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Deconstruction and reassembly of renewable polymers and biocolloids into next generation structured materials
This review considers the most recent developments in supramolecular and supraparticle
structures obtained from natural, renewable biopolymers as well as their disassembly and …
structures obtained from natural, renewable biopolymers as well as their disassembly and …
Bioengineering approaches for the advanced organoid research
Recent advances in 3D cell culture technology have enabled scientists to generate stem cell
derived organoids that recapitulate the structural and functional characteristics of native …
derived organoids that recapitulate the structural and functional characteristics of native …
Plant‐based structures as an opportunity to engineer optical functions in next‐generation light management
This review addresses the reconstruction of structural plant components (cellulose, lignin,
and hemicelluloses) into materials displaying advanced optical properties. The strategies to …
and hemicelluloses) into materials displaying advanced optical properties. The strategies to …
[HTML][HTML] A review on micro-to nanocellulose biopolymer scaffold forming for tissue engineering applications
Biopolymers have been used as a replacement material for synthetic polymers in scaffold
forming due to its biocompatibility and nontoxic properties. Production of scaffold for tissue …
forming due to its biocompatibility and nontoxic properties. Production of scaffold for tissue …
Probing organoid metabolism using fluorescence lifetime imaging microscopy (FLIM): The next frontier of drug discovery and disease understanding
Organoid models have been used to address important questions in developmental and
cancer biology, tissue repair, advanced modelling of disease and therapies, among other …
cancer biology, tissue repair, advanced modelling of disease and therapies, among other …
Bacterial cellulose-based materials: A perspective on cardiovascular tissue engineering applications
Today, a wide variety of bio-and nanomaterials have been deployed for cardiovascular
tissue engineering (TE), including polymers, metal oxides, graphene/its derivatives …
tissue engineering (TE), including polymers, metal oxides, graphene/its derivatives …
FLIM as a promising tool for cancer diagnosis and treatment monitoring
Fluorescence lifetime imaging microscopy (FLIM) has been rapidly developed over the past
30 years and widely applied in biomedical engineering. Recent progress in fluorophore …
30 years and widely applied in biomedical engineering. Recent progress in fluorophore …
Biochemistry, synthesis, and applications of bacterial cellulose: a review
The potential of cellulose nanocomposites in the new-generation super-performing
nanomaterials is huge, primarily in medical and environment sectors, and secondarily in …
nanomaterials is huge, primarily in medical and environment sectors, and secondarily in …
Fabrication techniques of biomimetic scaffolds in three‐dimensional cell culture: A review
AK Badekila, S Kini, AK Jaiswal - Journal of cellular physiology, 2021 - Wiley Online Library
In the last four decades, several researchers worldwide have routinely and meticulously
exercised cell culture experiments in two‐dimensional (2D) platforms. Using traditionally …
exercised cell culture experiments in two‐dimensional (2D) platforms. Using traditionally …
Luminescence lifetime imaging of three-dimensional biological objects
ABSTRACT A major focus of current biological studies is to fill the knowledge gaps between
cell, tissue and organism scales. To this end, a wide array of contemporary optical analytical …
cell, tissue and organism scales. To this end, a wide array of contemporary optical analytical …