骨鈣素(OC)等多因子檢測(cè)試劑盒(流式熒光發(fā)光法)
Multiplex Assay Kit for Osteocalcin (OC) ,etc. by FLIA (Flow Luminescence Immunoassay)
BGLAP; OT; BGP; Bone Gla Protein; Bone Gamma-Carboxyglutamate Protein; Gamma-carboxyglutamic acid-containing protein
(注:?jiǎn)未位鞙y(cè)多因子不超過8個(gè)指標(biāo) )
- 編號(hào)LMA471Mu
- 物種Mus musculus (Mouse,小鼠) 相同的名稱,不同的物種。
- 實(shí)驗(yàn)方法雙抗夾心
- 反應(yīng)時(shí)長(zhǎng)3.5h
- 檢測(cè)范圍0.01-10ng/mL
- 靈敏度最小可檢測(cè)劑量小于等于0.003 ng/mL.
- 樣本類型Serum, plasma, tissue homogenates, cell lysates, cell culture supernates and other biological fluids.
- 下載 英文說(shuō)明書 中文說(shuō)明書
- 規(guī)格 8指標(biāo)數(shù) 7指標(biāo)數(shù) 6指標(biāo)數(shù) 5指標(biāo)數(shù) 4指標(biāo)數(shù) 3指標(biāo)數(shù) 2指標(biāo)數(shù)1指標(biāo)數(shù)
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特異性
本試劑盒用于檢測(cè)骨鈣素(OC)等多因子檢測(cè)試劑盒(流式熒光發(fā)光法),經(jīng)檢測(cè)與其它相似物質(zhì)無(wú)明顯交叉反應(yīng)。
由于受到技術(shù)及樣本來(lái)源的限制,不可能完成對(duì)所有相關(guān)或相似物質(zhì)交叉反應(yīng)檢測(cè),因此本試劑盒有可能與未經(jīng)檢測(cè)的其它物質(zhì)有交叉反應(yīng)。
回收率
分別于定值血清及血漿樣本中加入一定量的骨鈣素(OC)等多因子檢測(cè)試劑盒(流式熒光發(fā)光法)(加標(biāo)樣品),重復(fù)測(cè)定并計(jì)算其均值,回收率為測(cè)定值與理論值的比率。
樣本 | 回收率范圍(%) | 平均回收率(%) |
serum(n=5) | 98-105 | 102 |
EDTA plasma(n=5) | 89-96 | 92 |
heparin plasma(n=5) | 82-92 | 88 |
sodium citrate plasma(n=5) | 96-103 | 99 |
精密度
精密度用樣品測(cè)定值的變異系數(shù)CV表示。CV(%) = SD/mean×100
批內(nèi)差:取同批次試劑盒對(duì)低、中、高值定值樣本進(jìn)行定量檢測(cè),每份樣本連續(xù)測(cè)定20 次,分別計(jì)算不同濃度樣本的平均值及SD值。
批間差:選取3個(gè)不同批次的試劑盒分別對(duì)低、中、高值定值樣本進(jìn)行定量測(cè)定,每個(gè)樣本使用同一試劑盒重復(fù)測(cè)定8次,分別計(jì)算不同濃度樣本的平均值及SD值。
批內(nèi)差: CV<10%
批間差: CV<12%
線性
在定值血清及血漿樣本內(nèi)加入適量的骨鈣素(OC)等多因子檢測(cè)試劑盒(流式熒光發(fā)光法),并倍比稀釋成1:2,1:4,1:8,1:16的待測(cè)樣本,線性范圍即為稀釋后樣本中骨鈣素(OC)等多因子檢測(cè)試劑盒(流式熒光發(fā)光法)含量的測(cè)定值與理論值的比率。
樣本 | 1:2 | 1:4 | 1:8 | 1:16 |
serum(n=5) | 90-104% | 87-101% | 87-103% | 96-103% |
EDTA plasma(n=5) | 81-102% | 99-105% | 96-104% | 88-102% |
heparin plasma(n=5) | 79-90% | 78-101% | 94-105% | 82-101% |
sodium citrate plasma(n=5) | 83-94% | 98-105% | 78-102% | 87-104% |
穩(wěn)定性
經(jīng)測(cè)定,試劑盒在有效期內(nèi)按推薦溫度保存,其活性降低率小于5%。
為減小外部因素對(duì)試劑盒破壞前后檢測(cè)值的影響,實(shí)驗(yàn)室的環(huán)境條件需盡量保持一致,尤其是實(shí)驗(yàn)室內(nèi)溫度、濕度及溫育條件。其次由同一實(shí)驗(yàn)員來(lái)進(jìn)行操作可減少人為誤差。
實(shí)驗(yàn)流程
1. 實(shí)驗(yàn)前標(biāo)準(zhǔn)品、試劑及樣本準(zhǔn)備;
2. 加樣(標(biāo)準(zhǔn)品、樣本、磁珠)標(biāo)準(zhǔn)品或樣本100μL及磁珠10μL,
37°C酶標(biāo)板振蕩器孵育90分鐘;
3. 磁吸甩干,加檢測(cè)溶液A100μL,37°C酶標(biāo)板振蕩器孵育60分鐘;
4. 磁吸洗板3次;
5. 加檢測(cè)溶液B100μL,37°C振動(dòng)孵育30分鐘;
6. 磁吸洗板3次;
7. 加鞘液100μL,旋渦震蕩2分鐘后讀數(shù)。
實(shí)驗(yàn)原理
將骨鈣素(OC)等多因子檢測(cè)試劑盒(流式熒光發(fā)光法)抗體包被于磁珠,制成固相載體,向微孔中分別加入標(biāo)準(zhǔn)品或標(biāo)本以及磁珠,其中的骨鈣素(OC)等多因子檢測(cè)試劑盒(流式熒光發(fā)光法)與連接于固相載體上的抗體結(jié)合,然后加入生物素化的骨鈣素(OC)等多因子檢測(cè)試劑盒(流式熒光發(fā)光法)抗體,將未結(jié)合的生物素化抗體洗凈后,加入PE標(biāo)記的親和素,再次徹底洗滌后即可上機(jī)讀數(shù)。MFI值和樣品中的骨鈣素(OC)等多因子檢測(cè)試劑盒(流式熒光發(fā)光法)呈正相關(guān)。
贈(zèng)品
相關(guān)產(chǎn)品
編號(hào) | 適用物種:Mus musculus (Mouse,小鼠) | 應(yīng)用(僅供研究使用,不用于臨床診斷!) |
RPA471Mu02 | 骨鈣素(OC)重組蛋白 | Positive Control; Immunogen; SDS-PAGE; WB. |
APA471Mu01 | 骨鈣素(OC)活性蛋白 | Cell?culture;?Activity?Assays. |
RPA471Mu01 | 骨鈣素(OC)重組蛋白 | Positive Control; Immunogen; SDS-PAGE; WB. |
PAA471Mu02 | 骨鈣素(OC)多克隆抗體 | WB; IHC; ICC; IP. |
PAA471Mu01 | 骨鈣素(OC)多克隆抗體 | WB; IHC; ICC; IP. |
MEA471Mu | 骨鈣素(OC)檢測(cè)試劑盒(酶聯(lián)免疫吸附試驗(yàn)法,小樣本) | Enzyme-linked immunosorbent assay for Antigen Detection. |
IEA471Mu | 骨鈣素(OC)檢測(cè)試劑盒(酶聯(lián)免疫吸附試驗(yàn)法,快捷型) | Enzyme-linked immunosorbent assay for Antigen Detection. |
SEA471Mu | 骨鈣素(OC)檢測(cè)試劑盒(酶聯(lián)免疫吸附試驗(yàn)法) | Enzyme-linked immunosorbent assay for Antigen Detection. |
LMA471Mu | 骨鈣素(OC)等多因子檢測(cè)試劑盒(流式熒光發(fā)光法) | FLIA Kit for Antigen Detection. |
KSA471Mu01 | 骨鈣素(OC)檢測(cè)試劑盒DIY材料(酶聯(lián)免疫吸附試驗(yàn)法) | Main materials for "Do It (ELISA Kit) Yourself". |
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International Journal of Nanomedicine | Nano-Hydroxyapatite Coating Promotes Porous Calcium Phosphate Ceramic-Induced Osteogenesis Via BMP/Smad Signaling Pathway [Pubmed: 31632013] |
Molecular Therapy-Nucleic Acids | AAV-anti-miR-214 prevents collapse of the femoral head in osteonecrosis by regulating osteoblast and osteoclast activities [Pubmed: 31739209] |
International Journal of Environmental Research and Public Health | Alleviating Effect of α-Lipoic Acid and Magnesium on Cadmium-Induced Inflammatory Processes, Oxidative Stress and Bone Metabolism Disorders in Wistar Rats [Pubmed: 31739465] |
Pharmacology | MiR-296 Promotes Osteoblast Differentiation by Upregulating Cbfal [Pubmed: 31694033] |
Brazilian Journal of Medical and Biological Research | Beneficial effects of Cuscuta chinensis extract on glucocorticoid-induced osteoporosis through modulation of RANKL/OPG signals [Pubmed: 31826180] |
Biomedicine & Pharmacotherapy | Vinpocetine inhibits RANKL-induced osteoclastogenesis and attenuates ovariectomy-induced bone loss [Pubmed: 31846839] |
Journal of Bone and Mineral Research | BMP9 reduces bone loss in ovariectomized mice by dual regulation of bone remodeling [Pubmed: 31914211] |
Theranostics | EDTA-Modified 17β-Estradiol-Laden Upconversion Nanocomposite for Bone-Targeted Hormone Replacement Therapy for Osteoporosis [Pubmed: 32194868] |
Journal of Korean Neurosurgical Society | Rutin Improves Bone Histomorphometric Values by Reduction of Osteoclastic Activity in Osteoporosis Mouse Model Induced by Bilateral Ovariectomy [Pubmed: 32172552] |
JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART A | Positive role of calcium phosphate ceramics regulated inflammation in the osteogenic differentiation of mesenchymal stem cells [Pubmed: 32064734] |
CELL BIOCHEMISTRY AND FUNCTION | HSP90 inhibitors strengthen extracellular ATP‐stimulated synthesis of interleukin‐6 in osteoblasts: Amplification of p38 MAP kinase [Pubmed: 32567086] |
Cell Death & Disease | QKI deficiency leads to osteoporosis by promoting RANKL-induced osteoclastogenesis and disrupting bone metabolism [Pubmed: 32382069] |
Molecular Medicine Reports | Neuropeptide Y upregulates Runx2 and osterix and enhances osteogenesis in mouse MC3T3?E1 cells via an autocrine mechanism [Pubmed: 33000198] |
Food & Function | Comparative study of DHA-enriched phosphatidylcholine and EPA-enriched phosphatidylcholine on ameliorating high bone turnover via regulation of the?… [Pubmed: 33140795] |
ADVANCED FUNCTIONAL MATERIALS | A Hierarchical Janus Nanofibrous Membrane Combining Direct Osteogenesis and Osteoimmunomodulatory Functions for Advanced Bone Regeneration [] |
Revista Argentina de Clínica Psicológica | Research on the Mechanism of miR-142-5p's Promotion of the Function and Mineralization of Osteoblasts by Down-regulating the Expression of WWP1 Gene [] |
淫羊藿水提物及提取藥渣的抗骨質(zhì)疏松藥效比較研究 [] | |
Chemical Engineering Journal | Bioinspired polydopamine/graphene oxide/collagen nanofilms as a controlled release carrier of bioactive substances [] |
Surfaces and Interfaces | In vitro comparison of titanium surface conditioning via boron-compounds and sand-blasting acid-etching [] |
J Bone Miner Res | Lgr4 promotes aerobic glycolysis and differentiation in osteoblasts via the canonical Wnt/|??\catenin pathway [33950533] |
Biochemical Engineering Journal | Studies of osteoblast-like MG-63 cellular proliferation and differentiation with cyclic stretching cell culture system on biomimetic hydrophilic layers modified polydimethylsiloxane substrate [] |
Br J Pharmacol | Andrographolide prevents bone loss via targeting ERRalpha‐regulated metabolic adaption of osteoclastogenesis [34233019] |
PHARMACEUTICAL BIOLOGY | Effects of icariin on the fracture healing in young and old rats and its mechanism [34511043] |
Evid Based Complement Alternat Med | Gujiansan Ameliorates Avascular Necrosis of the Femoral Head by Regulating Autophagy via the HIF-1α/BNIP3 Pathway [34512780] |
ACS Appl Mater Interfaces | Spatiotemporal Management of the Osteoimmunomodulation of Fibrous Scaffolds by Loading a Novel Amphiphilic Nanomedicine [Pubmed:35311248] |
Molecules | Notoginsenoside R1 Promotes Migration, Adhesin, Spreading, and Osteogenic Differentiation of Human Adipose Tissue-Derived Mesenchymal Stromal Cells [Pubmed:35684342] |
Journal of Exercise Science & Fitness | Effects of 8-week High-Intensity Interval Training and Moderate-Intensity Continuous Training on Bone Metabolism in Sedentary Young Females [Pubmed:35096081] |
Journal of Bionic Engineering | Effect of Antibacterial Enoxacin on the Properties of Injectable Nano-hydroxyapatite/Polyurethane Cement for Bone Repairing [] |