| Enhancing Oral Delivery of Biologics: A Non-Competitive and Cross-Reactive Anti-Leptin Receptor Nanofitin Demonstrates a Gut-Crossing Capacity in an Ex Vivo Porcine Intestinal Model | Pharmaceutics |  | | 2024 | 128 | 289 |
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| Targeted Nanofitin-drug Conjugates Achieve Efficient Tumor Delivery and Therapeutic Effect in an EGFRpos Mouse Xenograft Model | Molecular cancer therapeutics |  | | 2023 | 77 | 249 |
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| Challenges and Opportunities in the Oral Delivery of Recombinant Biologics | Pharmaceutics |  | | 2023 | 50 | 70 |
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| Platelet Transforming Growth Factor-β1 Induces Liver Sinusoidal Endothelial Cells to Secrete Interleukin-6 | Cells |  | | 2020 | 370 | 215 |
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| Quenching-induced deactivation of photosensitizer by nanoencapsulation to improve phototherapy of cancer | Journal of Drug Targeting |  | | 2009 | 454 | 0 |
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| Benefits of nanoencapsulation for the hypercin-mediated photodetection of ovarian micrometastases | European journal of pharmaceutics and biopharmaceutics |  | | 2009 | 681 | 0 |
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| Screening of nanoparticulate delivery systems for the photodetection of cancer in a simple and cost-effective model | Nanomedicine |  | | 2009 | 660 | 0 |
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| Photodetection and photodynamic treatment of ovarian micrometastases : benefits of hypericin-loaded polymeric nanocarriers | |  | | 2008 | 883 | 910 |
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| The chick embryo and its chorioallantoic membrane (CAM) for the in vivo evaluation of drug delivery systems | Advanced drug delivery reviews |  | | 2007 | 682 | 2 |
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| Nanoparticles for photodynamic therapy of cancer | Nanomaterials for Cancer Therapy |  | | 2006 | 75 | 0 |
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| Hypericin-loaded nanoparticles for the photodynamic treatment of ovarian cancer | International journal of pharmaceutics |  | | 2006 | 563 | 1 |
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