(empagliflozin · DailyMed)
EMPASITA 10/50
EMPAGLIFLOZIN 10MG / SITAGLIPTIN 50MG
What it does
Empagliflozin is a medication that helps lower blood sugar levels in people with diabetes.
Commonly used for: type 2 diabetes (non-insulin dependent diabetes), high blood sugar (hyperglycemia)
Read more in plain English ↓Plain-language summary for general understanding - not medical advice. Always follow your pharmacist/doctor.
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Source: Pharmacy and Poisons Board · fetched 2026-01-28 20:30:11 · updated 2026-07-26 09:29:16
Drug Interactions
3Pharmacodynamic Warnings
Empagliflozin appears in TABLE 8: Drugs that cause hypotension
Empagliflozin appears in TABLE 14: Antidiabetic drugs
Sitagliptin appears in TABLE 14: Antidiabetic drugs
Moderate (1)
Sitagliptin - increases exposure
Vemurafenib is predicted to increase the exposure to sitagliptin. Use with caution or avoid. Theoretical Diphenoxylate → see opioids Dipipanone → see opioids Dipyridamole → see TABLE 8 p. 1518 (hypote
Unknown (2)
Empagliflozin - decreases exposure
Antiepileptics (phenytoin) might decrease the exposure to empagliflozin. Avoid or monitor diabetic control.
Empagliflozin - decreases exposure
Rifamycins (rifampicin) might decrease the exposure to empagliflozin. Avoid or monitor diabetic control.
Data from BNF 85 (British National Formulary). This is not a substitute for professional medical advice. Matched via: exact
About empagliflozin
Empagliflozin is a medication that helps lower blood sugar levels in people with diabetes.
What it treats
- type 2 diabetes (non-insulin dependent diabetes)
- high blood sugar (hyperglycemia)
How it works
It helps your kidneys remove excess sugar from your blood through urine, which lowers blood sugar levels.
Who it's for
This medicine is for adults with type 2 diabetes who need help controlling their blood sugar.
Cautions
- • Be cautious if you are taking medications that can lower blood pressure.
- • Consult your doctor if you are using other diabetes medications.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About sitagliptin
Sitagliptin is a medication used to help control blood sugar levels in adults with type 2 diabetes.
What it treats
- type 2 diabetes (diabetes mellitus)
How it works
It helps to increase insulin production and decrease sugar production in the liver, which helps lower blood sugar levels.
Who it's for
This medicine is for adults with type 2 diabetes who need help managing their blood sugar.
Cautions
- • Should be used carefully with other diabetes medications.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
Clinical monograph: Empagliflozin
BNF-referencedEmpagliflozin is a sodium-glucose co-transporter 2 (SGLT2) inhibitor used primarily for the management of type 2 diabetes mellitus. It lowers blood glucose levels by preventing the reabsorption of glucose in the proximal renal tubules, which increases urinary glucose excretion. Empagliflozin also has potential cardiovascular benefits, particularly in reducing the risk of heart failure.
Indications
- Type 2 diabetes mellitus as monotherapy (if metformin is inappropriate)
- Type 2 diabetes mellitus in combination with insulin or other antidiabetic drugs (if existing treatment fails to achieve adequate glycaemic control)
- Symptomatic chronic heart failure
Dosage
Adults: 10 mg once daily, increased to 25 mg once daily if necessary and tolerated.
Mechanism of action
Empagliflozin inhibits the SGLT2 transporters in the proximal tubules of the kidneys. By blocking the co-transport of sodium and glucose into the blood, it increases glucosuria, leading to lower blood glucose levels. Additionally, it may offer cardiovascular benefits by mechanisms yet to be fully elucidated, including effects on myocardial sodium/hydrogen exchangers and diuretic actions.
Pharmacodynamics
Empagliflozin effectively reduces blood glucose levels through increased urinary glucose excretion, necessitating once-daily dosing due to its prolonged action. Patients should be monitored for ketoacidosis, as it can occur even in the absence of significantly elevated blood glucose. The drug also poses a risk of urogenital infections due to the elevated glucose levels in urine.
Pharmacokinetics
Empagliflozin is absorbed after oral administration, with peak plasma concentrations occurring within 1.5 hours. It has a volume of distribution of approximately 73 liters and is primarily excreted via urine. Renal function should be monitored, as impaired renal function may affect drug efficacy and safety.
Contra-indications
- Diabetic ketoacidosis
- Severe renal impairment (eGFR < 30 mL/min)
- Hypersensitivity to empagliflozin or any of the excipients
Adverse effects
- Genital infections
- Urinary tract infections
- Dehydration
- Hypotension
- Diabetic ketoacidosis (rare)
- Fournier's gangrene (necrotizing fasciitis of the genitalia)
Interactions
- Antiepileptics (unknown effect on exposure)
- Rifamycins (unknown effect on exposure)
- Insulin and insulin secretagogues (may require dose adjustments)
Precautions
- Monitor for signs of diabetic ketoacidosis, particularly in patients with risk factors
- Consider temporary interruption in patients with complicated urinary tract infections
- Caution in elderly patients due to risk of hypotension and volume depletion
- Monitor renal function periodically
Pregnancy
Empagliflozin is not recommended during pregnancy due to potential risks to the fetus. Consult a healthcare provider for alternatives.
Breast-feeding
Empagliflozin is not recommended for use while breastfeeding. The effects on a nursing infant are unknown.
Storage
Store below 30°C. Protect from moisture. Keep out of reach of children.
Formulations
- Tablets: 10 mg, 25 mg
AI-synthesized from BNF references - general information only, not a substitute for professional medical advice or the current BNF. Verify doses with a pharmacist.
Clinical monograph: Sitagliptin
BNF-referencedSitagliptin is an oral antihyperglycemic agent used primarily for the management of type 2 diabetes mellitus. It belongs to the class of dipeptidyl peptidase-4 (DPP-4) inhibitors, which work by enhancing the body's own ability to lower blood sugar levels. By inhibiting DPP-4, sitagliptin increases the levels of incretin hormones, leading to increased insulin secretion and decreased glucagon secretion in a glucose-dependent manner.
Indications
- Type 2 diabetes mellitus as monotherapy (if metformin is inappropriate)
- Type 2 diabetes mellitus in combination with other antidiabetic drugs (including insulin) when metformin alone or in combination fails to achieve adequate glycemic control
Dosage
Adults: 100 mg once daily, or 50 mg twice daily when used in combination with a sulfonylurea or insulin. Dose adjustments may be required based on renal function.
Mechanism of action
Sitagliptin inhibits the enzyme dipeptidyl peptidase-4 (DPP-4), which is responsible for the degradation of incretin hormones. This inhibition results in prolonged active incretin levels, which enhances insulin secretion from pancreatic beta cells and decreases glucagon secretion from alpha cells in the pancreas, leading to lowered blood glucose levels.
Pharmacodynamics
Sitagliptin's pharmacodynamic effects include improved glycemic control, characterized by reduced fasting and postprandial blood glucose levels. The drug is effective in lowering HbA1c levels and is associated with a low risk of hypoglycemia. It has a beneficial effect on weight management, as it typically does not promote weight gain.
Pharmacokinetics
Sitagliptin is absorbed rapidly after oral administration, with peak plasma concentrations occurring within 1-4 hours. Its bioavailability is approximately 87%. The drug is predominantly eliminated via renal excretion, with about 80% of the dose excreted unchanged in the urine. The elimination half-life is approximately 12.4 hours. Renal impairment may necessitate dose adjustments, as clearance is significantly reduced in patients with decreased renal function.
Contra-indications
- History of pancreatitis
- Severe heart failure
Adverse effects
- Headache
- Constipation
- Dizziness
- Skin reactions
- Angioedema
- Back pain
- Cutaneous vasculitis
- Joint disorders
- Myalgia
- Acute pancreatitis
- Acute renal impairment
- Stevens-Johnson syndrome
- Vomiting
Interactions
- Concomitant use with sulfonylureas or insulin may require dose adjustments
- Moderate interaction with vemurafenib (increases exposure)
Precautions
- Monitor renal function before treatment and periodically thereafter
- Discontinue if symptoms of acute pancreatitis occur, such as persistent severe abdominal pain
Pregnancy
Avoid-toxicity observed in animal studies.
Breast-feeding
Avoid-present in milk in animal studies.
Storage
Store at room temperature, away from moisture and heat.
Formulations
- Tablets: 50 mg, 100 mg
AI-synthesized from BNF references - general information only, not a substitute for professional medical advice or the current BNF. Verify doses with a pharmacist.
Molecular reference: Empagliflozin
PubChem CID 11949646Molecular formula: C23H27ClO7
Mechanism of action
The vast majority of glucose filtered through the glomerulus is reabsorbed within the proximal tubule, primarily via SGLT2 (sodium-glucose linked co-transporter-2) which is responsible for ~90% of the total glucose reabsorption within the kidneys. Na<sup>+</sup>/K<sup>+</sup>-ATPase on the basolateral membrane of proximal tubular cells utilize ATP to actively pump Na+ ions into the interstitium surrounding the tubule, establishing a Na<sup>+</sup> gradient within the tubular cell. SGLT2 on the apical membrane of these cells then utilize this gradient to facilitate secondary active co-transport of both Na+ and glucose out of the filtrate, thereby reabsorbing glucose back into the blood – inhibiting this co-transport, then, allows for a marked increase in glucosuria and decrease in blood glucose levels. Empagliflozin is a potent inhibitor of renal SGLT2 transporters located in the proximal tubules of the kidneys and works to lower blood glucose levels via an increase in glucosuria. Empagliflozin also appears to exert cardiovascular benefits - specifically in the prevention of heart failure - independent of its blood glucose-lowering effects, though the exact mechanism of this benefit is not precisely understood. Several theories have been posited, including the potential inhibition of Na<sup>+</sup>/H<sup>+</sup> exchanger (NHE) 1 in the myocardium and NHE3 in the proximal tubule, reduction of pre-load via diuretic/natriuretic effects and reduction of blood pressure, prevention of cardiac fibrosis via suppression of pro-fibrotic markers, and reduction of pro-inflammatory adipokines.
Pharmacodynamics
Empagliflozin lowers blood glucose levels by preventing glucose reabsorption in the kidneys, thereby increasing the amount of glucose excreted in the urine. It has a relatively long duration of action requiring only once-daily dosing. Patients should be monitored closely for signs and symptoms of ketoacidosis regardless of blood glucose level as empagliflozin may precipitate diabetic ketoacidosis in the absence of hyperglycemia. As its mechanism of action is contingent on the renal excretion of glucose, empagliflozin may be held in cases of acute kidney injury and/or discontinued in patients who develop chronic renal disease. The overexcretion of glucose creates a sugar-rich urogenital environment which increases the risk of urogenital infections in both male and female patients - monitor closely for signs and symptoms of developing infection.
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
Molecular reference: sitagliptin
PubChem CID 4369359Molecular formula: C16H15F6N5O
Mechanism of action
Inhibition of DPP-4 by sitagliptin slows DPP-4 mediated inactivation of incretins like GLP-1 and GIP. Incretins are released throughout the day and upregulated in response to meals as part of glucose homeostasis. Reduced inhibition of incretins increase insulin synthesis and decrease glucagon release in a manner dependant on glucose concentrations. These effects lead to an overall increase in blood glucose control which is demonstrated by reduced glycosylated hemoglobin (HbA1c). Januvia is a member of a class of oral anti-hyperglycemic agents called dipeptidyl peptidase 4 (DPP-4) inhibitors. The improvement in glycemic control observed with this medicinal product may be mediated by enhancing the levels of active incretin hormones. Incretin hormones, including glucagon-like peptide-1 (GLP-1) and glucose-dependent insulinotropic polypeptide (GIP), are released by the intestine throughout the day, and levels are increased in response to a meal. The incretins are part of an endogenous system involved in the physiologic regulation of glucose homeostasis. When blood glucose concentrations are normal or elevated, GLP-1 and GIP increase insulin synthesis and release from pancreatic beta cells by intracellular signaling pathways involving cyclic AMP. Treatment with GLP-1 or with DPP-4 inhibitors in animal models of type 2 diabetes has been demonstrated to improve beta cell responsiveness to glucose and stimulate insulin biosynthesis and release. With higher insulin levels, tissue glucose uptake is enhanced. In addition, GLP-1 lowers glucagon secretion from pancreatic alpha cells. Decreased glucagon concentrations, along with higher insulin levels, lead to reduced hepatic glucose production, resulting in a decrease in blood glucose levels. The effects of GLP-1 and GIP are glucose-dependent such that when blood glucose concentrations are low, stimulation of insulin release and suppression of glucagon secretion by GLP-1 are not observed. For both GLP-1 and GIP, stimulation of insulin release is enhanced as glucose rises above normal concentrations. Further, GLP-1 does not impair the normal glucagon response to hypoglycemia. The activity of GLP-1 and GIP is limited by the DPP-4 enzyme, which rapidly hydrolyzes the incretin hormones to produce inactive products. Sitagliptin prevents the hydrolysis of incretin hormones by DPP-4, thereby increasing plasma concentrations of the active forms of GLP-1 and GIP. By enhancing active incretin levels, sitagliptin increases insulin release and decreases glucagon levels in a glucose-dependent manner. In patients with type 2 diabetes with hyperglycemia, these changes in insulin and glucagon levels lead to lower hemoglobin A1c (HbA1c) and lower fasting and postprandial glucose concentrations. The glucose-dependent mechanism of sitagliptin is distinct from the mechanism of sulfonylureas, which increase insulin secretion even when glucose levels are low and can lead to hypoglycemia in patients with type 2 diabetes and in normal subjects. Sitagliptin is a potent and highly selective inhibitor of the enzyme DPP-4 and does not inhibit the closely-related enzymes DPP-8 or DPP-9 at therapeutic concentrations. Sitagliptin is a DPP-4 inhibitor, which is believed to exert its actions in patients with type 2 diabetes by slowing the inactivation of incretin hormones. Concentrations of the active intact hormones are increased by Januvia, thereby increasing and prolonging the action of these hormones. Incretin hormones, including glucagon-like peptide-1 (GLP-1) and glucose-dependent insulinotropic polypeptide (GIP), are released by the intestine throughout the day, and levels are increased in response to a meal. These hormones are rapidly inactivated by the enzyme, DPP-4. The incretins are part of an endogenous system involved in the physiologic regulation of glucose homeostasis. When blood glucose concentrations are normal or elevated, GLP-1 and GIP increase insulin synthesis and release from pancreatic beta cells by
Pharmacodynamics
Sitagliptin inhibits DPP-4 which leads to increased levels of glucagon-like peptide-1 (GLP-1) and glucose-dependent insulinotropic polypeptide(GIP), decreased levels of glucagon, and a stronger insulin response to glucose.
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
This drug in other countries
The same active ingredient registered across other registries we cover - including different brands.
- DYGLI-100 TABLETS (Each film-coated tablet contains Sitagliptin 100mg) · Bafna Pharmaceuticals
- DYGLI-50 TABLETS (Each film-coated tablet contains Sitagliptin 50mg) · Bafna Pharmaceuticals
- EMFLOZIN 10 TABLETS · Aristopharma
- EMFLOZIN 25 TABLETS · Aristopharma
- EMGLY 10 TABLETS (Each film coated tablet contains Empagliflozin 25mg) · Annora Pharma
- EMPAZOX-L 25MG/15MG TABLETS (Each tablet contains Empagliflozin/Linagliptin 25mg/5mg · Annora Pharma
- DYGLI-100 · Bafna Pharmaceuticals
- DYGLI-50 · Bafna Pharmaceuticals
- EMPADIL-M 12.5/1000 · Ajanta Pharma
- EMPAGLIFLOZIN AND METFORMIN HYDROCHLORIDE · Cipla
- EMPAGLIFLOZIN AND METFORMIN HYDROCHLORIDE · Cipla
- EMPAGLIFLOZIN AND METFORMIN HYDROCHLORIDE 10MG/1000MG · Cipla Ltd
- CP-SITAGLIPTIN · Sag Manufacturing
- INNOSITA 100 · Dr. Reddy’s Laboratories
- INNOSITA 25 · Dr. Reddy’s Laboratories
- INNOSITA 50 · Dr. Reddy’s Laboratories
- INNOSITA CO 50/1000 · Dr Reddy’s Laboratories
- INNOSITA CO 50/850 · Dr Reddy’s Laboratories