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1.
J Chem Inf Model ; 61(4): 1539-1544, 2021 04 26.
Article in English | MEDLINE | ID: mdl-33819017

ABSTRACT

The construction of a molecular topology file is a prerequisite for any classical molecular dynamics simulation. However, the generation of such a file may be very challenging at times, especially for large supramolecules. While many tools are available to provide topologies for large proteins and other biomolecules, the scientific community researching nonbiological systems is not equally well equipped. Here, we present a practical tool to generate topologies for arbitrary supramolecules: The pyPolyBuilder. In addition to linear polymer chains, it also provides the possibility to generate topologies of arbitrary, large, branched molecules, such as, e.g., dendrimers. Furthermore, it also generates reasonable starting structures for simulations of these molecules. pyPolyBuilder is a standalone command-line tool implemented in python. Therefore, it may be easily incorporated in persisting simulation pipelines on any operating systems and with different simulation engines. pyPolyBuilder is freely available on github: https://github.com/mssm-labmmol/pypolybuilder.


Subject(s)
Molecular Dynamics Simulation , Software , Polymers , Proteins
2.
J Mol Graph Model ; 60: 34-42, 2015 Jul.
Article in English | MEDLINE | ID: mdl-26093506

ABSTRACT

The association of the anti-tuberculosis drug rifampicin (RIF) with a 4th-generation poly(amidoamine) (G4-PAMAM) dendrimer was investigated by means of molecular dynamics simulations. The RIF load capacity was estimated to be around 20 RIF per G4-PAMAM at neutral pH. The complex formed by 20 RIF molecules and the dendrimer (RIF20-PAMAM) was subjected to 100 ns molecular dynamics (MD) simulations at two different pH conditions (neutral and acidic). The complex was found to be significantly more stable in the simulation at neutral pH compared to the simulation at low pH in which the RIF molecules were rapidly and almost simultaneously expelled to the solvent bulk. The high stability of the RIF-PAMAM complex under physiological pH and the rapid release of RIF molecules under acidic medium provide an interesting switch for drug targeting since the Mycobacterium resides within acidic domains of the macrophage. Altogether, these results suggest that, at least in terms of stability and pH-dependent release, PAMAM-like dendrimers may be considered suitable drug delivery systems for RIF and derivatives.


Subject(s)
Antitubercular Agents/metabolism , Dendrimers/metabolism , Molecular Dynamics Simulation , Polyamines/metabolism , Rifampin/metabolism , Antitubercular Agents/administration & dosage , Antitubercular Agents/chemistry , Dendrimers/chemistry , Drug Carriers/chemistry , Drug Carriers/metabolism , Drug Stability , Hydrogen-Ion Concentration , Molecular Docking Simulation , Molecular Structure , Polyamines/chemistry , Rifampin/administration & dosage , Rifampin/chemistry , Solubility , Water
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