Drug loaded nanoresin particles
Abstract
The present invention relates to nano-resin particles that are suitable for pharmaceutical use and their use in the pharmaceutical field. The present invention provides nano-sized resin particles having a particle size distribution characterized in that D90 value is between 200 nanometers to 900 nanometer and D10 value is not less than 50 nanometers, wherein the nano-resin particles are in pure form and safe for pharmaceutical use. The present invention further relates to pharmaceutical compositions comprising these purified nano-resin particles and their use in the treatment of diseases. The present invention further provides a process for preparing purified, nano-sized resin particles that are suitable for pharmaceutical use, the process comprising steps of: (i) washing an ion exchange resin and suspending in an aqueous liquid, (ii) subjecting the suspension of (i) to wet milling for a period such that the particles have a particle size distribution characterized in that the D90 value is between 200 nanometers to 900 nanometers and D10 value is not less than 50 nanometers, (iii) subjecting the suspension of (ii) to purification to remove impurities, (iv) drying the pun fled suspension to obtain nano-resin particles in the form of dry powder.
Claims
exact text as granted — not AI-modified1 . Nano-resin particles having a particle size distribution characterized in that the D 90 value is between 200 nanometers to 900 nanometers and D 10 value is not less than 50 nanometers.
2 . The nano-resin particles as claimed in claim 1 , wherein the particle size distribution is characterized in that the D 50 value is between 75 nanometers to 300 nanometers.
3 . The nano-resin particles as claimed in claim 1 , wherein the nano-resin particles are loaded with a drug, such that the drug-loaded nano-resin is suitable for pharmaceutical use.
4 . The nano-resin particles as claimed in claim 1 , wherein the nano-resin particles contain water extractable impurities of not more than 1% by weight of the total resin.
5 . The nano-resin particles as claimed in claim 1 , wherein the nano-resin particles contain total unknown organic impurities of not more than 3 ppm.
6 . The nano-resin particles as as claimed in claim 1 , wherein the nano-resin is an ion exchange resin selected from a cation exchange resin or an anion exchange resin.
7 . A suspension dosage form comprising drug loaded nanoresin particles having a particle size distribution characterized in that the D 90 value is between 200 nanometers to 900 nanometers and D 10 value is not less than 50 nanometers, a suspending agent and an aqueous vehicle, wherein the drug loaded nanoresin particles are characterized by a property of forming reversible clusters having a D 50 value of at least 2 micrometer.
8 . A process of preparing nano-resin particles having a particle size distribution characterized in that the D 90 value is between 200 nanometers to 900 nanometer and D 10 value is not less than 50 nanometers, the process comprising steps of:
i. washing an ion exchange resin and suspending in an aqueous liquid, ii. subjecting the suspension of (i) to wet milling for a period such that the particles have a particle size distribution characterized in that the D 90 value is between 200 nanometers to 900 nanometers and D 10 value is not less than 50 nanometers, iii. subjecting the suspension of (ii) to purification to remove impurities, iv. drying the purified suspension to obtain nano-resin particles in the form of dry powder.
9 . Nanoresin particles prepared by the process of claim 8 .
10 . A method of treating a disease, comprising administering via dermal or oral or sublingual route of administration drug loaded nano-resin particles having a particle size distribution characterized in that the D 90 value is between 200 nanometers to 900 nanometers and D 10 value is not less than 50 nanometers.
11 . The method as claimed in claim 10 , wherein the particle size distribution is characterized in that the D 50 value is between 75 nanometers to 300 nanometers.
12 . The method as claimed in claim 10 , wherein the nano-resin particles contain water extractable impurities of not more than 1% by weight of the total resin.
13 . The method as claimed in claim 10 , wherein the nano-resin particles contain total unknown organic impurities of not more than 3 ppm.
14 . The method claimed in claim 10 , wherein the nano-resin is an ion exchange resin selected from a cation exchange resin or an anion exchange resin.
15 . The method as claimed in claim 10 , Use of wherein the drug loaded nanoresin particles are in an aqueous suspension dosage form comprising a suspending agent and an aqueous vehicle.
16 . The method as claimed in claim 10 , wherein the drug loaded nanoresin particles are in a semisolid dosage form in an aqueous or a non-aqueous vehicle, and the drug is delivered via dermal route of administration.
17 . The method as claimed in claim 16 , wherein the semisolid dosage form is a cream, ointment, lotion, emulsion, suspension or a gel.Join the waitlist — get patent alerts
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