کد مقاله کد نشریه سال انتشار مقاله انگلیسی نسخه تمام متن
5550421 1557297 2017 8 صفحه PDF دانلود رایگان
عنوان انگلیسی مقاله ISI
Hydrophobic ion pairing: Key to highly payloaded self-emulsifying peptide drug delivery systems
ترجمه فارسی عنوان
جفت شدن یون های هیدروفوبیک: کلید تحویل به سیستم های تحویل دارویی پپتیدی خودموسیله بسیار قابل استفاده است
کلمات کلیدی
لوپرولین، انسولین، دسموپرسین، سیستم های تحویل دارویی خود ایمولینگ، یون هیدروفوبیک پراگینگ، تحویل پپتید،
موضوعات مرتبط
علوم پزشکی و سلامت داروسازی، سم شناسی و علوم دارویی علوم دارویی
چکیده انگلیسی


- Independent from the type of peptide, docusate showed the most efficient hydrophobic ion pairing properties and was revealed as universal counter ion.
- Novel SEDDS containing Capryol 90, Labrafil M 2125 CS, Labrasol ALF, Peceol, propylene glycol, tetraglycol, Transcutol HP and Tween 20 were developed.
- The complexes were incorporated into SEDDS achieving a payload over 10%.
- SEDDS exhibited high stability and constant negative zeta potential over a 4 h incubation time.
- Correlation between the type of lipid excipients and the solubility was detected.

AimThe aim of this study was the formation and characterization of various ion pairs of therapeutic peptides with different surfactants in order to reach a high payload in self-emulsifying drug delivering systems (SEDDS).MethodsHydrophobic ion pairs (HIP) were formed between the anionic surfactants sodium docusate, dodecylsulfate and oleate and the peptides leuprorelin (LEU), insulin (INS) and desmopressin (DES). The efficiency of HIP formation was evaluated by quantifying the amount of formed complexes, log P value determination in n-octanol/water via HPLC and zeta potential measurements. Solvents and surfactants were screened regarding their complex solubilizing properties. Subsequently, peptide complexes were incorporated into SEDDS followed by payload and stability determination.ResultsIndependent from the type of peptide, docusate showed the most efficient HIP properties followed by dodecylsulfate and oleate. Ratios of 2:1 for LEU, 6:1 for INS and 1.5:1 for DES led to the highest quantity of formed complexes with docusate and log P increased at least by 3 units. The more docusate was added to each peptide, the more negative became the zeta potential of the resulting complex. Incorporating these optimized complexes into novel SEDDS containing Capryol 90, Labrafil M 2125 CS, Labrasol ALF, Peceol, propylene glycol, tetraglycol, Transcutol HP and Tween 20 allowed payloads of the LEU, DES and INS complexes above 10%. Moreover, SEDDS exhibited high stability and constant negative zeta potential over a 4 h incubation time.ConclusionFollowing the procedure described herein payloads >10% can be achieved for peptide drugs in SEDDS.

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ناشر
Database: Elsevier - ScienceDirect (ساینس دایرکت)
Journal: International Journal of Pharmaceutics - Volume 520, Issues 1–2, 30 March 2017, Pages 267-274
نویسندگان
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