BACTERIAL CELLULOSE: ADVANCES AND CHALLENGES

Authors

DOI:

https://doi.org/10.26577/bb202510514

Keywords:

bacteria, cellulose, biomass, packaging, residues, challenges

Abstract

Bacterial cellulose (BC) is a highly pure, crystalline biopolymer synthesized by a variety of microbial species, offering remarkable mechanical strength, high water-holding capacity, and excellent biocompatibility. These unique physicochemical properties have driven extensive research into BC-based materials for biomedical devices, wound dressings, tissue engineering scaffolds, controlled drug delivery systems, sustainable packaging, filtration membranes, and flexible or wearable electronics. Unlike plant-derived cellulose, BC is free from lignin, hemicellulose, and other biomass-associated impurities, resulting in a nanofibrillar network with high crystallinity and tunable porosity. However, despite its advantages, large-scale industrial utilization remains constrained by high production costs, slow fermentation rates, and challenges related to process scale-up and strain stability.Recent strategies to overcome these limitations include the optimization of culture media using agro-industrial residues, bioreactor engineering to enhance oxygen transfer and productivity, co-culture systems to boost metabolic efficiency, and genetic or synthetic biology approaches to reprogram biosynthetic pathways. Additionally, emerging applications such as BC-based composite materials, bioinks for 3D bioprinting, and functionalized scaffolds for regenerative medicine highlight the growing translational potential of BC research. This review provides an integrated overview of BC-producing microorganisms, technological bottlenecks, economic considerations, and current advances aimed at improving scalability, sustainability, and commercial viability. Finally, key outlooks for future innovations and industrial deployment are discussed.  

Author Biographies

  • B.D. Kossalbayev, Department of Chemical and Biochemical Engineering, Geology and Oil-Gas Business Institute Named After K. Turyssov, Satbayev University, Almaty, Kazakhstan

    Kossalbayev Bekzhan Duisenbiuly (corresponding author) – PhD, Associate Professor of Department of Chemical and Biochemical Engineering, Geology and Oil-Gas Business Institute Named After K. Turyssov, Satbayev University (Almaty, Kazakhstan, email: kossalbayev.bekzhan@gmail.com; +77759044888)

  • A.M. Belkozhayev, Department of Chemical and Biochemical Engineering, Geology and Oil-Gas Business Institute Named After K. Turyssov, Satbayev University, Almaty, Kazakhstan

    Belkozhayev Ayaz Maratovich  – PhD, Associate Professor of Department of Chemical and Biochemical Engineering, Geology and Oil-Gas Business Institute Named After K. Turyssov, Satbayev University (Almaty, Kazakhstan, email: a.belkozhayev@satbayev.university; +77473746591).

  • A.O. Abaildayev, Department of Chemical and Biochemical Engineering, Geology and Oil-Gas Business Institute Named After K. Turyssov, Satbayev University, Almaty, Kazakhstan

    Abaildayev Arman Orazalyuly Senior lecturer of Department of Chemical and Biochemical Engineering, Geology and Oil-Gas Business Institute Named After K. Turyssov, Satbayev University (Almaty, Kazakhstan, email: a.abaildayev@satbayev.university; +77771258282);

  • D.K. Kadirshe, S.D. Asfendiyarov Kazakh National Medical University, Almaty, Kazakhstan

    Kadirshe Danara Karzhaubaykyzy – Chief Specialist of the International Faculty at Asfendiyarov Kazakh National Medical University (KazNMU) (Almaty, Kazakhstan, email: kadirwe.d@kaznmu.kz; +7 747 538 3499)

  • R.A. Turganova, Department of Chemical and Biochemical Engineering, Geology and Oil-Gas Business Institute Named After K. Turyssov, Satbayev University, Almaty, Kazakhstan

    Turganova Ronagul Adiljanovna – PhD in AgroSciences, University of Lorraine (Nancy, France, email: ronagul.turganova@gmail.com;  +77023498834)

  • R.N. Tuleyev, Department of Chemical and Biochemical Engineering, Geology and Oil-Gas Business Institute Named After K. Turyssov, Satbayev University, Almaty, Kazakhstan

    Tuleyeva Rysgul Nurlanovna (corresponding author) – PhD student at the Department of Chemistry and Technology of Organic Substances, Natural Compounds, and Polymers, Al-Farabi Kazakh National University (Almaty, Kazakhstan, email: rysgultuleyeva@gmail.com; +77089452633)

  • G. Toleutay, Department of Chemical and Biochemical Engineering, Geology and Oil-Gas Business Institute Named After K. Turyssov, Satbayev University, Almaty, Kazakhstan

    Toleutay Gaukhar – PhD of Department of Chemical and Biochemical Engineering, Geology and Oil-Gas Business Institute Named After K. Turyssov, Satbayev University, Department of Chemistry (Almaty, Kazakhstan, email: gaukhar.toleutay@gmail.com; +18658248691)

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Published

2025-12-20

How to Cite

BACTERIAL CELLULOSE: ADVANCES AND CHALLENGES. (2025). Experimental Biology, 105(4), 158-174. https://doi.org/10.26577/bb202510514

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