Patent classifications
A61K9/209
Tamper resistant dosage form comprising an adsorbent and an adverse agent
Pharmaceutical compositions and dosage forms comprising an adsorbent, and an adverse agent, such as an opioid antagonist. In one embodiment, at least a portion of the adverse agent is on the surface or within the micropore structure of an adsorbent material. The pharmaceutical compositions and dosage forms comprising the adsorbent and the adverse agent are useful for preventing or discouraging tampering, abuse, misuse or diversion of a dosage form containing an active pharmaceutical agent, such as an opioid. The present invention also relates to methods for treating a patient with such a dosage form, as well as kits containing such a dosage form with instructions for using the dosage form to treat a patient. The present invention further relates to process for preparing such pharmaceutical compositions and dosage forms.
PHARMACEUTICAL COMPOSITIONS COMPRISING MELOXICAM
Disclosed herein are compositions comprising an NSAID such as meloxicam and/or rizatriptan in combination with a cyclodextrin and/or a carbonate or a bicarbonate. These compositions may be orally administered, for example, to improve the bioavailability or pharmacokinetics of the NSAID for the treatment of pain such as migraine, arthritis, and other conditions. Also disclosed herein are methods of treating pain, such as migraine, comprising administering meloxicam and rizatriptan to a human being suffering from pain, such as migraine. For migraine, these methods may be particularly useful when the meloxicam and rizatriptan are administered while the human being is suffering from an acute attack of migraine pain or migraine aura. In some embodiments, the combination of meloxicam and rizatriptan may be administered in a manner that results in a T.sub.max of meloxicam of 3 hours or less.
COMPOSITIONS FOR CONTROL OF DRUG ABUSE
Opiates, amphetamines, barbiturates and other drugs such as benzodiazepines are extensively abused or misused and are frequently the cause of death by overdosing. These drugs are also prone to oxidation and the final degradation products depend on the reactants and the reaction conditions. This invention describes the use of inactivating agents such as permanganates, peroxides, persulfates, bismuthates, periodates or other oxidants in a dosage form as an approach to minimize abuse and overdose. The product is designed such that the inactivating agent is released if there is an attempt to extract the drug from the formulation or in cases of overdose. Once released, the inactivating agent quickly degrades the drug and converts it into inactive compounds. Since the reactants (drug and inactivating agent) are incompatible in situations of normal drug usage, they are kept separated within the vehicle of the invention, but released for interaction in case of misuse. A catalyst may be included in the formulation to facilitate the reaction.
Oxymorphone controlled release formulations
The invention pertains to a method of relieving pain by administering a controlled release pharmaceutical tablet containing oxymorphine which produces a mean minimum blood plasma level 12 to 24 hours after dosing, as well as the tablet producing the sustained pain relief.
Stable pharmaceutical composition for atherosclerosis
The present invention relates to a stable solid oral pharmaceutical multi-component composition comprising combination of blood pressure lowering drugs with lipid lowering agent/s and optionally a platelet aggregation inhibitor in a single dosage form. The blood pressure lowering agents are selected from β-adrenergic receptor blocking agent, ACE inhibitor and diuretic. The lipid lowering agent is selected from HMG Co-enzyme-A reductase inhibitor. The pharmaceutical composition made as per present invention a) overcomes any drug-drug interactions, b) exhibits pharmacokinetic and pharmacodynamic profile of individual therapeutic agent, c) has minimal side effects. The invention provides multi-component composition (MCC) to increase adherences to therapy. The MCC as per present invention provides compositions that maintain activity of all active ingredients without significant increase in adverse event profile. The present invention further relates to a method of preparing the said pharmaceutical composition.
BILAYER TABLETS OF B VITAMINS AND PROCESS FOR PREPARING THE SAME
Compositions for oral administration and processes of preparing the same are described. In particular, compositions in the form of bilayer tablets including B vitamins for modified delivery are described. The bilayer multi-B vitamin tablets offer immediate release of a first set of B vitamins, such as riboflavin (B2) and cyanocobalamin (B12) followed by controlled release of a second set of B vitamins, such as folic acid, biotin, niacinamide (B3), pyridoxine (B6), pantothenic acid (B5) and thiamine (B1).
Pharmaceutical compositions
Methods and compositions are provided which comprise effective amounts of analgesic to treat a subject, including reducing or eliminating an adverse effect associated with the analgesic.
Method of Treatment and Pharmaceutical Composition for Morning Hypertension
The disclosure relates to methods and compositions for the treatment of one or more of morning hypertension and nocturnal hypertension.
CONTROLLED DOSE DRUG DELIVERY SYSTEM
A multiple pulsed dose drug delivery system for pharmaceutically active amphetamine salts, comprising a pharmaceutically active amphetamine salt covered with an immediate-release coating and a pharmaceutically active amphetamine salt covered with an enteric coating wherein the immediate release coating and the enteric coating provide for multiple pulsed dose delivery of the pharmaceutically active amphetamine salt. The product can be composed of either one or a number of beads in a dosage form, including either capsule, tablet, or sachet method for administering the beads.
METHODS AND FORMULATION FOR IMPROVING ORAL AVAILABILITY OF CPT-11 WHILE REDUCING CPT-11 INDUCED GASTROINTESTINAL TOXICITY IN CANCER THERAPY
Disclosed herein are methods and formulation for enhancing oral availability of CPT-11 during cancer therapy while at the same time, reducing its gastrointestinal (GI) toxicity, thus the methods and formulations as disclosed herein may augment the efficacy of cancer therapy.