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1. Targeted In Vivo Loading of Red Blood Cells Markedly Prolongs Nanocarrier Circulation

2. Dual Affinity to RBCs and Target Cells (DART) enhances both organ- and cell type-targeting of intravascular nanocarriers

3. Combating complement’s deleterious effects on nanomedicine by conjugating complement regulatory proteins to nanoparticles

4. Supramolecular arrangement of protein in nanoparticle structures predicts nanoparticle tropism for neutrophils in acute lung inflammation

6. Red blood cells: The metamorphosis of a neglected carrier into the natural mothership for artificial nanocarriers

7. Microphysiological Engineering of Self-Assembled and Perfusable Microvascular Beds for the Production of Vascularized Three-Dimensional Human Microtissues

8. Combining vascular targeting and the local first pass provides 100-fold higher uptake of ICAM-1-targeted vs untargeted nanocarriers in the inflamed brain

9. Abstract P742: Nanoparticles Targeting the Inflammatory Network in Acute Neurovascular Inflammation: Lungs to Brain Axis

11. Supramolecular Organization Predicts Protein Nanoparticle Delivery to Neutrophils for Acute Lung Inflammation Diagnosis and Treatment

12. Molecularly Engineered Nanobodies for Tunable Pharmacokinetics and Drug Delivery

13. Selective targeting of nanomedicine to inflamed cerebral vasculature to enhance the blood-brain barrier

14. Combating Complement's Deleterious Effects on Nanomedicine by Conjugating Complement Regulatory Proteins to Nanoparticles (Adv. Mater. 8/2022)

15. Vascular Targeting of Radiolabeled Liposomes with Bio-Orthogonally Conjugated Ligands: Single Chain Fragments Provide Higher Specificity than Antibodies

16. Red blood cell-hitchhiking boosts delivery of nanocarriers to chosen organs by orders of magnitude

17. Unintended effects of drug carriers: Big issues of small particles

18. Biocompatible coupling of therapeutic fusion proteins to human erythrocytes

19. The new frontiers of the targeted interventions in the pulmonary vasculature: precision and safety (2017 Grover Conference Series)

20. Site-Specific Modification of Single-Chain Antibody Fragments for Bioconjugation and Vascular Immunotargeting

21. Molecular engineering of high affinity single-chain antibody fragment for endothelial targeting of proteins and nanocarriers in rodents and humans

22. Dual targeting of therapeutics to endothelial cells: collaborative enhancement of delivery and effect

23. List of Contributors

24. Vascular endothelial effects of collaborative binding to platelet/endothelial cell adhesion molecule-1 (PECAM-1)

25. Overcoming Oxidants and Inflammation

26. Targeting therapeutics to endothelium: are we there yet?

27. Targeting to Endothelial Cells Augments the Protective Effect of Novel Dual Bioactive Antioxidant/Anti-Inflammatory Nanoparticles

28. Mechanism of Collaborative Enhancement of Binding of Paired Antibodies to Distinct Epitopes of Platelet Endothelial Cell Adhesion Molecule-1

29. Mechanisms that determine nanocarrier targeting to healthy versus inflamed lung regions

30. Antioxidant protection by PECAM-targeted delivery of a novel NADPH-oxidase inhibitor to the endothelium in vitro and in vivo

31. Targeted nanocarriers for imaging and therapy of vascular inflammation

32. List of Contributors

33. Targeted Antioxidant Interventions for Vascular Pathologies

34. Mechanosignaling with ischemia‐reperfusion: restart of flow triggers a signaling cascade (1180.11)

35. Endothelial targeting of liposomes encapsulating SOD/Catalase mimetic EUK-134 alleviates acute pulmonary inflammation

36. Nanocarriers for Vascular Delivery of Anti-Inflammatory Agents

37. Endothelial targeting of nanocarriers loaded with antioxidant enzymes for protection against vascular oxidative stress and inflammation

38. Vascular immunotargeting to endothelial determinant ICAM-1 enables optimal partnering of recombinant scFv-thrombomodulin fusion with endogenous cofactor

39. Nanocarriers for vascular delivery of antioxidants

40. Endothelial delivery of antioxidant enzymes loaded into non-polymeric magnetic nanoparticles

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