Collagenase, Type III
Based on 1 Customer Validation
Collagenase, Type III is a microbially derived matrix metalloproteinases (MMPs) and zinc peptidase. Collagenase, Type III breaksdown collagens1, 4, 9, 10, 14, fibronectin, MMP-9, gelatin, plasminogen, aggrecan,perlecan osteonectin
For research use only. We do not sell to patients.
- CAS No.: 9001-12-1
- Molecular Weight:68-130 kDa
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Storage:
Please store the product under the recommended conditions in the Certificate of Analysis.
Biological Activity
Description
In Vitro
Type III collagenase is recommended for breast primary cell isolation.
Preparation of storage solution
1. Add 1 mL Hank's Balanced Salt Solution (HBSS) with calcium and magnesium directly to 1 g vial of Collagenase.Vortex gently to ensure complete dissolution, and prepare a stock solution of 100 mg/mL (100X stock solution).
2. Filter sterilize 100X stock solution using a 0.22 μm filter with a low protein binding filtration unit. Use immediately or dispense into aliquots and store at -20°C to -5°C protected from light.
3. Thaw on ice prior to use. Commonly used concentrations for tissue and cell dispersion are 0.5-2.5 mg/mL and for cartilage digestion are 1-2 mg/mL, but the optimal working concentration required needs to be determined based on specific experimental conditions or by referring to the appropriate literature.
Dissociate Tissue
1. Mince tissue into 3-4 mm pieces with a sterile scalpel or scissors.
2. Wash the tissue pieces several times with HBSS containing calcium and magnesium.
3. Add sufficient HBSS with calcium and magnesium to submerge tissue. Add collagenase to required working concentration.
4. Incubate at 37°C for 4-18 hours. Increased efficiency is obtained using a rocker platform and supplementing the digest with 3 mM CaCl2.
5. Disperse cells by passing through a sterile stainless steel or nylon mesh. Remaining tissue fragments may be disaggregated by addition to fresh collagenase solution and further incubation at 37°C.
6. Wash dispersed cells several times by centrifugation in HBSS w/o collagenase.
7. Resuspend cell pellet, after the final wash step, in culture medium. Determine viable cell density using a Automated Cell Counter (alternate automated or manual methods may be used).
8. Seed cells into culture vessels containing appropriate media.
Organ Perfusion
1. Add collagenase to prewarmed (37°C) HBSS with calcium and magnesium. Addition of 3 mM CaCl2 increases the efficiency of dissociation.
2. Perfuse organ at preoptimized rate for the particular organ.
3. Dispersed cells and tissue fragments are separated from larger pieces by passing the perfusate through a sterile stainless steel or nylon mesh. Remaining tissue fragments may be disaggregated by addition to fresh collagenase solution and further incubation at 37°C.
4. The steps are the same as for tissue isolation 6-8.
MedChemExpress (MCE) has not independently confirmed the accuracy of these methods. They are for reference only. Further protocols information, click here.
EC Number
3.4.24.3
Enzyme Activity
≥125 U/mg soild
Unit Definition
One unit is defined as the amount of enzyme required to hydrolyze collagen to produce 1 μmol LLeucine in 5 hours at 37°C, pH 7.5.
Technical Parameters
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Biological Source
Clostridium histolyticum
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Activators
Ca2+, Zn2+
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Inhibitors
EDTA, EGTA,Cysteine, histidine,DTT,2-mercaptoethanol,o-phenanthroline,Hg2+, Pb2+, Cd2+, Cu2+,Not inhibited by DFP or serum
Chemical Information
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CAS No. 9001-12-1
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Appearance Solid
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Molecular Weight 68-130 kDa
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Color Yellow to brown
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SMILES
[Collagenase, Type III]
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Shipping
Room temperature in continental US; may vary elsewhere.
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Storage
Please store the product under the recommended conditions in the Certificate of Analysis.
Solvent & Solubility
In Vitro:
H2O : 100 mg/mL (Need ultrasonic)
Protocols
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Mitochondrial membrane-potential fluorescent assay
Mitochondrial membrane potential fluorescent assays estimate ΔΨm in living cells using lipophilic cationic dyes such as TMRM, TMRE, rhodamine 123, and JC-1, which accumulate in mitochondria according to membrane polarization; loss of signal after FCCP or CCCP treatment is interpreted as mitochondrial depolarization. TMRM/TMRE and rhodamine 123 are commonly used for semi-quantitative live-cell microscopy or flow cytometry, while JC-1 can report a shift from red aggregate fluorescence to green monomer fluorescence during depolarization; interpretation requires controls because dye concentration, quenching mode, cell type, dye efflux, and mitochondrial mass can affect fluorescence independently of ΔΨm.
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Mitochondrial membrane-potential and mitochondrial mass staining
Mitochondrial membrane potential staining measures the electrochemical polarization across the mitochondrial inner membrane in live cells using lipophilic cationic fluorescent probes; early rhodamine-based work showed that selective mitochondrial dye accumulation is lost when the mitochondrial transmembrane potential is dissipated. JC-1 reports mitochondrial polarization by shifting from green monomer fluorescence to red J-aggregate fluorescence as dye concentration increases within energized mitochondria; therefore, the red/green fluorescence ratio is used as a relative readout of mitochondrial membrane potential. TMRE or TMRM staining provides a single-channel relative readout because these cationic rhodamine esters accumulate in polarized mitochondria, and lower fluorescence indicates reduced mitochondrial polarization when acquisition and dye-loading conditions are controlled. Mitochondrial mass staining is commonly performed with MitoTracker Green FM or related MitoTracker dyes as
Purity & Documentation
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Data Sheet (268 KB)
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SDS (419 KB)
- English - EN (419 KB)
- Français - FR (419 KB)
- Deutsch - DE (419 KB)
- Norwegian - NO (419 KB)
- Español - ES (419 KB)
- Swedish - SV (419 KB)
- Italian - IT (419 KB)
- Korean - KR (419 KB)
- Portuguese - PT (419 KB)
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Handling Instructions (2659 KB)
References
Calculators
Concentration (start) × Volume (start) = Concentration (final) × Volume (final)