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  • 1
    In: Biofabrication, IOP Publishing, Vol. 16, No. 1 ( 2024-01-01), p. 015002-
    Abstract: The outcome of three-dimensional (3D) bioprinting heavily depends, amongst others, on the interaction between the developed bioink, the printing process, and the printing equipment. However, if this interplay is ensured, bioprinting promises unmatched possibilities in the health care area. To pave the way for comparing newly developed biomaterials, clinical studies, and medical applications (i.e. printed organs, patient-specific tissues), there is a great need for standardization of manufacturing methods in order to enable technology transfers. Despite the importance of such standardization, there is currently a tremendous lack of empirical data that examines the reproducibility and robustness of production in more than one location at a time. In this work, we present data derived from a round robin test for extrusion-based 3D printing performance comprising 12 different academic laboratories throughout Germany and analyze the respective prints using automated image analysis (IA) in three independent academic groups. The fabrication of objects from polymer solutions was standardized as much as currently possible to allow studying the comparability of results from different laboratories. This study has led to the conclusion that current standardization conditions still leave room for the intervention of operators due to missing automation of the equipment. This affects significantly the reproducibility and comparability of bioprinting experiments in multiple laboratories. Nevertheless, automated IA proved to be a suitable methodology for quality assurance as three independently developed workflows achieved similar results. Moreover, the extracted data describing geometric features showed how the function of printers affects the quality of the printed object. A significant step toward standardization of the process was made as an infrastructure for distribution of material and methods, as well as for data transfer and storage was successfully established.
    Type of Medium: Online Resource
    ISSN: 1758-5082 , 1758-5090
    Language: Unknown
    Publisher: IOP Publishing
    Publication Date: 2024
    detail.hit.zdb_id: 2500944-8
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  • 2
    Online Resource
    Online Resource
    MDPI AG ; 2022
    In:  Polymers Vol. 14, No. 24 ( 2022-12-11), p. 5424-
    In: Polymers, MDPI AG, Vol. 14, No. 24 ( 2022-12-11), p. 5424-
    Abstract: Gelatin and its derivatives contain cell adhesion moieties as well as sites that enable proteolytic degradation, thus allowing cellular proliferation and migration. The processing of gelatin to its derivatives and/or gelatin-containing products is challenged by its gelation below 30 ∘C. In this study, a novel strategy was developed for the dissolution and subsequent modification of gelatin to its derivative gelatin-methacryloyl (GelMA). This approach was based on the presence of urea in the buffer media, which enabled the processing at room temperature, i.e., lower than the sol–gel transition point of the gelatin solutions. The degree of functionalization was controlled by the ratio of reactant volume to the gelatin concentration. Hydrogels with tailored mechanical properties were produced by variations of the GelMA concentration and its degree of functionalization. Moreover, the biocompatibility of hydrogels was assessed and compared to hydrogels formulated with GelMA produced by the conventional method. NIH 3T3 fibroblasts were seeded onto hydrogels and the viability showed no difference from the control after a three-day incubation period.
    Type of Medium: Online Resource
    ISSN: 2073-4360
    Language: English
    Publisher: MDPI AG
    Publication Date: 2022
    detail.hit.zdb_id: 2527146-5
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  • 3
    In: Polymers, MDPI AG, Vol. 15, No. 8 ( 2023-04-09), p. 1829-
    Abstract: Three-dimensional bioprinting and especially extrusion-based printing as a most frequently employed method in this field is constantly evolving as a discipline in regenerative medicine and tissue engineering. However, the lack of relevant standardized analytics does not yet allow an easy comparison and transfer of knowledge between laboratories regarding newly developed bioinks and printing processes. This work revolves around the establishment of a standardized method, which enables the comparability of printed structures by controlling for the extrusion rate based on the specific flow behavior of each bioink. Furthermore, printing performance was evaluated by image-processing tools to verify the printing accuracy for lines, circles, and angles. In addition, and complementary to the accuracy metrics, a dead/live staining of embedded cells was performed to investigate the effect of the process on cell viability. Two bioinks, based on alginate and gelatin methacryloyl, which differed in 1% (w/v) alginate content, were tested for printing performance. The automated image processing tool reduced the analytical time while increasing reproducibility and objectivity during the identification of printed objects. During evaluation of the processing effect of the mixing of cell viability, NIH 3T3 fibroblasts were stained and analyzed after the mixing procedure and after the extrusion process using a flow cytometer, which evaluated a high number of cells. It could be observed that the small increase in alginate content made little difference in the printing accuracy but had a considerable strong effect on cell viability after both processing steps.
    Type of Medium: Online Resource
    ISSN: 2073-4360
    Language: English
    Publisher: MDPI AG
    Publication Date: 2023
    detail.hit.zdb_id: 2527146-5
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  • 4
    In: Revista Vive, Centro de Investigacion y Desarrollo Ecuador, Vol. 5, No. 15 ( 2022-12-23), p. 909-917
    Abstract: Los Trastornos musculoesqueléticos (TME) abarcan más de 150 patologías que pueden afectar al sistema locomotor, siendo considerado por la Organización Mundial de la Salud (OMS) en el año 2021 como el principal factor para la incapacidad laboral y de requerir rehabilitación. Estas lesiones se presentan de forma repentina y pueden llegar a ser enfermedades crónicas, las cuales pueden afectar de una manera social, económica y laboral. Objetivo. Establecer la prevalencia de las alteraciones musculoesqueléticas más frecuentes, asociadas a incapacidad laboral en pacientes que asisten al Centro de Salud en la provincia del Guayas. Materiales y métodos. Este trabajo de investigación tiene un alcance descriptivo observacional, de enfoque cuantitativo con un diseño no experimental de corte transversal, el mismo que se apoyó en una base de datos de tipo numérico. Resultados. Obteniendo como resultado una mayor prevalencia en el dolor articular con un 32,49%, seguido de lumbalgia 14,13%, patologías artrósicas 13.73% y dorsalgia 2,62%. Conclusiones. Al realizar la comparación entre varios estudios se pudo determinar que la edad más frecuente para presentar alteraciones musculoesqueléticas es de los 30 a 70 años de edad dentro de la población laboral, siendo a mayor edad, mayor prevalencia a incapacidad laboral.
    Type of Medium: Online Resource
    ISSN: 2664-3243
    Language: Unknown
    Publisher: Centro de Investigacion y Desarrollo Ecuador
    Publication Date: 2022
    detail.hit.zdb_id: 3032197-9
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