Designed multiple ligands (DMLs), developed to modulate simultaneously a number of selected targets involved in etiopathogenetic mechanisms of a multifactorial disease, such as diabetes mellitus (DM), are considered a promising alternative to combinations of drugs, when monotherapy results to be unsatisfactory. In this work, compounds 1–17 were synthesized and in vitro evaluated as DMLs directed to aldose reductase (AR) and protein tyrosine phosphatase 1B (PTP1B), two key enzymes involved in different events which are critical for the onset and progression of type 2 DM and related pathologies. Out of the tested 4-thiazolidinone derivatives, compounds 12 and 16, which exhibited potent AR inhibitory effects along with interesting inhibition o...
Diabetes mellitus (DM) represents a complex and multifactorial disease that causes metabolic disorde...
Background: Aldose reductase, the first enzyme of the polyol pathway, is the key determinant for th...
The over expression of aldose reductase (ALR2) in the state of hyperglycemia causes the conversion o...
Designed multiple ligands (DMLs), developed to modulate simultaneously a number of selected targets ...
Diabetes mellitus (DM) is a complex disease which currently affects more than 460 million people and...
Diabetes mellitus (DM) is a complex disease which currently affects more than 460 million people and...
Protein tyrosine phosphatase 1B (PTP1B) and aldose reductase (AR) enzymes are two emerging targets d...
Diabetes mellitus is a metabolic disorder characterized by hyperglycemia resulting long-term seconda...
This research study describes the development of new small molecules based on 2,4-thiazolidinedione ...
Objective: Aldose reductase (ALR) enzyme plays a significant role in conversion of excess amount of ...
An in-depth study on the inhibitory mechanism on protein tyrosine phosphatase 1B (PTP1B) and aldose ...
Diabetes is a multi-factorial disorder that should be treated with multi-effective compounds. Here w...
In continuing the search for more effective 5-arylidene-4-thiazolidinones as aldose reductase inhibi...
This work aimed to synthesize safe antihyperglycemic derivatives bearing thiazolidinedione fragment ...
A series of new iminothiazolidin-4-one acetate derivatives was synthesized and evaluated as aldehyde...
Diabetes mellitus (DM) represents a complex and multifactorial disease that causes metabolic disorde...
Background: Aldose reductase, the first enzyme of the polyol pathway, is the key determinant for th...
The over expression of aldose reductase (ALR2) in the state of hyperglycemia causes the conversion o...
Designed multiple ligands (DMLs), developed to modulate simultaneously a number of selected targets ...
Diabetes mellitus (DM) is a complex disease which currently affects more than 460 million people and...
Diabetes mellitus (DM) is a complex disease which currently affects more than 460 million people and...
Protein tyrosine phosphatase 1B (PTP1B) and aldose reductase (AR) enzymes are two emerging targets d...
Diabetes mellitus is a metabolic disorder characterized by hyperglycemia resulting long-term seconda...
This research study describes the development of new small molecules based on 2,4-thiazolidinedione ...
Objective: Aldose reductase (ALR) enzyme plays a significant role in conversion of excess amount of ...
An in-depth study on the inhibitory mechanism on protein tyrosine phosphatase 1B (PTP1B) and aldose ...
Diabetes is a multi-factorial disorder that should be treated with multi-effective compounds. Here w...
In continuing the search for more effective 5-arylidene-4-thiazolidinones as aldose reductase inhibi...
This work aimed to synthesize safe antihyperglycemic derivatives bearing thiazolidinedione fragment ...
A series of new iminothiazolidin-4-one acetate derivatives was synthesized and evaluated as aldehyde...
Diabetes mellitus (DM) represents a complex and multifactorial disease that causes metabolic disorde...
Background: Aldose reductase, the first enzyme of the polyol pathway, is the key determinant for th...
The over expression of aldose reductase (ALR2) in the state of hyperglycemia causes the conversion o...