Thermally-Induced Intra-Articular Drug Delivery System
Thermally-Induced Intra-Articular Drug Delivery System
批准号:
7283957
负责人:
Lori A. Setton
金额:
$16.66万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2006
资助国家:
美国
项目状态:
已结题
起止时间:
2006-09-01 至 2009-06-30
关键词:
AdultAdverse effectsAliquotAnti-Inflammatory AgentsAnti-inflammatoryBindingBiodegradationBiodistributionBiologicalBiological AssayBlocking AntibodiesBody TemperatureCarrier ProteinsCartilageCharacteristicsChimeric ProteinsChronicDataDegenerative polyarthritisDiseaseDoseDrug CarriersDrug Delivery SystemsEffectivenessElastinGelGenesHalf-LifeHigh temperature of physical objectHumanIn VitroInfectionInflammatoryInjection Site ReactionInjection of therapeutic agentInterleukin-1Interleukin-1 ReceptorsIntra-Articular InjectionsIntramuscular InjectionsIntravenousJointsKineticsKnee jointLabelLiquid substanceMeasuresMeniscus structure of jointModelingOrganPainPathologyPatientsPeptidesPhagocytosisPharmaceutical PreparationsPhase TransitionProteinsProtocols documentationRateRattusRecombinantsResearch PersonnelRheumatoid ArthritisSolutionsSurface Plasmon ResonanceSymptomsSynovial FluidSynovial MembraneT-LymphocyteTemperatureTestingTimeTissuesTransition TemperatureTumor Necrosis Factor-alphaWorkarthropathiesbaseconceptcontrolled releasedaydesigndisabilityfallshuman TNF proteinlorislymphocyte proliferationnovelpolypeptideprogramsreceptor bindingresidencesize
中文摘要
描述(申请人提供):抗炎药物,白介素1受体拮抗剂(IL1ra)和肿瘤坏死因子-α阻断抗体,已被证明显著改变炎症性关节疾病的进展。虽然这些药物对骨关节炎的治疗有很大的影响,但与所需的全身给药方案相关的严重副作用限制了它们在骨关节炎的单关节病理学中的应用。需要一种有效的机制,将这些药物直接输送到联合空间,同时提供建议的高浓度和频繁剂量,以提高药效。这项研究的目的是开发一种新型的关节内给药系统,该系统将有效地将这些改变疾病的药物直接输送到关节间隙。弹性蛋白样多肽(ELP)将作为新开发的药物输送系统的基础,在注射到关节间隙时,ELP被热触发,在体温下形成大的微米级聚集体。我们认为,随着时间的推移,这些聚集体可以包裹蛋白质药物,从而成为药物释放的“仓库”。我们进一步提出了ELP作为这些蛋白质药物的药物载体的两种具体机制:(1)通过混合和热引发聚集形成(>;35℃)后物理捕获蛋白质药物,或(2)通过设计ELP-药物融合蛋白,当热引发时,ELP-药物融合蛋白将发生聚集形成。在这个项目中,我们建议研究这两个概念应用于一种蛋白质药物IL1Ra的释放,作为第一个概念验证。我们建议的工作是:(1)合成物理包裹IL1Ra的ELPs,并评估IL1Ra在大鼠模型中的生物分布动力学;(2)合成ELPs和IL1Ra的融合蛋白,并类似地评估IL1Ra在大鼠体内的生物分布。从ELP中释放的蛋白质药物,无论是作为可溶性药物还是融合蛋白,也将在体外进行评估,以确定释放动力学、与靶(IL-1受体1)的结合活性以及调节T淋巴细胞增殖的生物活性。我们的中心假设是,关节内注射基于ELP的IL1Ra“药库”将增加这种重要的疾病修改药物在关节腔的半衰期,从而提供作为一种高效治疗骨性关节炎的可能性。
英文摘要
DESCRIPTION (provided by applicant): The anti-inflammatory drugs, IL-1 receptor antagonist (IL1Ra) and TNF-alpha blocking antibodies, have been shown to dramatically modify the progression of inflammatory joint disease. While these drugs have significant potential to impact treatment of osteoarthritis, serious side effects associated with the required systemic administration protocol limits their application to single joint pathology in osteoarthritis. There is a need for an effective mechanism to deliver these drugs directly to the joint space, while providing for the high concentrations and frequent dosing suggested for drug effectiveness. The objective of this study is to develop a novel intra-articular drug delivery system that will be effective for delivering these disease-modifying drugs directly to the joint space. Elastin-like polypeptides (ELPs) will serve as the basis for the newly developed drug delivery system, whereby ELPs are thermally triggered to form large, micron size aggregates at body temperature upon injection into the joint space. We propose that these aggregates can entrap protein drugs and thus serve as a "depot" for drug release over time. We further propose two specific mechanisms by which ELPs can serve as drug carriers for these protein drugs: (1) by physical entrapment of the protein drug following mixing and thermally-initiated aggregate formation (> 35 degrees C), or (2) by design of an ELP-drug fusion protein that will undergo aggregate formation when thermally-initiated. In this project, we propose work to study these two concepts applied to the release of one protein drug, IL1Ra, as a first proof-of-concept. We propose work to: (1) synthesize ELPs that physically entrap IL1Ra into aggregates and evaluate the kinetics of IL1Ra biodistribution in a rat model; and (2) synthesize fusion proteins of ELPs and IL1Ra and similarly evaluate IL1Ra biodistribution in the rat. The protein drugs released from the ELPs, either as soluble drug or fusion protein, will also be evaluated in vitro to determine kinetics of release, binding activity to target (IL-1 receptor 1) and biological activity in regulating T-lymphocyte proliferation. It is our central hypothesis that intra-articular injection of an ELP-based "drug depot" for IL1Ra will increase the half-life of this important disease-modifying drug in the joint space, and thus provide the potential to serve as a highly effective treatment for osteoarthritis.
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会议论文
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依托单位:
Biomedical Engineering Society 2017 Annual Meeting
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Engineering Microenvironments for the Nucleus Pulposus Cell
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依托单位:
CELLULAR DELIVERY OF RAT INTERVERTEBRAL DISC CELLS IN DISC DEGENERATION MODEL
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批准号:8363214
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依托单位:
Project 2
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EVALUATION OF IN SITU CROSSLINKABLE BIOMATERIAL FOR OSTEOCHONDRAL DEFECT REPA
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资助金额:$0.51万
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Thermally-Induced Intra-Articular Drug Delivery System
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依托单位:
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海外基金