Multiplex Assay Kit for Retinoschisin (RS) ,etc. by CBA (Cytometric Bead Array)

RS1; XLRS1; Retinoschisis X-Linked,Juvenile 1; X-linked juvenile retinoschisis protein

Specificity

This assay has high sensitivity and excellent specificity for detection of Retinoschisin (RS) ,etc. by CBA (Cytometric Bead Array).
No significant cross-reactivity or interference between Retinoschisin (RS) ,etc. by CBA (Cytometric Bead Array) and analogues was observed.

Recovery

Matrices listed below were spiked with certain level of recombinant Retinoschisin (RS) ,etc. by CBA (Cytometric Bead Array) and the recovery rates were calculated by comparing the measured value to the expected amount of Retinoschisin (RS) ,etc. by CBA (Cytometric Bead Array) in samples.

Matrix Recovery range (%) Average(%)
serum(n=5) 79-103 92
EDTA plasma(n=5) 82-90 87
heparin plasma(n=5) 95-102 99

Precision

Intra-assay Precision (Precision within an assay): 3 samples with low, middle and high level Retinoschisin (RS) ,etc. by CBA (Cytometric Bead Array) were tested 20 times on one plate, respectively.
Inter-assay Precision (Precision between assays): 3 samples with low, middle and high level Retinoschisin (RS) ,etc. by CBA (Cytometric Bead Array) were tested on 3 different plates, 8 replicates in each plate.
CV(%) = SD/meanX100
Intra-Assay: CV<10%
Inter-Assay: CV<12%

Linearity

The linearity of the kit was assayed by testing samples spiked with appropriate concentration of Retinoschisin (RS) ,etc. by CBA (Cytometric Bead Array) and their serial dilutions. The results were demonstrated by the percentage of calculated concentration to the expected.

Sample 1:2 1:4 1:8 1:16
serum(n=5) 79-90% 95-103% 91-105% 86-98%
EDTA plasma(n=5) 84-96% 93-101% 80-93% 96-104%
heparin plasma(n=5) 88-105% 92-105% 86-102% 94-101%

Stability

The stability of kit is determined by the loss rate of activity. The loss rate of this kit is less than 5% within the expiration date under appropriate storage condition.
To minimize extra influence on the performance, operation procedures and lab conditions, especially room temperature, air humidity, incubator temperature should be strictly controlled. It is also strongly suggested that the whole assay is performed by the same operator from the beginning to the end.

Reagents and materials provided

Reagents Quantity Reagents Quantity

Assay procedure summary

1. Add 200μL analysis buffer solution to each well of the plate for pre-wetting;
2. Preparation of standards, reagents and samples before the experiment;
3. Add 100μL standard or sample to each well, add 10μL magnetic beads, and incubate 120 minutes protect from light at 25°C on shaker;
4. Remove liquid on magnetic frame, add 100μL prepared Detection Reagent A. Incubate 60 minutes protect from light at 25°C on shaker;
5. Remove liquid on magnetic frame, add 100μL prepared Detection Reagent B, and incubate 30 minutes protect from light at 25°C on shaker;
6. Wash plate once on magnetic frame;
7. Add 100μL sheath fluid, swirl for 10 minutes, read on the machine.

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Magazine Citations
Hum Gene Ther Dextran and protamine-based solid lipid nanoparticles as potential vectors for the treatment of X-linked juvenile retinoschisis. PubMed: 22295905
IEEE Transactions on Magnetics Influence of Iron Oxide Nanoparticles on Innate and Genetically Modified Secretion Profiles of Mesenchymal Stem Cells Scholarsportal: Source
International Journal of Pharmaceutics A novel gene therapy vector based on hyaluronic acid and solid lipid nanoparticles for ocular diseases Pubmed:24576595
22 Structural recovery of the retina in a retinoschisin-deficient mouse after gene replacement therapy by solid lipid nanoparticles Pubmed:26986855
UBC Library Cell based therapeutics for retinal degenerations cIRcle:1.0303136
Molecular Vision An ex vivo gene therapy approach in X-linked retinoschisis pubmed:27390514
Catalog No. Related products for research use of Homo sapiens (Human) Organism species Applications (RESEARCH USE ONLY!)
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