Calcitriol Airflow Actions

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Actions of Calcitriol Airflow in details

infoThe action of the drug on the human body is called Pharmacodynamics in Medical terminology. To produce its effect and to change the pathological process that is happening the body and to reduce the symptom or cure the disease, the medicine has to function in a specific way. The changes it does to the body at cellular level gives the desired result of treating a disease. Drugs act by stimulating or inhibiting a receptor or an enzyme or a protein most of the times. Medications are produced in such a way that the ingredients target the specific site and bring about chemical changes in the body that can stop or reverse the chemical reaction which is causing the disease.

Pharmacology: Calcitriol Airflow is the active form of vitamin D3 (cholecalciferol). The natural or endogenous supply of vitamin D in man mainly depends on ultraviolet light for conversion of 7-dehydrocholesterol to vitamin D3 in the skin. Vitamin D3 must be metabolically activated in the liver and the kidney before it is fully active on its target tissues. The initial transformation is catalyzed by a vitamin D3-25-hydroxylase enzyme present in the liver, and the product of this reaction is 25-(OH)D3 (calcifediol). The latter undergoes hydroxylation in the mitochondria of kidney tissue and this reaction is activated by the renal 25-hydroxyvitamin D3-1-α-hydroxylase to produce 1,25-(OH)2D3(Calcitriol Airflow), the active form of vitamin D3.

The known sites of action of Calcitriol Airflow are intestine, bone, kidney and parathyroid gland. Calcitriol Airflow is the most active known form of vitamin D3 in stimulating intestinal calcium transport. In acutely uremic rats, Calcitriol Airflow has been shown to stimulate intestinal calcium absorption. In bone, Calcitriol Airflow, in conjunction with parathyroid hormone (PTH), stimulates resorption of calcium; and in the kidney, Calcitriol Airflow increases the tubular reabsorption of calcium. In vitro and in vivo studies have shown that Calcitriol Airflow directly suppresses secretion and synthesis of PTH. A vitamin D-resistant state may exist in uremic patients because of the failure of the kidney to adequately convert precursors to the active compound, Calcitriol Airflow.

Calcitriol Airflow when administered by bolus injection is rapidly available in the bloodstream. Vitamin D metabolites are known to be transported in blood, bound to specific plasma proteins. The pharmacologic activity of an administered dose of Calcitriol Airflow is about 3-5 days. Two metabolic pathways for Calcitriol Airflow have been identified, conversion to 1,24,25-(OH)3D3 and to calcitroic acid.

Toxicology: Preclinical Safety Data: Carcinogenesis, Mutagenesis, Impairment of Fertility: Long-term studies in animals have not been performed to evaluate the carcinogenic potential of Calcitriol Airflow. There was no evidence of mutagenicity as studied by the Ames method. No significant effects of Calcitriol Airflow on fertility were reported using oral Calcitriol Airflow.

How should I take Calcitriol Airflow?

Take this medication exactly as prescribed by your doctor. Do not take it in larger amounts or for longer than recommended. Follow the directions on your prescription label.

Your doctor may occasionally change your dose to make sure you get the best results from this medication.

Measure liquid medicine with a special dose-measuring spoon or cup, not a regular table spoon. If you do not have a dose-measuring device, ask your pharmacist for one.

Drink plenty of fluids unless your doctor has told you to restrict your fluid intake.

Call your doctor if you have ongoing vomiting or diarrhea, or if you are sweating more than usual. You can easily become dehydrated while taking this medication, which can lead to a serious electrolyte imbalance.

To be sure this medicine is helping your condition and is not causing harmful effects, your blood will need to be tested often. Visit your doctor regularly.

Calcitriol Airflow is only part of a complete program of treatment that may also include a special diet. It is very important to follow the diet plan created for you by your doctor or nutrition counselor. You should become very familiar with the list of foods you must eat or avoid to help control your condition.

If you need to be on bed-rest or have any type of surgery, your dose or testing needs may change. Follow your doctor's instructions.

Store at room temperature away from moisture, light, and heat.

Calcitriol Airflow administration

infoAdministration of drug is important to know because the drug absorption and action varies depending on the route and time of administration of the drug. A medicine is prescribed before meals or after meals or along with meals. The specific timing of the drug intake about food is to increase its absorption and thus its efficacy. Few work well when taken in empty stomach and few medications need to be taken 1 or 2 hrs after the meal. A drug can be in the form of a tablet, a capsule which is the oral route of administration and the same can be in IV form which is used in specific cases. Other forms of drug administration can be a suppository in anal route or an inhalation route.

Use exactly as prescribed by your doctor. Do not use in larger or smaller amounts or for longer than recommended. Follow the directions on your prescription label.

Calcitriol Airflow topical is usually applied once in the morning and once in the evening. Follow your doctor's instructions.

Do not share this medication with other people, even if they have the same symptoms you have.

Wash your hands before and after applying this medicine.

Apply a thin layer of the medication and rub it in completely.

Do not cover treated skin areas unless your doctor has told you to.

Calcitriol Airflow topical is for use only on areas of psoriasis. Avoid getting it on healthy skin areas.

Calcitriol Airflow topical should not be applied to the face or the vaginal area.

Store at room temperature away from moisture and heat. Do not allow the medicine to freeze.

Calcitriol Airflow pharmacology

infoPharmacokinetics of a drug can be defined as what body does to the drug after it is taken. The therapeutic result of the medicine depends upon the Pharmacokinetics of the drug. It deals with the time taken for the drug to be absorbed, metabolized, the process and chemical reactions involved in metabolism and about the excretion of the drug. All these factors are essential to deciding on the efficacy of the drug. Based on these pharmacokinetic principles, the ingredients, the Pharmaceutical company decides dose and route of administration. The concentration of the drug at the site of action which is proportional to therapeutic result inside the body depends on various pharmacokinetic reactions that occur in the body.

Man's natural supply of vitamin D depends mainly on exposure to the ultraviolet rays of the sun for conversion of 7-dehydrocholesterol in the skin to vitamin D3 (cholecalciferol). Vitamin D3 must be metabolically activated in the liver and the kidney before it is fully active as a regulator of calcium and phosphorus metabolism at target tissues. The initial transformation of vitamin D3 is catalyzed by a vitamin D3-25-hydroxylase enzyme (25-OHase) present in the liver, and the product of this reaction is 25-hydroxyvitamin D3 [25-(OH)D3]. Hydroxylation of 25-(OH)D3 occurs in the mitochondria of kidney tissue, activated by the renal 25-hydroxyvitamin D3-1 alpha-hydroxylase (alpha-OHase), to produce 1,25-(OH)2D3 (Calcitriol Airflow), the active form of vitamin D3. Endogenous synthesis and catabolism of Calcitriol Airflow, as well as physiological control mechanisms affecting these processes, play a critical role regulating the serum level of Calcitriol Airflow. Physiological daily production is normally 0.5 to 1.0 mcg and is somewhat higher during periods of increased bone synthesis (eg, growth or pregnancy).


The two known sites of action of Calcitriol Airflow are intestine and bone. A Calcitriol Airflow receptor-binding protein appears to exist in the mucosa of human intestine. Additional evidence suggests that Calcitriol Airflow may also act on the kidney and the parathyroid glands. Calcitriol Airflow is the most active known form of vitamin D3 in stimulating intestinal calcium transport. In acutely uremic rats Calcitriol Airflow has been shown to stimulate intestinal calcium absorption. The kidneys of uremic patients cannot adequately synthesize Calcitriol Airflow, the active hormone formed from precursor vitamin D. Resultant hypocalcemia and secondary hyperparathyroidism are a major cause of the metabolic bone disease of renal failure. However, other bone-toxic substances which accumulate in uremia (eg, aluminum) may also contribute.

The beneficial effect of Calcitriol Airflow in renal osteodystrophy appears to result from correction of hypocalcemia and secondary hyperparathyroidism. It is uncertain whether Calcitriol Airflow produces other independent beneficial effects. Calcitriol Airflow treatment is not associated with an accelerated rate of renal function deterioration. No radiographic evidence of extraskeletal calcification has been found in predialysis patients following treatment. The duration of pharmacologic activity of a single dose of Calcitriol Airflow is about 3 to 5 days.



Calcitriol Airflow is rapidly absorbed from the intestine. Peak serum concentrations (above basal values) were reached within 3 to 6 hours following oral administration of single doses of 0.25 to 1.0 mcg of Calcitriol Airflow. Following a single oral dose of 0.5 mcg, mean serum concentrations of Calcitriol Airflow rose from a baseline value of 40.0±4.4 (SD) pg/mL to 60.0±4.4 pg/mL at 2 hours, and declined to 53.0±6.9 at 4 hours, 50±7.0 at 8 hours, 44±4.6 at 12 hours, and 41.5±5.1 at 24 hours.

Following multiple-dose administration, serum Calcitriol Airflow levels reached steady-state within 7 days.


Calcitriol Airflow is approximately 99.9% bound in blood. Calcitriol Airflow and other vitamin D metabolites are transported in blood, by an alpha-globulin vitamin D binding protein. There is evidence that maternal Calcitriol Airflow may enter the fetal circulation. Calcitriol Airflow is transferred into human breast milk at low levels (ie, 2.2±0.1 pg/mL).


In vivo and in vitro studies indicate the presence of two pathways of metabolism for Calcitriol Airflow. The first pathway involves the 24-hydroxylase as the first step in catabolism of Calcitriol Airflow. There is definite evidence of 24-hydroxylase activity in the kidney; this enzyme is also present in many target tissues which possess the vitamin D receptor such as the intestine. The end product of this pathway is a side chain shortened metabolite, calcitroic acid. The second pathway involves the conversion of Calcitriol Airflow via the stepwise hydroxylation of carbon-26 and carbon-23, and cyclization to yield ultimately 1α, 25R(OH)2-26, 23S-lactone D3. The lactone appears to be the major metabolite circulating in humans, with mean serum concentrations of 131±17 pg/mL. In addition, several other metabolites of Calcitriol Airflow have been identified: 1α, 25(OH)2-24-oxo-D3; 1α, 23,25(OH)3-24-oxo-D3; 1α, 24R,25(OH)3D3; 1α, 25S,26(OH)3D3; 1α, 25(OH)2-23-oxo-D3; 1α, 25R,26(OH)3-23-oxo-D3; 1α, (OH)24,25,26,27-tetranor-COOH-D3.


Enterohepatic recycling and biliary excretion of Calcitriol Airflow occur. The metabolites of Calcitriol Airflow are excreted primarily in feces. Following intravenous administration of radiolabeled Calcitriol Airflow in normal subjects, approximately 27% and 7% of the radioactivity appeared in the feces and urine, respectively, within 24 hours. When a 1-mcg oral dose of radiolabeled Calcitriol Airflow was administered to normal subjects, approximately 10% of the total radioactivity appeared in urine within 24 hours. Cumulative excretion of radioactivity on the sixth day following intravenous administration of radiolabeled Calcitriol Airflow averaged 16% in urine and 49% in feces. The elimination half-life of Calcitriol Airflow in serum after single oral doses is about 5 to 8 hours in normal subjects.

Special Populations

Pediatric Pharmacokinetics

The steady-state pharmacokinetics of oral Calcitriol Airflow were determined in a small group of pediatric patients (age range: 1.8 to 16 years) undergoing peritoneal dialysis. Calcitriol Airflow was administered for 2 months at an average dose of 10.2 ng/kg (SD 5.5 ng/kg). In this pediatric population, mean Cmax was 116 pmol/L, mean serum half-life was 27.4 hours, and mean clearance was 15.3 mL/hr/kg.1


No studies have examined the pharmacokinetics of Calcitriol Airflow in geriatric patients.


Controlled studies examining the influence of gender on Calcitriol Airflow have not been conducted.

Hepatic Insufficiency

Controlled studies examining the influence of hepatic disease on Calcitriol Airflow have not been conducted.

Renal Insufficiency

Lower predose and peak Calcitriol Airflow levels in serum were observed in patients with nephrotic syndrome and in patients undergoing hemodialysis compared with healthy subjects. The elimination half-life of Calcitriol Airflow increased by at least twofold in chronic renal failure and hemodialysis patients compared with healthy subjects. Peak serum levels in patients with nephrotic syndrome were reached in 4 hours. For patients requiring hemodialysis peak serum levels were reached in 8 to 12 hours; half-lives were estimated to be 16.2 and 21.9 hours, respectively.



  1. DailyMed. "CALCITRIOL: DailyMed provides trustworthy information about marketed drugs in the United States. DailyMed is the official provider of FDA label information (package inserts).". (accessed September 17, 2018).
  2. NCIt. "Calcitriol: NCI Thesaurus (NCIt) provides reference terminology for many systems. It covers vocabulary for clinical care, translational and basic research, and public information and administrative activities.". (accessed September 17, 2018).
  3. EPA DSStox. "Calcitriol: DSSTox provides a high quality public chemistry resource for supporting improved predictive toxicology.". (accessed September 17, 2018).


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Information checked by Dr. Sachin Kumar, MD Pharmacology

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