7500 Real-Time PCR System, desktop
The discontinuation of sales for the 7500 and 7500 Fast real-time PCR for RUO starts on October 31, 2025. The 7500 Fast Dx was discontinued on December 31, 2022. Visit QuantStudio Real-Time PCR Systems for your qPCR instrument needs
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7500 Real-Time PCR System, desktop
Applied Biosystems™

7500 Real-Time PCR System, desktop

The 7500 Real-Time PCR System is a powerful platform for labs requiring superior performance and maximum dye versatility. This system詳細を見る
製品番号(カタログ番号) 4351105
価格(JPY)
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The 7500 Real-Time PCR System is a powerful platform for labs requiring superior performance and maximum dye versatility. This system is a sophisticated platform for users who require extended capabilities and maximum versatility. The 3rd generation platform features an innovative optical system that enhances sensitivity and lets you access a broader range of fluorophores. The variable excitation capability allows greater sensitivity for longer wavelength (red) dyes.

• Powerful, five-color platform is calibrated for the broadest range of dyes available: FAM™⁄SYBR® Green I, VIC®⁄JOE™, NED™⁄ TAMRA™⁄ Cy3™, ROX™⁄Texas Red™, and Cy5™ dyes
• Specialized optical system enables easy and accurate calibration to new dyes without requiring the addition of new filter sets
• Advanced multi-componenting algorithm minimizes spectral crosstalk – superior for multiplexing
• User-friendly software includes plate set-up wizards, multi-plate data viewing capabilities, and advanced analysis tools to make data processing simple and straightforward

NEW - 7500 Software v2.x
Now the easy-to-use StepOne software is available for both the 7500 and 7500 Fast systems with the 7500 Software v2.x upgrade. The 7500 Software v2.x incorporates your favorite StepOne Software features, such as a variety of plate setup wizards, standard curve dilution and master mix recipe calculators, QC flags, data filters, and email notification when a run is finished. The 7500 Software v2.x also includes an enhanced Gene Expression Study package and has a variety of new melting curve protocol options, including multiple peak detection, step and hold temperature control, and customizable ramp rates.

The NEW Gene Expression Study package accommodates large studies better than any other instrument software package:
• Import an unlimited number of Comparative CT (relative quantitation) files to one study
• Group samples and view data both by technical replicate group and biological replicate group
• Use any gene(s) as an endogenous control, including averaging multiple controls together
• Enter known efficiency values to be factored into the RQ results

21 CFR Part 11 Module available
The SDS v1.4 21CFRp11 Module is a powerful tool for assisting with 21CFRp11 compliance, while still offering the flexibility of user-customizable configuration settings.
• Individual user log-ins can be added for up to four user groups, each group with designated permission settings
• User-customizable permission settings include fourteen system activities, e-signature authority designation, and additional security settings to give you maximum control over your compliance efforts
• Audit trails can be enabled or disabled depending on your traceability needs
• A selection of e-signatures is available to ease e-signatures into your workflow

Supports Many Applications
Applications include gene expression analysis, pathogen quantitation, SNP genotyping, isothermal and +⁄– assays utilizing internal positive controls. To facilitate many of these applications, Applied Biosystems® provides preformulated, ready-to-use, quality-tested, TaqMan® assays for use with the 7500 system. Now you can reduce your assay optimization efforts.

Upgrade to High-Speed Thermal Cycling
An optional upgrade to the 7500 Fast System is available. This 7500 Fast System uses our master mix formulations and enables you to shorten your real-time PCR runs to as little as 30 minutes.

For Research Use Only. Not for use in diagnostics procedures.
For Research Use Only. Not for use in diagnostic procedures.
仕様
校正済み色素SYBR™ Green I, ROX™, NED™, TAMRA™, JOE™, Texas Red™, Cy5™, VIC™, FAM™, Cy3™
寸法Width 34 cm (13.39 in.), Depth 45 cm (17.72 in.), Height 49 cm (19.29 in.)
ダイナミックレンジ9 Logs
電気的要件950 W
外部コンピューター80 GB HD, Dell Minitower: Celeron 346 (3.06 GHz), 1 GB NON ECC 533 MHz DDR2, 16X DVD
使用対象 (装置)7500 System
フォーマット96-well Plate
高スループット適合性Multiplexing
最大加熱速度(サーマルブロック)2.5°C
光学CCD Camera, 5 Excitation Filters, Tungsten-halogen Lamp, 5 Emission Filters
受動的参照色素ROX (Separate Tube), No ROX, ROX (Pre-mixed)
ピークブロック傾斜率2.5°C⁄s
精度99.7% Confidence (5000 & 10000 Copies)
数量1 system
反応速度Standard
反応量範囲20–100 μL
サンプル傾斜率± 1.1°C⁄s
感度1 Copy of RNase P gene (Human Genomic DNA)
ソフトウェア互換性Primer Express, 21 CFR Part 11 Module (optional), 7500 System Software (RQ included)
温度範囲(摂氏)4 to 100°C
熱確度0.25°C (35°C to 95°C after 3 min.)
熱サイクルシステムPeltier-based System
熱均一性0.50°C (after 30 s)
スループット4 to 5-96-well Plates per 8-hr day
電圧120 V
重量34 kg (75 lb.)
Unit SizeEach

よくあるご質問(FAQ)

7300、 7500または7500 Fast Real-Time PCR SystemのRunをスタートした時に、 “Fatal error, block upswitch not engaged”というエラーメッセージが表示されました。どのように対処したらよいですか?

このエラーメッセージはヒートカバーの位置がずれている場合に表示されます。以下の方法に従って操作を行ってください:

(1) 機器の電源を切り、ソフトウェアもシャットダウンしてください。
(2) フロントカバー (本体前面のカバー)を開きます。フロントカバーの右側面にある穴にピペットチップまたは小型の六角レンチを挿入し、軽く押し込んで頂くとフロントカバーが開きます。
(3) 機器の中を見てください。プラスティック製のハンドルの付いた金属板が確認できると思います。この金属板にヒートカバーが付属されています。ハンドルを使って、金属板を前面いっぱいまで引き、フロントカバーを閉じてください。

同様な問題が繰り返されないように、PCRプレートは専用のプレートホルダーにきちんとセットしてください。なお7300, 7500, 7500 Fast Real-Time PCR Systemsにはcompression padはセットしないでください。

7300 および 7500 Fast Real-Time PCR Systemのユーザーマニュアルを紛失してしまいました。コピーを手に入れる方法を教えてください?

リアルタイムPCRを担当しているテクニカルサポート部(0120-477-392)へ連絡をください。ご連絡頂いた際に機器のシリアル番号をお伝え頂ければ、ご要望に応じてコピーをご用意させて頂きます。

Applied Biosystems 7300 Real-Time PCR SystemsでMultiplex反応を行う場合、リポーター蛍光の組み合わせはどのようにしたらよいでしょうか?

The Applied Biosystems 7300 Real-Time PCR Systemは4枚の蛍光検出用Filterが搭載されています: Filter A (FAM and SYBR Green), Filter B (VIC and JOE), Filter C (TAMRA, NED and Cy3) 、Filter D (ROX and Texas Red). Multiplex反応で使用する各アッセイのリポーター蛍光は、異なるフィルターで検出される組合せになるように選択する必要があります。またクエンチャーやpassive reference dye(ROXなど)も確認し、選択したリポーター蛍光が使用可能であるかどうかを確認する必要があります。一般的なMultiplexではFAM と VICの組合せがよく利用されます。

各リアルタイムPCR解析ファイルのファイル拡張子は何ですか?(ABI PRISM 7000 Sequence Detection System, Applied Biosystems 7300, 7500, 7500Fast, 7900HT Fast Real-Time PCR System, StepOnePlus Real-Time PCR System, ViiA 7 Real-Time PCR Systems)

Runファイルの拡張子は、.SDS または.EDSのいずれかです。 またRelative Quantification studyファイルの拡張子は、.SDM または .EDM で、templateファイルの拡張子は、.SDT または .EDTです。なおStepOnePlus、 ViiA 7、および7500 2.0.x softwareのファイル拡張子は、.EDS, .EDT, または.EDMです。また旧タイプのソフトウェアのファイル拡張子は、.SDS, .SDTまたは.SDM です。

Applied Biosystems 7500 Fast Real-Time PCR Systemを用いてStandardモードのTaqMan assay反応を行うことは可能ですか?

Applied Biosystems 7500 Fast Real-Time PCR Systemを用いてStandardモードで反応を行うことが可能です。ただし以下に従って設定を行ってください:

1) 反応容量は10 ul-30 ulになるように調製してください
2) 96-wellプレートは必ず MicroAmp FAST 96 well reaction plate (P/N 4346907, 4346906 or 4366932) を使用してください
3) Run Mode を“Standard 7500 “または“9600 Emulation”に設定してRunします (2.0.x バージョンのsoftwareでは、 Standard またはFastしか選択できません。 9600 emulationモードは選択できません).

引用および参考文献 (1615)

引用および参考文献
Abstract
Role of APE1 in differentiated neuroblastoma SH-SY5Y cells in response to oxidative stress: Use of APE1 small molecule inhibitors to delineate APE1 functions
Authors:Jiang, YL; Guo, CL; Fishel, ML; Wang, ZY; Vasko, MR; Kelley, MR
Journal:DNA REPAIR
PubMed ID:
Oxidative DNA damage has been implicated in a number of central nervous system pathologies. The base excision repair (BER) pathway is one of the most important cellular protection mechanisms that respond to oxidative DNA damage. Human apurinic (apyrimidinic) endonuclease/redox effector factor (APE1/Ref1 or APE1) is an essential enzyme in the ... More
Characterization of matrix metalloproteinase-2 and matrix metalloproteinase-9 and their inhibitors in equine granulosa cells in vivo and in vitro
Authors:Sessions, DR; Vick, MM; Fitzgerald, BP
Journal:JOURNAL OF ANIMAL SCIENCE
PubMed ID:
Matrix metalloproteinases (MMP) and tissue inhibitors of MMP (TIMP) regulate tissue remodeling events necessary for ovulation. Thus, changes in MMP and TIMP expression and protein enzyme activity were examined in vivo and in vitro during follicular development and atresia in the horse. Equine granulosa cells and follicular fluid from medium ... More
The time of prenatal immune challenge determines the specificity of inflammation-mediated brain and behavioral pathology.
Authors:Meyer U, Nyffeler M, Engler A, Urwyler A, Schedlowski M, Knuesel I, Yee BK, Feldon J
Journal:J Neurosci
PubMed ID:16672647
Disturbance to early brain development is implicated in several neuropsychiatric disorders including autism, schizophrenia, and mental retardation. Epidemiological studies have indicated that the risk of developing these disorders is enhanced by prenatal maternal infection, presumably as a result of neurodevelopmental defects triggered by cytokine-related inflammatory events. Here, we demonstrate that ... More
Distinct roles for IFN regulatory factor (IRF)-3 and IRF-7 in the activation of antitumor properties of human macrophages.
Authors:Romieu-Mourez R, Solis M, Nardin A, Goubau D, Baron-Bodo V, Lin R, Massie B, Salcedo M, Hiscott J
Journal:Cancer Res
PubMed ID:17079482
When properly activated, macrophages can be tumoricidal, thus making them attractive additions to standard cancer therapies. To this end, tolerance and activity of human autologous IFN-gamma-activated macrophages, produced in large scale for clinical use (MAK cells), have been assessed in pilot trials in cancer patients. In the present study, we ... More
Trps1 plays a pivotal role downstream of Gdf5 signaling in promoting chondrogenesis and apoptosis of ATDC5 cells.
Authors:Itoh S, Kanno S, Gai Z, Suemoto H, Kawakatsu M, Tanishima H, Morimoto Y, Nishioka K, Hatamura I, Yoshida M, Muragaki Y
Journal:Genes Cells
PubMed ID:18363966
Tricho-rhino-phalangeal syndrome (TRPS) is an autosomal dominant skeletal disorder caused by mutations of TRPS1. Based on the similar expression patterns of Trps1 and Gdf5, we hypothesized a possible functional interaction between these two molecules. Using a chondrogenic cell line (ATDC5), we investigated the association of Gdf5-mediated signaling pathways with ... More