Influence of Fiber Diameter of Polycaprolactone Nanofibrous Materials on Biofilm Formation and Retention of Bacterial Cells

被引:7
作者
Lencova, Simona [1 ]
Stindlova, Marta [1 ]
Havlickova, Kristyna [2 ]
Jencova, Vera [2 ]
Peroutka, Vaclav [1 ]
Navratilova, Katerina [1 ]
Zdenkova, Kamila [1 ]
Stiborova, Hana [1 ]
Hauzerova, Sarka [2 ]
Kostakova, Eva Kuzelova [2 ]
Jankovsky, Ondrej [3 ]
Kejzlar, Pavel [4 ]
Lukas, David [2 ]
Demnerova, Katerina [1 ]
机构
[1] Univ Chem & Technol, Dept Biochem & Microbiol, Prague 16000, Czech Republic
[2] Tech Univ Liberec, Fac Sci Humanities & Educ, Dept Chem, Liberec 46117, Czech Republic
[3] Univ Chem & Technol, Dept Inorgan Chem, Prague 16000, Czech Republic
[4] Tech Univ Liberec, Inst Nanomat Adv Technol & Innovat, Dept Adv Mat, Liberec 46117, Czech Republic
关键词
nanofibers; polycaprolactone; morphology; biofilm; retention; bacteria; ELECTROSPUN; MEMBRANES; ADHESION; REMOVAL; WATER;
D O I
10.1021/acsami.4c03642
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
To develop microbiologically safe nanofibrous materials, it is crucial to understand their interactions with microbial cells. Current research indicates that the morphology of nanofibers, particularly the diameter of the fibers, may play a significant role in biofilm formation and retention. However, it has not yet been determined how the fiber diameter of poly-epsilon-caprolactone (PCL), one of the most widely used biopolymers, affects these microbial interactions. In this study, two nanofibrous materials electrospun from PCL (PCL45 and PCL80) with different fiber diameter and characteristic distance delta between fibers were compared in terms of their ability to support or inhibit bacterial biofilm formation and retain bacterial cells. Strains of Escherichia coli (ATCC 25922 and ATCC 8739) and Staphylococcus aureus (ATCC 25923 and ATCC 6538) were used as model bacteria. Biofilm formation rate and retention varied significantly between the E. coli and S. aureus strains (p < 0.05) for the tested nanomaterials. In general, PCL showed a lower tendency to be colonized by the tested bacteria compared to the control material (polystyrene). Fiber diameter did not influence the biofilm formation rate of S. aureus strains and E. coli 25922 (p > 0.05), but it did significantly impact the biofilm formation rate of E. coli 8739 and biofilm morphology formed by all of the tested bacterial strains. In PCL45, thick uniform biofilm layers were formed preferably on the surface, while in PCL80 smaller clusters formed preferably inside the structure. Further, fiber diameter significantly influenced the retention of bacterial cells of all the tested strains (p < 0.001). PCL45, with thin fibers (average fiber diameter of 376 nm), retained up to 7 log (CFU mL(-1)) of staphylococcal cells (100% retention). The overall results indicate PCL45's potential for further research and highlight the nanofibers' morphology influence on bacterial interactions and differences in bacterial strains' behavior in the presence of nanomaterials.
引用
收藏
页码:25813 / 25824
页数:12
相关论文
共 26 条
[1]   Electrospun Polystyrene Fiber Diameter Influencing Bacterial Attachment, Proliferation, and Growth [J].
Abrigo, Martina ;
Kingshott, Peter ;
McArthur, Sally L. .
ACS APPLIED MATERIALS & INTERFACES, 2015, 7 (14) :7644-7652
[2]   Comparative Study of Polycaprolactone Electrospun Fibers and Casting Films Enriched with Carbon and Nitrogen Sources and Their Potential Use in Water Bioremediation [J].
Alejandra Pompa-Monroy, Daniella ;
Leticia Iglesias, Ana ;
Gulam Dastager, Syed ;
Namdeo Thorat, Meghana ;
Olivas-Sarabia, Amelia ;
Valdez-Castro, Ricardo ;
Angelica Hurtado-Ayala, Lilia ;
Manuel Cornejo-Bravo, Jose ;
Lizeth Perez-Gonzalez, Graciela ;
Jesus Villarreal-Gomez, Luis .
MEMBRANES, 2022, 12 (03)
[3]   Analysis of Polycaprolactone Microfibers as Biofilm Carriers for Biotechnologically Relevant Bacteria [J].
Antonio Tamayo-Ramos, Juan ;
Rumbo, Carlos ;
Caso, Federica ;
Rinaldi, Antonio ;
Garroni, Sebastiano ;
Notargiacomo, Andrea ;
Romero-Santacreu, Lorena ;
Cuesta-Lopez, Santiago .
ACS APPLIED MATERIALS & INTERFACES, 2018, 10 (38) :32773-32781
[4]   Antimicrobial, antibiofilm, and microbial barrier properties of poly (ε-caprolactone)/cloisite 30B thin films [J].
Babu, Snigdha Sajeendra ;
Mathew, Shiji ;
Kalarikkal, Nandakumar ;
Thomas, Sabu ;
Radhakrishnan, E. K. .
3 BIOTECH, 2016, 6
[5]   A study on the dependence of bacteria adhesion on the polymer nanofibre diameter [J].
De Cesare, Fabrizio ;
Di Mattia, Elena ;
Zussman, Eyal ;
Macagnano, Antonella .
ENVIRONMENTAL SCIENCE-NANO, 2019, 6 (03) :778-797
[6]   Biofilm formation ability and tolerance to food-associated stresses among ESBL-producing Escherichia coli strains from foods of animal origin and human patients [J].
Fernandez-Gomez, Paula ;
Trigal, Elena ;
Alegria, Angel ;
Santos, Jesus A. ;
Lopez, Mercedes ;
Prieto, Miguel ;
Alvarez-Ordonez, Avelino .
LWT-FOOD SCIENCE AND TECHNOLOGY, 2022, 168
[7]   Electrospun Scaffolds for Tissue Engineering: A Review [J].
Flores-Rojas, Guadalupe Gabriel ;
Gomez-Lazaro, Belen ;
Lopez-Saucedo, Felipe ;
Vera-Graziano, Ricardo ;
Bucio, Emilio ;
Mendizabal, Eduardo .
MACROMOL, 2023, 3 (03) :524-553
[8]   PROTEIN ADSORPTION ON BIODEGRADABLE MIKRO/NANOFIBRES MATERIALS FOR TISSUE ENGINEERING [J].
Hauzerova, Sarka ;
Havlickova, Kristyna ;
Volakova, Veronika ;
Stepanova, Jana ;
Jencova, Vera .
15TH INTERNATIONAL CONFERENCE ON NANOMATERIALS-RESEARCH & APPLICATION, NANOCON 2023, 2024, :290-297
[9]   Effect of fiber diameter on the behavior of biofilm and anodic performance of fiber electrodes in microbial fuel cells [J].
He, Guanghua ;
Gu, Yanli ;
He, Shuijian ;
Schroeder, Uwe ;
Chen, Shuiliang ;
Hou, Haoqing .
BIORESOURCE TECHNOLOGY, 2011, 102 (22) :10763-10766
[10]   Controlling bacterial adhesion to surfaces using topographical cues: a study of the interaction of Pseudomonas aeruginosa with nanofiber-textured surfaces [J].
Kargar, Mehdi ;
Wang, Ji ;
Nain, Amrinder S. ;
Behkam, Bahareh .
SOFT MATTER, 2012, 8 (40) :10254-10259