Real Life Pharmacology - Pharmacology Education for Health Care Professionals Podcast Por Eric Christianson PharmD; Pharmacology Expert and Clinical Pharmacist arte de portada

Real Life Pharmacology - Pharmacology Education for Health Care Professionals

Real Life Pharmacology - Pharmacology Education for Health Care Professionals

De: Eric Christianson PharmD; Pharmacology Expert and Clinical Pharmacist
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A Meded101.com Production Enfermedades Físicas Higiene y Vida Saludable
Episodios
  • Desmopressin Pharmacology Podcast
    Sep 4 2025
    Desmopressin is a synthetic analog of vasopressin, also known as antidiuretic hormone (ADH). It works by mimicking the action of natural ADH on the kidneys, primarily increasing water reabsorption in the collecting ducts. This effect reduces urine production and helps concentrate the urine. Because of this mechanism, desmopressin is commonly used in conditions like diabetes insipidus, nocturnal enuresis (bedwetting), and sometimes for nocturia in adults. It also has a role in certain bleeding disorders, such as mild hemophilia A and von Willebrand disease, since it can increase plasma levels of factor VIII and von Willebrand factor. In this podcast, we will explore desmopressin pharmacology and much more. Desmopressin is available in several dosage forms, including oral tablets, intranasal spray, and injectable formulations. The choice depends on the indication and patient-specific factors such as age, convenience, or the need for rapid effect. Adverse effects of desmopressin are largely related to water balance. Because it reduces urine output, patients are at risk for water retention and hyponatremia, which can lead to headaches, confusion, seizures, or in severe cases, coma. Monitoring sodium levels is especially important in elderly patients and those taking other medications that can affect fluid or electrolyte balance. Clinicians also need to be mindful of drug interactions. Medications that increase the risk of hyponatremia, such as SSRIs, carbamazepine, or certain diuretics, may enhance desmopressin’s adverse effects. Conversely, drugs that blunt its activity can reduce effectiveness. Careful monitoring and patient education are key parts of safe use.
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    14 m
  • Ciprofloxacin Pharmacology Podcast
    Aug 28 2025
    On this podcast, I cover ciprofloxacin pharmacology. Ciprofloxacin is one of the most widely recognized fluoroquinolone antibiotics and has been on the market for decades. Because of its broad utility, it often comes up in practice, but it also carries significant adverse effect concerns and boxed warnings that pharmacists and prescribers need to keep in mind. From a pharmacology standpoint, ciprofloxacin works by inhibiting bacterial DNA gyrase and topoisomerase IV, enzymes that are essential for bacterial DNA replication, transcription, and repair. This action gives ciprofloxacin bactericidal activity against a variety of gram-negative organisms, including E. coli, Klebsiella, Enterobacter, and Pseudomonas aeruginosa. It also has some gram-positive activity, though it is generally not the best choice for strep infections. Ciprofloxacin comes in multiple dosage forms, including oral tablets, oral suspension, and intravenous formulations, which makes it flexible across care settings. I discuss the conversion of IV and PO formulations. Pharmacokinetics are important to consider. Ciprofloxacin is primarily renally eliminated, so dose adjustments are necessary in patients with impaired kidney function. Distribution into tissues is generally good, but it has limited activity in the lungs against Streptococcus pneumoniae, which is why it is not a first-line option for community-acquired pneumonia. Adverse effects are a major concern. The fluoroquinolone class carries multiple boxed warnings. Ciprofloxacin has been associated with tendon rupture, peripheral neuropathy, CNS effects such as agitation or seizures, and exacerbation of myasthenia gravis. More recent warnings include the risk for aortic aneurysm and hypoglycemia or hyperglycemia, particularly in older adults or those with comorbidities. On top of these boxed warnings, ciprofloxacin can also prolong the QT interval and cause GI upset. Drug interactions are another big factor in practice. Ciprofloxacin is a CYP1A2 inhibitor, which can raise levels of drugs like theophylline, tizanidine, and clozapine. It also interacts with polyvalent cations such as calcium, magnesium, iron, and aluminum, which can dramatically reduce its absorption—sometimes by more than 50%. This is a common reason for treatment failure if counseling isn’t provided. From a dosing perspective, ciprofloxacin is usually given 250–750 mg orally twice daily or 400 mg IV every 8–12 hours depending on the indication and severity of infection. Renal dosing adjustments are needed as kidney function declines. In summary, ciprofloxacin is a powerful antibiotic when used appropriately. It remains an option for urinary tract infections, complicated intra-abdominal infections, and some cases of hospital-acquired pneumonia, but its use must be balanced with the potential for significant adverse effects and interactions. For pharmacists, educating patients on drug interactions, counseling about boxed warnings, and ensuring correct dosing in renal impairment are some of the most valuable interventions when ciprofloxacin shows up on a medication list.
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    16 m
  • Vilazodone Pharmacology
    Aug 21 2025
    Vilazodone (brand name Viibryd) is an antidepressant with a unique pharmacologic profile compared to most other agents in the SSRI class. While not a first-line choice for every patient, understanding its mechanism, adverse effects, and interaction profile is essential for optimizing therapy and preventing downstream prescribing problems. Mechanism of ActionVilazodone is classified as a selective serotonin reuptake inhibitor (SSRI) and a partial agonist at the 5-HT1A receptor. The SSRI activity increases synaptic serotonin by blocking the serotonin transporter, while partial agonism at 5-HT1A receptors may contribute to antidepressant effects and potentially reduce certain SSRI-associated adverse effects (though clinical evidence for this benefit is mixed). Adverse Effects GI effects – diarrhea, nausea, and vomiting are frequent early in therapy. Taking the medication with food can help minimize these. Insomnia – often dose-related; morning dosing may help. Sexual dysfunction – may be slightly lower than with some SSRIs but still present. Serotonin syndrome – rare but serious, particularly if combined with other serotonergic drugs. Discontinuation syndrome – abrupt cessation can lead to dizziness, irritability, and flu-like symptoms. Drug InteractionsVilazodone is primarily metabolized by CYP3A4. This means: CYP3A4 inhibitors (e.g., ketoconazole, clarithromycin, ritonavir) can increase vilazodone concentrations, potentially worsening side effects—dose reductions may be required. CYP3A4 inducers (e.g., carbamazepine, rifampin, St. John’s Wort) can lower drug levels, reducing effectiveness. Other serotonergic agents (e.g., triptans, SNRIs, MAOIs, tramadol, linezolid) increase the risk of serotonin syndrome. Antiplatelets and anticoagulants – SSRIs can impair platelet aggregation, increasing bleeding risk when combined with aspirin, NSAIDs, or warfarin. Prescribing Cascade ExamplesVilazodone’s adverse effects can easily lead to unnecessary prescriptions if side effects aren’t recognized: GI upset → Acid suppression therapy – Diarrhea or nausea prompts the addition of proton pump inhibitors or antiemetics, instead of adjusting vilazodone dose or timing. Insomnia → Hypnotic initiation – Trouble sleeping results in adding zolpidem or trazodone, without reassessing morning dosing or vilazodone’s role. Sexual dysfunction → PDE5 inhibitor prescription – Erectile dysfunction leads to sildenafil use, when the root cause is vilazodone’s serotonergic activity. Vilazodone’s combination of SSRI and 5-HT1A partial agonist activity makes it somewhat distinct, but its side effect profile and interactions require the same careful monitoring as other antidepressants. Healthcare professionals can play a key role in catching early signs of adverse effects, preventing prescribing cascades, and ensuring drug–drug interactions are managed appropriately.
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    14 m
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