diphenhydramine brands

15 registered brands containing diphenhydramine in Tanzania.

diphenhydramine

PubChem CID 3100

Molecular formula: C17H21NO

Diphenhydramine predominantly works via the antagonism of H1 (Histamine 1) receptors. Such H1 receptors are located on respiratory smooth muscles, vascular endothelial cells, the gastrointestinal tract (GIT), cardiac tissue, immune cells, the uterus, and the central nervous system (CNS) neurons. When the H1 receptor is stimulated in these tissues it produces a variety of actions including increased vascular permeability, promotion of vasodilation causing flushing, decreased atrioventricular (AV) node conduction time, stimulation of sensory nerves of airways producing coughing, smooth muscle contraction of bronchi and the GIT, and eosinophilic chemotaxis that promotes the allergic immune response. Ultimately, diphenhydramine functions as an inverse agonist at H1 receptors, and subsequently reverses effects of histamine on capillaries, reducing allergic reaction symptoms. Moreover, since diphenhydramine is a first-generation antihistamine, it readily crosses the blood-brain barrier and inversely agonizes the H1 CNS receptors, resulting in drowsiness, and suppressing the medullary cough center. Furthermore, H1 receptors are similar to muscarinic receptors. Consequently, diphenhydramine also acts as an antimuscarinic. It does so by behaving as a competitive antagonist of muscarinic acetylcholine receptors, resulting in its use as an antiparkinson medication. Lastly, diphenhydramine has also demonstrated activity as an intracellular sodium channel blocker, resulting in possible local anesthetic properties. Antihistamines used in the treatment of allergy act by competing with histamine for H1-receptor sites on effector cells. They thereby prevent, but do not reverse, responses mediated by histamine alone. Antihistamines antagonize, in varying degrees, most of the pharmacological effects of histamine, including urticaria and pruritus. Also, the anticholinergic actions of most antihistamines provide a drying effect on the nasal mucosa. /Antihistamines/ H1 antagonists inhibit both the vasoconstrictor effects of histamine and, to a degree, the more rapid vasodilator effects mediated by activation of H1 receptors on endothelial cells (synthesis/release of NO and other mediators). /H1 Receptor Antagonists/ H1 antagonists suppress the action of histamine on nerve endings, including the flare component of the triple response and the itching caused by intradermal injection. /H1 Receptor Antagonists/ The first-generation antihistamines are widely prescribed medications that relieve allergic reactions and urticaria by blocking the peripheral histamine H(1) receptor. Overdose of these drugs often results in serious neuronal toxic effects, including seizures, convulsions and worsening of epileptic symptoms. The KCNQ/M K(+) channel plays a crucial role in controlling neuron excitability. Here, we demonstrate that mepyramine and diphenhydramine, two structurally related first-generation antihistamines, can act as potent KCNQ/M channel blockers. Extracellular application of these drugs quickly and reversibly reduced KCNQ2/Q3 currents heterologously expressed in HEK293 cells. The current inhibition was concentration and voltage dependent. The estimated IC(50) (12.5 and 48.1 microM, respectively) is within the range of drug concentrations detected in poisoned patients (30-300 microM). Both drugs shifted the I-V curve of KCNQ2/Q3 channel to more depolarized potentials and altered channel gating properties by prolonging activation and shortening deactivation kinetics. Mepyramine also inhibited the individual homomeric KCNQ1-4 and heteromeric KCNQ3/Q5 currents. Moreover, mepyramine inhibited KCNQ2/Q3 current in an outside-out patch excised from HEK293 cells and the inhibitory effect was neither observed when it was applied intracellularly nor affected by blocking phospholipase C (PLC) activity, indicating an extracellular and direct channel blocking mechanism. Finally, in cultured rat superior cervical ganglion (SCG) neurons, mepyramine reduced the

Source: PubChem (NCBI) · compound 3100

Product Manufacturer Status Country
Becoryl
Syrup
Aglowmed Registered/Compliant Tanzania
Becoryl syrup
Syrup
Aglowmed Registered/Compliant Tanzania
Benylin Four Flu
Syrup
Warner-Lambert Registered/Compliant Tanzania
Benylin Paediatric
Syrup
Johnson & Johnson Ltd Registered/Compliant Tanzania
COPHYDEX
Syrup
Laboratories And Allied Registered/Compliant Tanzania
CORILIEF
Tablets
Varichem Pharmaceuticals Registered/Compliant Tanzania
Delased Paediatric Coughs Syrup
Syrup
Regal Pharmaceuticals Registered/Compliant Tanzania
Getimox IV 400mg/250ml
Solution for injection
Getz Pharma Limited Registered/Compliant Tanzania
KANADRYL COUGH SUPPRESANT
Oral Suspension
Katwaza Pharmaceuticals Industry Ltd Registered/Compliant Tanzania
KOFLYN Junior
Solution, Oral
- Registered/Compliant Tanzania
KOFLYN Mixed Fruit
Solution, Oral
- Registered/Compliant Tanzania
Koflyn Raspberry®
Solution, Oral
- Registered/Compliant Tanzania
MOXIGET IV
Solution for injection
Getz Pharma Registered/Compliant Tanzania
Mucolyn adult
Solution, Oral
Shelys Pharmaceuticals Ltd Registered/Compliant Tanzania
Zenkof
Solution
Zenufa Laboratories Registered/Compliant Tanzania