Progresses in chitin, chitosan, starch, cellulose, pectin, alginate, gelatin and gum based (nano) catalysts for the Heck coupling reactions: A review

M Dohendou, K Pakzad, Z Nezafat… - International journal of …, 2021 - Elsevier
Heck cross-coupling reaction (HCR) is one of the few transition metal catalyzed Csingle
bondC bond-forming reactions, which has been considered as the most effective, direct, and …

Biomaterials in guided bone and tissue regenerations: an update

RA Namanloo, M Ommani, K Abbasi… - … in Materials Science …, 2022 - Wiley Online Library
Purpose. Guided tissue reconstruction can be performed to restore the supporting structure
of a previously lost tooth, which, in addition to maintaining beauty, preserves the function of …

Fabrication techniques of polymeric nanocomposites: A comprehensive review

A Kamal, M Ashmawy, AM Algazzar… - Proceedings of the …, 2022 - journals.sagepub.com
Nanotechnology is the key solution for many human problems such as energy conversion,
water treatment, and material science. In composite materials, nanoparticles are dispersed …

[HTML][HTML] Recent advances in biofunctional guided bone regeneration materials for repairing defective alveolar and maxillofacial bone: A review

B Wang, C Feng, Y Liu, F Mi, J Dong - Japanese Dental Science Review, 2022 - Elsevier
The anatomy of the oral and maxillofacial sites is complex, and bone defects caused by
trauma, tumors, and inflammation in these zones are extremely difficult to repair. Among the …

Advances in modification methods based on biodegradable membranes in guided bone/tissue regeneration: a review

Y Gao, S Wang, B Shi, Y Wang, Y Chen, X Wang… - Polymers, 2022 - mdpi.com
Guided tissue/bone regeneration (GTR/GBR) is commonly applied in dentistry to aid in the
regeneration of bone/tissue at a defective location, where the assistive material eventually …

Bio-based sustainable polymers and materials: From processing to biodegradation

O Okolie, A Kumar, C Edwards, LA Lawton… - Journal of Composites …, 2023 - mdpi.com
In the life cycle of a material, there will be either chemical or physical change due to varying
environmental factors such as biological activity, light, heat, moisture, and chemical …

[HTML][HTML] 3D-printed magnesium-doped wollastonite/nano-hydroxyapatite bioceramic scaffolds with high strength and anti-tumor property

H Shao, Z **g, P **a, T Zhang, Z Nian, W Liu, J Zhu… - Materials & Design, 2023 - Elsevier
It is still a major challenge to remove tumor cells and fill bone defects after tumor resection.
Combined with the 3D printing technology, the composite bioceramics scaffolds were …

Roles of polysaccharides-based nanomaterials in food preservation and extension of shelf-life of food products: A review

V Manikandan, SC Min - International Journal of Biological Macromolecules, 2023 - Elsevier
In food production sectors, food spoilage and contamination are major issues that threaten
and negatively influence food standards and safety. Several physical, chemical, and …

The development of magnesium‐based biomaterials in bone tissue engineering: a review

J Wu, X Cheng, J Wu, J Chen… - Journal of Biomedical …, 2024 - Wiley Online Library
Bone regeneration is a vital clinical challenge in massive or complicated bone defects.
Recently, bone tissue engineering has come to the fore to meet the demand for bone repair …

The improvement of periodontal tissue regeneration using a 3D‐printed carbon nanotube/chitosan/sodium alginate composite scaffold

L Suo, H Wu, P Wang, Z Xue, J Gao… - Journal of Biomedical …, 2023 - Wiley Online Library
Periodontal disease is a common disease in the oral field, and many researchers are
studying periodontal disease and try to find some biological scaffold materials to make …