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Computational Elucidation of Human β-Defensin-2 as a Dual Inhibitor of MMP-9 and PKC-βII for Diabetic Wound
Vidyasrilekha Sanapalli1, Dilep Kumar Sigalapalli2, Afzal B Shaik3,4
1Department of Pharmaceutical Chemistry, School of Pharmacy & Technology Management, SVKM's Narsee Monjee Institute of Management Studies (NMIMS) Deemed to be University, Jadcherla, Telangana 509301, India.
Abstract:
Diabetic wounds (DWs) are the most devastating complication, resulting in significant mortality and morbidity in diabetic patients. Although the pathophysiology of DWs is multifaceted, evidence has revealed that prolonged inflammation with infections, extracellular matrix (ECM) degradation, and unnecessary NETosis impair DW healing. This theoretical problem highlights the necessity of developing a novel strategy focused on targeting the "specific" molecular modalities of DWs. The primary culprits, matrix metalloproteinase (MMP)-9 and protein kinase C (PKC)-βII, are responsible for impaired angiogenesis, NETosis, and ECM degradation. Thus, interest in identifying selective inhibitors for the effective management of DW has increased. The current study exemplified human β-defensin-2 (HBD-2), a biological macromolecule that functions as a dual inhibitor of MMP-9 and PKC-βII, via protein-protein docking and molecular dynamics simulation studies. Overall, the data analysis revealed that HBD-2 possesses strong binding affinity and stability against MMP-9 and PKC-βII, suggesting that HBD-2 may be an ideal therapeutic for the accelerated healing of DW. Our findings suggest HBD-2's potential as an innovative therapeutic for accelerated DW healing, offering valuable insights into its molecular mechanisms. However, in vitro and in vivo studies are required to bridge the gap between computational modeling and clinical application.
Insights
Human beta-defensin-2 (HBD-2) shows potential in accelerating diabetic wound healing by inhibiting matrix metalloproteinase-9 (MMP-9) and protein kinase C (PKC)-βII. Further research is needed to confirm its clinical efficacy.
Area of Science:
- Biochemistry
- Molecular Biology
- Computational Biology
Background:
- Diabetic wounds (DWs) are a severe complication with high mortality and morbidity.
- Impaired healing in DWs involves prolonged inflammation, infections, extracellular matrix (ECM) degradation, and NETosis.
- Matrix metalloproteinase-9 (MMP-9) and protein kinase C (PKC)-βII are key molecular targets implicated in DW pathophysiology.
Purpose of the Study:
- To investigate human beta-defensin-2 (HBD-2) as a dual inhibitor of MMP-9 and PKC-βII.
- To explore the potential of HBD-2 as a therapeutic agent for accelerated diabetic wound healing.
Main Methods:
- Protein-protein docking simulations.
- Molecular dynamics simulations.
Main Results:
- HBD-2 demonstrated strong binding affinity and stability against both MMP-9 and PKC-βII.
- Computational analysis suggests HBD-2's potential as a dual inhibitor for key molecular targets in diabetic wounds.
Conclusions:
- HBD-2 shows promise as an innovative therapeutic for accelerating diabetic wound healing.
- Further in vitro and in vivo studies are necessary to validate these computational findings and assess clinical applicability.

