Literature DB >> 29512710

Enhanced rapamycin delivery to hemangiomas by lipid polymer nanoparticles coupled with anti-VEGFR antibody.

Haitao Li1, Yunfei Teng1, Xia Xu2, Jianyong Liu1.   

Abstract

The most common tumors in children are infantile hemangiomas which could cause morbidity and severe complications. The development of novel alternative drugs to treat infantile hemangiomas is necessary, since Hemangeol is the only US Food and Drug Administration-approved drug for infantile hemangiomas. However, Hemangeol has several disadvantages, including a high frequency of administration and adverse effects. Rapamycin is a well‑established antiangiogenic drug, and we have previously developed rapamycin lipid polymer nanoparticles (R‑PLNPs) as a local sustained‑release drug delivery system to achieve controlled rapamycin release and to decrease the frequency of administration and side effects of rapamycin. To improve the targeting of R‑PLNPs to infantile hemangiomas in the present study, R‑PLNPs were modified to include an antibody against vascular endothelial growth factor receptor (VEGF). The characteristics, and the anti‑hemangioma activity of the resulting R‑PLNPs coupled with the anti‑VEGFR2 antibody (named R‑PLNPs‑V) were examined in vitro and in vivo. R‑PLNPs‑V possessed a small size (115 nm) and sustained drug release for 6 days. The anti‑VEGFR2 antibody promoted the targeting and cytotoxic effect of R‑PLNPs‑V to human hemangioma endothelial cells and human umbilical vein endothelial cells. Using a subcutaneous infantile hemangioma xenograft in mice, the in vivo therapeutic effect (evaluated with hemangioma weight, volume, and microvessel density) of R‑PLNPs‑V was demonstrated to be superior compared with rapamycin alone and other non‑targeted nanoparticles, without any total body weight loss. In summary, R‑PLNPs‑V could facilitate targeted delivery and sustained release of rapamycin to infantile hemangiomas, and thus may represent a promising candidate treatment for infantile hemangiomas.

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Year:  2018        PMID: 29512710     DOI: 10.3892/ijmm.2018.3518

Source DB:  PubMed          Journal:  Int J Mol Med        ISSN: 1107-3756            Impact factor:   4.101


  3 in total

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Journal:  Photoacoustics       Date:  2020-04-11

Review 2.  Recent advances of nanotechnology-based tumor vessel-targeting strategies.

Authors:  Dongjie Zhu; Yang Li; Zhengjia Zhang; Zeyu Xue; Zhenglai Hua; Xinyi Luo; Ting Zhao; Cheng Lu; Yuanyan Liu
Journal:  J Nanobiotechnology       Date:  2021-12-20       Impact factor: 10.435

Review 3.  Nanomedicine for Gene Delivery for the Treatment of Cardiovascular Diseases.

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Journal:  Curr Gene Ther       Date:  2019       Impact factor: 4.391

  3 in total

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