Department of Biomedical Engineering,
Translational Tissue Engineering Center,
Johns Hopkins Translational ImmunoEngineering Center
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Drug delivery strategies for therapeutic angiogenesis and antiangiogenesis.
Expert opinion on drug delivery Apr, 2011 | Pubmed ID: 21338327
Non-viral gene delivery nanoparticles based on poly(β-amino esters) for treatment of glioblastoma.
Biomaterials Aug, 2011 | Pubmed ID: 21536325
Synthetic poly(ester amine) and poly(amido amine) nanoparticles for efficient DNA and siRNA delivery to human endothelial cells.
International journal of nanomedicine , 2011 | Pubmed ID: 22228998
Cystamine-terminated poly(beta-amino ester)s for siRNA delivery to human mesenchymal stem cells and enhancement of osteogenic differentiation.
Biomaterials Nov, 2012 | Pubmed ID: 22871421
Subtle Changes to Polymer Structure and Degradation Mechanism Enable Highly Effective Nanoparticles for siRNA and DNA Delivery to Human Brain Cancer.
Advanced healthcare materials Sep, 2012 | Pubmed ID: 23184674
Student award winner in the Ph.D. category for the 2013 society for biomaterials annual meeting and exposition, april 10-13, 2013, Boston, Massachusetts : biomaterial-mediated cancer-specific DNA delivery to liver cell cultures using synthetic poly(beta-amino ester)s.
Journal of biomedical materials research. Part A Jul, 2013 | Pubmed ID: 23559534
The effect and role of carbon atoms in poly(β-amino ester)s for DNA binding and gene delivery.
Journal of the American Chemical Society May, 2013 | Pubmed ID: 23570657
A bioreducible linear poly(β-amino ester) for siRNA delivery.
Chemical communications (Cambridge, England) Jun, 2013 | Pubmed ID: 23646347
(3-aminopropyl)-4-methylpiperazine end-capped poly(1,4-butanediol diacrylate-co-4-amino-1-butanol)-based multilayer films for gene delivery.
ACS applied materials & interfaces Jul, 2013 | Pubmed ID: 23755861
Bioengineered nanoparticles for siRNA delivery.
Wiley interdisciplinary reviews. Nanomedicine and nanobiotechnology Sep-Oct, 2013 | Pubmed ID: 23821336
Bioreducible cationic polymer-based nanoparticles for efficient and environmentally triggered cytoplasmic siRNA delivery to primary human brain cancer cells.
ACS nano Apr, 2014 | Pubmed ID: 24673565
Biodegradable polymeric nanoparticles show high efficacy and specificity at DNA delivery to human glioblastoma in vitro and in vivo.
ACS nano May, 2014 | Pubmed ID: 24766032
Degradable polymer-coated gold nanoparticles for co-delivery of DNA and siRNA.
Acta biomaterialia Jan, 2015 | Pubmed ID: 25246314
Polymeric nanoparticles for nonviral gene therapy extend brain tumor survival in vivo.
ACS nano Feb, 2015 | Pubmed ID: 25643235
Nanoparticle-mediated transcriptional modification enhances neuronal differentiation of human neural stem cells following transplantation in rat brain.
Biomaterials Apr, 2016 | Pubmed ID: 26828681
Non-virally engineered human adipose mesenchymal stem cells produce BMP4, target brain tumors, and extend survival.
Biomaterials 09, 2016 | Pubmed ID: 27240162
Synthesis and application of poly(ethylene glycol)-co-poly(β-amino ester) copolymers for small cell lung cancer gene therapy.
Acta biomaterialia 09, 2016 | Pubmed ID: 27262740
Enhancing oligodendrocyte differentiation by transient transcription activation via DNA nanoparticle-mediated transfection.
Acta biomaterialia May, 2017 | Pubmed ID: 28344151
Polymeric nanoparticle-based delivery of TRAIL DNA for cancer-specific killing.
Bioengineering & translational medicine Jun, 2016 | Pubmed ID: 28349127
Stabilized single-injection inactivated polio vaccine elicits a strong neutralizing immune response.
Proceedings of the National Academy of Sciences of the United States of America Jun, 2018 | Pubmed ID: 29784798
The role of assembly parameters on polyplex poly(beta-amino ester) nanoparticle transfections.
Biotechnology and bioengineering May, 2019 | Pubmed ID: 30636286
Cancer-selective nanoparticles for combinatorial siRNA delivery to primary human GBM in vitro and in vivo.
Biomaterials Jul, 2019 | Pubmed ID: 31026613
Polymeric Nucleic Acid Delivery for Immunoengineering.
Current opinion in biomedical engineering Sep, 2018 | Pubmed ID: 31106282
Cancer-Targeting Nanoparticles for Combinatorial Nucleic Acid Delivery.
Advanced materials (Deerfield Beach, Fla.) Apr, 2020 | Pubmed ID: 31222852
Anisotropic poly(lactic-co-glycolic acid) microparticles enable sustained release of a peptide for long-term inhibition of ocular neovascularization.
Acta biomaterialia Oct, 2019 | Pubmed ID: 31374338
Engineered nanoparticles for systemic siRNA delivery to malignant brain tumours.
Nanoscale Nov, 2019 | Pubmed ID: 31612183
In situ genetic engineering of tumors for long-lasting and systemic immunotherapy.
Proceedings of the National Academy of Sciences of the United States of America Feb, 2020 | Pubmed ID: 32034097
Biomimetic tolerogenic artificial antigen presenting cells for regulatory T cell induction.
Acta biomaterialia Aug, 2020 | Pubmed ID: 32522714
Gene delivery for immunoengineering.
Current opinion in biotechnology Dec, 2020 | Pubmed ID: 32554325
Non-viral gene delivery of HIF-1α promotes angiogenesis in human adipose-derived stem cells.
Acta biomaterialia Sep, 2020 | Pubmed ID: 32623098
Poly(beta-amino ester)s as gene delivery vehicles: challenges and opportunities.
Expert opinion on drug delivery Oct, 2020 | Pubmed ID: 32700581
Suprachoroidal gene transfer with nonviral nanoparticles.
Science advances Jul, 2020 | Pubmed ID: 32937452
Structure-Guided Molecular Engineering of a Vascular Endothelial Growth Factor Antagonist to Treat Retinal Diseases.
Cellular and molecular bioengineering Oct, 2020 | Pubmed ID: 33184574
Efficiency of Cytosolic Delivery with Poly(β-amino ester) Nanoparticles is Dependent on the Effective p of the Polymer.
ACS biomaterials science & engineering Jun, 2020 | Pubmed ID: 33463158
Poly(ethylene glycol)-Poly(beta-amino ester)-Based Nanoparticles for Suicide Gene Therapy Enhance Brain Penetration and Extend Survival in a Preclinical Human Glioblastoma Orthotopic Xenograft Model.
ACS biomaterials science & engineering May, 2020 | Pubmed ID: 33463272
Biodegradable Cationic Polymer Blends for Fabrication of Enhanced Artificial Antigen Presenting Cells to Treat Melanoma.
ACS applied materials & interfaces Feb, 2021 | Pubmed ID: 33573372
HIF-1α and HIF-2α redundantly promote retinal neovascularization in patients with ischemic retinal disease.
The Journal of clinical investigation Jun, 2021 | Pubmed ID: 34128478
Photocrosslinked Bioreducible Polymeric Nanoparticles for Enhanced Systemic siRNA Delivery as Cancer Therapy.
Advanced functional materials Apr, 2021 | Pubmed ID: 34650390
Nanoparticle designs for delivery of nucleic acid therapeutics as brain cancer therapies.
Advanced drug delivery reviews Dec, 2021 | Pubmed ID: 34715258
High-throughput and high-content bioassay enables tuning of polyester nanoparticles for cellular uptake, endosomal escape, and systemic in vivo delivery of mRNA.
Science advances Jan, 2022 | Pubmed ID: 34985952
PAI-1 is a vascular cell-specific HIF-2-dependent angiogenic factor that promotes retinal neovascularization in diabetic patients.
Science advances Mar, 2022 | Pubmed ID: 35235351
ANGPTL4 influences the therapeutic response of patients with neovascular age-related macular degeneration by promoting choroidal neovascularization.
JCI insight Jul, 2022 | Pubmed ID: 35653189
Polymeric nanoparticles for dual-targeted theranostic gene delivery to hepatocellular carcinoma.
Science advances Jul, 2022 | Pubmed ID: 35857843
Enhanced stability and clinical absorption of a form of encapsulated vitamin A for food fortification.
Proceedings of the National Academy of Sciences of the United States of America Dec, 2022 | Pubmed ID: 36508653
Verteporfin-loaded microparticles for radiosensitization of preclinical lung and breast metastatic spine cancer.
Journal of neurosurgery. Spine Apr, 2023 | Pubmed ID: 36585863
Shape matters: Biodegradable anisotropic nanoparticle artificial antigen presenting cells for cancer immunotherapy.
Acta biomaterialia Apr, 2023 | Pubmed ID: 36812956
Anti-angiogenic collagen IV-derived peptide target engagement with αβ and αβ in ocular neovascularization models.
iScience Feb, 2023 | Pubmed ID: 36844452
Improvement of Islet Engrafts via Treg Induction Using Immunomodulating Polymeric Tolerogenic Microparticles.
ACS biomaterials science & engineering Jun, 2023 | Pubmed ID: 37233985
Bioengineered particles expand myelin-specific regulatory T cells and reverse autoreactivity in a mouse model of multiple sclerosis.
Science advances Jun, 2023 | Pubmed ID: 37267370
Polymeric nanoparticle gel for intracellular mRNA delivery and immunological reprogramming of tumors.
Biomaterials Sep, 2023 | Pubmed ID: 37290232
Biodegradable lipophilic polymeric mRNA nanoparticles for ligand-free targeting of splenic dendritic cells for cancer vaccination.
Proceedings of the National Academy of Sciences of the United States of America Jun, 2023 | Pubmed ID: 37339211
Biodegradable Polyester Nanoparticle Vaccines Deliver Self-Amplifying mRNA in Mice at Low Doses.
Advanced therapeutics May, 2023 | Pubmed ID: 37743930
Biomaterial-Mediated Genetic Reprogramming of Merkel Cell Carcinoma and Melanoma Leads to Targeted Cancer Cell Killing and .
ACS biomaterials science & engineering Nov, 2023 | Pubmed ID: 37797944
An engineered immunocytokine with collagen affinity improves the tumor bioavailability, tolerability, and therapeutic efficacy of IL-2.
Cell reports. Medicine Nov, 2023 | Pubmed ID: 37992685
Screening for lipid nanoparticles that modulate the immune activity of helper T cells towards enhanced antitumour activity.
Nature biomedical engineering May, 2024 | Pubmed ID: 38082180
Suprachoroidal gene transfer with nonviral nanoparticles in large animal eyes.
Science advances Mar, 2024 | Pubmed ID: 38457512
Phase 1, Dose Escalation, Nonrandomized, Open-Label, Clinical Trial Evaluating the Safety and Preliminary Efficacy of Allogenic Adipose-Derived Mesenchymal Stem Cells for Recurrent Glioblastoma: A Clinical Trial Protocol.
Neurosurgery practice Dec, 2023 | Pubmed ID: 38464470
Supramolecular assembly of polycation/mRNA nanoparticles and in vivo monocyte programming.
Proceedings of the National Academy of Sciences of the United States of America Aug, 2024 | Pubmed ID: 39172792
Ligand-free biodegradable poly(beta-amino ester) nanoparticles for targeted systemic delivery of mRNA to the lungs.
Biomaterials Feb, 2025 | Pubmed ID: 39217793
Alginate-based artificial antigen presenting cells expand functional CD8 T cells with memory characteristics for adoptive cell therapy.
Biomaterials Feb, 2025 | Pubmed ID: 39217794
Highly Multiplexed Immunofluorescence PhenoCycler Panel for Murine Formalin-Fixed Paraffin-Embedded Tissues Yields Insight Into Tumor Microenvironment Immunoengineering.
Laboratory investigation; a journal of technical methods and pathology Jan, 2025 | Pubmed ID: 39490742
Therapeutic potential and impact of nanoengineered patient-derived mesenchymal stem cells in a murine resection and recurrence model of human glioblastoma.
Bioengineering & translational medicine Nov, 2024 | Pubmed ID: 39545093
Production of site-specific antibody conjugates using metabolic glycoengineering and novel Fc glycovariants.
The Journal of biological chemistry Dec, 2024 | Pubmed ID: 39551135
miR-217-5p NanomiRs Inhibit Glioblastoma Growth and Enhance Effects of Ionizing Radiation via EZH2 Inhibition and Epigenetic Reprogramming.
Cancers Dec, 2024 | Pubmed ID: 39796709
Multipronged SMAD pathway targeting by lipophilic poly(β-amino ester) miR-590-3p nanomiRs inhibits mesenchymal glioblastoma growth and prolongs survival.
Signal transduction and targeted therapy Apr, 2025 | Pubmed ID: 40301302
Sachin S. Surwase*,1,2,3,
Xin Ming M. Zhou*,3,4,
Kathryn M. Luly1,2,3,
Qingfeng Zhu5,6,7,
Niki Talebian6,
Robert A. Anders5,6,7,8,9,
Jordan J. Green1,2,3,5,8,9,10,11,12,
Stephany Y. Tzeng1,2,3,
Joel C. Sunshine1,3,4,5,6,8,9
1Department of Biomedical Engineering, Johns Hopkins University,
2Translational Tissue Engineering Center, Johns Hopkins University,
3Johns Hopkins Translational ImmunoEngineering Center, Johns Hopkins University,
4Department of Dermatology, Johns Hopkins University,
5Department of Oncology, Johns Hopkins University,
6Department of Pathology, Johns Hopkins University,
7Convergence Institute, Sidney Kimmel Comprehensive Cancer Center Johns Hopkins University School of Medicine,
8Bloomberg Kimmel Institute for Cancer Immunotherapy, Sidney Kimmel Comprehensive Cancer Center, Johns Hopkins University School of Medicine,
9Sidney Kimmel Comprehensive Cancer Center, Johns Hopkins University School of Medicine,
10Institute for Nanobiotechnology, Johns Hopkins University,
11Departments of Neurosurgery and Ophthalmology, Johns Hopkins University School of Medicine,
12Departments of Materials Science & Engineering and Chemical & Biomolecular Engineering, Johns Hopkins University
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