Rat Dihydrotestosterone,DHT ELISA Kit
產(chǎn)品詳情
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產(chǎn)品描述:
大鼠雙氫睪酮(DHT)酶聯(lián)免疫試劑盒(CSB-E07879r)為競(jìng)爭(zhēng)法ELISA試劑盒,定量檢測(cè)血清、血漿、組織勻漿樣本中的DHT含量。DHT(分布式哈希表)是一種去中心化網(wǎng)絡(luò)技術(shù),通過(guò)將資源信息分散存儲(chǔ)在多個(gè)節(jié)點(diǎn)上,實(shí)現(xiàn)高效組織和定位。每個(gè)節(jié)點(diǎn)負(fù)責(zé)存儲(chǔ)部分資源信息和成員聯(lián)系信息,通過(guò)哈希算法和節(jié)點(diǎn)ID關(guān)聯(lián),實(shí)現(xiàn)資源查找和節(jié)點(diǎn)通信。試劑盒檢測(cè)范圍為10 pg/mL-2000 pg/mL,科研人員可將其應(yīng)用于內(nèi)分泌調(diào)控研究、雄性生殖生物學(xué)實(shí)驗(yàn)、藥物開(kāi)發(fā)中激素代謝評(píng)估,或探究前列腺疾病、脫發(fā)等病理模型的激素水平變化本品僅用于科研,不用于臨床診斷,產(chǎn)品具體參數(shù)及操作步驟詳見(jiàn)產(chǎn)品說(shuō)明書(shū)。
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別名:
N/A
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縮寫(xiě):
DHT
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種屬:
Rattus norvegicus (Rat)
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反應(yīng)時(shí)間:
1-5h
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上樣量:
50-100ul
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檢測(cè)波長(zhǎng):
450 nm
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研究領(lǐng)域:
Signal Transduction
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測(cè)定原理:
quantitative
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測(cè)定方法:
Competitive
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精密度:
| Intra-assay Precision (Precision within an assay): CV%<15% |
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| Three samples of known concentration were tested twenty times on one plate to assess. |
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| Inter-assay Precision (Precision between assays): CV%<15% |
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| Three samples of known concentration were tested in twenty assays to assess. |
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線性度:
| To assess the linearity of the assay, samples were spiked with high concentrations of rat DHT in various matrices and diluted with the Sample Diluent to produce samples with values within the dynamic range of the assay. |
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Sample |
Serum(n=4) |
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| 1:1 |
Average % |
102 |
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| Range % |
98-106 |
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| 1:2 |
Average % |
93 |
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| Range % |
89-97 |
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| 1:4 |
Average % |
95 |
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| Range % |
89-99 |
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| 1:8 |
Average % |
102 |
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| Range % |
98-106 |
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回收率:
| The recovery of rat DHT spiked to levels throughout the range of the assay in various matrices was evaluated. Samples were diluted prior to assay as directed in the Sample Preparation section. |
| Sample Type |
Average % Recovery |
Range |
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| Serum (n=5) |
92 |
87-95 |
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| EDTA plasma (n=4) |
102 |
97-106 |
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標(biāo)準(zhǔn)曲線:
| These standard curves are provided for demonstration only. A standard curve should be generated for each set of samples assayed. |
| pg/ml |
OD1 |
OD2 |
Average |
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| 2000 |
0.156 |
0.160 |
0.158 |
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| 500 |
0.312 |
0.329 |
0.321 |
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| 160 |
0.498 |
0.528 |
0.513 |
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| 40 |
0.818 |
0.787 |
0.803 |
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| 10 |
1.316 |
1.278 |
1.297 |
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| 0 |
1.960 |
1.954 |
1.957 |
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本試劑盒所含材料:
- A 96-well Assay plate -- The 96-well plate has been pre-coated with goat-anti-rabbit DHT antibody.
- Standard 6 x 0.5 ml -- Dilute the standard at dilution series, read the OD values, and then draw a standard curve.
- Anti-mouse DHT Antibody 1 x 6 ml -- Act as the detection antibody.
- HRP-conjugate 1 x 6 ml -- Bind to the DHT antibody, and HRP catalyzes the TMB to elicit a chromogenic reaction.
- Wash Buffer (20 x concentrate) 1 x 15 ml -- Wash away unbound or free substances.
- Substrate A 1 x 7 ml -- Mix with substrate B, and the TMB is catalyzed by HRP to develop color.
- Substrate B 1 x 7 ml -- Mix with substrate A, and the TMB is catalyzed by HRP to develop color.
- Stop Solution 1 x 7 ml -- Stop the color reaction. The solution color immediately turns from blue to yellow.
- Four Adhesive Strips (For 96 wells)
- An Instruction manual
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本試劑盒不含材料:
- A microplate reader capable of measuring absorbance at 450 nm, with the correction wavelength set at 600 nm - 630 nm.
- An incubator that can provide stable incubation conditions up to 37°C±5°C.
- Centrifuge
- Vortex
- Squirt bottle, manifold dispenser, or automated microplate washer
- Absorbent paper for blotting the microtiter plate
- 50-300ul multi-channel micropipette
- Pipette tips
- Single-channel micropipette with different ranges
- 100ml and 500ml graduated cylinders
- Deionized or distilled water
- Timer
- Test tubes for dilution
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數(shù)據(jù)處理:
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貨期:
3-5 working days
引用文獻(xiàn)
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Phytochemical characterization and therapeutic mechanism of Xialiqi capsule on benign prostatic hyperplasia
T Chen, D Lv, B Rong, Z Shi, X Li, Z Jia, Z Gao,Naunyn-Schmiedeberg's Archives of Pharmacology,2025
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Effect of Fenugreek Extract on Testosterone Propionate-Induced Benign Prostatic Hyperplasia
JY Lee, J Bang, J Kim, KS Baek,International Journal of Molecular Sciences,2025
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HCG supplement did not accelerate tunica albuginea remodeling to facilitate penile growth
T Li,/,2023
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Effects of Taraxaci Herba (Dandelion) on Testosterone Propionate-Induced Benign Prostatic Hyperplasia in Rats
SM Lee,Nutrients,2024
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Syzygium malaccense leaves methanol extract modulate some biochemical
and inflammatory markers and prostate histology of testosterone-estradiol
valerate induced benign prostatic hyperplasia in rats
NK Achi,/,2023
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Seasonal expressions of the translocator protein (18 kDa), voltage-dependent anion channel, and steroidogenic acute regulatory protein in the scent glands of muskrats (Ondatra zibethicus)
W Xie,The Journal of steroid biochemistry and molecular biology,2023
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Role of glandular hormones in estimating time passed since death: histological and biochemical examination (an experimental study)
A Gamal Ramadan,Australian Journal of Forensic Sciences,2023
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Fenofibrate mitigates testosterone induced benign prostatic hyperplasia via regulation of Akt/FOXO3a pathway and modulation of apoptosis and proliferation in rats
MA Kortam,Archives of biochemistry and biophysics,2023
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Comparative effects of finasteride and laser-irradiated silver nanoparticles on testicular function and histology in testosterone induced benign prostatic hyperplasia in rats
BH Marghani,Life sciences,2023
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Hesperidin ameliorates benign prostatic hyperplasia by attenuating cell proliferation, inflammatory response, and epithelial-mesenchymal transition via the TGF-β1/Smad signaling pathway
HJ Kim,Biomedicine & pharmacotherapy,2023
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Androgen supplement did not accelerate tunica albuginea remodeling to facilitate penile growth
F Sun,ResearchSquare,2022
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Inhibitory Effect of Astaxanthin on Testosterone-Induced Benign Prostatic Hyperplasia in Rats
liping Wang,Marine Drugs,2021
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Changes in nitric oxide, carbon monoxide, hydrogen sulfide and male reproductive hormones in response to chronic restraint stress in rats
A Moustafa,Free Radical Biology and Medicine,2020
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Immunomodulatory effect of diallyl sulfide on experimentally-induced benign prostate hyperplasia via the suppression of CD4+T/IL-17 and TGF-β1/ERK pathways
EM Elbaz,Inflammopharmacology,2020
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Protective effect of black mulberry (Morus nigra L.) fruit hydroalcoholic extract against testosterone-induced benign prostatic hyperplasia in rats
Farshid MA,Revista Internacional de Androlog鉚a,2019
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The Effects of 8-Week Endurance Training on Prostatic Autophagy and Benign Prostatic Hyperplasia of Rats
Lee D W, et al,Exercise Science,2019
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6′-Sialyllactose Ameliorates in Vivo and in Vitro Benign Prostatic Hyperplasia by Regulating the E2F1/pRb?AR Pathway
Bo-Ram Jin, et al,Nutrients,2019
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Seasonal expressions of androgen receptor, estrogen receptors, 5α-reductases and P450arom in the epididymis of the male muskrat (Ondatra zibethicus)
Liu Q, et al,Journal of Steroid Biochemistry and Molecular Biology,2019
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Finasteride-Induced Inhibition of 5α-Reductase Type 2 Could Lead to Kidney Damage-Animal, Experimental Study
Baig MS,International Journal of Environmental Research and Public Health,2019
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Chinese Skullcap (Scutellaria baicalensis Georgi) inhibits inflammation and proliferation on benign prostatic hyperplasia in rats
Jin BR, et al,Journal Of Ethnopharmacology,2019
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Prenatal exposure to testosterone induces cardiac hypertrophy in adult female rats through enhanced Pkcδ expression in cardiac myocytes
Hou M, et al,Journal of Molecular and Cellular Cardiology,2019
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Cyanidin-3-O-glucoside at Low Doses Protected against 3-Chloro-1, 2-propanediol Induced Testis Injury and Improved Spermatogenesis in Male Rats
Jiang X, et al,Journal of Agricultural and Food Chemistry,2018
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Seasonal expression of 5α-reductases and androgen receptor in the prostate gland of the wild ground squirrel (Spermophilus dauricus)
YanZhang.et al,COMP BIOCHEM PHYS A,2018
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Additive effect of oral LDD175 to tamsulosin and finasteride in a benign prostate hyperplasia rat model
Bo Ram Choi.et al,Drug Des Devel Ther,2018
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Cynanchum wilfordii Ameliorates Testosterone-Induced Benign Prostatic Hyperplasia by Regulating 5α-Reductase and Androgen Receptor Activities in a Rat Model
Lee G.et al,Nutrients,2017
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