Mohammad Saeb - Science profile - Bridge of Knowledge

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Business contact

Centrum Transferu Wiedzy i Technologii
Location
Al. Zwycięstwa 27, 80-219 Gdańsk
Phone
+48 58 348 62 62
E-mail
biznes@pg.edu.pl

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Publication showcase

  • Customizing nano-chitosan for sustainable drug delivery

    • M. Saeedi
    • O. Vahidi
    • M. R. Moghbeli
    • S. Ahmadi
    • M. Asadnia
    • O. Akhavan
    • F. Seidi
    • M. Rabiee
    • M. Saeb
    • T. J. Webster... and 4 others

    - JOURNAL OF CONTROLLED RELEASE - Year 2022

    Chitosan is a natural polymer with acceptable biocompatibility, biodegradability, and mechanical stability; hence, it has been widely appraised for drug and gene delivery applications. However, there has been no comprehensive assessment to tailor-make chitosan cross-linkers of various types and functionalities as well as complex chitosan-based semi- and full-interpenetrating networks for drug delivery systems (DDSs). Herein, various...

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  • MXenes Antibacterial Properties and Applications: A Review and Perspective

    • F. Seidi
    • A. Arabi Shamsabadi
    • M. Dadashi Firouzjaei
    • M. Elliott
    • M. Saeb
    • Y. Huang
    • C. Li
    • H. Xiao
    • B. Anasori

    - SMALL - Year 2023

    The mutations of bacteria due to the excessive use of antibiotics, and generation of antibiotic-resistant bacteria have made the development of new antibacterial compounds a necessity. MXenes have emerged as biocompatible transition metal carbide structures with extensive biomedical applications. This is related to the MXenes’ unique combination of properties, including multifarious elemental compositions, 2D-layered structure,...

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  • Thermal degradation of polylactic acid (PLA)/polyhydroxybutyrate (PHB) blends: A systematic review

    • M. Kervran
    • C. Vagner
    • M. Cochez
    • M. Ponçot
    • M. Saeb
    • H. Vahabi

    - POLYMER DEGRADATION AND STABILITY - Year 2022

    Polylactic acid (PLA) and polyhydroxybutyrate (PHB) are two biopolyesters obtained from renewable resources like corn or sugar under bacterial fermentation. PLA is the most widely used biopolymer in diverse applications. Addition of PHB to PLA can improves the crystallinity of PLA, and thereby its mechanical strength. However, both PLA and PHB suffer from poor thermal stability, which limits their potential industrial application....

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