上海交通大学 生物医学工程学院,上海 200030
林 俐,博士,助理教授,研究方向:深穿透拉曼光谱,小动物活体无创光学成像,E-mail:linli92@sjtu.edu.cn
叶 坚,博士,教授,研究方向:拉曼光谱(表面增强拉曼光谱、缝隙增强拉曼探针)及其生物医学应用,E-mail:yejian78@sjtu.edu.cn
纸质出版日期:2024-01-15,
收稿日期:2023-07-04,
修回日期:2023-08-17,
扫 描 看 全 文
张玉敏,王富,林俐等.生物光学成像技术在组织穿透性方面的研究进展[J].分析测试学报,2024,43(01):19-31.
ZHANG Yu-min,WANG Fu,LIN Li,et al.Advances in Tissue Penetration by Optical Imaging Techniques[J].Journal of Instrumental Analysis,2024,43(01):19-31.
张玉敏,王富,林俐等.生物光学成像技术在组织穿透性方面的研究进展[J].分析测试学报,2024,43(01):19-31. DOI: 10.12452/j.fxcsxb.23070406.
ZHANG Yu-min,WANG Fu,LIN Li,et al.Advances in Tissue Penetration by Optical Imaging Techniques[J].Journal of Instrumental Analysis,2024,43(01):19-31. DOI: 10.12452/j.fxcsxb.23070406.
光学成像因灵敏度高、特异性强、无电离辐射、低成本、丰富的候选探针、可获取细胞/分子水平信息和可实时检测等优势,在临床前的基础研究和临床诊断与治疗领域具有巨大的应用价值。但由于生物组织对光子的高散射与高吸收特性,光学成像的组织穿透深度通常非常有限,很大程度上限制了其在深部病变活体生物医学检测方面的应用,研究者们对此做了大量的努力。随着科学技术的发展,光学技术的组织检测深度已覆盖微米到厘米甚至分米以上的范围,在生物检测、成像、诊断、术中导航等领域展现出了广阔的应用前景。该文从常见的光学成像技术入手,对荧光成像、生物/化学发光成像、光声成像以及拉曼成像在组织穿透性方面的研究进展进行了总结与讨论,并对这些光学成像技术未来在组织穿透方面的主要研究方向进行了展望。
Optical imaging has great potential for application in the field of preclinical basic research and clinical diagnostics and therapeutics,due to its advantages of high sensitivity and specificity,non-ionizing radiation,simplicity of equipment,low cost,rich nanoprobe candidates,ability to obtain cellular/molecular level information and real-time acquisition capability. However,due to the nature of high scattering and absorption of photons in biological tissues,optical imaging is usually limited by the shallow tissue penetration depth,which largely limits its usage for in vivo biomedical detection of deep-seated lesions. A lot of efforts have been done by researchers to overcome this issue. This paper summarizes and discusses the progress of various common optical imaging techniques,such as fluorescence imaging,bioluminescence/chemiluminescence imaging,photoacoustic imaging,and Raman imaging,in terms of their research progress in tissue penetration. With the development of science and technology,the tissue detection depths of optical modalities have covered a range from microns to centimeters or even to decimeters,and have shown broad application prospects in the fields of biological detection,imaging,diagnosis,intraoperative navigation,and so on. Finally,the main directions of future research of these optical imaging techniques in tissue penetration are prospected.
生物光学成像组织穿透性深穿透拉曼光谱
optical imagingtissue penetrationdeep Raman spectroscopy
Wei X B,Gu B B. Optical Imaging in Human Disease and Biological Research. Springer,2021.
Wei R,Jiang G Y,Lv M Q,Tan S W,Wang X Q,Zhou Y,Cheng T,Gao X Q,Chen X,Wang W. Theranostics,2019,9(24):7325.
Fu Z M,Jin Z Y,Zhang C A,He Z Y,Zha Z Z,Hu C Y,Gan T Y,Yan Q L,Wang P,Ye X S. IEEE Access,2021,9:41144-41167.
Zhang C J,Yao J L. J. Light Scattering(张晨杰,姚建林. 光散射学报),2023,35(2):84-96.
Wang C,Tao H Q,Cheng L,Liu Z. Biomaterials,2011,32(26):6145-6154.
Chudakov D M,Matz M V,Lukyanov S,Lukyanov K A. Physiol. Rev.,2010,90(3):1103-1163.
Hong G S,Antaris A L,Dai H J. Nat. Biomed. Eng.,2017,1(1):0010.
Weissleder R,Pittet M J. Nature,2008,452(7187):580-589.
Timoshina P A D,Bashkatov A N,Alexandrov D A,Kochubey V I,Tuchin V V. J. Innov. Opt. Heal. Sci.,2022,15(1):2242002.
Kahle J,Levin R,Niles W,Rasnow B,Schehlein M,Shumate C. J. Assoc. Lab. Autom.,2010,15(5):355-361.
Policard A. Biologue Comptes Rendus,1924,91:1423.
Cai Y,Wei Z,Song C H,Tang C C,Han W,Dong X C. Chem. Soc. Rev.,2019,48(1):22-37.
Resch-Genger U,Grabolle M,Cavaliere-Jaricot S,Nitschke R,Nann T. Nat. Methods,2008,5(9):763-775.
Shaner N C,Steinbach P A,Tsien R Y. Nat. Methods,2005,2(12):905-909.
Liu H J,Deng X Q,Tong S,He C,Cheng H,Zhuang Z W,Gan M Y,Li J,Xie W X,Qiu P,Wang K. Nano Lett.,2019,19(8):5260-5265.
Yelin D,Rizvi I,White W M,Motz J T,Hasan T,Bouma B E,Tearney G J. Nature,2006,443(7113):765.
Li C Y,Zhang Y J,Wang M,Zhang Y,Chen G C,Li L,Wu D M,Wang Q B. Biomaterials,2014,35(1):393-400.
Yang M,Baranov E,Jiang P,Sun F X,Li X M,Li L N,Hasegawa S,Bouvet M,Al-Tuwaijri M,Chishima T. Proc. Natl. Acad. Sci. USA,2000,97(3):1206-1211.
Xu H,Rice B W. J. Biomed. Opt.,2009,14(6):064011.
Van Dam G M,Themelis G,Crane L M A,Harlaar N J,Pleijhuis R G,Kelder W,Sarantopoulos A,De Jong J S,Arts H J,Van Der Zee A G J. Nat. Med.,2011,17(10):1315-1319.
Choi H S,Liu W,Liu F,Nasr K,Misra P,Bawendi M G,Frangioni J V. Nat. Nanotechnol.,2010,5(1):42-47.
Mieog J S D,Troyan S L,Hutteman M,Donohoe K J,Van Der Vorst J R,Stockdale A,Liefers G-J,Choi H S,Gibbs-Strauss S L,Putter H. Ann. Surg. Oncol.,2011,18(9):2483-2491.
Fujiwara M,Mizukami T,Suzuki A,Fukamizu H. J. Plast. Reconstr. Aesthet. Surg.,2009,62(10):e373-e378.
Van Der Vorst J R,Schaafsma B,Verbeek F,Swijnenburg R,Hutteman M,Liefers G,Van De Velde C J,Frangioni J,Vahrmeijer A L. Br. J. Dermatol.,2013,168(1):93-98.
Crane L M A,Themelis G,Arts H J G,Buddingh K T,Brouwers A H,Ntziachristos V,Van Dam G M,Van Der Zee A G J. Gynecol. Oncol.,2011,120(2):291-295.
Hutteman M,Van Der Vorst J R,Gaarenstroom K N,Peters A A,Mieog J S D,Schaafsma B E,Löwik C W,Frangioni J V,Van De Velde C J,Vahrmeijer A L. Am. J. Obstet. Gynecol.,2012,206(1):89. e1-89. e5.
Crane L M A,Themelis G,Pleijhuis R G,Harlaar N J,Sarantopoulos A,Arts H J G,Van Der Zee A G J,Vasilis N,Van Dam G M. Mol. Imaging Biol.,2011,13(5):1043-1049.
Laser Institute of America. ANSI Z136. 3. American National Standard for Safe Use of Lasers in Health Care. New York:American National Standards Institute,2018.
Ntziachristos V,Ripoll J,Wang L V,Weissleder R. Nat. Biotechnol.,2005,23(3):313-320.
Ntziachristos V,Ripoll J,Weissleder R. Opt. Lett.,2002,27(5):333-335.
Weissleder R,Ntziachristos V. Nat. Med.,2003,9(1):123-128.
Ntziachristos V,Weissleder R. Med. Phys.,2002,29(5):803-809.
Ntziachristos V,Weissleder R. Opt. Lett.,2001,26(12):893-895.
Stuker F,Ripoll J,Rudin M. Pharmaceutics,2011,3(2):229-274.
Ntziachristos V,Tung C H,Bremer C,Weissleder R. Nat. Med.,2002,8(7):757-761.
Schulz R B,Ripoll J,Ntziachristos V. IEEE Trans. Med. Imaging,2004,23(4):492-500.
Deliolanis N,Lasser T,Hyde D,Soubret A,Ripoll J,Ntziachristos V. Opt. Lett.,2007,32(4):382-384.
Mccann C M,Waterman P,Figueiredo J L,Aikawa E,Weissleder R,Chen J W. NeuroImage,2009,45(2):360-369.
Wang K,Wang Q,Luo Q M,Yang X Q. Opt. Express,2015,23(10):12669-12679.
Liu C C,Wang X X,Liu J K,Yue Q,Chen S J,Lam J W,Luo L,Tang B Z. Adv. Mater.,2020,32(43):2004685.
Li X Z,Yin C,Liew S S,Lee C S,Pu K Y. Adv. Funct. Mater.,2021,31(46):2106154.
Contag C H,Bachmann M H. Annu. Rev. Biomed. Eng.,2002,4(1):235-260.
Hutchens M,Luker G D. Cell. Microbiol.,2007,9(10):2315-2322.
Akimoto H,Kwon H J,Ozaki M,Yasuda K,Honma K I,Ohmiya Y. Biochem. Biophys. Res. Commun.,2009,380(4):844-849.
Badr C E,Tannous B A. Trends Biotechnol.,2011,29(12):624-633.
Gu X J,Zhang Q Z,Larcom L,Jiang H B. Opt. Express,2004,12(17):3996-4000.
Wang G,Li Y,Jiang M. Med. Phys.,2004,31(8):2289-2299.
Wang G,Cong W X,Durairaj K,Qian X,Shen H O,Sinn P,Hoffman E,Mclennan G,Henry M. Opt. Express,2006,14(17):7801-7809.
Attia A B E,Balasundaram G,Moothanchery M,Dinish U,Bi R,Ntziachristos V,Olivo M. Photoacoustics,2019,16:100144.
Li L,Wang L V. BME Front.,2021,2021:9823268.
Wang L V,Hu S. Science,2012,335(6075):1458-1462.
Xia J,Yao J J,Wang L V. Electromagn. Waves(Camb.),2014,147:1-22.
Xia J,Chatni M R,Maslov K I,Guo Z J,Wang K,Anastasio M A,Wang L V. J. Biomed. Opt.,2012,17(5):050506.
Kim C,Erpelding T N,Jankovic L,Pashley M D,Wang L V. Biomed. Opt. Express,2010,1(1):278-284.
Yao J J,Maslov K I,Puckett E R,Rowland K J,Warner B W,Wang L V. Opt. Lett.,2012,37(4):659-661.
Zhou Y,Wang D P,Zhang Y M,Chitgupi U,Geng J M,Wang Y H,Zhang Y Z,Cook T R,Xia J,Lovell J F. Theranostics,2016,6(5):688.
Moura C C,Tare R S,Oreffo R O,Mahajan S. J. R. Soc. Interface,2016,13(118):20160182.
Lee S Y,Heller E J. The Journal of Chemical Physics,1979,71(12):4777-4788.
Heller E J,Sundberg R,Tannor D. The Journal of Physical Chemistry,1982,86(10):1822-1833.
Long D A. The Raman Effect:A Unified Treatment of the Theory of Raman Scattering by Molecules. Chichester:Wiley,2002:31-48.
Weber W H,Merlin R. Raman Scattering in Materials Science. Berlin:Springer Science & Business Media,2013.
Peng M S,Feng W W,Cao Q,Hu Y,Chen Y M,Wang D N. J. Light Scattering(彭曼舒,冯伟伟,曹骐,胡银,陈云明,王定娜. 光散射学报),2022,34(1):85-94.
Wang Y W,Reder N P,Kang S,Glaser A K,Liu J T. Nanotheranostics,2017,1(4):369.
Durrant B,Trappett M,Shipp D,Notingher I. Curr. Opin. Chem. Biol.,2019,51:138-145.
Pang S,Yang T X,He L L. TrAC,Trends Anal. Chem.,2016,85(A):73-82.
Zhao J W,Ma J L,Hao R,Li L W,Li Y G,Fang J X. J. Light Scattering(赵家炜,马建乐,郝锐,李铃薇,李永高,方吉祥. 光散射学报),2021,33(2):112-128.
Zong C,Xu M X,Xu L J,Wei T,Ma X,Zheng X S,Hu R,Ren B. Chem. Rev.,2018,118(10):4946-4980.
Lin L,Bi X Y,Gu Y Q,Wang F,Ye J. J. Appl. Phys.,2021,129(19):191101.
Kneipp J,Kneipp H,Kneipp K. Chem. Soc. Rev.,2008,37(5):1052-1060.
Khlebtsov N G,Lin L,Khlebtsov B N,Ye J. Theranostics,2020,10(5):2067-2094.
Harmsen S,Huang R,Wall M A,Karabeber H,Samii J M,Spaliviero M,White J R,Monette S,O’connor R,Pitter K L. Sci. Transl. Med.,2015,7(271):271ra7.
Bao Z Z,Zhang Y Q,Tan Z Y,Yin X,Di W,Ye J. Biomaterials,2018,163:105-115.
Qiu Y Y,Zhang Y Q,Li M W,Chen G X,Fan C C,Cui K,Wan J B,Han A,Ye J,Xiao Z Y. ACS Nano,2018,12(8):7974-7985.
Nicolson F,Kircher M F,Stone N,Matousek P. Chem. Soc. Rev.,2021,50(1):556-568.
Lane L A,Xue R,Nie S. Curr. Opin. Chem. Biol.,2018,45:95-103.
Matousek P,Stone N. Chem. Soc. Rev.,2016,45(7):1794-1802.
Matousek P,Stone N. Analyst,2009,134(6):1058-1066.
Matousek P,Clark I P,Draper E R C,Morris M D,Goodship A E,Everall N,Towrie M,Finney W F,Parker A W. Appl. Spectrosc.,2005,59(4):393-400.
Ting Z,Yang L,Jun W,En-Liang W,Feng X. Spectrosc. Spect. Anal.,2019,39(4):997-1004.
Asiala S M,Shand N C,Faulds K,Graham D. ACS Appl. Mater. Interfaces,2017,9(30):25488-25494.
Sharma B,Ma K,Glucksberg M R,Van Duyne R P. J. Am. Chem. Soc.,2013,135(46):17290-17293.
Zhang Y M,Lin L,He J,Ye J. J. Innov. Opt. Heal. Sci.,2021,14(4):2141001.
Nicolson F,Jamieson L E,Mabbott S,Plakas K,Shand N C,Detty M R,Graham D,Faulds K. Chem. Sci.,2018,9(15):3788-3792.
Berry M E,Mccabe S M,Shand N C,Graham D,Faulds K. Chem. Commun.,2022,58(11):1756-1759.
Nicolson F,Andreiuk B,Andreou C,Hsu H-T,Rudder S,Kircher M F. Theranostics,2019,9(20):5899.
Matousek P,Stone N. J. Biomed. Opt.,2007,12(2):024008.
Mosca S,Conti C,Stone N,Matousek P. Nat. Rev. Methods Primers,2021,1(1):21.
Matousek P,Parker A W. J. Raman Spectrosc.,2007,38(5):563-567.
Matousek P. Appl. Spectrosc.,2007,61(8):845-854.
Aina A,Hargreaves M D,Matousek P,Burley J C. Analyst,2010,135(9):2328-2333.
Xie H N,Stevenson R,Stone N,Hernandez-Santana A,Faulds K,Graham D. Angew. Chem. Int. Ed.,2012,51(34):8509-8511.
Stone N,Kerssens M,Lloyd G R,Faulds K,Graham D,Matousek P. Chem. Sci.,2011,2(4):776-780.
Dey P,Vaideanu A,Mosca S,Salimi M,Gardner B,Palombo F,Uchegbu I,Baumberg J,Schatzlein A,Matousek P,Stone N. Nanotheranostics,2022,6(3):337-349.
Zhang Y M,Chen R Y,Liu F G,Miao P,Lin L,Ye J. Small Methods,2023,7(2):2201334.
He H Q,Zhang Y M,Zhu S,Ye J,Lin L. J. Phys. Chem. C,2022,126(30):12575-12581.
Bashkatov A N,Genina E A,Tuchin V V. J. Innov. Opt. Heal. Sci.,2011,4(1):9-38.
Yu Z P,Li H H,Zhong T T,Park J H,Cheng S F,Woo C M,Zhao Q,Yao J,Zhou Y Y,Huang X Z,Pang W R,Yoon H,Shen Y C,Liu H L,Zheng Y J,Park Y K,Wang L V,Lai P X. The Innovation,2022,3(5):100292.
Zhang Y M,Lin L,Ye J. View,2023:20230022.
Wu Z Y,Deng B G,Zhou Y T,Xie H Q,Zhang Y M,Lin L,Ye J. Adv. Sci.,2023:2301721.
Wirth D J,Sibai M,Wilson B C,Roberts D W,Paulsen K. Biomed. Opt. Express,2020,11(8):4306-4315.
0
浏览量
35
下载量
0
CSCD
关联资源
相关文章
相关作者
相关机构