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本文引用的文献

1
Non-invasive in vivo characterization of microclimate pH inside in situ forming PLGA implants using multispectral fluorescence imaging.利用多光谱荧光成像技术对原位形成的 PLGA 植入物内部微气候 pH 值进行非侵入式体内特征描述。
J Control Release. 2014 Apr 10;179:52-62. doi: 10.1016/j.jconrel.2014.01.024. Epub 2014 Feb 3.
2
Solid/Hollow depots for drug delivery, part 1: effect of drug characteristics and polymer molecular weight on the phase-inversion dynamics, depot morphology, and drug release.用于药物输送的固体/空心储库,第 1 部分:药物特性和聚合物分子量对相转变动力学、储库形态和药物释放的影响。
J Pharm Sci. 2014 Feb;103(2):485-95. doi: 10.1002/jps.23790. Epub 2013 Dec 19.
3
Noninvasive characterization of the effect of varying PLGA molecular weight blends on in situ forming implant behavior using ultrasound imaging.采用超声成像技术无创性分析不同 PLGA 分子量混合物对原位形成植入物行为的影响。
Theranostics. 2012;2(11):1064-77. doi: 10.7150/thno.4181. Epub 2012 Nov 8.
4
Effect of cargo properties on in situ forming implant behavior determined by noninvasive ultrasound imaging.非侵入性超声成像对原位形成植入物行为的货物特性影响。
Drug Deliv Transl Res. 2012 Feb 1;2(1):45-55. doi: 10.1007/s13346-011-0054-y.
5
Effect of polymer type on the dynamics of phase inversion and drug release in injectable in situ gelling systems.聚合物类型对可注射原位凝胶系统相转变和药物释放动力学的影响。
J Biomater Sci Polym Ed. 2012;23(1-4):251-66. doi: 10.1163/092050610X549171. Epub 2011 Jan 18.
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Effect of injection site on in situ implant formation and drug release in vivo.注射部位对体内原位植入物形成和药物释放的影响。
J Control Release. 2010 Nov 1;147(3):350-8. doi: 10.1016/j.jconrel.2010.08.020. Epub 2010 Aug 20.
7
Poly(ethylene carbonate) as a surface-eroding biomaterial for in situ forming parenteral drug delivery systems: a feasibility study.聚碳酸亚乙酯作为一种表面侵蚀型生物材料用于原位形成的注射型药物传递系统:一项可行性研究。
Eur J Pharm Biopharm. 2010 Oct;76(2):222-9. doi: 10.1016/j.ejpb.2010.07.009. Epub 2010 Jul 19.
8
In vitro and in vivo study of thymosin alpha1 biodegradable in situ forming poly(lactide-co-glycolide) implants.胸腺肽α1 可生物降解原位形成聚(丙交酯-乙交酯)植入物的体内外研究。
Int J Pharm. 2010 Sep 15;397(1-2):122-9. doi: 10.1016/j.ijpharm.2010.07.015. Epub 2010 Jul 25.
9
Characterization of formulation parameters affecting low molecular weight drug release from in situ forming drug delivery systems.考察影响原位形成药物传递系统中低分子量药物释放的配方参数的特性。
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10
Noninvasive characterization of in situ forming implants using diagnostic ultrasound.使用诊断超声对原位形成植入物进行无创特征描述。
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添加剂对相敏原位成型植入物性能的影响。

The Effect of Additives on the Behavior of Phase Sensitive In Situ Forming Implants.

作者信息

Solorio Luis, Sundarapandiyan Divya, Olear Alex, Exner Agata A

机构信息

Department of Chemical Engineering, University of Michigan, Ann Arbor, Michigan, 48109.

School of Medicine, New York Medical College, Valhalla, New York, 10595.

出版信息

J Pharm Sci. 2015 Oct;104(10):3471-80. doi: 10.1002/jps.24558. Epub 2015 Jul 14.

DOI:10.1002/jps.24558
PMID:26175342
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4564324/
Abstract

Phase-sensitive in situ forming implants (ISFI) are a promising platform for the controlled release of therapeutic agents. The simple manufacturing, ease of placement, and diverse payload capacity make these implants an appealing delivery system for a wide range of applications. Tailoring the release profile is paramount for effective treatment of disease. In this study, three innovative formulation modifications were used to control drug release. Specifically, water, 1,1'-dioctadecyl-3,3,3',3'-tetramethylindocarbocyanine perchlorate (DiI), and bovine serum albumin (BSA) were incorporated into an ISFI solution containing the small molecular weight mock drug, sodium fluorescein. The effects of these additives on drug release, swelling, phase inversion, erosion, and implant microstructure were evaluated. Diagnostic ultrasound was used to monitor changes in swelling and phase inversion over time noninvasively. Water, DiI, and the combination of BSA/DiI functioned to reduce burst release 47.6%, 76.6%, and 59.0%, respectively. Incorporation of water into the casting solution also enhanced the release of drug during the diffusion period of release by 165.2% relative to the excipient free control. Incorporation of BSA into the polymer solution did not significantly alter the burst release (p < 0.05); however, the onset of degradation facilitated release was delayed relative to the excipient-free control by 5 days. This study demonstrates that the use of excipients provides a facile method to tailor the release profile and degradation rate of implants without changing the polymer or solvent used in the implant formulation, providing fine control of drug dissolution during distinct phases of release.

摘要

相敏原位成型植入物(ISFI)是用于治疗剂控释的一个有前景的平台。其制造简单、易于植入且具有多样的载药量,使这些植入物成为适用于广泛应用的有吸引力的给药系统。调整释放曲线对于疾病的有效治疗至关重要。在本研究中,采用了三种创新性的制剂修饰方法来控制药物释放。具体而言,将水、1,1'-二辛基-3,3,3',3'-四甲基吲哚羰花青高氯酸盐(DiI)和牛血清白蛋白(BSA)加入到含有小分子模拟药物荧光素钠的ISFI溶液中。评估了这些添加剂对药物释放、溶胀、相转变、侵蚀和植入物微观结构的影响。使用诊断超声来无创监测溶胀和相转变随时间的变化。水、DiI以及BSA/DiI组合分别使突释降低了47.6%、76.6%和59.0%。相对于不含辅料的对照,在浇铸溶液中加入水还使药物在释放扩散期的释放量提高了165.2%。将BSA加入到聚合物溶液中并未显著改变突释(p < 0.05);然而,与不含辅料的对照相比,降解促进释放的起始延迟了5天。本研究表明,使用辅料提供了一种简便的方法来调整植入物的释放曲线和降解速率,而无需改变植入物制剂中使用的聚合物或溶剂,从而在释放的不同阶段对药物溶解进行精细控制。