FluxMPS™ Dulbecco's Modified Eagle Medium (DMEM), Low Glucose, 25mM HEPES w/o L-Glutamine: 1X Liquid

Product#: DCP-DMEMLH-Q1X
$44.00
DCP-DMEMLH-Q1X
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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, 25mM HEPES w/o L-Glutamine: 1X Liquid

Contains Sodium Bicarbonate Contains Phenol Red Contains 25mM HEPES Contains Calcium Contains Magnesium Contains Low Glucose Contains Sodium Pyruvate Without L-Glutamine

FluxMPS™ DCP-DMEMLH-Q1X is a Microfluidics Suitable, quadruple-stage ultra-filtered (0.1 µm ×2 + 0.04 µm ×2) DMEM Low Glucose + HEPES formulation engineered for microphysiological systems (MPS), organ-on-a-chip (OoC), and microfluidic tissue models. A quadruple-stage train (0.1 µm ×2 + 0.04 µm ×2) reaches a 0.04 µm final cut-off, five times finer than the 0.22 µm membranes used for conventional sterile filtration. Formulation: [+] Low Glucose, [+] Sodium Pyruvate, [+] Sodium Bicarbonate, [+] 25mM HEPES, [+] Calcium, [+] Magnesium, [+] Phenol Red | [-] L-Glutamine. The 25 mM HEPES component (pKa 7.3 at 37°C) supplements the sodium bicarbonate buffering system for added pH stability during bench-top handling.

  • Quadruple-stage filtration train — 0.1 µm Prefiltration I → 0.04 µm Final filtration I → 0.1 µm Prefiltration II → 0.04 µm Final filtration II — reaching a 0.04 µm final pore size
  • Endotoxin release specification < 0.05 EU/mL (LAL, USP <85>), controlled per manufacturing batch
  • Low Glucose formulation (1000 mg/L D-Glucose) with 110 mg/L sodium pyruvate and 3700 mg/L sodium bicarbonate
  • 25 mM HEPES (pKa 7.3 at 37°C) supplements bicarbonate buffering for stability during extended bench-top handling outside the incubator
  • L-Glutamine intentionally excluded — add fresh (2 mM) or substitute a stable dipeptide per your protocol at time of use
  • 33 verified components across inorganic salts, amino acids, vitamins, and other formulation constituents, released with full lot traceability
  • Manufactured under an ISO 13485:2016 quality management system; final QC at Diagnocine, Totowa, NJ
  • Custom pH, salt, HEPES, and nutrient adjustments available on request — contact support@diagnocine.com
SKU: DCP-DMEMLH-Q1X Cell Culture Media UNSPSC: 41116155 | Commodity: Molecular biology and cell culture growth media | (UNv260801)
Dulbecco's Modified Eagle Medium (DMEM), Low Glucose, 25mM HEPES w/o L-Glutamine: 1X Liquid — Available sizes: 500 mL, 1000 mL
  • Formulation[+] Low Glucose, [+] Sodium Pyruvate, [+] Sodium Bicarbonate, [+] 25mM HEPES, [+] Calcium, [+] Magnesium, [+] Phenol Red | [-] L-Glutamine
  • AppearanceRed-colored (phenol red), clear solution
  • pH (USP <791>)7.4
  • Osmolality (USP <785>)300–340 mOsm/kg H2O
  • Endotoxin (USP <85>)< 0.05 EU/mL
  • FiltrationQuadruple-stage: 0.1 µm ×2 + 0.04 µm ×2
  • Sterility (USP <71>)No growth / 14 days
  • Storage2–8°C, away from light
  • Shelf Life12 months from date of manufacture, unopened
  • ShippingCold pack
ISO 13485:2016 USP <85> <785> <788> RUO
Why FluxMPS™

Engineered where standard media fails

Conventional 0.22 µm–filtered media passes mycoplasma-sized organisms, subvisible particulates, and aggregates that clog microfluidic channels and interfere with sensor signals. FluxMPS™ addresses these failure modes with a four-stage sub-0.04 µm filtration train and a dual buffer system (sodium bicarbonate + HEPES) suited to both incubator and bench-top handling.

filter_alt

Microchannel-safe purity

0.04 µm final filtration; USP <788> Method 1 (light obscuration) particulate compliance supports safe perfusion across chip geometries.

target

Total metabolic control

Selective inclusion of low glucose, sodium pyruvate, sodium bicarbonate, and HEPES for precise nutrient and buffer definition; L-glutamine is added fresh per protocol.

water_drop

Ultrapure-grade water

Ultrapure Type 1 water (18.2 MΩ·cm) with tightly controlled trace-metal and organic-carbon (TOC) content supports sensitive cell-based assays.

visibility

Low background for imaging

Ultra-low particulate count provides a clean baseline for confocal microscopy and biosensor applications.

science

Rich, stable nutrient profile

33 components verified per lot; micro-batch production with full raw-material traceability.

tune

Customization on demand

pH, glucose, salts, HEPES, and nutrients adjustable per your protocol. Contact support@diagnocine.com.

Purity Architecture

Quadruple-stage filtration system

Four serial filtration stages reach a final 0.04 µm polish under ISO Class 5 aseptic conditions, substantially exceeding the mycoplasma-retentive and particulate performance of conventional 0.22 µm–filtered media.

  1. 1

    0.1 µm Prefiltration I

    Removes large aggregates, cell debris, and protein aggregates; protects the first 0.04 µm final filter cartridge.

  2. 2

    0.04 µm Final filtration I

    First 0.04 µm pass; retains sub-micron particulates and microaggregates that pass a conventional 0.22 µm filter, and provides mycoplasma-retentive filtration (mycoplasma diameter 0.2–0.3 µm).

  3. 3

    0.1 µm Prefiltration II

    Second dedicated prefilter, protecting the second 0.04 µm final filter cartridge.

  4. 4

    0.04 µm Final filtration II — Polish

    Ultimate polishing filter; aseptic fill and finish under ISO Class 5 (Class 100) conditions.

Performance vs. conventional media

5×
Cleaner than 0.22 µm media by particulate count
0.04
µm Final pore size — sub-mycoplasma polishing
Sterility & Mycoplasma: No growth after 14-day incubation (USP <71>). Mycoplasma control is by 0.1 µm and 0.04 µm mycoplasma-retentive filtration at every production stage (not tested per lot by USP <63>).
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-DMEMLH-Q1X Dulbecco's Modified Eagle Medium (DMEM) Low Glucose 25mM HEPES w/o L-Glutamine 1X Liquid, Quadruple-stage filtration system: 0.1 micron Prefiltration I, 0.04 micron Final filtration I, 0.1 micron Prefiltration II, 0.04 micron Final filtration II, Microfluidics Suitable cell culture media for organ-on-a-chip and microphysiological system applications, Diagnocine
Figure 1. FluxMPS™ Quadruple-stage filtration system (0.1 µm ×2 + 0.04 µm ×2) delivering Microfluidics Suitable purity for organ-on-a-chip applications.
© Diagnocine® — DCP-DMEMLH-Q1X
Applications

Designed for next-generation cell models

FluxMPS™ DCP-DMEMLH-Q1X supports platforms from single-channel microfluidic chips to multi-organ body-on-a-chip systems. The 25 mM HEPES component supplements bicarbonate buffering, aiding stability during open-well handling outside the incubator.

Automated Bioreactors & Robotics

Next-Generation System Uptime

An optional 0.01 µm (10 nm) ultra nano-filtered variant — Diagnocine's separate MPS Grade line — is available on request for automated bioreactor perfusion and robotic liquid handlers.

  • Total Particulate Exclusion: 0.01 µm filtration removes nanoparticulate aggregates beyond the 0.04 µm Microfluidics Suitable cut-off
  • Valve & Sensor Protection: Reduces micro-fouling risk to solenoid valves and inline optical sensors
  • Extended Perfusion Stability: Supports consistent nutrient delivery over weeks-long culture

Inquiry Required: Contact support@diagnocine.com for the 0.01 µm MPS Grade variant.

Microfluidics

Micro Physiological System (MPS) & Chip

Ultra-clean 0.04 µm–filtered media supports stable perfusion in complex multi-organ chip architectures.

OoCToCBoCLoCMPS
Bioproduction

CHO & Mammalian Cell Culture

Suited to CHO, cancer, and primary cell lines maintained under low-glucose, HEPES-supplemented culture conditions.

CHOMCF-7HeLaHEK293
Stem Cell Biology

iPSC-Derived Models

Low endotoxin (< 0.05 EU/mL release specification) and 0.1 µm/0.04 µm mycoplasma-retentive filtration for sensitive iPSC protocols.

iPSC-NeuronsiPSC-CMiPSC-Hep
Vascular Biology

Endothelial & Primary Cells

Low-particulate, endotoxin-controlled media for HUVEC monolayer integrity studies and TEER monitoring workflows.

HUVECsHAECsPrimary hepatocytes
Metabolomics

Metabolic Flux Analysis

Defined formulation supports ¹³C isotope tracing and NMR-based metabolic flux analysis. Not compatible with Agilent Seahorse XF assays, which require bicarbonate-free, phenol red-free medium.

¹³C tracingNMR metabolomics
Live-Cell Imaging

Microscopy & Optical Sensing

Ultra-low particulate count provides a clean baseline for confocal microscopy and biosensor platforms. This formulation contains phenol red; a phenol red-free FluxMPS™ variant is recommended for autofluorescence-sensitive imaging.

ConfocalBiosensorsTEER
Technical Specifications

Analytical release specifications

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

Physical & Chemical Parameters
Parameter Specification
Formulation [+] Low Glucose, [+] Sodium Pyruvate, [+] Sodium Bicarbonate, [+] 25mM HEPES, [+] Calcium, [+] Magnesium, [+] Phenol Red | [-] L-Glutamine
Appearance Red-colored (phenol red), clear solution
pH USP <791> 7.4
Osmolality USP <785> 300–340 mOsm/kg H2O
Glucose 1000 mg/L (Low Glucose)
L-Glutamine Not added — add fresh at use
Sodium Pyruvate 110 mg/L
Phenol Red 15.9 mg/L (phenol red sodium salt)
HEPES 25 mM (5958 mg/L), pKa 7.3 at 37°C
Sterility, Purity & Safety
Parameter Specification
Endotoxin USP <85> BET < 0.05 EU/mL — batch release specification (see § Quality Assurance)
Sterility USP <71> No growth / 14 days
Mycoplasma 0.1 µm and 0.04 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 Ultrapure 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, away from light
Freeze-thaw Do not freeze
Shelf life 12 months from date of manufacture, unopened
Shipping condition Cold pack
CO2 requirement Approximately 10% CO2 (calculated from 44 mM sodium bicarbonate to maintain pH 7.4); 25 mM HEPES provides supplemental buffering during bench-top handling
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)
Available pack sizes 500 mL, 1000 mL
Formulation

Full composition (mg/L)

Total: 33 components across 4 formulation categories (Inorganic Salts, Amino Acids, Vitamins, Others), presented across 3 navigable tabs below, each released per lot with CAS 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 6400.00
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-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
OTHERS
i-Inositol 87-89-8 7.200
D-Glucose 50-99-7 1000.000
Phenol red sodium salt 34487-61-1 15.900
Sodium pyruvate 113-24-6 110.000
HEPES 7365-45-9 5958.000
Custom formulation: Contact support@diagnocine.com for DCP-DMEMLH-Q1X custom specifications.
Quality Assurance

Manufacturing & compliance

Every FluxMPS™ product is manufactured and released under a 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 QC at the Diagnocine R&D Center, Totowa, NJ, USA.

water_drop

Ultrapure Type 1 Water

18.2 MΩ·cm resistivity with controlled trace-metal and organic-carbon (TOC) content.

biotech

ISO Class 5 Fill & Finish

Aseptic fill in validated ISO Class 5 (Class 100) laminar-flow workstations.

assignment

Micro-Batch Precision

Small-batch production, full per-lot traceability, Certificate of Analysis for every lot.

Endotoxin — USP <85> BET

LAL assay; release specification < 0.05 EU/mL per manufacturing batch.

Particulate — USP <788> Method 1

Light obscuration: NMT 25/mL (≥10 µm), NMT 3/mL (≥25 µm).

Osmolality — USP <785>

Freezing-point osmometry. Target: 300–340 mOsm/kg H2O.

Documentation & CoA

Full CoA with raw-material traceability available for every lot on request.

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 at support@diagnocine.com.
Product Comparison

How DCP-DMEMLH-Q1X compares

FluxMPS™ DCP-DMEMLH-Q1X vs. conventional 0.22 µm–filtered DMEM Low Glucose + HEPES formulations.

Parameter DCP-DMEMLH-Q1X (FluxMPS™) Conventional DMEM Low Glucose + HEPES
(0.22 µm filtered)
Standard Alt.
(0.22 µm filtered)
Grade Microfluidics Suitable (0.04 µm) Standard grade (0.22 µm) Standard grade (0.22 µm)
HEPES-supplemented, bicarbonate-buffered; L-glutamine added fresh at use 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 (0.1/0.04 µm) 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 <788> Method 1 particulate tested check_circle Yes cancel No cancel No
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 Microfluidics Suitable cancel Risk of clogging cancel Risk of clogging
Custom formulation check_circle Available cancel Fixed cancel Fixed

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-DMEMLH-Q1X.

Yes. DCP-DMEMLH-Q1X is processed through a quadruple-stage filtration system reaching a 0.04 µm final pore size, providing low particulate levels suited to MPS, OoC, tissue-on-a-chip (ToC), body-on-a-chip (BoC), and lab-on-a-chip (LoC) platforms.
 
L-glutamine is omitted so it can be added fresh at use (typically 2 mM), preventing spontaneous degradation to pyrrolidone carboxylic acid and ammonia during storage. A stable dipeptide substitute (such as a glycyl-glutamine or alanyl-glutamine dipeptide) can be used for extended culture stability; neither is included in this formulation and both should be added according to your protocol.
This formulation contains both sodium bicarbonate (3700 mg/L) and 25 mM HEPES. Based on the bicarbonate concentration, maintaining pH 7.4 requires approximately 10% CO2; the HEPES component provides supplemental buffering capacity for stability during bench-top handling outside the incubator. Validate the exact CO2 level for your specific incubator and application.
Yes. Serum and other protein-containing supplements should be filtered through a 0.2 µm low-protein-binding PES or PVDF membrane before addition; defined, protein-free additions may use a 0.1 µm filter. Do not use a 0.04 µm filter for supplements — it will strip serum of the proteins and lipoproteins that make it effective. Contact support@diagnocine.com for custom co-formulation.
Endotoxin is controlled per manufacturing batch by LAL assay (USP <85>), against a release specification of < 0.05 EU/mL. Every batch is tested before release; a Certificate of Analysis is available on request.
Yes. A full CoA per batch covers: appearance, pH (USP <791>), osmolality (USP <785>), sterility (USP <71>), endotoxin (USP <85>), mycoplasma filtration status, particulate count (USP <788> Method 1), and raw-material traceability. Request at support@diagnocine.com.
Scientific References

Supporting literature

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

  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. Ham RG. Clonal growth of mammalian cells in a chemically defined, synthetic medium. Proc Natl Acad Sci USA. 1965;53:288–293. doi:10.1073/pnas.53.2.288
  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. 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
  6. Schimek K, et al. Integrating biological vasculature into a multi-organ-chip microsystem. Lab Chip. 2013;13:3588–3598. doi:10.1039/c3lc50217a
  7. Luni C, et al. High-efficiency cellular reprogramming with microfluidics. Nat Methods. 2016;13:446–452. doi:10.1038/nmeth.3832
  8. 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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