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李小康

2025年12月22日 19:01      点击:

李小康 Li Xiaokang 

教授/总裁助理/主任医师



第四军医大学骨外科学博士,现任陕西泰发祥集团有限公司总裁助理,主任 医生。2025 年加入 BEBC担任兼职教授。主要研究方向为骨肿瘤与骨缺损修复、3D 打印个性 假体。已在 Prog Mater Sci Trends CancerBioact. Mater 等国际知名期刊上发表 SCI 论文 13 篇。



研究方向: 骨肿瘤与骨缺损修复、3D 打印个性假体


教育经历:

2019.08-2019.10  美国加州大学洛杉矶分校UCLA ,访问学者

2012.11-2013.01  新加坡南洋理工大学,访问学者

2010.09-2013.07  第四军医大学,骨外科学,博士

2007.09-2010.07  第四军医大学,骨外科学,硕士

2002.09-2007.07  第四军医大学,临床医学,本科生


工作经历:

2024.01-2025.07  唐都医院,主任医师


2021.10-2024.01  唐都医院,副主任医师


2019.01-2021.09  西京医院,副主任医师


2013.07-2018.12  西京医院,主治医师/讲师

代表性著作:


1. Wang H#, Yang Y#, Zhou X#, Tian J#, Duan X, LiA, Lu TJ*, Li X*, Pei D*, Xu F*.Rational design of mechanical bio-metamaterials for biomedical applications. Prog Mater Sci, 2025, 156: 101545.IF 40.00 1 区)

2. Ouyang P,  Cheng  B,  He X*, Lou J*, Li X*,  Guo  H*, Xu  F*. Navigating the biophysical landscape: how physical cues steer the journey of bone metastatic tumor cells. Trends Cancer, 2024, 10: 792-808.IF 17.50 1 区)

3. Wu H#, Wei X#, Liu Y#, Dong H, Tang Z, Wang N, Bao S, Wu Z, ShiL, Zheng X, Li X*,  Guo Z*.  Dynamic degradation patterns of porous polycaprolactone/β-  tricalcium    phosphate composites orchestrate     macrophage    responses    and immunoregulatory bone regeneration. Bioact Mater, 2023, 21: 595-611.IF 20.301 区)

4. Bao S#, Yu D#, Tang Z#, Wu H, Zhang H, Wang N, Liu Y, Huang H, Liu C*, Li X*, Guo Z*. Conformationally regulated “nanozyme-like” cerium oxide with multiple free radical scavenging activities for osteoimmunology modulation and vascularized osseointegratio. Bioact Mater, 2024, 34: 64-79.IF 20.30 1 区)

5. Wei X#, Zhou W#, Tang Z#, Wu H, Liu Y, Dong H, Wang N, Huang H, Bao S, Shi L, Li X*, Zheng Y*, Guo Z*. Magnesium surface-activated 3D printed porous PEEK scaffolds for  in  vivo   osseointegration  by promoting   angiogenesis and osteogenesi. Bioact Mater, 2023, 20: 16-28.IF 20.30 1 区)

6. Wu H#, Dong H#, Tang Z#, Chen Y, Liu Y, Wang M, WeiX, Wang N, Bao S, Yu D, Wu Z, Yang Z, Li X*, Guo Z*,  Shi L*. Electrical  stimulation  of piezoelectric BaTiO3  coated Ti6Al4V scaffolds promotes anti-inflammatory polarization of macrophages and bone repair via MAPK/JNK inhibition and OXPHOS activatio. Biomaterials, 2023, 293: 121990.IF 12.90 1 区)

7. Wang N#, Liu X, Tang Z, WeiX, Dong H, Liu Y, Wu H, Wu Z, Li X*, Ma X*, Guo Z*. Increased BMSC exosomal  miR-140-3p   alleviates  bone   degradation and promotes    bone    restoration     by    targeting     Plxnb1    in     diabetic     rats.    J Nanobiotechnology, 2022, 20: 97.IF 12.60 1 区)

8. Yu D#, Tang Z, Bao S, Guo S, Chen C, Wu Q, Wang M, Zheng Z, Cao P, Xu B, Wu H,  Wang  N, Huang H, Liu   C*,  Li X*,   Guo  Z*.   Immunoregulatory  neuro- vascularized osseointegration driven  by different  nano-morphological   CaTiO3 bioactive coatings on porous titanium alloy scaffolds. Adv Healthc Mater, 2025, 14: 2404647.IF 9.60 2 区)

9. Zheng Z#, Yu D#, Wang H#, Wu H, Tang Z, Wu Q, Cao P, Chen Z, Huang H, Li X*, Liu C*, Guo Z*. Advancement of 3D biofabrication in repairing and regeneration of cartilage defects. Biofabrication, 2025, 17: 022003.IF 8.00 2 区)

10. Tang Z#, Yu D, Bao S, Li C, Wu H, Dong H, Wang N, Liu Y, Wu Q, Chen C, Wang M, Cao P, Zheng Z, Huang H, Li X*, Guo Z*. Porous titanium scaffolds with mechanoelectrical conversion and photothermal function: A winwin strategy for bone reconstruction of tumorresected defects. Adv Healthc Mater, 2024,  13: 2302901.IF 9.60 2 区)

11. Liu W#, Li X#, Jiao Y#, Wu C, Guo S, Xiao X, WeiX, Wu J, Gao P, Wang N, Lu Y, Tang Z, Zhao Q, Zhang J, Tang Y*, Shi L*, Guo Z*. Biological effects of a three- dimensionally   printed   Ti6Al4V   scaffold   coated with piezoelectric BaTiO3 nanoparticles on bone formation. ACS Appl Mater Interfaces, 2020, 12: 51885- 51903.IF 8.20 2 区)

12. Yu D#,  Guo  S#,  Yu M#, Liu  W, Li X, Chen D, Li B*, Guo Z*, Han  Y*. Immunomodulation and osseointegration activities of Na2TiO3 nanorods-arrayed coatings doped with different Sr content. Bioact Mater, 2022, 10: 323-334.IF 20.30 1 区)

13. Jia Y, Feng J, Feng Z, Liu J, Yang Y, Li X, Lei M, Guo H, Wei Z*, LvY*, Xu F*. An endoscopically compatible fast-gelation powder forms Janus-adhesive hydrogel barrier  to  prevent postoperative   adhesions. Proc  Natl  Acad   Sci,  2023,   120: e2219024120IF 9.10 1 区)




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