FluxMPS™ Dulbecco's Modified Eagle Medium (DMEM), Low Glucose w/o Phenol Red: 1X Liquid

Product#: DCP-DMEML-R1X
$44.00
DCP-DMEML-R1X
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warning For Research Use Only (RUO). Not intended for clinical, diagnostic, or therapeutic use in humans.
verified ISO 13485 Certified Manufacturing

FluxMPS™ Dulbecco's Modified Eagle Medium (DMEM), Low Glucose w/o Phenol Red: 1X Liquid

Contains L-Glutamine Contains Sodium Bicarbonate Contains Calcium Contains Magnesium Contains Low Glucose Contains Sodium Pyruvate Without Phenol Red

FluxMPS™ DCP-DMEML-R1X is a Microfluidics Suitable, ultra-filtered Dulbecco's Modified Eagle Medium (DMEM), Low Glucose, formulated without phenol red for organ-on-a-chip (OoC), microphysiological system (MPS), and microfluidic tissue culture applications. A quadruple-stage filtration train (0.1 µm ×2 + 0.04 µm ×2) reaches a 0.04 µm final cut-off — five and a half times finer than the 0.22 µm membranes used in conventional sterile filtration — supporting unobstructed flow in sub-100 µm chip geometries.

  • Low glucose (1.0 g/L) DMEM formulated without phenol red, with L-glutamine (584 mg/L), sodium pyruvate (110 mg/L), and sodium bicarbonate (3700 mg/L) buffering
  • Processed through a validated quadruple-stage filtration train (0.1 µm ×2 + 0.04 µm ×2) reaching a 0.04 µm final cut-off — 5.5× finer than a 0.22 µm sterile filter
  • Endotoxin release specification < 0.05 EU/mL (LAL, USP <85>), tested per manufacturing batch, not per unit
  • Phenol red–free formulation eliminates estrogen-agonist and autofluorescence interference for hormone-sensitive assays and live-cell imaging
  • Bicarbonate-buffered (3700 mg/L NaHCO3); requires approximately 10% CO2 to maintain pH 7.4 (Henderson–Hasselbalch)
  • Manufactured under an ISO 13485:2016 quality management system; final QC and release testing performed at Diagnocine, Totowa, NJ
  • Custom pH, glucose concentration, salts, and nutrient adjustments available on request
SKU: DCP-DMEML-R1X | Size: 500 mL and 1000 mL Cell Culture Media UNSPSC: 41116155 | Commodity: Molecular biology and cell culture growth media | (UNv260801)
Dulbecco's Modified Eagle Medium (DMEM), Low Glucose w/o Phenol Red: 1X Liquid
  • Glucose1000 mg/L (1.0 g/L, Low Glucose)
  • L-Glutamine584 mg/L
  • Sodium Pyruvate110 mg/L
  • Sodium Bicarbonate3700 mg/L
  • Phenol RedNot added
  • pH (USP <791>)7.4
  • Osmolality (USP <785>)310–350 mOsm/kg H2O
  • Endotoxin (USP <85>)< 0.05 EU/mL
  • Filtration0.1 µm ×2 + 0.04 µm ×2 (Quadruple-stage)
  • Storage / Shelf Life2–8°C, protect from light / 12 months from date of manufacture, unopened
ISO 13485:2016 USP <85> <785> <788> RUO
Why FluxMPS™

Engineered where standard media fails

Conventional 0.22 µm–filtered DMEM passes mycoplasma (0.2–0.3 µm diameter), subvisible particulates, and endotoxin fragments that accumulate inside microfluidic channels, clog chip geometries, and corrupt sensor readings and metabolic signals. FluxMPS™ was designed specifically for these failure modes.

filter_alt

Microchannel-safe purity

0.04 µm final filtration removes sub-micron particles that clog channels below 100 µm. USP <788> particulate compliance supports safe perfusion in demanding chip geometries.

target

Total metabolic control

Low glucose (1.0 g/L) base with defined pyruvate, bicarbonate, and no phenol red allows researchers to control carbon sources precisely for Warburg-effect and metabolic flux studies.

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Ultrapure-grade water

Every batch is prepared using Ultrapure Type 1 water (18.2 MΩ·cm, ASTM D1193 / ISO 3696) formulated for low trace-metal and organic-carbon (TOC) content.

visibility

Low background for imaging

This phenol red–free formulation removes autofluorescent dye interference, delivering a lower particulate baseline for confocal, widefield, and biosensor imaging on chip.

science

Rich, stable nutrient profile

4× BME amino acid & vitamin concentrations, micro-batch manufacturing, and per-lot QC support reproducible cell growth across multi-day perfusion experiments.

tune

Customization on demand

pH, glucose concentration, salts, HEPES, and nutrient composition are adjustable per your protocol. Contact support@diagnocine.com to specify your formulation.

Purity Architecture

Quadruple-stage filtration system

A validated, four-stage filtration train reaches a final 0.04 µm polish under aseptic fill conditions. The train runs as two dedicated prefilter + final-filter pairs, each 0.04 µm final filter protected by its own 0.1 µm prefilter.

  1. 1

    0.1 µm Prefiltration I

    Removes large aggregates, cell debris, and contaminants, protecting the first 0.04 µm final filter cartridge from early fouling.

  2. 2

    0.04 µm Final filtration I

    First 0.04 µm pass; retains sub-micron particulates and microaggregates that pass a standard 0.22 µm filter.

  3. 3

    0.1 µm Prefiltration II

    A second, dedicated prefilter protecting the second 0.04 µm final filter cartridge — not a polish of Stage 2 effluent, but redundant protection for Stage 4.

  4. 4

    0.04 µm Final filtration II — Polish

    Ultimate polishing filter prior to aseptic fill & finish in a validated ISO Class 5 (Class 100) laminar-flow workstation.

Filtration architecture

FluxMPS™ DCP-DMEML-R1X runs two prefilter + final-filter pairs in series, giving full redundancy against membrane breakthrough while reaching a pore size well below conventional 0.22 µm sterile filtration.

5.5×
Finer final pore size (0.04 µm) than the 0.22 µm membranes used in conventional sterile filtration
4
Sequential filtration passes
(0.1 µm ×2 + 0.04 µm ×2)
Sterility & Mycoplasma: No bacterial or fungal growth observed after 14 days incubation (USP <71>). Mycoplasma risk is mitigated by 0.1 µm mycoplasma-retentive filtration at Stages 1 and 3; this is a filtration control, not a per-lot mycoplasma assay.
Grade: This product is Microfluidics Suitable, filtered to a 0.04 µm final cut-off. It is not an MPS Grade product — that designation is reserved for the 0.01 µm ultra nano-filtered line, which adds 0.02 µm and 0.01 µm stages after the 0.04 µm polish. For applications requiring the 0.01 µm cut-off, contact support@diagnocine.com.
FluxMPS™ DCP-DMEML-R1X Dulbecco's Modified Eagle Medium (DMEM), Low Glucose w/o Phenol Red: 1X Liquid quadruple-stage filtration system diagram showing four sequential stages: 0.1 micron Prefiltration I, 0.04 micron Final filtration I, 0.1 micron Prefiltration II, and 0.04 micron Final filtration II Polish, engineered for organ-on-a-chip and microfluidic cell culture media | Diagnocine
Figure 1. FluxMPS™ quadruple-stage filtration system: two prefilter + final-filter pairs (0.1 µm ×2 + 0.04 µm ×2) reaching a 0.04 µm final cut-off for microphysiological systems and organ-on-a-chip applications.
© Diagnocine® — DCP-DMEML-R1X
Applications

Designed for next-generation cell models

FluxMPS™ DCP-DMEML-R1X supports demanding cell culture platforms — from single-channel microfluidic chips to multi-organ body-on-a-chip systems — where media purity, metabolic precision, and optical clarity matter.

Automated Bioreactors & Robotics

Next-Generation System Uptime

An optional MPS Grade variant — a 0.01 µm (10 nm) ultra nano-filtered, six-stage cascade — is available on request for automated bioreactor perfusion systems, robotic liquid handlers, and long-duration closed-loop platforms where trace particulates cause valve failure or sensor drift.

  • Total Particulate Exclusion: 10 nm filtration removes nanoparticulate aggregates invisible to standard QC methods
  • Valve & Sensor Protection: Reduces micro-fouling of solenoid valves, peristaltic pump tubing, and inline optical sensors
  • Extended Perfusion Stability: Supports consistent nutrient delivery over weeks-long culture without in-line filter replacement

Inquiry Required: The 0.01 µm MPS Grade product is available by request. Contact support@diagnocine.com to request this variant for your automated system.

Microfluidics

Micro Physiological System (MPS) & Chip

Ultra-clean, 0.04 µm–filtered media supports laminar flow fidelity in complex multi-organ chip architectures without early channel fouling.

OoCToCBoCLoCMPS
Cancer Biology

Warburg Effect & Metabolic Research

Low glucose (1.0 g/L) base with defined pyruvate content enables control of aerobic glycolysis for Warburg phenotype studies.

MCF-7MDA-MB-231HeLaA549
Stem Cell Biology

iPSC-Derived Models

Ultra-low endotoxin (< 0.05 EU/mL) and 0.1 µm mycoplasma-retentive filtration make this medium suitable for sensitive iPSC-differentiation protocols.

iPSC-NeuronsiPSC-CMiPSC-Hep
Vascular Biology

Endothelial & Primary Cells

Particle-controlled, endotoxin-tested DMEM supports HUVEC and primary hepatocyte monolayer integrity for barrier-function assays and TEER monitoring.

HUVECsHAECsPrimary hepatocytes
Metabolomics

Metabolic Flux Analysis

Defined low-glucose formulation provides a controlled metabolic background for ¹³C isotope tracing and NMR metabolomics. Not compatible with Agilent Seahorse XF assays, which require bicarbonate-free, phenol red–free medium; this formulation contains 3700 mg/L sodium bicarbonate.

¹³C tracingNMR metabolomics
Live-Cell Imaging

Microscopy & Optical Sensing

This phenol red–free, ultra-low-particulate formulation supports confocal imaging, biosensor arrays, and TEER measurements on chip with reduced background interference.

ConfocalBiosensorsTEER
Technical Specifications

Analytical release specifications

Every lot is released against the full specification matrix below. CoA available on request: support@diagnocine.com.

Physical & Chemical Parameters
Parameter Specification
Formulation [+] L-Glutamine, [+] Sodium Bicarbonate, [+] Calcium, [+] Magnesium, [+] Low Glucose, [+] Sodium Pyruvate | [-] Phenol Red
Appearance Pale yellow to colorless, clear solution (no phenol red indicator dye)
pH USP <791> 7.4
Osmolality USP <785> 310–350 mOsm/kg H2O
Glucose 1000 mg/L (1.0 g/L, Low Glucose)
L-Glutamine 584 mg/L
Sodium Pyruvate 110 mg/L
Phenol Red Not added
Sterility, Purity & Safety
Parameter Specification
Endotoxin USP <85> BET < 0.05 EU/mL (batch release specification — see § Manufacturing & Compliance)
Sterility USP <71> No growth / 14 days
Mycoplasma 0.1 µm mycoplasma-retentive filtration (not tested per lot)
Particulate ≥10 µm USP <788> Method 1 NMT 25/mL
Particulate ≥25 µm USP <788> Method 1 NMT 3/mL
Water purity Type 1, 18.2 MΩ·cm
Manufacturing std. ISO 13485:2016
Fill environment ISO Class 5 (Class 100)
Storage, Handling & Logistics
Parameter Specification
Storage temperature 2–8°C, protect from light
Freeze-thaw Do not freeze
Shelf life 12 months from date of manufacture, unopened
Shipping condition Cold pack
CO2 requirement ~10% CO2 (bicarbonate-buffered at 3700 mg/L NaHCO3; calculated via Henderson–Hasselbalch for target pH 7.4)
Raw Materials & Regulatory
Parameter Specification
Raw material grade Reagent / cell culture grade
Traceability Full lot traceability per ISO 13485
Manufacturing QMS ISO ISO 13485:2016 certified
UNSPSC 41116155 — Molecular biology and cell culture growth media (UNv260801)
Regulatory alignment 21 CFR Part 820 (QMSR) aligned
Production method Micro-batch, per-lot QC release
Intended use Research Use Only (RUO)
Formulation

Full composition (mg/L)

FluxMPS™ DMEM is a modification of Basal Medium Eagle (BME) containing 4× BME concentrations of amino acids and vitamins, plus glycine, serine, and ferric nitrate. Total ingredients: 32. Every ingredient listed below is present in the released product; CAS numbers provided for traceability.

Component CAS Number mg/L
INORGANIC SALTS
Calcium chloride dihydrate 10035-04-8 265.000
Ferric nitrate nonahydrate 7782-61-8 0.100
Magnesium sulfate anhydrous 7487-88-9 97.720
Potassium chloride 7447-40-7 400.000
Sodium bicarbonate 144-55-8 3700.000
Sodium chloride 7647-14-5 6400.000
Sodium dihydrogen phosphate anhydrous 7558-80-7 109.000
Component CAS Number mg/L
AMINO ACIDS
Glycine 56-40-6 30.000
L-Arginine hydrochloride 1119-34-2 84.000
L-Cystine dihydrochloride 30925-07-6 62.570
L-Glutamine 56-85-9 584.000
L-Histidine hydrochloride monohydrate 5934-29-2 42.000
L-Isoleucine 73-32-5 105.000
L-Leucine 61-90-5 105.000
L-Lysine hydrochloride 657-27-2 146.000
L-Methionine 63-68-3 30.000
L-Phenylalanine 63-91-2 66.000
L-Serine 56-45-1 42.000
L-Threonine 72-19-5 95.000
L-Tryptophan 73-22-3 16.000
L-Tyrosine Disodium Salt dihydrate 69847-15-0 103.790
L-Valine 72-18-4 94.000
Component CAS Number mg/L
VITAMINS
Choline chloride 67-48-1 4.000
D-Ca-Pantothenate 137-08-6 4.000
Folic acid 59-30-3 4.000
Nicotinamide 98-92-0 4.000
Pyridoxal hydrochloride 65-22-5 4.000
Riboflavin 83-88-5 0.400
Thiamine hydrochloride 67-03-8 4.000
i-Inositol 87-89-8 7.200
OTHERS
D-Glucose 50-99-7 1000.000
Sodium pyruvate 113-24-6 110.000
Custom formulation: pH, glucose concentration, salts, HEPES, and nutrient composition are available on request. Contact support@diagnocine.com for custom co-formulation of DCP-DMEML-R1X.
Quality Assurance

Manufacturing & compliance

Every FluxMPS™ product is manufactured and released under a rigorous, multi-layer quality system spanning raw materials, in-process controls, and final-product testing.

verified

ISO 13485:2016 Quality Management

Manufactured under an ISO 13485:2016–certified quality management system. Final packaging, QA, and testing are conducted at the Diagnocine R&D and Quality Testing Center, Totowa, NJ, USA.

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Ultrapure Type 1 Water

All formulations use Ultrapure Type 1 water (18.2 MΩ·cm, ASTM D1193 / ISO 3696), formulated for low trace-metal and organic-carbon (TOC) content.

biotech

ISO Class 5 Fill & Finish

Final aseptic fill performed in validated ISO Class 5 (Class 100) laminar-flow workstations, supporting container-closure integrity at the point of fill.

assignment

Micro-Batch Precision

Small-batch production with full per-lot traceability. Each batch is individually tested and released against the specification below — no blending of lots. A Certificate of Analysis is issued for every batch.

Batch-level quality control. Endotoxin is controlled per manufacturing batch rather than per unit. Every batch is tested before release and must meet the release specification:
  • Endotoxin — LAL assay, USP <85> Bacterial Endotoxins Test; assay sensitivity 0.005 EU/mL; release specification < 0.05 EU/mL
  • pH, osmolality, conductivity, appearance and clarity
  • Sterility
A Certificate of Analysis is available on request.

Endotoxin — USP <85> BET

LAL assay. Assay sensitivity 0.005 EU/mL. Release specification: < 0.05 EU/mL. Tested per manufacturing batch.

Particulate — USP <788> Method 1

Light obscuration particle count test. Release limits: ≤25/mL (≥10 µm) and ≤3/mL (≥25 µm).

Osmolality — USP <785>

Freezing-point osmometry. Target range: 310–350 mOsm/kg H2O.

Documentation & CoA

Full Certificate of Analysis with raw-material traceability, in-process records, and final-release test results available for every batch upon request.

Certificate of Analysis: Request the CoA for any lot of DCP-DMEML-R1X by emailing support@diagnocine.com.
Product Comparison

How DCP-DMEML-R1X compares

FluxMPS™ DCP-DMEML-R1X vs. conventional 0.22 µm–filtered DMEM formulations.

Parameter DCP-DMEML-R1X (FluxMPS™) Conventional DMEM
(0.22 µm filtered)
Standard Alt. DMEM
(0.22 µm filtered)
Grade Microfluidics Suitable (0.04 µm final cut-off) Not tiered Not tiered
No Phenol Red — eliminates estrogen-agonist interference for hormone-sensitive cell lines, live-cell imaging, and optical biosensor applications check_circle Yes cancel No cancel No
Final filtration pore size 0.04 µm 0.22 µm 0.22 µm
Number of filtration stages 4 (Quadruple) 1 1
Mycoplasma-retentive filtration check_circle Yes (0.1 µm, Stages 1 & 3) cancel No cancel No
Endotoxin (release specification) FluxMPS™ — < 0.05 EU/mL Corning classical liquid media — < 0.25 EU/mL
Sigma-Aldrich DMEM complete medium — ≤ 2 EU/mL
Gibco classical DMEM — Not specified (recorded per lot)
USP particulate compliance check_circle USP <788> Method 1 cancel Not specified cancel Not specified
Water quality Type 1, 18.2 MΩ·cm Purified water Purified water
Manufacturing QMS ISO 13485:2016 ISO 9001 or none ISO 9001 or none
Microfluidic channel compatibility check_circle Compatible with sub-100 µm geometries cancel Risk of clogging cancel Risk of clogging
Custom formulation check_circle Available cancel Fixed formulation cancel Fixed formulation

Comparison figures from published supplier specifications, accessed 2026-09-02. Suppliers that publish no numeric endotoxin specification are shown as "Not specified".

FAQ

Frequently asked questions

Common questions about FluxMPS™ DCP-DMEML-R1X, a Microfluidics Suitable DMEM formulation.

Yes. DCP-DMEML-R1X is processed through a quadruple-stage filtration system reaching a 0.04 µm final pore size, reducing particulate levels that can accumulate in microchannels. It is engineered for microphysiological systems (MPS), OoC, tissue-on-a-chip (ToC), and lab-on-a-chip (LoC) platforms where sub-micron particle accumulation causes flow obstruction and signal artifacts.
Conventional 0.22 µm filtration retains bacteria but does not target mycoplasma (0.2–0.3 µm) or subvisible particulates. FluxMPS™ uses four sequential filters — 0.1 µm Prefiltration I, 0.04 µm Final filtration I, 0.1 µm Prefiltration II, and 0.04 µm Final filtration II — reaching a 0.04 µm final cut-off, 5.5× finer than the 0.22 µm membranes used in conventional sterile filtration.
Phenol red is a weak estrogen-receptor agonist that can confound hormone-sensitive assays (ER+ breast cancer lines, endocrine cell models) and produces autofluorescence in live-cell imaging. Removing it supports cleaner optical measurements for confocal microscopy, TEER sensors, and fluorescence-based biosensors on organ-on-a-chip platforms.
Yes. This formulation contains 3700 mg/L sodium bicarbonate, which buffers to pH 7.4 under approximately 10% CO2 (Henderson–Hasselbalch). A standard 5% CO2 incubator setting will not maintain the target pH for this bicarbonate concentration — verify your incubator CO2 setting before use, or contact support@diagnocine.com for a bicarbonate-adjusted or HEPES-buffered variant.
Yes. This medium is a defined base formulation. Add FBS (typically 5–10%), serum-free supplements, growth factors, antibiotics, or custom nutrients as required. Pre-filter serum and protein-containing additions through a 0.2 µm low-protein-binding PES or PVDF membrane before use — do not use a 0.04 µm membrane for supplements, as it will strip serum proteins and lipoproteins and clog rapidly. Contact support@diagnocine.com for custom co-formulation.
Endotoxin is controlled per manufacturing batch by Limulus Amebocyte Lysate (LAL) assay per USP <85> (assay sensitivity 0.005 EU/mL). Every batch is tested before release and must meet the specification: < 0.05 EU/mL. A Certificate of Analysis is available on request.
Yes. A full CoA is issued for every batch and includes: appearance, pH (USP <791>), osmolality (USP <785>), sterility (USP <71>), endotoxin (USP <85>), particulate count (USP <788> Method 1), and raw-material traceability. Request via support@diagnocine.com.
Scientific References

Supporting literature

Key peer-reviewed publications supporting the use of ultra-filtered, Microfluidics Suitable media in organ-on-a-chip, microfluidic, and metabolic research applications.

  1. Huh D, et al. Reconstituting organ-level lung functions on a chip. Science. 2010;328:1662–1668. doi:10.1126/science.1188302
  2. Bhatia SN, Ingber DE. Microfluidic organs-on-chips. Nat Biotechnol. 2014;32:760–772. doi:10.1038/nbt.2989
  3. Warburg O. On the origin of cancer cells. Science. 1956;123:309–314. doi:10.1126/science.123.3191.309
  4. Novak R, et al. Robotic fluidic coupling and interrogation of multiple vascularized organ chips. Nat Biomed Eng. 2020;4:407–420. doi:10.1038/s41551-019-0497-x
  5. Katt ME, et al. In vitro tumor models: advantages, disadvantages, variables, and selecting the right platform. Front Bioeng Biotechnol. 2016;4:12. doi:10.3389/fbioe.2016.00012
  6. Campisi M, et al. 3D self-organized microvascular model of the human blood-brain barrier with endothelial cells, pericytes and astrocytes. Biomaterials. 2018;180:117–129. doi:10.1016/j.biomaterials.2018.07.014
  7. Jang KJ, et al. Human kidney proximal tubule-on-a-chip for drug transport and nephrotoxicity assessment. Integr Biol. 2013;5:1119–1129. doi:10.1039/c3ib40049b
  8. Schimek K, et al. Integrating biological vasculature into a multi-organ-chip microsystem. Lab Chip. 2013;13:3588–3598. doi:10.1039/c3lc50217a
  9. Luni C, et al. High-efficiency cellular reprogramming with microfluidics. Nat Methods. 2016;13:446–452. doi:10.1038/nmeth.3832
  10. Sung JH, et al. Microfabricated mammalian organ systems and their integration into models of whole animals and humans. Lab Chip. 2013;13:1201–1212. doi:10.1039/c3lc41017j

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