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Laboratory Equipment for Molecular Biology Research

 

Laboratory equipment at MBP spans the full range of instruments and devices used in molecular biology and life science research, from electrophoresis and gel visualization systems to centrifuges, vortex mixers, thermal cyclers, and dry baths - serving academic, clinical, and biopharma labs that need reliable equipment with responsive specialist support. 

MBP carries equipment from validated manufacturers, including Hermle, Benchmark Scientific, and others, with US order processing in Houston, Texas, and shipping across North America and internationally. Request a quote for laboratory equipment for molecular biology research workflows by contacting customerservice@mbpinc.net.

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myBlock™& isoBlock Digital DryBaths
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USD771.11 - USD1,425.87
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USD550.79 - USD1,018.48
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myFuge™ 12 MiniCentrifuge (12place)
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USD626.81 - USD626.81
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USD447.72 - USD447.72
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myFuge™ MiniCentrifuges (8 place) with 2 rotors
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USD461.38 - USD461.38
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USD329.56 - USD329.56
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myTemp™ Mini Digital Incubators
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USD862.59 - USD1,312.12
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USD616.14 - USD937.23
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Accessories for GCC-MP Multi-Purpose Clinical Centrifuges
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USD66.51 - USD2,247.17
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USD47.51 - USD1,605.12
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Accessories for GCC Series Clinical Centrifuges
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USD70.59 - USD356.17
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USD50.42 - USD254.41
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GCC Clinical Centrifuge Series
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USD921.82 - USD1,273.34
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USD658.45 - USD909.53
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GCC-P Portable Clinical Centrifuge Series
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USD70.59 - USD740.01
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USD50.42 - USD528.58
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FYRA Vacuum Gauge For End Of Primary Drying Detection UL/CSA/CE Certified
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USD5,853.88
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USD4,181.34
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myBath™ Digital WaterBaths
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USD974.71 - USD2,058.79
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USD696.22 - USD1,470.57
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Ai-DigiVac Concerto 4-Channel Vacuum & Pressure Controller
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USD7,248.50
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USD5,177.50
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DigiVac FYRA Bleed Vacuum Controller 10 millitorr to 6 Torr
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USD4,186.45
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USD2,990.32
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Showing 817 to 828 of 881 results

What Is Laboratory Equipment?

 

Laboratory equipment encompasses the instruments, devices, and apparatus used to perform experiments, process samples, separate biomolecules, and analyze results in molecular biology, biochemistry, cell biology, microbiology, and related life science disciplines. Major equipment categories at MBP include electrophoresis and gel visualization (horizontal and vertical gel systems, UV and blue-light transilluminators, gel documentation imagers), centrifugation (microcentrifuges, high-speed centrifuges, plate spinners), agitation and mixing (vortex mixers, orbital shakers, rocking rollers, tube rockers), and temperature control (dry baths, water baths, cold traps). Instrumentation choices directly affect data quality, reproducibility, and throughput; selecting the correct format and specification for each application is as important as choosing the right reagents. Choose laboratory equipment based on application type, sample throughput, space constraints, power supply requirements, and compatibility with existing consumables and workflows.

 

What you will find:

 

 

How to Choose Laboratory Equipment

 

Application match

Identify the primary workflow each instrument must support. Horizontal submarine electrophoresis systems are used for agarose gel separation of DNA and RNA; vertical SDS-PAGE systems are for protein analysis. UV transilluminators visualize ethidium bromide-stained gels; blue-light transilluminators at 470 nm are used with safer dyes such as SYBR Safe, SafeView, and GelGreen without UV-induced DNA damage. Gel documentation systems provide permanent digital records of gel images for publication and archival.

Throughput and format

Mini-format gel systems (7 x 8 cm gel tray) suit low-throughput labs running fewer than 10 samples per gel. Standard and midi formats (10 x 14 cm) accommodate 20-30 samples and are standard for most molecular biology labs. Wide-format or multi-deck systems allow 96+ samples per run for high-throughput screening. For centrifuges, match rotor capacity and maximum RCF (relative centrifugal force) to your application: 10,000-15,000 x g for microcentrifuge pellets; 2,000-6,000 x g for plate or cell culture work.

Power supply requirements

Most laboratory electrophoresis equipment operates on standard 100-240 V, 50/60 Hz power. North American labs use 120 V (standard outlet); confirm input voltage compatibility before ordering for international or dual-voltage labs. Electrophoresis power supplies should deliver constant voltage (60-150 V for standard agarose gels) and current up to 400 mA for running multiple gels simultaneously.

Service, warranty, and support

MBP's specialist team provides application support, troubleshooting, and can source replacement parts for equipment distributed through MBP. Standard manufacturer warranties of 1 year apply to most instruments unless stated otherwise. MBP's direct service model means faster response times compared to large distributors -- a core differentiator for labs that cannot tolerate extended instrument downtime.

Vendor registration for institutional buyers

Procurement teams at institutions, including Howard Hughes Medical Institute, Vanderbilt University, and MD Anderson Cancer Center, can purchase through MBP as a registered vendor. Contact MBP to obtain a vendor number, establish a purchasing account, or request quotes for capital equipment.

 

Specifications Context

 

Electrophoresis gel systems are specified by gel tray dimensions (width x length in cm), well count (number of sample wells per comb), buffer volume capacity (mL), and operating voltage range (V). UV transilluminators are specified by emission wavelength (254 nm, 302 nm, or 365 nm), UV lamp power (typically 8-25 W), and viewing surface dimensions (cm x cm). Gel documentation systems are characterized by camera resolution (megapixels), bit depth (8-bit vs. 16-bit for quantitative analysis), and illumination type (UV at 302 nm, blue LED at 470 nm, or multi-mode). LED-based transilluminators and gel documentation systems have largely replaced fluorescent UV tube-based units in new lab installations due to lower energy consumption, instant-on capability, and longer bulb lifespan (50,000+ hours vs. 2,000-5,000 hours for UV tubes). 

 

Consider a critical component for your inquiry—carefully designed instruments that consistently yield precise results. Reach out to the MBP team now.

FAQ

MBP supplies laboratory equipment for molecular biology and life science research, including horizontal and vertical electrophoresis systems, UV and blue-light transilluminators, gel documentation imaging systems, Hermle centrifuges (microcentrifuges, high-speed, and universal centrifuges), vortex mixers, orbital shakers, rocking rollers, dry baths, and water baths. Equipment is sourced from validated manufacturers including Hermle and Benchmark Scientific, with US order processing in Houston, Texas and shipping across North America and internationally.
MBP is a registered vendor for Howard Hughes Medical Institute, Vanderbilt University, and MD Anderson Cancer Center, and accepts institutional purchase orders for laboratory equipment. Procurement teams can contact MBP to establish vendor status, request quotes for capital equipment, or set up standing purchasing accounts. MBP supports NET-30 institutional terms and can provide formal quotes, shipping timelines, and warranty documentation for equipment approval processes at US and Canadian research institutions.
Standard manufacturer warranties of 1 year apply to most laboratory instruments distributed through MBP, covering defects in materials and workmanship. Warranty terms vary by manufacturer and product category -- confirm the specific warranty period in the product listing or with MBP's technical team before purchase. MBP provides direct application support, troubleshooting, and can coordinate warranty service with manufacturers, which reduces downtime compared to purchasing from large distributors with longer service queues.
Most electrophoresis systems at MBP operate on 100-240 V, 50/60 Hz power, making them compatible with standard laboratory outlets in both North America (120 V) and internationally (220-240 V). Power supply outputs for standard agarose gel electrophoresis deliver 60-150 V constant voltage and up to 400 mA current, sufficient to run multiple mini to standard gel formats simultaneously. Confirm the specific voltage and current requirements for the instrument you are considering before ordering for international labs or facilities with non-standard power configurations.
Mini-format gel systems with 7 x 8 cm trays accommodate fewer than 20 samples per gel and are suited to low-throughput labs or teaching settings. Standard (10 x 14 cm) and midi (15 x 20 cm) formats are the most common for research labs running 20-30 samples per gel. Wide-format systems with 20+ cm gel trays or multi-tray configurations support high-throughput screening of 50+ samples per run. For protein analysis by SDS-PAGE, vertical polyacrylamide gel systems (mini-PROTEAN style) provide sharper band resolution than horizontal agarose systems.
SafeView DNA stains (Safe-Green, Safe-Red, and Safe-White) from MBP are compatible with UV transilluminators and blue-LED imaging systems. Safe-Green has an excitation wavelength of 490 nm and emission of 525 nm, optimal for blue-LED transilluminators at 470-500 nm. Safe-Red excites at 540 nm and emits at 630 nm. Safe-White operates across UV and blue-LED wavelengths. Any imaging system with a UV (302 nm or 365 nm) or blue/green LED source is compatible with SafeView stains; no dedicated filter is required, though a 500-650 nm filter improves signal-to-background.
MBP ships laboratory equipment across the United States, Canada, and internationally from its US office in Houston, Texas and its Canadian-based operations. Shipping costs, transit times, and customs documentation requirements vary by destination and equipment type. Oversized or heavy equipment such as centrifuges and large gel systems may require freight shipping rather than standard parcel delivery. Contact MBP's team at customerservice@mbpinc.net for international shipping quotes and lead times on specific equipment models.
A UV transilluminator is a light-emitting device (UV lamp or LED) that illuminates a gel from below to excite fluorescent dyes bound to DNA or RNA, allowing visual observation and band cutting. A gel documentation system (gel doc) integrates a transilluminator with a digital camera, darkroom enclosure, and analysis software to capture, store, and quantify gel images for records, publication figures, and band intensity measurements. A gel doc system replaces the manual photograph-on-Polaroid method and provides 5-20 megapixel digital images with 8-bit or 16-bit dynamic range for quantitative densitometry.
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