1. M. Barajaa, D. Ghosh, T. Otsuka, H.-M. Kan, C. T. Laurencin, "Development of Porcine Skeletal Muscle Extracellular Matrix-Derived Hydrogels with Improved Properties and Low Immunogenicity," PNAS, 2024.
2. J. Escobar Ivirico, M. Bhattacharjee, C. C. Ude, H.-M. Kan, D. Carey, M. Barajaa, N. Nagian, J. Chapman, C. T. Laurencin, "Type I Collagen/Hyaluronic acid Hydrogels as Delivery System for Adipose-Derived Stem Cells for Osteoarthritis Treatment," Regen. Eng. Transl. Med., 2024.
3. M. A. Barajaa, D. Ghosh, C. T. Laurencin, "Decellularized Extracellular Matrix-derived Hydrogels: A Powerful Class of Biomaterials for Skeletal Muscle Regenerative Engineering Applications," Regen. Eng. Transl. Med., 2023.
4. N. S. Shemshaki, M. A. Barajaa, T. Otsuka, E. S. Mirdamadi, L. S. Nair, C. T. Laurencin, "Electroconductivity, a Regenerative Engineering Approach to Reverse Rotator Cuff Muscle Degeneration," Regenerative Biomaterials, 2023.
5. N. S. Shemshaki, H.-M. Kan, M. A. Barajaa, A. Lebaschi, T. Otsuka, N. Mishra, L. S. Nair, C. T. Laurencin, "Efficacy of a Novel Electroconductive Matrix To Treat Muscle Atrophy and Fat Accumulation in Chronic Massive Rotator Cuff Tears of the Shoulder," ACS Biomater. Sci. Eng., 2023.
6. G. M. Awale, M. A. Barajaa, H.-M. Kan, A. Seyedsalehi, G. H. Nam, F. S. Hosseini, C. C. Ude, T. A. Schmidt, K. W.-H. Lo, C. T. Laurencin, "Regenerative engineering of long bones using the small molecule forskolin," PNAS, 2023.
7. M. A. Barajaa, "Regenerative Engineering Using Novel Hydrogel-based Skeletal Muscle Constructs: from Conception to Regeneration," Ph.D. Dissertation, 2023.
8. N. S. Shemshaki, H.-M. Kan, M. Barajaa, T. Otsuka, A. Lebaschi, N. Mishra, L. S. Nair, C. T. Laurencin, "Muscle degeneration in chronic massive rotator cuff tears of the shoulder: Addressing the real problem using a graphene matrix," PNAS, 2022.
9. G. M. Awale, M. A. Barajaa, H.-M. Kan, K. W.-H. Lo, C. T. Laurencin, "Single-dose induction of osteogenic differentiation of mesenchymal stem cells using a cyclic AMP activator, forskolin," Regen. Eng. Transl. Med., 2022.
10. M. Bhattacharjee, J. L. Escobar Ivirico, H.-M. Kan, S. Shah, T. Otsuka, R. Bordett, M. Barajaa, N. Nagiah, R. Pandey, L. S. Nair, C. T. Laurencin, "Injectable amnion hydrogel mediated delivery of adipose-derived stem cells for osteoarthritis treatment," PNAS, 2022.
11. K. S. Ogueri, K. S. Ogueri, A. McClinton, H.-M. Kan, C. C. Ude, M. A. Barajaa, H. R. Allcock, C. T. Laurencin, "In Vivo Evaluation of the Regenerative Capability of Glycylglycine Ethyl Ester-Substituted Polyphosphazene and Poly(lactic-co-glycolic acid) Blends: A Rabbit Critical-Sized Bone Defect Model," ACS Biomater. Sci. Eng., vol. 7, no. 4, pp. 1564–1572, 2021.
12. A. Seyedsalehi, L. Daneshmandi, M. Barajaa, J. Riordan, C. T. Laurencin, "Fabrication and characterization of mechanically competent 3D printed polycaprolactone-reduced graphene oxide scaffolds," Nature Sci Rep, vol. 10, p. 11739, 2021.
13. X. Tang, N. S. Shemshaki, V. N. Vernekar, A. Prabhath, E. Kuyinu, H.-M. Kan, M. Barajaa, Y. Khan, C. T. Laurencin, "The Treatment of Muscle Atrophy After Rotator Cuff Tears Using Electroconductive Nanofibrous Matrices," Regen. Eng. Transl. Med., 2020.
14. L. Daneshmandi, M. Barajaa, A. Tahmasbi Rad, S. A. Sydlik, C. T. Laurencin, "Graphene‐Based Biomaterials for Bone Regenerative Engineering: A Comprehensive Review of the Field and Considerations Regarding Biocompatibility and Biodegradation," Advanced Healthcare Materials, vol. 9, no. 7, p. 2001414, 2020.
15. P. Y. Mengsteab, J. Freeman, M. A. Barajaa, L. S. Nair, C. T. Laurencin, "Ligament regenerative engineering: Braiding scalable and tunable bioengineered ligaments using a bench-top braiding machine," Regen. Eng. Transl. Med., 2020.
16. M. A. Barajaa, L. S. Nair, C. T. Laurencin, "Robust phenotypic maintenance of limb cells during heterogeneous culture in a physiologically relevant polymeric-based constructed graft system," Nature Sci Rep, vol. 10, p. 11739, 2020.
17. N. Nagiah, M. Bhattacharjee, C. J. Murdock, H.-M. Kan, M. Barajaa, C. T. Laurencin, "Spatial alignment of 3D printed scaffolds modulates genotypic expression in pre-osteoblasts," Materials Letters, vol. 276, p. 1–4, Oct. 2020.
18. M. A. Barajaa, L. S. Nair, C. T. Laurencin, "Bioinspired Scaffold Designs for Regenerating Musculoskeletal Tissue Interfaces," Regen. Eng. Transl. Med., 2019.