4.7 Article

Synthetic high-density lipoprotein nanodisks for targeted withalongolide delivery to adrenocortical carcinoma

期刊

INTERNATIONAL JOURNAL OF NANOMEDICINE
卷 12, 期 -, 页码 6581-6594

出版社

DOVE MEDICAL PRESS LTD
DOI: 10.2147/IJN.S140591

关键词

synthetic high-density lipoproteins; scavenger receptor class B-1; targeted delivery; nanodisks; withalongolides; adrenocortical carcinomas

资金

  1. University of Michigan, Michigan Translational Research and Commercialization (MTRAC) grant
  2. University of Michigan Comprehensive Cancer Center support grant [F030221]
  3. University of Michigan Department of Surgery, Research Advisory Committee (RAC) grant
  4. NIH [T32 CA009672, R01 CA173292, R01-AI127070, R01-EB022563, R01-CA210273, U01-CA-120458, R21 NS091555]
  5. American Heart Association (AHA) [15PRE25090050]
  6. Div Of Chem, Bioeng, Env, & Transp Sys
  7. Directorate For Engineering [1553831] Funding Source: National Science Foundation

向作者/读者索取更多资源

Adrenocortical carcinoma (ACC) is a rare endocrine malignancy and has a 5-year survival rate of <35%. ACC cells require cholesterol for steroid hormone production, and this requirement is met via expression on the cell surface of a high level of SRB1, responsible for the uptake of high-density lipoproteins (HDLs), which carry and transport cholesterol in vivo. Here, we describe how this natural lipid carrier function of SRB1 can be utilized to improve the tumor-targeted delivery of a novel natural product derivative - withalongolide A 4,19,27-triacetate (WGA-TA) - which has shown potent antitumor efficacy, but poor aqueous solubility. Our strategy was to use synthetic HDL (sHDL) nanodisks, which are effective in tumor-targeted delivery due to their smallness, long circulation half-life, documented safety, and ability to bind to SRB1. In this study, we prepared sHDL nanodisks using an optimized phospholipid composition combined with ApoA(1) mimetic peptide (22A), which has previously been tested in clinical trials, to load WGA-TA. Following optimization, WGA-TA nanodisks showed drug encapsulation efficiency of 78%, a narrow particle size distribution (9.81 +/- 0.41 nm), discoid shape, and sustained drug release in phosphate buffered saline. WGA-TA-sHDL nanodisks exhibited higher cytotoxicity in the ACC cell line H295R half maximal inhibitory concentration ([IC50] 0.26 +/- 0.045 mu M) than free WGA-TA (IC50 0.492 +/- 0.115 mu M, P < 0.05). Fluorescent dye-loaded sHDL nanodisks efficiently accumulated in H295R adrenal carcinoma xenografts 24 hours following dosing. Moreover, daily intraperitoneal administration of 7 mg/kg WGA-TA-loaded sHDL nanodisks significantly inhibited tumor growth during 21-day administration to H295R xenograft-bearing mice compared to placebo (P < 0.01). Collectively, these results suggest that WGA-TA-loaded nanodisks may represent a novel and beneficial therapeutic strategy for the treatment of ACC.

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