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Articles related to 18827375 [Unique ID], provided by the PubMed system
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Koseki T, Onishi H, Takahashi Y, et al. 
Development of novel fast-disintegrating tablets by direct compression using sucrose stearic Acid ester as a disintegration-accelerating agent. [Journal Article]
Chem Pharm Bull (Tokyo) 2008 Oct; 56(10):1384-8.
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Lin SY, Lin KH, Li MJ 
Influence of excipients, drugs, and osmotic agent in the inner core on the time-controlled disintegration of compression-coated ethylcellulose tablets. [Journal Article]
J Pharm Sci 2002 Sep; 91(9):2040-6.
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Fukami J, Ozawa A, Yoshihashi Y, et al. 
Development of fast disintegrating compressed tablets using amino acid as disintegration accelerator: evaluation of wetting and disintegration of tablet on the basis of surface free energy. [Journal Article]
Chem Pharm Bull (Tokyo) 2005 Dec; 53(12):1536-9.
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Fenyvest E, Antal B, Zsadon B, et al. 
Cyclodextrin polymer, a new tablet disintegrating agent. [Journal Article]
Pharmazie 1984 Jul; 39(7):473-5.
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Al-Mohizea AM, Ahmed MO, Al-Jenoobi FI, et al. 
Formulation and evaluation of dried yeast tablets using different techniques. [JOURNAL ARTICLE]
Eur J Pharm Biopharm 2006 Dec 23.
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Casalderrey M, Souto C, Concheiro A, et al. 
A comparison of drug loading capacity of cellactose with two ad hoc processed lactose-cellulose direct compression excipients. [Journal Article]
Chem Pharm Bull (Tokyo) 2004 Apr; 52(4):398-401.
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Marczyński Z, Zgoda MM, Jambor J 
Application of silicified microcrystalline cellulose (Prosolv) as a polymer carrier of Epilobium parviflorum Schreb. extract in oral solid drug form. [Journal Article]
Polim Med 2007; 37(2):21-32.
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Mishra DN, Bindal M, Singh SK, et al. 
Spray dried excipient base: a novel technique for the formulation of orally disintegrating tablets. [Journal Article]
Chem Pharm Bull (Tokyo) 2006 Jan; 54(1):99-102.
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Kucinskaite A, Sawicki W, Briedis V, et al. 
Fast disintegrating tablets containing Rhodiola rosea L. extract. [Journal Article]
Acta Pol Pharm 2007 Jan-Feb; 64(1):63-7.
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