Pages that link to "Q38600746"
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The following pages link to Hyongbum Kim (Q38600746):
Displaying 42 items.
- Somatic Mutations in TSC1 and TSC2 Cause Focal Cortical Dysplasia (Q30274618) (← links)
- Dual angiogenic and neurotrophic effects of bone marrow-derived endothelial progenitor cells on diabetic neuropathy (Q33403153) (← links)
- Gene disruption by cell-penetrating peptide-mediated delivery of Cas9 protein and guide RNA. (Q33657689) (← links)
- Targeted Genome Engineering to Control VEGF Expression in Human Umbilical Cord Blood-Derived Mesenchymal Stem Cells: Potential Implications for the Treatment of Myocardial Infarction (Q33722274) (← links)
- Constriction of the mitochondrial inner compartment is a priming event for mitochondrial division (Q33804563) (← links)
- Stability of zinc finger nuclease protein is enhanced by the proteasome inhibitor MG132. (Q34568279) (← links)
- Diabetic Mesenchymal Stem Cells Are Ineffective for Improving Limb Ischemia Due to Their Impaired Angiogenic Capability. (Q35204126) (← links)
- In vivo high-throughput profiling of CRISPR-Cpf1 activity (Q36227944) (← links)
- Magnetic separation and antibiotics selection enable enrichment of cells with ZFN/TALEN-induced mutations (Q36618495) (← links)
- Astroglial Activation by an Enriched Environment after Transplantation of Mesenchymal Stem Cells Enhances Angiogenesis after Hypoxic-Ischemic Brain Injury. (Q37286618) (← links)
- Heroes of peer review: Hyongbum (Henry) Kim (Q37299166) (← links)
- Recent developments and clinical studies utilizing engineered zinc finger nuclease technology. (Q38531847) (← links)
- CRISPR/Cas9 system as an innovative genetic engineering tool: Enhancements in sequence specificity and delivery methods (Q38598808) (← links)
- Generation of ΔF508-CFTR T84 cell lines by CRISPR/Cas9-mediated genome editing (Q38738580) (← links)
- Regulation of pluripotency and differentiation by deubiquitinating enzymes (Q38855269) (← links)
- Electrochemical and in vitro bioactivity of polypyrrole/ceramic nanocomposite coatings on 316L SS bio-implants (Q38961213) (← links)
- Enhanced gene disruption by programmable nucleases delivered by a minicircle vector (Q38964283) (← links)
- Off-target response of a Wip1 chemical inhibitor in skin keratinocytes (Q39078489) (← links)
- Surrogate reporters for enrichment of cells with nuclease-induced mutations (Q39461040) (← links)
- Cell-Penetrating Peptide-Mediated Delivery of Cas9 Protein and Guide RNA for Genome Editing. (Q40480698) (← links)
- Effective gene delivery into human stem cells with a cell-targeting Peptide-modified bioreducible polymer (Q41595503) (← links)
- Angiopoietin-2 stimulates blood flow recovery after femoral artery occlusion by inducing inflammation and arteriogenesis (Q43214023) (← links)
- Interaction of Mesenchymal Stem Cells and Osteoblasts for in vitro Osteogenesis (Q46287154) (← links)
- The effect of mineral trioxide aggregate on odontogenic differentiation in dental pulp stem cells. (Q46289005) (← links)
- Dexamethasone increases angiopoietin-1 and quiescent hematopoietic stem cells: a novel mechanism of dexamethasone-induced hematoprotection (Q46566370) (← links)
- Targeting mutant KRAS with CRISPR-Cas9 controls tumor growth. (Q47554878) (← links)
- RanBPM: a potential therapeutic target for modulating diverse physiological disorders. (Q47745979) (← links)
- Deep learning improves prediction of CRISPR-Cpf1 guide RNA activity (Q50066023) (← links)
- Paired D10A Cas9 nickases are sometimes more efficient than individual nucleases for gene disruption. (Q52431069) (← links)
- CD49f enhances multipotency and maintains stemness through the direct regulation of OCT4 and SOX2. (Q53388592) (← links)
- Effect of ionizing radiation induced damage of endothelial progenitor cells in vascular regeneration. (Q54550714) (← links)
- An electrochemical, in vitro bioactivity, and quantum chemical approach to nanostructured copolymer coatings for orthopedic applications (Q57782473) (← links)
- Novel genes and cellular pathways related to infection with adenovirus-36 as an obesity agent in human mesenchymal stem cells (Q57782518) (← links)
- En bloc and segmental deletions of human XIST reveal X chromosome inactivation-involving RNA elements (Q64236086) (← links)
- In vivo gene correction with targeted sequence substitution through microhomology-mediated end joining (Q88772882) (← links)
- SpCas9 activity prediction by DeepSpCas9, a deep learning-based model with high generalization performance (Q91273584) (← links)
- Therapeutic application of the CRISPR system: current issues and new prospects (Q92209192) (← links)
- High-throughput analysis of the activities of xCas9, SpCas9-NG and SpCas9 at matched and mismatched target sequences in human cells (Q92643991) (← links)
- Prediction of the sequence-specific cleavage activity of Cas9 variants (Q96230834) (← links)
- Sequence-specific prediction of the efficiencies of adenine and cytosine base editors (Q97424577) (← links)
- Predicting the efficiency of prime editing guide RNAs in human cells (Q99595252) (← links)
- Wikidata:Database reports/Constraint violations/P1053 (← links | edit)