Spatial and temporal control of microwave triggered chemiluminescence: a protein detection platform.
نویسندگان
چکیده
We have combined the principles of microwave circuitry and antenna design and our recent work in microwave-triggered metal-enhanced chemiluminescence to now "trigger" chemically and enzyme-catalyzed chemiluminescent reactions with spatial and temporal control. With this technology platform, we achieve spatial and temporal control of enzyme and chemically catalyzed chemiluminescence reactions to achieve more than 500-fold increases in "on-demand" photon flux from chemically catalyzed chemiluminescent reactions. We also report a 6-fold increase in photon flux from HRP-catalyzed assays on disposable coverslips functionalized with HRP and placed proximal to the substrates modified with thin-film aluminum triangle disjointed "bow-tie" structures. In addition, we demonstrate the applicability of this technology to develop multiplexed or high-throughput chemiluminescent assays. We also demonstrate the clinical and biological relevance of this technology platform by affixing aluminum structures in proximity to HRP protein immobilized on nitrocellulose to improve the sensitivity for this model Western blot scheme by 50-fold. We believe analytical applications that rely on enzyme-catalyzed chemiluminescence, such as immunoassays, may greatly benefit from this new platform technology.
منابع مشابه
Microwave triggered metal enhanced chemiluminescence: Quantitative protein determination.
We present a new technology that offers a faster alternative to the chemiluminescence-based detection that is used in protein assay platforms today. By combining the use of silver nanostructures with chemiluminescent species, a technique that our laboratories have recently shown can enhance the system photon flux over 50-fold, with the use of low-power microwave heating to additionally accelera...
متن کاملMulticolor microwave-triggered metal-enhanced chemiluminescence.
We describe a novel platform technology for both significantly enhancing and obtaining chemiluminescence signatures "on-demand", subsequently named Microwave-Triggered Metal-Enhanced Chemiluminescence. By combining the use of silver nanoparticles to plasmon enhance chemiluminescence with the use of low power microwaves to localize heating around the nanostructures, we can both optically amplify...
متن کاملMicrowave-triggered surface plasmon coupled chemiluminescence.
Surface plasmon spectroscopy (SPS) is commonly implemented as an analytical tool to characterize thin kinetic processes and binding reactions at interfaces.1 Due to the limited sensitivity of SPS for the detection of dilute analytes of low molecular mass, surface plasmon coupled fluorescence (SPCF) or, alternatively, surface plasmon coupled emission (SPCE) has been proposed as an alternative me...
متن کاملEffect of Mobile Phone Microwaves on Fetal Period of BALB/c Mice in Histological Characteristics of Hippocampus and Learning Behaviors
Objective(s) The possible risks of radio-frequency electromagnetic fields (EMF) for the living organisms and human body are a growing concern for our society. In this study, we examined the possibility of changes in working memory and hippocampal histological characteristics effects in mice brain following whole body exposure to microwave radiation. Materials and Methods During gestation per...
متن کاملAn Effective Modality Conflict Model for Identifying Applicable Policies During Policy Evaluation
Policy evaluation is a process to determine whether a request submitted by a user satisfies the access control policies defined by an organization. Modality conflict is one of the main issues in policy evaluation. Existing modality conflict detection approaches do not consider complex condition attributes such as spatial and temporal constraints. An effective authorization propagation rule is n...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
- Analytical chemistry
دوره 79 18 شماره
صفحات -
تاریخ انتشار 2007