張琦(蘇州大學放射醫學與防護學院教授)

張琦(蘇州大學放射醫學與防護學院教授)

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張琦,男,博士,教授,任職於蘇州大學放射醫學與防護學院。2004年本科畢業於四川大學,後保送至天津大學讀研,於2010年獲天津大學博士學位;曾在2008年於美國明尼蘇達大學(University of Minnesota, Twin Cities)留學一年,在2010-2012年於中科院蘇州納米技術與納米仿生所從事博士後研究,2012年入職蘇州大學。作為項目負責人主持國家自然科學基金面上項目、國防縱向項目、江蘇省自然科學基金社會發展項目等20餘項,作為主要參與人參加國家重點研發計畫、國家自然科學基金重點項目等多項。主要從事幹細胞的輻射損傷修復作用、藥物的結構設計和放射增敏機制、生物影像套用等研究,獲國家發明專利二十餘項,已在Nano Lett、Adv. Mater、ACS NanoBiomaterials、Anal Chem等學術期刊發表SCI論文50餘篇,論文總引用3000餘次,多次榮獲省部級科研獎勵,並多次獲蘇州大學“教學先進個人”稱號。

基本介紹

研究方向,科研獲獎,教學成果,學術兼職和學術報告,人物論著,代表性論著,代表性專著,授權專利,

研究方向

1. 外源刺激調控幹細胞的輻射損傷救治作用
幹細胞是一種具有自我更新和定向分化潛能的細胞,在輻射損傷救治領域具有廣闊的套用前景。將柔性無機納米纖維同殼聚糖溶液經過均質分散 冷凍乾燥後製備出具有自展開性能的納米纖維/殼聚糖三維柔性支架,可促進血管生成和骨質疏鬆性骨缺損修復;石墨烯支架可促進人間充質幹細胞粘附和向成骨細胞分化,調控炎症反應,採用細菌纖維素納米纖維增強泡沫狀石墨烯材料的柔韌性,製備具有細菌纖維素疏密梯度結構的複合材料,做為皮膚敷料可用於放射性皮膚損傷等創傷修復;以細菌纖維素為模板,製備硫化鉍雜化的細菌纖維素液相懸浮支架,誘導幹細胞聚集成球培養,可促進放射性肺損傷的組織修復;幹細胞支架材料在退行性疾病、輻射損傷救治等領域展現出巨大的套用潛力。
2. 多功能藥物載體的結構設計和放射增敏機制
多功能納米顆粒將各種功能集成到單一體系中,從而實現多種模式成像,提高疾病的診斷和治療效果。將金納米簇和吲哚菁綠(ICG)共同負載於聚合物納米球,同時實現了對腫瘤細胞單光子/雙光子/光聲成像和光熱治療功能;設計合成了新型的釕多吡啶化合物,可同時實現腫瘤螢光成像和放射增敏治療,放射敏感性機制可能與其結合DNA、經MAPK信號通路加重輻射誘導的DNA損傷有關;製備新型的銥螢光化合物,不僅可用於腫瘤放射增敏藥物,還可負載於聚合物微球,用於幹細胞體內追蹤和損傷修復。多功能納米材料為開發高效疾病診斷和治療製劑提供了技術手段。

科研獲獎

核輻射預警與放射損傷救治新技術,科學技術三等獎,2023年度華夏醫學科技獎(5/9),2023
預防醫學科技獎二等獎,江蘇省預防醫學會(2/9),2023
預防醫學科技獎二等獎,蘇州市預防醫學會(2/9),2021
科技進步二等獎,中國輻射防護學會(6/8),2022

教學成果

全國大學生生命科學競賽(創新創業類),2024年度:學生團隊,錢書帆、陳琳、王晶晶、潘胥傑、宋禕一等,國二等獎;2022年度:學生團隊,董昕怡、季藝、張晨等,國二等獎
江蘇大學生創新大賽,2024年度:學生團隊,錢書帆、陳琳、王晶晶、宋禕一、劉思佳等,省二等獎;學生團隊,錢書帆、陳琳、王晶晶、宋禕一、劉思佳、孫文釗、陳馨蕊、胡康碩、韋俊華、張澤堃、彭麗紅、金一諾,省二等獎;
江蘇省 “網際網路+”大學生創新創業大賽,第九屆:學生團隊,董昕怡、時雨,周天頤等,省二等獎;第八屆:學生團隊,董昕怡、季藝、時雨等,省二等獎;第七屆,學生團隊,邵文珺、江源、徐明嘉等,省二等獎;第六屆:學生團隊,邵文珺、徐英、江源、徐明嘉等,省二等獎;
“蘇州大學教學先進個人”稱號,2021年度,2022年度;蘇州大學大學生創新大賽 – “優秀指導教師”稱號,2024年度

學術兼職和學術報告

  1. 青年委員,中華醫學會放射醫學與防護分會,2024-2029
  2. 常務委員,江蘇省預防醫學會放射衛生專委會,2021.8-2026.8
  3. 期刊編輯,International Journal of Molecular Sciences (IF 4.9),2024
  4. 分會主持,2020年常州放療年會,常州,2020.11.
  5. 納米纖維材料在生物醫學中的套用,邀請報告,中國江蘇生物材料創新發展高峰論壇,南京,2018.11.
  6. Tracking nanoparticles by using digestive endoscopy.邀請報告,江蘇省第二屆消化內鏡會議,徐州,2017.10.

人物論著

代表性論著

  1. Lu X, Liu Z, Jia Q, Wang Q,Zhang Q*, Li X*, Yu J, Ding B*. Flexible bioactive glass nanofiber-based self-expanding cryogels with superelasticity and bioadhesion enabling hemostasis and wound healing.ACS Nano 2023, 17: 11507-11520. (一區,IF 16)
  2. Wang L, Qiu Y, Guo Y, Si Y, Liu L, Cao J, Yu J, Li X*,Zhang Q*, Ding B*. Smart, elastic, and nanofiber-based 3D scaffolds with self-deploying capability for osteoporotic bone regeneration.Nano Lett 2019, 19: 9112-9120. (一區,IF 12.262)
  3. Song Q, Pifferi S, Shi L, Chen C, Proietti Zaccaria R, Menini A, Cao J,Zhang Q*, Torre V*. Textured nanofibrils drive microglial phenotype.Biomaterials, 2020, 257: 120177. (一區,IF 15.304)
  4. Sun Q, Chen W,Zhang Q, Han Y, Gao Y, Ye J, Wang H, Zhang Y, Gao L, Liu Y*, Yang Y*. A pH transformable nanocarrier for gradual and precise delivery of a natural immunomodulator and chemotherapy agent to trigger tumor apoptosis.Chem Eng J, 2024, 495: 153209. (一區,IF 13)
  5. Shi L, Lv H, Chen C*, Cui F, Zhang L, Cao J, Proietti Zaccaria R,Zhang Q*, Sun D*. Regulation of gut microbiome with redox responsible bacterial cellulose hydrogel for precision chemo-radiotherapy of intestinal cancer.Chem Eng J, 2022, 446: 137340. (一區,IF 13)
  6. Zhang H*, Man B,Zhang Q*. Topological crystalline insulator SnTe/Si vertical heterostructure photodetectors for high-performance near-infrared detection.ACS Appl Mater Interfaces 2017, 9: 14067-14077. (一區,IF 10.383)
  7. Chen C, Zhang T,Zhang Q*, Chen X, Zhu C, Xu Y, Yang J, Liu J, Sun D*. Biointerface by cell growth on graphene oxide doped bacterial cellulose/poly(3, 4-ethylenedioxythiophene) nanofibers.ACS Appl Mater Interfaces. 2016, 8: 10183-10192. (一區,IF 10.383)
  8. Zhou Y*, Xu Y, Lu L, Ni J, Nie J, Cao J, Jiao Y*,Zhang Q*, Luminescent ruthenium(II) polypyridyl complexes acted as radiosensitizer for pancreatic cancer by enhancing radiation-induced DNA damage,Theranostics, 2019, 9: 6665-6675. (一區,IF 11.6)
  9. He X, Xue J, Shi L, Kong Y, Zhan Q, Sun Y*,Zhang Q*, Ramakrishna S*, Dai Y*. Recent antioxidative nanomaterials toward wound dressing and disease treatment via ROS scavenging.Mater Today Nano, 2022, 17: 100149. (一區,IF 13.364)
  10. Zhang T, Li N, Li K, Gao R, Gu W, Wu C, Su R, Liu L,Zhang Q*, Liu J*. Enhanced proliferation and osteogenic differentiation of human mesenchymal stem cells on biomineralized 3D graphene foams.Carbon. 2016, 105: 233-243. (一區,IF 11.307)
  11. Zhang Q, Li W, Kong T, Su R, Li N, Song Q, Tang M, Liu L, Cheng G*. Tailoring the interlayer interaction between doxorubicin-loaded graphene oxide nanosheets by controlling the drug content.Carbon 2013, 51: 164-172. (一區,IF 11.307)
  12. Zhao Q, Zhou Y, Li Y, Gu W,Zhang Q*, Liu J*. Luminescent iridium(III) complex labeled DNA for graphene oxide-based biosensors.Anal Chem. 2016, 88: 1892-1899. (一區,IF 8.008)
  13. Li J,Zhang Q, Liu F, Su L, Zhang H*. Ultrasensitive and self-powered SnSe/Ge heterojunction photodetector driven by spontaneously interfacial excitation transfer of carriers.Adv Mater Interfaces, 2022: 2201624. (二區,IF 6.389)
  14. Si G, Liu F, Su L, Wu Z,Zhang Q*, Sun S, Zhang H*. Photogating enhanced photodetectors dominated by rubrene nanodots modified SnS2 films.2D Materials, 2024, 11: 025002. (二區,IF 5.5)
  15. Zhang Q, Han Y, Wang W, Song T, Chang J*. A theoretical and experimental investigation of the size distribution of polystyrene microspheres by seeded polymerization. J Colloid Interf Sci. 2010; 342: 62-67. (二區,IF 9.965)
  16. Zhang Q, Nie J, Xu H, Qiu Y, Li X*, Gu W, Tang G, Luo J*. Fluorescent microspheres for one-photon and two-photon imaging of mesenchymal stem cells.J Mater Chem B 2017, 5: 7809-7818. (# equal contribution,一區,IF 7.571)
  17. Xu H, Qiu Y, Xiong Z, Shao W,Zhang Q*, Tang G*. Tracking mesenchymal stem cells with Ir(III) complex-encapsulated nanospheres in cranium defect with postmenopausal osteoporosis.Mater Sci Eng C, 2021, 122: 111842. (一區,IF 8.457)
  18. Guo R, Li J, Chen C, Xiao M, Liao M, Hu Y, Liu Y, Li D, Zou J, Sun D, Torre V,Zhang Q*, Chai R*, Tang M*. Biomimetic 3D bacterial cellulose-graphene foam hybrid scaffold regulates neural stem cell proliferation and differentiation.Colloids Surf, B, 2021, 200: 111590. (二區,IF 6.0,高被引論文)
  19. Gu W,Zhang Q, Zhang T, Li Y, Xiang J, Peng R, Liu J. Hybrid polymeric nano-capsules loaded with gold nanoclusters and indocyanine green for dual-modal imaging and photothermal therapy.J Mater Chem B. 2016, 4, 910-919. (# equal contribution,一區,IF 7.571)
  20. Zhang Q, Xu J, Song Q, Li N, Zhang Z, Li K, Du Y, Wu L, Tang M, Liu L, Cheng G*, Liu J*. Synthesis of amphiphilic rGO with enhanced charge injection capacity for electrical stimulation of neural cells.J. Mater. Chem. B. 2014, 2: 4331-4337. (一區,IF 7.571)
  21. Li D, Yan X, Hu Y, Liu Y, Guo R, Liao M, Shao B, Tang Q, Guo X, Chai R*,Zhang Q*, Tang M*. Two-photon image tracking of NSCs via iridium complexes encapsulated in polymeric nanospheres.ACS Biomater. Sci. Eng.2019, 5(3): 1561-1568. (二區,IF 5.395)
  22. Liang Z, Guan T,Zhang Q, Shao W, Chen J, Zheng J, Li D, Abdulhalim I, Jiang L. Double-sided asymmetric surface modification of ZnO interfacial layer to enhance performance in organic solar cells.Appl Phys Lett. 115, 091604, 2019. (二區,IF 3.971)
  23. Zhang Q, Srinivasan B, Li Y, Jing Y, Xing C, Chang J*, Wang J-P*. A new and facile method for measurement of apparent density of monodisperse polymer beads.Talanta 2010; 80: 1681-1685.(一區,IF 6.556)
  24. Li N,Zhang Q, Gao S, Song Q, Huang R, Wang L, Liu L, Dai J, Tang M, Cheng G*. Three-dimensional graphene foam as a biocompatible and conductive scaffold for neural stem cells.Sci. Rep., 2013,3, 1604. (# equal contribution,二區,高被引論文,引用700餘次,IF 4.997,該文被《中國科學報》報導)
  25. Zhang Q, Han Y, Wang W, Zhang L, Chang J*. Preparation of fluorescent polystyrene microspheres by gradual solvent evaporation method.Eur Polym J.2009; 45: 550-556. (一區,IF 5.546)
  26. Zhang Q, Su R, Wang J-P,Zhang Q*. Influence of magnetic Fe3O4 nanoparticles on fluorescence quenching of dye molecules.J. Nanosci. Nanotechnol. 2016, 16: 7427-7432. (三區,IF 1.134)
  27. Feng Y, Yuan P, Guo H, Gu L, Yang Z, Wang J, Zhu W,Zhang Q, Cao J, Wang L, Jiao Y. METTL3 mediates epithelial–mesenchymal transition by modulating FOXO1 mRNA N-methyladenosine-dependent YTHDF2 binding: A novel mechanism of radiation-induced lung injury.Adv Sci. 2023, 10: 2204784. (IF 15.4)
  28. Xiao M, Li X, Song Q,Zhang Q, Lazzarino M, Cheng G, Ulloa Severino FP, Torre V. A fully 3D interconnected G-CNT web allows the study of glioma infiltration in bioengineered 3D cortex-like networks.Adv. Mater. 2018, 0: 1806132. (一區,IF 32.086)
  29. Li N, Zhang X, Song Q, Su R,Zhang Q, Kong T, Liu L, Jin G, Tang M, Cheng G*. The promotion of neurite sprouting and outgrowth of mouse hippocampal cells in culture by graphene substrates.Biomaterials 2011, 32: 9374-9382. (一區,高被引論文,引用500餘次,IF 15.304)
  30. Kong T, Su R, Zhang B,Zhang Q, Cheng G*. CMOS-compatible, label-free silicon-nanowire biosensors to detect cardiac troponin I for acute myocardial infarction diagnosis.Biosens Bioelectron. 2012, 34: 267-272. (一區,引用100餘次,IF 12.545)
  31. Xue J, Yu C, Sheng W, Zhu W, Luo J,Zhang Q, Yang H, Cao H, Wang W, Zhou J, Wu J, Cao P, Chen M, Ding W-Q, Cao J, Zhang S. The Nrf2/GCH1/BH4 axis ameliorates radiation-induced skin injury by modulating the ROS cascade.J Invest Dermatol. 2017, 137: 2059-2068. (一區,IF 7.59)
  32. Yu C, Jiao Y, Xue J,Zhang Q, Yang H, Xing L, Chen G, Wu J, Zhang S, Zhu W, Cao J. Metformin sensitizes non-small cell lung cancer cells to an epigallocatechin-3-gallate (EGCG) treatment by suppressing the Nrf2/HO-1 signaling pathway.Int J Biol Sci. 2017, 13: 1560-1569. (一區,IF 10.75)
  33. Gong X,Zhang Q, Cui Y, Zhu S, Su W, Yang Q, Chang J*. A facile method to prepare high-performance magnetic and fluorescent bifunctional nanocomposites and their preliminary application in biomolecule detection.J Mater Chem B. 2013, 1: 2098-2106. (一區,IF 7.571)
  34. Song T, Zhang Q, Lu C, Gong X, Yang Q, Li Y, Liu J, Chang J*. Structural design and preparation of high-performance QD-encoded polymer beads for suspension arrays. J Mater Chem. 2011; 21: 2169-2177. (一區, IF 6.6)
  35. Cao J, Zhu W, Yu D, Pan L, Zhong L, Xiao Y, Gao Y, Jiao Y, Zhang Q, Ji J, Yang H, Zhang S, Cao J. The involvement of SDF-1α/CXCR4 axis in radiation-induced acute injury and fibrosis of skin. Radiat Res 2019; 192: 410-421. (三區,IF 3.4)

代表性專著

  1. LncRNA實驗指南,廈門大學出版社,副主編,2018
  2. 納米材料專業實驗,廈門大學出版社,編者,2017

授權專利

  1. 張琦、邱裕友、邵文珺、肖燦、曹若琪、湯光宇、焦暘、曹建平,Three-dimensional porous graphene foam material to prepare bone defect filler,美國專利授權號USP 11862786B2
  2. 張琦,石琳,張舒羽,陳春濤,孫東平,朱巍,余道江,曹建平,纖維素接枝改性水凝膠及其製備方法、藥物纖維素水凝膠及套用,中國,ZL 202210542541.1
  3. 張琦、朱巍、張舒羽、郝麗娟,吸氡抗輻射塗料及其製備方法和套用,中國,ZL 201710670861.4
  4. 張琦、郝麗娟、朱巍、張舒羽,炫彩石墨烯量子點塗料及其製備方法和套用,中國,ZL 201710670859.7
  5. 張琦、張舒羽、朱巍、郝麗娟,抗腐蝕石墨烯工業塗料及其製備方法和套用,中國,ZL 201710890769.9
  6. 張琦、徐王磊、邱裕友、張舒羽、曹建平、張婷、徐虹、湯光宇,礦化三維多孔石墨烯材料在製備骨缺損填充物中的套用,中國,ZL 201610453656.8
  7. 張琦、王文潔、唐志成、唐明正、張舒羽,一種微球分離裝置及其分離方法,中國,ZL 201610595495.6
  8. 羅居東,張琦,邱裕友,張舒羽,宋琴,湯光宇,曹建平,蔣華, Soft neural electrode based on three-dimensional porous graphene foam material and use of three-dimensional porous graphene foam material to prepare bone defect filler,美國專利授權號:US 11145850B2
  9. 劉梓瑞、王晶、張玉珊、李嫄淵、焦暘、曹建平、祁小飛、張琦,石墨烯增強水凝膠、石墨烯增強水凝膠細菌載體及製備方法和套用,發明專利授權號:ZL 202110416280.4
  10. 邵文珺、陸儉、江源、徐明嘉、董昕怡、崔丹、肖燦、曹建平、張琦,幹細胞分泌物及其製備方法、生物活性骨水泥及製備方法和套用,發明專利授權號:ZL 202110264145.2
  11. 張琦、邵文珺、徐明嘉、江源、董昕怡、肖燦、陸儉、崔鳳梅、曹建平,生物活性組合物及其製備方法和套用,發明專利授權號:ZL 202110264906.4
  12. 張琦、曹若琪、張玉珊、王晶、劉梓瑞、李嫄淵、焦暘、朱巍、曹建平、祁小飛,硒化鉍水凝膠、硒化鉍水凝膠細菌載體及製備方法和套用,發明專利授權號:ZL 202110416279.1
  13. 程國勝*、張琦、李寧、宋琴、徐駿、杜瑜揚、唐明亮、齊琳、王龍、姜自雲、劉立偉,用於細胞培養的載體及其製備方法,中國,ZL 201210364420.9
  14. 程國勝*、張琦、宋琴、李寧、唐明亮、蘇瑞鞏、孔濤、齊琳,氧化石墨烯的還原方法,中國,ZL 201110267832.6
  15. 常津*,張琦,蘇光雷,王偉財,宋正孝,可控固化硫酸鈣骨粘合劑及其製備方法,中國,ZL 200610014733.6

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