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LASSBio-1986 as a Multifunctional Antidiabetic Lead: SGLT1/2 Docking, Redox-Inflammatory Modulation and Metabolic
Landerson Lopes Pereira1, Raimundo Rigoberto B Xavier Filho2, Gabriela Araújo Freire1
1Laboratório de Bioquímica e Farmacologia (LFB), Departamento de Farmacologia e Fisiologia, Núcleo de Pesquisa e Desenvolvimento de Medicamentos (NPDM), Faculdade de Medicina, Universidade Federal do Ceará, Rua Coronel Nunes de Melo, 1000-Rodolfo Teófilo, Fortaleza CEP 60430-275, Ceará, Brazil.
Abstract:
Type 2 diabetes mellitus (T2DM) involves chronic hyperglycemia, insulin resistance, low-grade inflammation, and oxidative stress that drive cardiometabolic and renal damage despite current therapies. Sodium-glucose cotransporter (SGLT) inhibitors have reshaped the treatment landscape, but residual risk and safety concerns highlight the need for new agents that combine glucose-lowering efficacy with redox-inflammatory modulation. LASSBio-1986 is a synthetic N-acylhydrazone (NAH) derivative designed as a gliflozin-like scaffold with the potential to interact with SGLT1/2 while also influencing oxidative and inflammatory pathways. Here, we integrated in silico and in vivo approaches to characterize LASSBio-1986 as a multifunctional antidiabetic lead in murine models of glucose dysregulation. PASS and target class prediction suggested a broad activity spectrum and highlighted transporter- and stress-related pathways. Molecular docking indicated high-affinity binding to both SGLT1 and SGLT2, with a modest energetic preference for SGLT2, and ADME/Tox predictions supported favorable oral drug-likeness. In vivo, intraperitoneal LASSBio-1986 improved oral glucose tolerance and reduced glycemic excursions in an acute glucose challenge model in C57BL/6 mice, while enhancing hepatic and skeletal muscle glycogen stores. In a dexamethasone-induced insulin-resistance model, LASSBio-1986 improved insulin sensitivity, favorably modulated serum lipids, attenuated thiobarbituric acid-reactive substances (TBARS), restored reduced glutathione (GSH) levels, and rebalanced pro- and anti-inflammatory cytokines in metabolic tissues, with efficacy broadly comparable to dapagliflozin. These convergent findings support LASSBio-1986 as a preclinical, multimodal lead that targets SGLT-dependent glucose handling while mitigating oxidative and inflammatory stress in models relevant to T2DM. Chronic disease models, formal toxicology, and pharmacokinetic studies, particularly with oral dosing, will be essential to define its translational potential.
Insights
LASSBio-1986, a novel compound, shows promise for treating type 2 diabetes by improving glucose control and reducing inflammation and oxidative stress. Further studies are needed to confirm its potential as an oral medication.
Area of Science:
- Pharmacology and Drug Discovery
- Metabolic Diseases
- Oxidative Stress and Inflammation
Background:
- Type 2 diabetes mellitus (T2DM) involves hyperglycemia, insulin resistance, inflammation, and oxidative stress, leading to organ damage.
- Current therapies like SGLT inhibitors offer benefits but leave residual risks, necessitating novel agents with combined glucose-lowering and redox-inflammatory modulation.
Purpose of the Study:
- To characterize LASSBio-1986, a synthetic N-acylhydrazone derivative, as a multifunctional antidiabetic lead.
- To evaluate its potential to interact with SGLT1/2 and modulate oxidative and inflammatory pathways.
Main Methods:
- Integrated in silico (PASS, molecular docking, ADME/Tox) and in vivo approaches in murine models.
- Assessed oral glucose tolerance, glycemic excursions, insulin sensitivity, lipid profiles, oxidative stress markers (TBARS, GSH), and cytokine balance.
Main Results:
- In silico analysis predicted broad activity, high affinity for SGLT1/2, and favorable oral drug-likeness.
- In vivo studies demonstrated improved glucose tolerance, enhanced glycogen stores, better insulin sensitivity, and modulated lipid and redox-inflammatory profiles.
- LASSBio-1986 showed efficacy comparable to dapagliflozin in relevant T2DM models.
Conclusions:
- LASSBio-1986 is a promising preclinical, multimodal antidiabetic lead targeting SGLT and mitigating oxidative/inflammatory stress.
- Further research, including chronic disease models, toxicology, and oral pharmacokinetic studies, is crucial for its translational potential.
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