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Spray-Drying Technology

MCC; DCPA; Mannitol; PS; DC Starch; Lactose

  • DESU® Microcrystalline Cellulose PH-101 is a versatile pharmaceutical excipient with excellent binding properties, moisture retention, and formulation stability. Its balanced physical characteristics make it widely used as a tablet filler and binder in various oral solid dosage formulations, providing consistent quality and reliable performance for pharmaceutical development.
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  • DESU® Microcrystalline Cellulose PH-102 is a premium excipient engineered for powder direct compression, delivering superior compressibility through proprietary spray drying technology. It uniquely guarantees highly stable drug dissolution across a broad tablet hardness range, effectively mitigating batch quality risks caused by tableting pressure fluctuations.
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  • DESU® Microcrystalline Cellulose PH-105 is an ultra-fine powder pharmaceutical excipient with exceptional smoothness and superior compactibility. Its grit-free texture and strong binding properties make it ideal for orally disintegrating tablets, chewable tablets, and lozenges, enhancing patient compliance and formulation flexibility.
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  • DESU® Microcrystalline Cellulose PH-200 is a high-performance pharmaceutical excipient produced via a proprietary spray drying technology platform. It features a unique porous structure designed to optimize powder flowability, compressibility, and disintegration in solid dosages.
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  • DESU® Microcrystalline Cellulose PH-301 is a high-bulk-density pharmaceutical excipient with enhanced flowability, specifically designed for blending with high-density APIs. Its elevated density minimizes segregation and improves tablet weight uniformity in direct compression and high-drug-load formulations.
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  • DESU® Microcrystalline Cellulose PH-302 by Westpoint Pharma is a premium excipient featuring fibrous aggregates with regular morphology. Produced via precise spray drying technology, it offers exceptional solid-state bridging and compressibility for sensitive oral solid dosages. It is optimized for high-speed direct compression and high-drug-load formulations, delivering consistent quality and reliable performance.
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  • DESU® Microcrystalline Cellulose PH-102SCG is a coarse-particle pharmaceutical excipient with excellent flowability, specifically designed to improve powder flow in formulations containing poorly flowing drug substances. It ensures consistent blending and stable tablet production in direct compression and dry granulation processes.
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  • DESU® Microcrystalline Cellulose PH-103 is a low-moisture microcrystalline cellulose (MCC) grade with a median particle size of 50 μm and moisture content ≤3.0%. As an improved variant of PH-101, it is engineered for oral solid dosage forms requiring controlled water content, serving as a filler, binder, and dry binder in moisture-sensitive pharmaceutical formulations.
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  • DESU® Microcrystalline Cellulose PH-113 is an ultra-low-moisture microcrystalline cellulose grade with a median particle size of 50 μm and moisture content ≤ 2.0%. It is specifically designed for oral solid formulations with highly moisture-sensitive APIs, functioning as a filler, binder, and compressibility enhancer.
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  • DESU® Microcrystalline Cellulose PH-112 is an ultra-low-moisture microcrystalline cellulose grade with a median particle size of 100 μm and moisture content ≤ 1.5%. It combines balanced flow and compactability with ultra-low water levels, serving as an ideal filler and binder for moisture-sensitive APIs in direct compression and dry granulation.
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  • DESU® Microcrystalline Cellulose PH-200LM is an ultra-low-moisture, super-flowable microcrystalline cellulose grade with a median particle size of 180 μm and moisture content ≤ 1.5%. It combines spherical particle morphology, exceptional flow, and minimal water content, serving as a premium filler and dry binder for poorly flowing, moisture-sensitive APIs in high-speed direct compression.
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  • DESU® Microcrystalline Cellulose 802 is a specialized, highly functional pharmaceutical excipient developed by Westpoint. Featuring a unique fibrous structure with a high aspect ratio, it is engineered for superior low-pressure molding in advanced solid formulations.
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