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7. Zwitterionically modified alginates mitigate cellular overgrowth for cell encapsulation.

10. Inflammation-induced subcutaneous neovascularization for the long-term survival of encapsulated islets without immunosuppression

14. DPA‐Zinc around Polyplexes Acts Like PEG to Reduce Protein Binding while Targeting Cancer Cells

20. Tumor Microenvironment Triggered the In Situ Synthesis of an Excellent Sonosensitizer in Tumor for Sonodynamic Therapy

21. Caging Udp Kills Bacteria Without Detectable Resistance

22. Tumor Microenvironment Triggered in Situ Synthesis of an Excellent Sonosensitizer in Tumor for Sonodynamic Therapy

23. A Safe, Fibrosis‐Mitigating, and Scalable Encapsulation Device Supports Long‐Term Function of Insulin‐Producing Cells

28. A nanofibrous encapsulation device for safe delivery of insulin-producing cells to treat type 1 diabetes

29. An inverse-breathing encapsulation system for cell delivery

30. Correction: Single nanosheet can sustainably generate oxygen and inhibit respiration simultaneously in cancer cells

31. Single nanosheet can sustainably generate oxygen and inhibit respiration simultaneously in cancer cells

33. An Adhesive Hydrogel with “Load‐Sharing” Effect as Tissue Bandages for Drug and Cell Delivery

35. Stable Black Phosphorus Nanosheets Exhibiting High Tumor-Accumulating and Mitochondria-Targeting for Efficient Photothermal Therapy via Double Functionalization

36. A Safe, Fibrosis‐Mitigating, and Scalable Encapsulation Device Supports Long‐Term Function of Insulin‐Producing Cells.

37. Tumor Microenvironment Triggered the In SituSynthesis of an Excellent Sonosensitizer in Tumor for Sonodynamic Therapy

44. Biodegradable hydrogels with photodynamic antibacterial activity promote wound healing and mitigate scar formationElectronic supplementary information (ESI) available. See DOI: https://doi.org/10.1039/d2bm01493a

46. Etch Damage Evaluation in Integrated Ferroelectric Capacitor Side Wall by Piezoresponse Force Microscopy

49. Photothermal Therapy Nanomaterials Boosting Transformation of Fe(III) into Fe(II) in Tumor Cells for Highly Improving Chemodynamic Therapy

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