3D BIOPRINTER YORDAMIDA CHOP ETISH JARAYONIDA YUZAGA KELGAN XATO VA KAMCHILIKLAR VA ULARNI TUZATISH

Mualliflar

  • Mamanazarov Akbar Nizom o’g’li ##default.groups.name.author##

##semicolon##

Kalit so'zlar: Ekstruziya stavkalari,Hujayra hayotiyligi,Qatlamning noto'g'ri joylashishi,Termal nomuvofiqliklar,Regenerativ tibbiyot,Biologik to'qimalar,Mexanik barqarorlik,Kesish stressi,Hujayra o'limi,Reologik xususiyatlar,Real vaqtda monitoring,Adaptiv bosib chiqarish,Kalibrlash protokollari,Bioink formulalari,Termal nazoratmSilliq ekstruziya,Qatlam tizalanishi.

Abstrak

Maqola annotatsiyasi: 3D bioprinting texnologiyasining jadal rivojlanishi regenerativ tibbiyot va to‘qimalar muhandisligida yangi chegaralarni ochib, terapevtik qo‘llanmalar uchun murakkab biologik tuzilmalarni yaratish imkonini berdi. O'zining istiqbolli salohiyatiga qaramay, bioprinting jarayoni o'z-o'zidan bosilgan konstruktsiyalarning yaxlitligi va funksionalligini buzishi mumkin bo'lgan xato va kamchiliklar bilan to'la.

##submission.citations##

1. Gao, Q., et al. (2017). "Challenges in 3D bioprinting: Materials, technologies, and applications." Biomaterials Science, 5(8), 1595–1612.

2. Bertsch, A., et al. (2019). "Current challenges in the use of bioprinting technologies in regenerative medicine." Biofabrication, 11(4), 044103.

3. Mota, C., et al. (2020). "Addressing the challenges of 3D bioprinting for tissue engineering applications." Materials, 13(12), 2752.

4. Zhao, X., et al. (2016). "Bioprinting of 3D tissues and organs." Journal of Industrial Microbiology & Biotechnology, 43(7), 697-711.

5. Ng, W. L., et al. (2016). "Print me an organ! 3D bioprinting technologies in tissue engineering." Biotechnology Advances, 34(4), 741-749.

6. Hollister, S. J., et al. (2019). "Challenges and opportunities for bioprinting in tissue engineering." Annals of Biomedical Engineering, 47(8), 1681-1697.

7. Zhang, Y. S., et al. (2017). "3D bioprinting for tissue and organ fabrication." Annals of Biomedical Engineering, 45(1), 63-72.

8. Feng, X., et al. (2020). "Development and challenges of bioprinting technologies for tissue engineering." Materials Science and Engineering: C, 110, 110577.

9. Zhao, W., et al. (2020). "Optimization of 3D bioprinting parameters for tissue engineering applications." Journal of Materials Science & Technology, 41, 128-134.

10. Kundu, J., et al. (2017). "Bioinks for 3D bioprinting: Recent developments and future perspectives." Biomaterials, 140, 36–56.

11. Shi, J., et al. (2017). "The application of 3D bioprinting in the creation of complex tissue constructs." Biotechnology Journal, 12(4), 1600750.

12. Wu, Y., et al. (2020). "Recent progress in 3D bioprinting: Challenges and future directions." Journal of Biomedical Materials Research Part B: Applied Biomaterials, 108(3), 1590-1606.

13. Lee, A., et al. (2019). "Bioprinting for tissue engineering: A review of recent advances and future perspectives." Progress in Materials Science, 101, 62-74.

14. Zhang, W., et al. (2020). "Bioprinting and its applications in tissue engineering and regenerative medicine." Bioengineering, 7(3), 74.

15. Jiang, L., et al. (2018). "Challenges and solutions in 3D bioprinting of tissues and organs." Journal of Tissue Engineering and Regenerative Medicine, 12(9), 1897-1914.

16. Gao, G., et al. (2019). "Recent advances in 3D bioprinting and its application in tissue engineering." Advanced Drug Delivery Reviews, 148, 126-137.

17. Zhao, M., et al. (2018). "The role of 3D bioprinting in regenerative medicine." Biotechnology Advances, 36(1), 94-108.

Nashr qilingan

2024-12-08

##submission.howToCite##

Mamanazarov Akbar Nizom o’g’li. (2024). 3D BIOPRINTER YORDAMIDA CHOP ETISH JARAYONIDA YUZAGA KELGAN XATO VA KAMCHILIKLAR VA ULARNI TUZATISH. PEDAGOGS, 71(2), 13-16. https://scientific-jl.org/ped/article/view/5071