesive Oxime‐Crosslinked PEG Hydrogels to Cardiac Tissues (2015) (16)
- Human cardiomyogenesis and the need for systems biology analysis (2011) (16)
- Injectable Myocardial Matrix Hydrogel Mitigates Negative Left Ventricular Remodeling in a Chronic Myocardial Infarction Model (2020) (16)
- Enzyme-Targeted Nanoparticles for Delivery to Ischemic Skeletal Muscle. (2017) (15)
- NANOPATTERNED INTERFACES FOR CONTROLLING CELL BEHAVIOR. (2010) (14)
- Dose optimization of decellularized skeletal muscle extracellular matrix hydrogels for improving perfusion and subsequent validation in an aged hindlimb ischemia model. (2020) (9)
- Hydrogels for cardiac repair (2014) (9)
- Quantifying the Effects of Aging on Morphological and Cellular Properties of Human Female Pelvic Floor Muscles (2021) (8)
- Injectable myocardial matrix as a scaffold for myocardial tissue engineering (2009) (7)
- In Vivo Evaluation of Bioprinted Cardiac Patches Composed of Cardiac-Specific Extracellular Matrix and Progenitor Cells in a Model of Pediatric Heart Failure (2021) (6)
- Injectable Hydrogels to Treat Myocardial Infarction (2019) (6)
- Treating the Leading Killer (2012) (5)
- A vascularized 3D model of the human pancreatic islet for ex vivo study of immune cell-islet interaction (2021) (5)
- Humanized mouse model for evaluating biocompatibility and human immune cell interactions to biomaterials (2017) (5)
- Pro-regenerative Extracellular Matrix Hydrogel Prevents and Mitigates Pathological Alterations of Pelvic Muscles Following Birth Injury (2021) (5)
- Acellular Injectable Biomaterials for Treating Cardiovascular Disease (2016) (5)
- Myocardial matrix hydrogel acts as a reactive oxygen species scavenger and supports a proliferative microenvironment for cardiomyocytes. (2022) (4)
- Targeted nanoscale therapeutics for myocardial infarction. (2020) (4)
- CONTROLLING CELL BEHAVIOR (2010) (4)
- Tissue Engineering and the Role of Biomaterial Scaffolds: The Evolution of Cardiac Tissue Engineering (2013) (4)
- CATHETER-DELIVERABLE HYDROGEL DERIVED FROM DECELLULARIZED VENTRICULAR EXTRACELLULAR MATRIX INCREASES CARDIOMYOCYTE SURVIVAL AND PRESERVES CARDIAC FUNCTION POST-MYOCARDIAL INFARCTION (2011) (4)
- Injectable Hydrogels for Cardiac Tissue Regeneration Post-Myocardial Infarction (2016) (3)
- Stimuli-Responsive Materials: Enzyme-Responsive Nanoparticles for Targeted Accumulation and Prolonged Retention in Heart Tissue after Myocardial Infarction (Adv. Mater. 37/2015). (2015) (3)
- Single-cell and spatial transcriptomics of the infarcted heart define the dynamic onset of the border zone in response to mechanical destabilization (2022) (3)
- Intravascularly infused extracellular matrix as a biomaterial for targeting and treating inflamed tissues (2022) (3)
- Surface patterning for generating defined nanoscale matrices. (2010) (2)
- Injectable Materials for Myocardial Tissue Engineering (2010) (2)
- Myocardial ischemia induced upregulation of pleitrophin gene (2003) (2)
- Myocardial matrix material supports a proliferative microenvironment for cardiomyocytes (2020) (2)
- Multimodal imaging assessment and histologic correlation of the female rat pelvic floor muscles’ anatomy (2019) (2)
- Tissue specific muscle extracellular matrix hydrogel improves skeletal muscle regeneration in vivo over non-matched tissue source (2020) (2)
- Regulation of CD 9 Expression during 1 2O-Tetradecanoyl-phorbol-1 3-acetate-induced Differentiation of Human Myeloid Leukemia ( HL-60 ) Cells 1 (2005) (1)
- Stem Cells for Cardiac Tissue Engineering (2011) (1)
- CHAPTER 7. Decellularized Extracellular Matrix Hydrogels: Fabrication, Properties, Characterization, and Current Applications (2019) (1)
- Enhanced Proliferation and Cardiogenic Differentiation of Cardiac Progenitor Cells Treated with a Naturally Derived Cardiac Extracellular Matrix (2012) (1)
- Engineered vasculature induces functional maturation of pluripotent stem cell-derived islet organoids (2022) (1)
- A New Form of Decellularized Extracellular Matrix Hydrogel for Treating Ischemic Tissue via Intravascular Infusion (2020) (1)
- Cell‐synthesized extracellular matrix particles for tissue engineering and aesthetic applications (87.2) (2014) (0)
- Repeated birth injuries lead to pelvic floor muscle dysfunction and impairment in regeneration (2022) (0)
- Abstract 139: Using Cyclic Strain to Improve Cardiac Progenitor Cell Cooperation (2013) (0)
- Developing injectable nanomaterials to repair the heart Current Opinion in Biotechnology , ( 34 ) Nanobiotechnology 2015 (2015) (0)
- 287 Impact of the COVID-19 pandemic on maternal fetal medicine outpatient health care delivery platforms (2021) (0)
- Characterization of decellularized left and right ventricular myocardial matrix hydrogels and their effects on cardiac progenitor cells. (2022) (0)
- Enzyme-responsive progelator cyclic peptides for minimally invasive delivery to the heart post-myocardial infarction (2019) (0)
- Sub-micron Patterning on Polymer Films for Protein Arrays (2005) (0)
- Injectable Hydrogel Scaffold from Decellularized Human (2011) (0)
- In Vivo Application of Dynamic Hyaluronic Acid Material for Myocardial Infarction Therapy (2012) (0)
- Hydrogels: Oxime Cross‐Linked Injectable Hydrogels for Catheter Delivery (Adv. Mater. 21/2013) (2013) (0)
- Abstract P031: Enhanced Cardiac Progenitor Cell Function and Differentiation in a Naturally Derived Extracellular Matrix (2011) (0)
- Differential b 3 Integrin Expression Regulates the Response of Human Lung and Cardiac Fibroblasts to Extracellular Matrix and Its Components (2015) (0)
- UNIVERSITY OF CALIFORNIA, SAN DIEGO Compaction of Hydrogels by Compression or Permeation A Thesis submitted in partial satisfaction of the requirements for the degree Master of Science in Bioengineering (2016) (0)
- Editorial to “Evaluating biomaterials and implanted devices” (2017) (0)
- Processed Tissues (2020) (0)
- Injectable biopolymers in the treatment of heart failure and cardiac remodeling (2020) (0)
- Injectable extracellular matrix derived hydrogel for cardiac repair (2012) (0)
- Matrix Reloaded: Devitalized Cartilage as a Functional Extracellular Niche to Promote Osteogenesis and Angiogenesis (2016) (0)
- Science Translational Medicine Podcast: 20 February 2013 (2013) (0)
- Inflammation-Responsive Micellar Nanoparticles from Degradable Polyphosphoramidates for Targeted Delivery to Myocardial Infarction (2022) (0)
- Abstract 344: Naturally Derived Cardiac Extracellular Matrix for Cardiac Progenitor Cell Therapy (2012) (0)
- Biomaterials for tissue repair Biomaterials can promote endogenous healing without delivering cells or therapeutics (2019) (0)
- Muscle stem cells and fibro-adipogenic progenitors in female pelvic floor muscle regeneration following birth injury (2021) (0)
- Manufacture of nanoscale structures through integrated top-down and bottom-up approaches (2007) (0)
- Human ECM Particles as an Injectable Bulking Agent for Adipose Replacement (2012) (0)
- Increase in Infarct Wall Thickness by a Bio-Inert Injectable Material Is Insufficient for Improving Cardiac Function after Myocardial Infarction (2010) (0)
- Immunomodulatory Contribution of Mast Cells to the Regenerative Biomaterial Microenvironment (2020) (0)
- UNIVERSITY OF CALIFORNIA, SAN DIEGO Tuning 3D Collagen Fiber Topography Modulates Cancer Cell Phenotype and Migration A thesis submitted in partial satisfaction of the requirements for the degree Master of Science in Bioengineering (2017) (0)
- Fibroblasts influence muscle progenitor differentiation and alignment in contact independent and dependent manners in organized co-culture devices (2012) (0)
- Healing Tissues From the Inside Out: Infusible Biomaterial for Targeting and Treating Inflammatory Tissues via Intravascular Administration (2020) (0)
- Mast Cells Contribute to the Immunomodulatory Effect of the Biomaterial Microenvironment in a Gender Specific Manner (2020) (0)
- Injectable ECM Scaffolds for Cardiac Repair. (2022) (0)
- Mechanical impact of parturition‐related strains on rat pelvic striated sphincters (2019) (0)
- Intravascular Infusible Extracellular Matrix for the Mitigation of Severe Systemic Inflammation Relevant to Sepsis and COVID-19 Pathology (2021) (0)
- Enzyme-Responsive Nanoparticles for the Targeted Delivery of an MMP Inhibitor to the Heart post Myocardial Infarction (2022) (0)
- Intravascularly Deliverable Biomaterial Platforms for Tissue Repair and Regeneration Post-myocardial Infarction. (2023) (0)
- Treating Myocardial Infarction Safety and Efficacy of an Injectable Extracellular Matrix Hydrogel for (2013) (0)
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Karen Christman is affiliated with the following schools: