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Search results for sulfisoxazole root_names_stdName in Standardized Name (approximate match)
Showing 2451 - 2457 of 2457 results
Status:
US Approved Rx
(2007)
Source:
ANDA065381
(2007)
Source URL:
First approved in 1991
Source:
CEFZIL by CORDEN PHARMA
Source URL:
Class:
MIXTURE
Targets:
Conditions:
Cefprozil is a 2nd generation cephalosporin that is FDA approved for the treatment of mild to moderate infections of upper respiratory tract, lower respiratory tract, and uncomplicated skin and skin-structure infections. Cefprozil, like the penicillins, is a beta-lactam antibiotic. By binding to specific penicillin-binding proteins (PBPs) located inside the bacterial cell wall, it inhibits the third and last stage of bacterial cell wall synthesis. Common adverse reactions include diarrhea, nausea, vomiting, dizziness, abdominal pain and vaginitis. Nephrotoxicity has been reported following concomitant administration of aminoglycoside antibiotics and cephalosporin antibiotics. Concomitant administration of probenecid doubled the AUC for cefprozil.
Status:
Investigational
Source:
INN:getacatetide [INN]
Source URL:
Class:
PROTEIN
Status:
Investigational
Source:
NCT03255070: Phase 1 Interventional Completed Breast Neoplasms
(2018)
Source URL:
Class:
PROTEIN
Status:
Investigational
Source:
NCT02237950: Phase 3 Interventional Completed Bacterial Vaginosis
(2014)
Source URL:
Class:
PROTEIN
Conditions:
Astodrimer, also known as SPL7013, a microbicide developed by Starpharm. This drug has been used in phase III clinical trials for the treatment and prevention of Bacterial Vaginosis. Starpharma conducts a meeting with US FDA related to potential approval of astodrimer in Bacterial vaginosis. In addition, SPL7013, participated in phase II clinical trials against human immunodeficiency virus (HIV) and herpes simplex virus 2 (genital herpes, HSV-2). It is known that astodrimer binds tightly to R5 gp120 in the gp120-CD4 complex, thus preventing the accrual of the requisite number of gp120-CD4 complexes across the virus-cell interface, thereby blocking virus entry.
Status:
Investigational
Class:
NUCLEIC ACID
Status:
US Approved Rx
(2020)
Source:
ANDA210986
(2020)
Source URL:
First approved in 1988
Source:
VOLTAREN by NOVARTIS
Source URL:
Class:
POLYMER
Conditions:
Diclofenac is a nonsteroidal anti-inflammatory drug (NSAID) of the phenylacetic acid class with anti-inflammatory, analgesic, and antipyretic properties. Contrary to the action of many traditional NSAIDs, diclofenac inhibits cyclooxygenase (COX)-2 enzyme with greater potency than it does COX-1. In addition diclofenac can inhibit the thromboxane-prostanoid receptor, affect arachidonic acid release and uptake, inhibit lipoxygenase enzymes, and activate the nitric oxide-cGMP antinociceptive pathway. Other novel mechanisms of action may include the inhibition of substrate P, inhibition of peroxisome proliferator activated receptor gamma (PPARgamma), blockage of acid-sensing ion channels, alteration of interleukin-6 production, and inhibition of N-methyl-D-aspartate (NMDA) receptor hyperalgesia. Similar to other NSAIDs, diclofenac is associated with serious dose-dependent gastrointestinal, cardiovascular, and renal adverse effects. Since its introduction in 1973, a number of different diclofenac-containing drug products have been developed with the goal of improving efficacy, tolerability, and patient convenience. Delayed- and extended-release forms of diclofenac sodium were initially developed with the goal of improving the safety profile of diclofenac and providing convenient, once-daily dosing for the treatment of patients with chronic pain. New drug products consisting of diclofenac potassium salt were associated with faster absorption and rapid onset of pain relief. These include diclofenac potassium immediate-release tablets, diclofenac potassium liquid-filled soft gel capsules, and diclofenac potassium powder for oral solution. The advent of topical formulations of diclofenac enabled local treatment of pain and inflammation while minimizing systemic absorption of diclofenac. SoluMatrix diclofenac, consisting of submicron particles of diclofenac free acid and a proprietary combination of excipients, was developed to provide analgesic efficacy at reduced doses associated with lower systemic absorption. The drug's likely impact on the Asian vulture population was widely reported. The dramatic mortality was attributed largely to renal failure caused by exposure to diclofenac in livestock carcasses on which the birds fed. Although not the most endearing species, vultures are important environmental scavengers and, since veterinary use of diclofenac was stopped in the region in 2006, the decline in vulture numbers has slowed.