407 results on '"Reshetnyak, Yana K."'
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2. pHLIP targeted intracellular delivery of calicheamicin
3. pHLIP Peptides Target Acidity in Activated Macrophages
4. Alkaline nucleoplasm facilitates contractile gene expression in the mammalian heart
5. Aiming the magic bullet: targeted delivery of imaging and therapeutic agents to solid tumors by pHLIP peptides
6. Targeted intracellular delivery of dimeric STINGa by two pHLIP peptides for treatment of solid tumors
7. Kinetics of pHLIP peptide insertion into and exit from a membrane
8. Targeting acidic pre-metastatic niche in lungs by pH low insertion peptide and its utility for anti-metastatic therapy
9. Coil-helix transition of polypeptide at water-lipid interface
10. Suppressing miR-21 activity in tumor-associated macrophages promotes an antitumor immune response
11. Mapping pH at Cancer Cell Surfaces
12. Peptides of pHLIP family for targeted intracellular and extracellular delivery of cargo molecules to tumors
13. Arginine Residues Modulate the Membrane Interactions of pHLIP Peptides
14. pHLIP ICG for delineation of tumors and blood flow during fluorescence-guided surgery
15. T-cells produce acidic niches in lymph nodes to suppress their own effector functions
16. Targeting acidic pre-metastatic niche in lungs by pH low insertion peptide and its utility for anti-metastatic therapy.
17. Abstract 1804: Durable eradication of tumors by single injections of a pHLIP-STING agonist
18. Astrocytic Slc4a4 regulates blood-brain barrier integrity in healthy and stroke brains via a NO-CCL2-CCR2 pathway
19. Targeted imaging of urothelium carcinoma in human bladders by an ICG pHLIP peptide ex vivo
20. Probe for the measurement of cell surface pH in vivo and ex vivo
21. Acid specific dark quencher QC1 pHLIP for multi-spectral optoacoustic diagnoses of breast cancer
22. Abstract B022: pH-low insertion peptide detects lactic acidosis contributing metastatic niche formation in lungs
23. Tumor treatment by pHLIP-targeted antigen delivery
24. Decoration of Nanovesicles with pH (Low) Insertion Peptide (pHLIP) for Targeted Delivery
25. Advanced targeted nanomedicine
26. The pH low insertion peptide pHLIP Variant 3 as a novel marker of acidic malignant lesions
27. Enhancement of radiation effect on cancer cells by gold-pHLIP
28. Eradication of tumors and development of anti-cancer immunity using STINGa targeted by pHLIP
29. Targeting bladder urothelial carcinoma with pHLIP-ICG and inhibition of urothelial cancer cell proliferation by pHLIP-amanitin
30. Understanding the pharmacological properties of a metabolic PET tracer in prostate cancer
31. Comparative Study of Tumor Targeting and Biodistribution of pH (Low) Insertion Peptides (pHLIP® Peptides) Conjugated with Different Fluorescent Dyes
32. Targeted Suppression of miRNA-33 Using pHLIP Improves Atherosclerosis Regression
33. PET Imaging of Acidic Tumor Environment With 89Zr-labeled pHLIP Probes
34. pHLIP®-mediated delivery of PEGylated liposomes to cancer cells
35. Family of pH (low) insertion peptides for tumor targeting
36. pHLIP peptide targets nanogold particles to tumors
37. pH (low) insertion peptide (pHLIP) targets ischemic myocardium
38. pH-(low)-insertion-peptide (pHLIP) translocation of membrane impermeable phalloidin toxin inhibits cancer cell proliferation
39. pH (Low) Insertion Peptide (pHLIP) Inserts across a Lipid Bilayer as a Helix and Exits by a Different Path
40. Energetics of Peptide (pHLIP) Binding to and Folding across a Lipid Bilayer Membrane
41. Mechanism and Uses of a Membrane Peptide That Targets Tumors and Other Acidic Tissues in vivo
42. Acidic environments trigger intracellular H+-sensing FAK proteins to re-balance sarcolemmal acid–base transporters and auto-regulate cardiomyocyte pH
43. Translocation of Molecules into Cells by pH-Dependent Insertion of a Transmembrane Helix
44. Correction to ‘Tumor-selective, antigen-independent delivery of a pH sensitive peptide-topoisomerase inhibitor conjugate suppresses tumor growth without systemic toxicity’
45. In Vivo pH Imaging with 99mTc-pHLIP
46. Measuring Tumor Aggressiveness and Targeting Metastatic Lesions with Fluorescent pHLIP
47. Fabrication of semiconductor nanowires by conjugation of quantum dots to actin filaments
48. PET Imaging of Acidic Tumor Environment With 89Zr-labeled pHLIP Probes.
49. Tumor-selective, antigen-independent delivery of a pH sensitive peptide-topoisomerase inhibitor conjugate suppresses tumor growth without systemic toxicity
50. Polyamines drive myeloid cell survival by buffering intracellular pH to promote immunosuppression in glioblastoma
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