OpenAlex Citation Counts

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OpenAlex is a bibliographic catalogue of scientific papers, authors and institutions accessible in open access mode, named after the Library of Alexandria. It's citation coverage is excellent and I hope you will find utility in this listing of citing articles!

If you click the article title, you'll navigate to the article, as listed in CrossRef. If you click the Open Access links, you'll navigate to the "best Open Access location". Clicking the citation count will open this listing for that article. Lastly at the bottom of the page, you'll find basic pagination options.

Requested Article:

Graphite nanopowder incorporated xanthan gum scaffold for effective bone tissue regeneration purposes with improved biomineralization
Abhishek Singh, Chinmayee Muduli, Satyaprasad P. Senanayak, et al.
International Journal of Biological Macromolecules (2023) Vol. 234, pp. 123724-123724
Closed Access | Times Cited: 11

Showing 11 citing articles:

Green engineered biomaterials for bone repair and regeneration: Printing technologies and fracture analysis
Balbina Makurat‐Kasprolewicz, Hossein Ipakchi, Pouya Rajaee, et al.
Chemical Engineering Journal (2024) Vol. 494, pp. 152703-152703
Closed Access | Times Cited: 9

Current application and modification strategy of marine polysaccharides in tissue regeneration: A review
Zhaokun Wang, Zhiwen Xu, Xuan Yang, et al.
Biomaterials Advances (2023) Vol. 154, pp. 213580-213580
Closed Access | Times Cited: 20

Production of Bacterial Exopolysaccharides: Xanthan and Bacterial Cellulose
В. В. Ревин, Elena V. Liyaskina, Marina V. Parchaykina, et al.
International Journal of Molecular Sciences (2023) Vol. 24, Iss. 19, pp. 14608-14608
Open Access | Times Cited: 13

Polysaccharide-infused bio-fabrication: Advancements in 3D bioprinting for tissue engineering and bone regeneration
Aarushi Kaith, Neha Jain, Shreya Kaul, et al.
Materials Today Communications (2024) Vol. 40, pp. 109429-109429
Closed Access | Times Cited: 5

Nature Herbal Medicine‐ Tissue Engineering Strategies for Regulate Cell Homeostasis in Bone Regeneration
Xu Wei, Hao Xie, Can Liu, et al.
Advanced Functional Materials (2025)
Closed Access

Modulation of calcium-influx by carboxymethyl tamarind‑gold nanoparticles promotes biomineralization for tissue regeneration
Abhishek Singh, Satish Kumar, Tusar Kanta Acharya, et al.
International Journal of Biological Macromolecules (2024) Vol. 264, pp. 130605-130605
Closed Access | Times Cited: 3

Montmorillonite-reinforced xanthan gum-based biomaterial enhances biomineralization suitable for bone tissue engineering
Abhishek Singh, Shamit Kumar, Chandan Goswami, et al.
Materials Today Chemistry (2024) Vol. 38, pp. 102067-102067
Closed Access | Times Cited: 2

Deep eutectic solvent-assisted fabrication of bioinspired 3D carbon–calcium phosphate scaffolds for bone tissue engineering
Marcin Wysokowski, Tomasz Machałowski, Joanna Idaszek, et al.
RSC Advances (2023) Vol. 13, Iss. 32, pp. 21971-21981
Open Access | Times Cited: 4

Natural polymers-based surface engineering of bone scaffolds – A review
Krishnamoorthi Sathiya, Srinidhi Ganesamoorthi, S. Mohan, et al.
International Journal of Biological Macromolecules (2024), pp. 136840-136840
Closed Access | Times Cited: 1

Simultaneous folate fortification and pesticide residue degradation in finger millet (Eleusine coracana) via malting and Lactiplantibacillus plantarum-mediated fermentation
Priyadarshini Pratikshya Nayak, Ranjan Das, Sachin Mahanta, et al.
Food Bioscience (2024) Vol. 62, pp. 105429-105429
Closed Access

Functionalized Magnesium Phosphate Cement Induces In Situ Vascularized Bone Regeneration via Surface Lyophilization of Chondroitin Sulfate
Changtian Gong, Jian Yang, Xiping Zhang, et al.
Biomedicines (2023) Vol. 12, Iss. 1, pp. 74-74
Open Access | Times Cited: 1

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