48 citations
,
July 2022 in “International Journal of Nanomedicine” This review discusses nanotechnology-based therapies for chronic wound healing and highlights their potential, but it reports no new clinical results.
46 citations
,
May 2021 in “Stem Cell Research & Therapy” This study found that strontium ranelate promotes cartilage regeneration in rats by enhancing chondrogenic differentiation of bone mesenchymal stem cells while inhibiting the Wnt/β-catenin signaling pathway.
33 citations
,
June 2022 in “Materials Today Bio” This paper reviews recent advances in the design and use of injectable biomaterials for spinal degeneration treatment, highlighting the types of biomaterials like hydrogels and bone cements, and discussing key challenges and opportunities for clinical translation.
20 citations
,
September 2022 in “Journal of Biomedical Optics” This article reviews the potential of using PBM in 3D tissue engineering to improve cell viability under stress conditions but reports no new experimental findings.
11 citations
,
September 2023 in “ACS Omega” This review highlights the rapid advancements in 3D bioprinting techniques, emphasizing their role in enhancing regenerative therapy, drug delivery, and bioengineering applications while addressing current challenges in bioink formulation and bioprinting stability.
6 citations
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August 2024 in “Frontiers in Bioengineering and Biotechnology” This study reviewed the use of 3D printing and bioprinting for tympanic membrane repair, comparing them with traditional materials and noting their clinical significance, while highlighting the need for further analysis of bio-ink selection strategies involving biopolymers, cells, and drugs.
4 citations
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January 2014 in “BioMed Research International” This special issue reviews advancements in engineering cell microenvironments for tissue engineering, highlighting various studies on interventions like silk fibroin and platelet-rich plasma, but presents no new empirical findings.
3 citations
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September 2023 in “Advanced science” Researchers demonstrated that a new vaccine platform using antigen-loaded hydrogels enhanced humoral immune responses in mice, producing stronger antigen-specific antibody levels compared to the conventional adjuvant Alum, and offering promising protective capabilities against influenza virus.
May 2026 in “Materials & Design” This study developed a hair-on-a-chip model that supports the maturation of hair-follicle-like tissue under long-term culture conditions, suggesting its promise for studying hair regeneration and testing scalp-targeted therapies.
This study demonstrated that de novo designed bifunctional proteins can target and degrade BCL-xL, leading to cell apoptosis, suggesting a new approach to targeted protein degradation therapy.
January 2026 in “The Eurasian Journal of Life Sciences” This review discusses recent advances in the development of electrospun pectin nanofibers for biomedical applications, highlighting strategies to improve their mechanical properties and biological functions and addressing challenges like material variability and regulatory issues.
In this study, researchers developed de novo designed hetero-bifunctional proteins as an alternative approach for targeted protein degradation, successfully targeting BCL-xL for degradation in cells and inducing apoptosis, which may expand the range of addressable E3 ligases and disease targets.
March 2025 in “Advanced Science” In this study, bioengineered hair germ microspheres made from HME hydrogels promoted hair follicle regeneration in vivo, suggesting a promising approach for hair loss treatment.
December 2024 in “Advanced Composites and Hybrid Materials” This study provides a comprehensive review of the use of electrospinning technology to create 3D porous structures for bone implants, emphasizing the synergy between biomedicine and materials science necessary for developing orthopedic materials.
October 2023 in “Sovremennye tehnologii v medicine” This research found that LSE transplantation positively affects wound healing by promoting granulation tissue growth and minimizing cosmetic defects in ischemic non-healing wounds during preclinical studies. Additionally, the proposed smoothing coefficient helps assess the degree of wound bed filling with developing tissue.
May 2022 in “Голова и шея.” This article highlights exosome-based targeted drug delivery using DARPin G3 proteins as a promising approach for treating aggressive HER2-positive breast cancer but reports no new clinical results.
This study found that the RADA-GHK and RADA-KGHK peptide hydrogels improved wound healing and cell growth without cytotoxicity, suggesting potential for use in skin regeneration.
425 citations
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January 2021 in “SN Applied Sciences” This article highlights the versatility and potential of alginate and its derivatives in tissue engineering applications, discussing their properties, modification techniques, and various uses in enhancing tissue healing, bone regeneration, and cell growth.
156 citations
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March 2022 in “Exploration” This review discusses the development of bioactive inorganic particles-based biomaterials for skin tissue engineering and reports no new results; the authors highlight potential future directions for these materials in wound management.
125 citations
,
March 2017 in “Micromachines” This review highlights recent advancements in microfluidics for 3D tissue model generation and discusses its applications in tissue engineering and high-throughput drug screening without reporting new experimental results.
118 citations
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December 2014 in “International Journal of Medical Sciences” This review discusses the potential of mesenchymal stem cells from the oral cavity for tissue regeneration in oral and maxillofacial surgery but reports no new clinical results.
114 citations
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November 2022 in “Biomedicine & Pharmacotherapy” This review discusses current wound management strategies and examines electrospun nanofibers with biological macromolecules for their potential in tissue engineering and drug delivery, but reports no new clinical results.
71 citations
,
September 2013 in “Materials Science and Engineering C” Keratin-based hydrogels from human hair and wool are promising for wound dressings and are more eco-friendly.
68 citations
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March 2019 in “Advanced Healthcare Materials” This review assesses the benefits and limitations of various supramolecular hydrogels, including polymeric and peptide-based types, for wound healing, but reports no new clinical results.
49 citations
,
January 2023 in “Gels” This review summarizes recent advancements in three-dimensional bioprinting technology and hydrogel bioinks, highlighting their applications in tissue engineering, but reports no new experimental results.
45 citations
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January 2021 in “Stem Cell Research & Therapy” This study found that incorporating adipose-derived stem cell conditioned medium into a polysaccharide hydrogel effectively reduced scar hyperplasia, with the combination offering better outcomes in preventing hypertrophic scarring compared to the medium alone in a rabbit ear model.
43 citations
,
October 2013 in “Journal of Investigative Dermatology” This article reviews organotypic skin culture systems and their applications in dermatological research, highlighting their ability to model human epidermal conditions in vitro, but it reports no new clinical results.
41 citations
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February 2022 in “Advances in Wound Care” This review discusses advancements in stem cell therapies for treating diabetic foot ulcers but reports no new clinical results; the authors emphasize the potential of regenerative techniques and call for further research to enhance wound healing mechanisms.
35 citations
,
February 2024 in “Science Advances” This study introduces a magnet-assisted fabrication strategy for creating complex 3D soft bioscaffolds, demonstrating its effectiveness by producing structures with overhangs and supporting biohybrid actuators, promising advancements in biomedical applications.
34 citations
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May 2021 in “Journal of Nanobiotechnology” This study found that electrospun short fibrous sponges effectively mimic the 3D extracellular matrix, promoting tissue regeneration, angiogenesis, and wound healing in diabetic rats better than 2D fiber membranes.