Detection of bacterial endotoxins using the PYROSTAR™ ES-F/Plate LAL assay
Perform the PYROSTAR ES-F/Plate LAL test your way— BMG LABTECH readers support both turbidimetric and nephelometric evaluation for maximum flexibility.
Le premier et le seul néphélomètre à microplaques équipé d'un laser qui a été développé pour répondre aux demandes de screening à haut débit pour les tests de détection rapide de solubilité des composés. Le NEPHELOstar® Plus détecte des particules insolubles dans des échantillons liquides en mesurant la lumière diffractée et peut être utilisé pour les mesures de turbidité, le screening de solubilité des molécules, la cinétique de liaison des protéines, la croissance microbienne et le contrôle des procédés pétroliers.

Le NEPHELOstar Plus est un néphélomètre à microplaques avec une diode laser à haute intensité. Il peut être jusqu'à trente fois plus sensible que les lecteurs de densité optique en transmission traditionnelle qui mesurent la réduction de la lumière directe passant par un puits contenant un échantillon. Grâce à sa rapidité, sa flexibilité et sa performance, le NEPHELOstar Plus permet une adaptation plus facile à la néphélométrie laser pour de nombreuses applications basée sur microplaques.
Le NEPHELOstar Plus est réservé à la recherche.

Perform the PYROSTAR ES-F/Plate LAL test your way— BMG LABTECH readers support both turbidimetric and nephelometric evaluation for maximum flexibility.
Nephelometric turbidity units (NTUs) refer to the concentration of particles to describe the quality of water. Read how the NEPHELOstar® Plus microplate nephelometer determines NTUs in low sample volume.
Laser nephelometry was used for the rapid determination of the solubility of potential antimycotic drug compounds and for the measurement of fungal growth in the microplate format.
An alternative method to test Rheumatoid Factors by microplate nephelometry provides an inexpensive assay that can be used in medium- to high-throughput labs. Read more here!
Laser nephelometry is a reliable and sensitive technique to monitor microbial growth. Check out its good correlation with absorbance turbidity measurements in this AppNote!
Tired of performing solubility tests for your compound libraries? Nephelometry offers a rapid, reliable and low-cost method for kinetic solubility screenings in high-throughput!
Nephelometry (light scattering)
Endpoint and kinetic
Up to 384-well plates
Robot compatible
Self-monitoring laser diode
Wavelength 635±10 nm
Stability <0.2% deviation
Lifetime 20,000 hours
Output: 1 mW
Selectable beam width: 1.5 to 3.5 mm
Selectable intensity 0-100%
Scattering angle: detects up to 80° full cone angle
Side window photodiode detector
Photodiode
Wavelength 635±10 nm
Depending on particle size and liquid properties
Silica detection (particle size 0.5 to 10 µm) 800 nM
Dynamic Range: 5 decades
Maximum count rate (2,000,000 Relative Nephelometry Units (RNUs) per second)
Depend on assay conditions and liquid surface stability
Shortest times possible: 16 s (96), 47 s (384)
Linear, orbital, and double-orbital with user-definable time and speed
System to inject an atmosphere or to pull a vacuum into the reader
+4 °C above ambient up to 45 °C
The upper heating plate of the incubation chamber operates at 0.5 °C more than the lower plate. This prevents condensation build-up on the lid or sealer
Multi-user Reader Control and MARS Data Analysis Software included
FDA 21 CFR Part 11 compliant
Width: 44 cm, depth: 48 cm, height: 32 cm; weight: 25 kg
Up to 2 built-in reagent injectors
Injection at measurement position (6 to 384-well)
Individual injection volumes for each well (3 to 500 µL)
Variable injection speed up to 420 µL/s
Up to four injection events per well
Reagent back flushing
Microplate incubator and shaker
Actively regulates O2 and CO2 0.1-20%
Magazines for up to 50 plates - continuous loading feature
Please contact your local representative for upgrades including options such as detection modes, reagent injectors, etc
Intelligent microplate incubation
Microplate handling system
Enhanced cell-based assays