JayCell Microcrystalline Cellulose (MCC)

With optimized flow properties, compressibility, and stability, JayCell MCC enhances the efficiency and reliability of tableting and capsule-filling processes.

Our Premium
Microcrystalline Cellulose Solutions

We offer high-quality Microcrystalline Cellulose designed for superior performance in pharmaceuticals, food, and cosmetic applications. Our excipients ensure purity, consistency, and reliability, meeting global regulatory standards for diverse industry needs.

 

Microcrystalline Cellulose (MCC)

Our JayCell range is designed for superior tableting performance, ensuring optimal flow, compressibility, and stability for various applications.

JayCell-101

Optimized for wet granulation and spheronization. Ensures uniform particle distribution, improving tablet strength and formulation consistency.

JayCell-102

Larger particle size with enhanced compressibility. Ideal for direct compression, offering better flow and improved disintegration properties.

JayCell-200

Low moisture content for moisture-sensitive formulations. Perfect for APIs prone to degradation, maintaining product integrity and shelf life.

JayCell-105

Fine particle size for enhanced binding properties.
Ideal for roller compaction, dry granulation, and improving tablet cohesion.

JayCell-305

Free-flowing and highly compatible with crystalline APIs. Ensures uniform blending and better dissolution rates in solid dosage forms.

JayCell-112

Coarser particles for high-compression formulations. Enhances tablet hardness while maintaining optimal disintegration.

JayCell-12

Balanced particle size for weight uniformity. Improves flow properties, reducing content variation in final formulations.

JayCell Microcrystalline Cellulose (MCC) – Quality, Purity & Performance

Our JayCell Microcrystalline Cellulose (MCC) is a high-quality excipient designed for superior performance in pharmaceutical, nutraceutical, and food applications. Manufactured under stringent ISO and GMP standards, it ensures purity, consistency, and excellent functionality in formulations.

Spray Dryer Grade Particle Size Distribution - D10 (µm) Particle Size Distribution - D50 (µm) Sieve Analysis (% Retention) - 60 Mesh Sieve Analysis (% Retention) - 200 Mesh Bulk Density (g/ml) Loss on Drying (LOD) % Degree of Polymerization (DOP)
JayCell-101NMT 3040 - 60NLT 10%< 30.0%0.27-0.34NMT 5.0NMT 350
JayCell-102NMT 3050 - 80NLT 10%< 30.0%0.27-0.34NMT 5.0NMT 350
JayCell-200NMT 3040 - 60NLT 10%< 30.0%0.26-0.34NMT 5.0NMT 350
JayCell-105NMT 3040 - 60NLT 10%< 30.0%0.26-0.34NMT 5.0NMT 350
JayCell-305NMT 3040 - 60NLT 10%< 30.0%0.26-0.34NMT 5.0NMT 350
JayCell-112NMT 30150 - 200NLT 10%< 30.0%0.35-0.45NMT 5.0NMT 350
JayCell-12NMT 3045 - 70NLT 10%< 30.0%0.35-0.45NMT 5.0NMT 350

important Notes

Description

White or almost white, fine or granular crystalline powder, practically insoluble in water. It dilutes slightly in dilute acids, organic solvents, and in dilute NaOH solution (20:1).

Technical Note

The specifications mentioned are specifically for the Spray Dryer Grade MCC – JayCell-101.

Contact us for detailed information on other MCC grades and additional technical specifications.

Microbial Limits
Total Viable Aerobic CountNMT 1000 cfu/g
Total Yeast & Mould CountNMT 100 cfu/g
Staphylococcus aureusAbsent
Escherichia coliAbsent
Pseudomonas aeruginosaAbsent
Salmonella speciesAbsent
Details
Identification A (USP/BP/EP/JP) (Zinc Chloride test)Conforms
Identification B (Degree of Polymerization)NMT 350
Identification 2 (Solubility - Copper Tartarate Solution)Dissolves
pH5.0 - 7.5
ConductivityNMT 75 µs/cm-1
Water-Soluble SubstanceNMT 0.25%
Ether-Soluble SubstanceNMT 0.05%
Loss on DryingNMT 7.0%
Heavy MetalsNMT 10 ppm
Residue on Ignition / Sulphated AshNMT 0.1%
Bulk Density0.27 to 0.34 g/ml
Assay (Dried)Min 97.0% to 102.0%
Sieve Analysis (% Retention) - 60 MeshNMT 15.0%
Sieve Analysis (% Retention) - 200 MeshNMT 30.0%
Particle Size Distribution - PSD D1030µ
Particle Size Distribution - PSD D5060µ
Particle Size Distribution - PSD D9080µ
Black ParticleNMT 08 per 600 cm²