The PR2122-N-1000 is the 1,000-reaction mid-throughput pack of the Accuris qMAX Multiplex One-Step RT-qPCR Kit in the No ROX formulation. Same multiplex probe-based one-step RT-qPCR chemistry as the PR2122-N-50BLK (5,000-reaction bulk pack); the 1,000-reaction pack at $1,566 ($1.57 per reaction) is the mid-throughput option for labs running multiplex RT-qPCR at 1,000-2,000 reactions per pack-purchase cycle.
Key Specifications
| SKU | PR2122-N-1000 |
| Type | One-Step RT-qPCR Kit — Multiplex probe-based |
| Reactions per pack | 1,000 reactions |
| Per-reaction cost | $1.57 |
| Multiplexing capacity | 3+ targets per reaction |
| ROX formulation | No ROX |
| Cycler compatibility | Bio-Rad CFX, Roche LightCycler, Eppendorf Mastercycler RealPlex |
| List price | $1,566 |
Pack-Size Selection
For full kit chemistry (multiplex-optimized cross-channel signal balance, primer-dimer suppression at higher multiplex), workflow, and application context, see the PR2122-N-50BLK parent page.
| Pack | Reactions | Per-reaction |
| PR2122-N-1000 (this SKU) | 1,000 | $1.57 |
| PR2122-N-25BLK | 2,500 | $1.21 |
| PR2122-N-50BLK | 5,000 | $1.09 |
For high-multiplex panels requiring concentrated 4× chemistry, see the PR2124 Multiplex 4× sister family.
Ordering & Configuration
Storage & handling. Per kit instructions — typical RT-qPCR master mix storage at −20 °C.
Probe procurement separately. Operator-supplied multiplex probe sets.
Confirm at quote: real-time cycler platform requires No ROX AND has sufficient channel capability for the multiplex panel design, expected workflow throughput, shipping conditions (cold-chain), and lead time.
Warranty: Per Accuris Life Science Reagents standard kit warranty terms — confirm at quote.
qMAX Multiplex One-Step RT-qPCR Kit — No ROX pack-size variants:
- PR2122-N-1000 (this product) — 1,000 reactions, mid-throughput workhorse
- PR2122-N-25BLK — 2,500 reactions, mid-bulk
- PR2122-N-50BLK — 5,000 reactions, institutional bulk
For high-multiplex panels (5+ targets), see PR2124 Multiplex 4× concentrated variant.