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The Effect of Sitagliptin Treatment in COVID-19 Positive Diabetic Patients

The Effect of Sitagliptin Treatment in COVID-19 Positive Diabetic Patients

Status
UNKNOWN
Phases
Phase 3
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT04365517
Acronym
SIDIACO
Enrollment
170
Registered
2020-04-28
Start date
2021-12-29
Completion date
2022-12-30
Last updated
2021-09-28

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

CKD, Covid19, Diabetes Mellitus, Type 2

Brief summary

The COVID-19 pathology is frequently associated with diabetes mellitus and metabolic syndrome. In the epidemic outbreak that exploded at the beginning of 2020 in the Lombardy Region, about two thirds of the patients who died from COVID-19 were affected by diabetes mellitus. COVID-19 occurs in 70% of cases with an inflammatory pathology of the airways that can be fed by a cytokine storm and result in severe respiratory failure (10% cases) and death (5%). The pathophysiological molecular mechanisms are currently not clearly defined. It is hypothesized that the transmembrane glycoprotein type II CD26, known for the enzyme activity Dipeptilpeptidase 4 of the extracellular domain, may play a main role in this condition. It is in fact considerably expressed at the level of parenchyma and pulmonary interstitium and carries out both systemic and paracrine enzymatic activity, modulating the function of various proinflammatory cytokines, growth factors and vasoactive peptides in the deep respiratory tract. Of particular interest is the fact that Dipeptilpeptidase 4 has been identified as a cellular receptor for S glycoprotein of MERS-COV. In the case of the SARS-COV 2 virus, the main receptor is the Angiotensin-Converting Enzyme 2 protein, but a possible interaction with Dipeptilpeptidase 4 also cannot be excluded. The selective blockade of Dipeptilpeptidase 4 could therefore favorably modulate the pulmonary inflammatory response in the subject affected by COVID-19. This protein is also known for the enzymatic degradation function of the native glucagon-like peptide 1, one of the main regulators of insulin secretion. This is why it is a molecular target in the treatment of diabetes (drugs that selectively inhibit Dipeptilpeptidase 4 are marketed with an indication for the treatment of type 2 diabetes). It is believed that the use of a Dipeptilpeptidase 4 inhibitor in people with diabetes and hospitalized for Covid-19 may be safe and of particular interest for an evaluation of the effects on laboratory and instrumental indicators of inflammatory lung disease. Among the drugs that selectively block Dipeptilpeptidase 4, the one with the greatest affinity is Sitagliptin.

Detailed description

The investigators propose a randomized controlled open label intervention study. Patients hospitalized for COVID-19 and affected by type 2 diabetes mellitus will be included in the study and divided into two groups by randomization: sitagliptin add-on standard of care therapy with nutritional therapy with or without insulin treatment (study group) vs nutritional therapy with or without insulin treatment (group of control, standard therapy). The design of the study provides an open randomization to allow its feasibility in times compatible with the achievement of adequate cases during the epidemic. The presence of placebo and a double-blind study, would lead to longer planning and enrollment times. Patients with type 2 diabetes mellitus hospitalized for COVID-19 and randomized to the study group will be treated with sitagliptin at an adjusted dosage for estimated glomerular filtrate: 100 mg once daily (estimated glomerular filtration rate less than or equal to 45 mL / min / 1.73 m2) or 50 mg (estimated glomerular filtration rate 30-45 mL / min / 1.73 m2) in combination or not with insulin treatment. Patients with stage IV and V renal impairment (estimated glomerular filtration rate less than or equal to 30 mL / min / 1.73 m2) will be excluded. Enrolled patients will be followed according to the following scheme: Time points: * T0: The doctor explains the protocol to the patient and he gives to him the informed consent and the letter to the general practitioner. * T1: The patient gives the signed and dated consent and officially enters the study. Basic assessments will be made. At the baseline, the clinical response, the main laboratory and instrumental tests will be taken into consideration. Biological samples will be taken for immunological study. Diabetic patients will begin treatment with Sitagliptin 100 or 50 mg add-on to nutritional therapy and, eventually, insulin treatment. Any other hypoglycemic agents taken before admission will be suspended. * T2: 7 days after T1, for both groups of patients, evaluation of the clinical response, of the average daily blood glucose levels, of the main laboratory and instrumental tests. * T3: 10 days after T2, for both groups of patients, evaluation of clinical response, average daily blood glucose levels, of the main laboratory and instrumental tests. Collection of biological samples for immunological study. End of the study.

Interventions

DRUGSitagliptin

We propose a randomized controlled open label intervention study. Patients with type 2 diabetes admitted to COVID-19 and randomized to the study group will be treated with sitagliptin at an adjusted dosage for estimated glomerular filtrate: 100 mg once daily (estimated glomerular filtration rate less than or equal to 45 mL / min / 1.73 m2 ) or 50 mg (estimated glomerular filtration rate 30-45 mL / min / 1.73 m2) in combination or not with insulin. Patients with stage IV and V renal failure (estimated glomerular filtration rate less than or equal to 30 mL / min / 1.73 m2) will be excluded

Sponsors

University of Milan
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
NONE

Intervention model description

A randomized controlled open label intervention study is proposed. Patients hospitalized for COVID-19 and suffering from type 2 diabetes will be included in the study and divided into two groups by randomization: sitagliptin add-on therapy with nutritional therapy with or without insulin (study group) vs nutritional therapy with or without insulin (group of control, standard therapy)

Eligibility

Sex/Gender
ALL
Age
18 Years to No maximum
Healthy volunteers
No

Inclusion criteria

* Diagnosis of type 2 diabetes, according to ADA 2020 criteria * HbA1c levels at the entrance or in the two previous months \<9% * Diagnosis of Covid-19 (swab for positive SARS-COV2 RNA) with pneumonia, with or without increase in inflammation indexes, with or without respiratory failure * No indication for tocilizumab therapy (BCRSS, Brescia Covid Respiratory Severity Scale, \<3). * Written and dated informed consent from the patient or his legally valid representative

Exclusion criteria

* Pregnancy * Type 1 diabetes * Stage IV and V renal failure (stimated glomerular filtration rate \<30 ml / min) * Treatment with Dipeptidyl peptidase-4 inhibitors or GLP-1 Receptor Agonists in the month prior to hospitalization * Pioglitazone treatment in the month prior to hospitalization * Treatment in the month preceding or in the course of hospitalization with biological drugs for immuno-rheumatological diseases (in particular tocilizumab) * Presence of other acute or chronic ongoing infections * Neurological or psychiatric diseases, diagnosis of hemoglobinopathy, diagnosis of liver disease, cancer, cystic fibrosis or malabsorption syndrome * Dysphagia with need for artificial nutrition * Positive history of acute and chronic pancreatitis * Unstable cardiovascular disease or known atherosclerotic disease * A history of alcohol or drug abuse * Known human immunodeficiency virus (HIV) or hepatitis * Presence of serious diseases or conditions that make the patient unsuitable for the study * Surgery in the previous two weeks

Design outcomes

Primary

MeasureTime frameDescription
Time for clinical improvement1 monthEvaluation of the time between randomization and two-point improvement on a seven-category scale (1, not hospitalized, return to normal activities; 2, not hospitalized, but unable to return to normal activities; 3, hospitalized without the need for oxygen therapy; 4, hospitalized, need for oxygen therapy; 5, hospitalized, need for non-invasive ventilatory support; 6, hospitalized, need for invasive mechanical ventilation or Extra Corporeal Membrane Oxygenation; 7, death)
Clinical parameter of acute lung disease1 monthClinical evaluation of the physiological parameter cough associated with acute lung disease from the start of the study to the end of the study.
Biochemical parameter of acute lung disease1 monthVariation of biochemical parameter glycemia of acute lung disease from the beginning of the study to the end of study.
Clinical parameters of acute lung disease1 monthVariation of the clinical parameters duration in days of ventilatory support, duration in days of oxygen therapy, duration in days of hospitalization, duration in days in the Intensive Care Unit, total length of stay in hospital of acute lung disease from the beginning of the study to the end of the study.

Secondary

MeasureTime frameDescription
Cytokine-inflammatory profile6 monthsEvaluation of inflammatory cytokines IL-2 and IL-7 in biological samples of treated patients and control group patients during infection.
Glycemic variability1 monthEffect on glycemic variability by evaluating HbA1c levels.
Dipeptilpeptidase 4 expression in biological samples6 monthsThe alteration of Dipeptilpeptidase 4 expression will be evaluated in the collected biological samples

Countries

Italy

Contacts

Primary ContactTeresa Letizia, Dr.
letizia.teresa@asst-fbf-sacco.it02 39042648

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026