集成DNA分子机器的微针贴片用于细胞外三磷酸腺苷原位监测

闫璐 李晓丹 肖明书 裴昊

引用本文: 闫璐, 李晓丹, 肖明书, 裴昊. 集成DNA分子机器的微针贴片用于细胞外三磷酸腺苷原位监测[J]. 分析化学, 2022, 50(4): 516-524. doi: 10.19756/j.issn.0253-3820.221101 shu
Citation:  YAN Lu,  LI Xiao-dan,  XIAO Ming-shu,  PEI Hao. DNA Molecular Machine-Integrated Microneedle Patches for in Situ Monitoring of Extracellular Adenosine Triphosphate[J]. Chinese Journal of Analytical Chemistry, 2022, 50(4): 516-524. doi: 10.19756/j.issn.0253-3820.221101 shu

集成DNA分子机器的微针贴片用于细胞外三磷酸腺苷原位监测

    通讯作者: 裴昊,E-mail:peihao@chem.ecnu.edu.cn
  • 基金项目:

    中国博士后科学基金项目(Nos.2020TQ0097,2021M701212)资助

    国家自然科学基金项目(Nos.22074041,22104038)

摘要: 细胞外三磷酸腺苷(ATP)作为信号分子参与一系列生理过程,其代谢异常与很多疾病(如炎症和感染性疾病等)的发生密切相关。发展胞外ATP的原位检测方法对于阐明相关疾病的发病机理及临床诊断具有重要意义。本研究制备了集成DNA分子机器的微针贴片。此微针贴片具有快速溶胀特性,在水溶液中可实现对ATP原位采样;集成的DNA分子机器在ATP驱动下行走,可实现荧光信号放大。将此微针贴片分析系统用于ATP传感,具有宽的检测范围(1~500μmol/L)、低检出限(1μmol/L)和良好的选择性。将此微针贴片分析系统直接用于原位监测0.1 mol/L K+刺激下活细胞分泌的ATP,测得浓度为(10.9±1.6)μmol/L,与相关文献报道结果一致。本研究为细胞外ATP原位监测提供了一个有效的分析平台。

English


    1. [1]

      ROBINSON D L, HERMANS A, SEIPEL A T, WIGHTMAN R M. Chem. Rev., 2008, 108(7):2554-2584.ROBINSON D L, HERMANS A, SEIPEL A T, WIGHTMAN R M. Chem. Rev., 2008, 108(7):2554-2584.

    2. [2]

      QIAN Y R, WANG X, LI Y S, CAO Y Y, CHEN X Z. Mol. Cancer Res., 2016, 14(11):1087-1096.QIAN Y R, WANG X, LI Y S, CAO Y Y, CHEN X Z. Mol. Cancer Res., 2016, 14(11):1087-1096.

    3. [3]

      BURNSTOCK G. Physiol. Rev., 2007, 87(2):659-797.BURNSTOCK G. Physiol. Rev., 2007, 87(2):659-797.

    4. [4]

      JUNGER W G. Nat. Rev. Immunol., 2011, 11(3):201-212.JUNGER W G. Nat. Rev. Immunol., 2011, 11(3):201-212.

    5. [5]

      IDZKO M, FERRARI D, ELTZSCHIG H K. Nature, 2014, 509(7500):310-317.IDZKO M, FERRARI D, ELTZSCHIG H K. Nature, 2014, 509(7500):310-317.

    6. [6]

      ELLIOTT M R, CHEKENI F B, TRAMPONT P C, LAZAROWSKI E R, KADL A, WALK S F, PARK D,WOODSON R I, OSTANKOVICH M, SHARMA P, LYSIAK J J, HARDEN T K, LEITING N, RAVICHANDRAN K S. Nature, 2009, 461(7261):282-286.ELLIOTT M R, CHEKENI F B, TRAMPONT P C, LAZAROWSKI E R, KADL A, WALK S F, PARK D,WOODSON R I, OSTANKOVICH M, SHARMA P, LYSIAK J J, HARDEN T K, LEITING N, RAVICHANDRAN K S. Nature, 2009, 461(7261):282-286.

    7. [7]

      DI V F, ADINOLFI E. Oncogene, 2017, 36(3):293-303.DI V F, ADINOLFI E. Oncogene, 2017, 36(3):293-303.

    8. [8]

      BEIGI R, KOBATAKE E, AIZAWA M, DUBYAK G R. Am. J. Physiol.:Cell Physiol., 1999, 276(1):C267-C278.BEIGI R, KOBATAKE E, AIZAWA M, DUBYAK G R. Am. J. Physiol.:Cell Physiol., 1999, 276(1):C267-C278.

    9. [9]

      MA Y, GENG F H, WANG Y X, XU M T, SHAO C Y, QU P, ZHANG Y T, YE Y T. Biosens. Bioelectron., 2019, 134:36-41.MA Y, GENG F H, WANG Y X, XU M T, SHAO C Y, QU P, ZHANG Y T, YE Y T. Biosens. Bioelectron., 2019, 134:36-41.

    10. [10]

      HECHT E, LIEDERT A, IGNATIUS A, MIZAIKAOFF B, KRANZ C. Biosens. Bioelectron., 2013, 44:27-33.HECHT E, LIEDERT A, IGNATIUS A, MIZAIKAOFF B, KRANZ C. Biosens. Bioelectron., 2013, 44:27-33.

    11. [11]

      ZILLER C, LIN J, KNITTEL P, FRIEDRICH K, ANDRONESCU C, POLLER S, SCHUHMANN W, KRANZ C.ChemElectroChem, 2017, 4(4):864-871.ZILLER C, LIN J, KNITTEL P, FRIEDRICH K, ANDRONESCU C, POLLER S, SCHUHMANN W, KRANZ C.ChemElectroChem, 2017, 4(4):864-871.

    12. [12]

      KUCHERENKO I S, DIDUKH D Y, SODATKIN O O, SOLDATKIN A P. Anal. Chem., 2014, 86(11):5455-5462.KUCHERENKO I S, DIDUKH D Y, SODATKIN O O, SOLDATKIN A P. Anal. Chem., 2014, 86(11):5455-5462.

    13. [13]

      HAMZAH A A, ABD A N, MAJLIS B Y, YUNAS J, DEE C F, BAIS B. J. Micromech. Microeng., 2012, 22(9):095017.HAMZAH A A, ABD A N, MAJLIS B Y, YUNAS J, DEE C F, BAIS B. J. Micromech. Microeng., 2012, 22(9):095017.

    14. [14]

      CHEN P C, HSIEH S J, CHEN C C, ZOU J. J. Nanomater., 2013, 2013:134953.CHEN P C, HSIEH S J, CHEN C C, ZOU J. J. Nanomater., 2013, 2013:134953.

    15. [15]

      LEE K, LEE H C, LEE D S, JUNG H. Adv. Mater., 2010, 22(4):483-486.LEE K, LEE H C, LEE D S, JUNG H. Adv. Mater., 2010, 22(4):483-486.

    16. [16]

      HALDER J, GUPTA S, KUMARI R, DAS GUPTA G, RAI V K. J. Pharm. Innov., 2021, 16(3):558-565.HALDER J, GUPTA S, KUMARI R, DAS GUPTA G, RAI V K. J. Pharm. Innov., 2021, 16(3):558-565.

    17. [17]

      KEUM D H, JUNG H S, WANG T, SHIN M H, KIM Y E, KIM K H, AHN G O, HAHN S K. Adv. Healthc. Mater.,2015, 4(8):1153-1158.KEUM D H, JUNG H S, WANG T, SHIN M H, KIM Y E, KIM K H, AHN G O, HAHN S K. Adv. Healthc. Mater.,2015, 4(8):1153-1158.

    18. [18]

      HENRY S, MCALLISTER D V, ALLEN M G, PRAUSNITZ M R. J. Pharm. Sci., 1998, 87(8):922-925.HENRY S, MCALLISTER D V, ALLEN M G, PRAUSNITZ M R. J. Pharm. Sci., 1998, 87(8):922-925.

    19. [19]

      ALARCON J B, HARTLEY A W, HARVEY N G, MIKSZTA J A. Clin. Vaccine Immunol., 2007, 14(4):375-381.ALARCON J B, HARTLEY A W, HARVEY N G, MIKSZTA J A. Clin. Vaccine Immunol., 2007, 14(4):375-381.

    20. [20]

      LI W Z, HUO M R, ZHOU J P, ZHOU Y Q, HAO B H, TING L, YONG Z. Int. J. Pharmaceut., 2010, 389(1-2):122-129.LI W Z, HUO M R, ZHOU J P, ZHOU Y Q, HAO B H, TING L, YONG Z. Int. J. Pharmaceut., 2010, 389(1-2):122-129.

    21. [21]

      YIN P, CHOI H M T, CALVERT C R, PIERCE N A. Nature, 2008, 451(7176):318-322.YIN P, CHOI H M T, CALVERT C R, PIERCE N A. Nature, 2008, 451(7176):318-322.

    22. [22]

      KAY E R, LEIGH D A, ZERBERTTO F. Angew. Chem., Int. Ed., 2006, 46(1-2):72-191.KAY E R, LEIGH D A, ZERBERTTO F. Angew. Chem., Int. Ed., 2006, 46(1-2):72-191.

    23. [23]

      OMABEGHO T, SHA R J, SEEMAN N C. Science, 2009, 324(5923):67-71.OMABEGHO T, SHA R J, SEEMAN N C. Science, 2009, 324(5923):67-71.

    24. [24]

      LAI W, REN L, TANG Q, QU X M, LI J, WANG L H, LI L, FAN C H, PEI H. ACS Nano, 2018, 12(7):7093-7099.LAI W, REN L, TANG Q, QU X M, LI J, WANG L H, LI L, FAN C H, PEI H. ACS Nano, 2018, 12(7):7093-7099.

    25. [25]

      YEHL K, MUGLER A, VIVEK S, LIU Y, ZHANG Y, FAN M Z, WEEKS E R, SALAITA K. Nat. Nanotechnol.,2016, 11(2):184-190.YEHL K, MUGLER A, VIVEK S, LIU Y, ZHANG Y, FAN M Z, WEEKS E R, SALAITA K. Nat. Nanotechnol.,2016, 11(2):184-190.

    26. [26]

      LI J M, JOHNSON-BUCK A, YANG Y R, SHIH W M, YAN H, WALTER N G. Nat. Nanotechnol., 2018, 13(8):723-729.LI J M, JOHNSON-BUCK A, YANG Y R, SHIH W M, YAN H, WALTER N G. Nat. Nanotechnol., 2018, 13(8):723-729.

    27. [27]

      QU X M, ZHU D, YAO G B, SU S, CHAO J, LIU H J, ZUO X L, WANG L H, SHI J Y, WANG L H, HUANG W,PEI H, FAN C H. Angew. Chem., Int. Ed., 2017, 56(7):1855-1858.QU X M, ZHU D, YAO G B, SU S, CHAO J, LIU H J, ZUO X L, WANG L H, SHI J Y, WANG L H, HUANG W,PEI H, FAN C H. Angew. Chem., Int. Ed., 2017, 56(7):1855-1858.

    28. [28]

      ZHANG H Q, LAI M D, ZUEHLKE A, PENG H Y, LI X F, LE C X. Angew. Chem., Int. Ed., 2015, 54(48):14326-14330.ZHANG H Q, LAI M D, ZUEHLKE A, PENG H Y, LI X F, LE C X. Angew. Chem., Int. Ed., 2015, 54(48):14326-14330.

    29. [29]

      YANG X L, TANG Y A, MASON S D, CHEN J B, LI F. ACS Nano, 2016, 10(2):2324-2330.YANG X L, TANG Y A, MASON S D, CHEN J B, LI F. ACS Nano, 2016, 10(2):2324-2330.

    30. [30]

      WANG L D, DENG R J, LI J H. Chem. Sci., 2015, 6(12):6777-6782.WANG L D, DENG R J, LI J H. Chem. Sci., 2015, 6(12):6777-6782.

    31. [31]

      HILL H D, MIRKIN C A. Nat. Protoc., 2006, 1(1):324-336.HILL H D, MIRKIN C A. Nat. Protoc., 2006, 1(1):324-336.

    32. [32]

      COSTANTINI M, IDASZEK J, SZÖKE K, JAROSZEWICZ J, DENTINI M, BARBETTA A, BRINCHMANN J E,ŚWIESZKOWSKI W. Biofabrication, 2016, 8(3):035002.COSTANTINI M, IDASZEK J, SZÖKE K, JAROSZEWICZ J, DENTINI M, BARBETTA A, BRINCHMANN J E,ŚWIESZKOWSKI W. Biofabrication, 2016, 8(3):035002.

    33. [33]

      BENTON J A, DEFOREST C A, VIVEKANANDAN V, ANSETH K S. Tissue Eng., Part A, 2009, 15(11):3221-3230.BENTON J A, DEFOREST C A, VIVEKANANDAN V, ANSETH K S. Tissue Eng., Part A, 2009, 15(11):3221-3230.

    34. [34]

      A U B I N H, N I C H O L J W, H U T S O N C B, B A E H, S I E M I N S K I A L, C R O P E K D M, A K H YA R I P,KHADEMHOSSEINI A. Biomaterials, 2010, 31(27):6941-6951.A U B I N H, N I C H O L J W, H U T S O N C B, B A E H, S I E M I N S K I A L, C R O P E K D M, A K H YA R I P,KHADEMHOSSEINI A. Biomaterials, 2010, 31(27):6941-6951.

    35. [35]

      MAN T T, LAI W, XIAO M S, WANG X W, CHANDRASEKARAN A R, PEI H, LI L. Biosens. Bioelectron.,2020, 147:111742.MAN T T, LAI W, XIAO M S, WANG X W, CHANDRASEKARAN A R, PEI H, LI L. Biosens. Bioelectron.,2020, 147:111742.

    36. [36]

      XIAO M S, LAI W, MAN T T, CHANG B B, LI L, CHANDRASEKARAN A R, PEI H. Chem. Rev., 2019,119(22):11631-11717.XIAO M S, LAI W, MAN T T, CHANG B B, LI L, CHANDRASEKARAN A R, PEI H. Chem. Rev., 2019,119(22):11631-11717.

    37. [37]

      XIAO M S, LAI W, WANG F, LI L, FAN C H, PEI H. J. Am. Chem. Soc., 2019, 141(51):20354-20364.XIAO M S, LAI W, WANG F, LI L, FAN C H, PEI H. J. Am. Chem. Soc., 2019, 141(51):20354-20364.

    38. [38]

      FABBRO A, SKORINKIN A, GRANDOLFO M, NISTRI A, GINIATULLIN R. J. Physiol., 2004, 560(2):505-517.FABBRO A, SKORINKIN A, GRANDOLFO M, NISTRI A, GINIATULLIN R. J. Physiol., 2004, 560(2):505-517.

    39. [39]

      KASAI Y, OHTA T, NAKAZATO Y, ITO S. J. Vet. Med. Sci., 2001, 63(4):367-372.KASAI Y, OHTA T, NAKAZATO Y, ITO S. J. Vet. Med. Sci., 2001, 63(4):367-372.

    40. [40]

      ZHANG Y J, CLAUSMEYER J, BALAKINEJAD B, CÓRDOBA A L, ALI T, SHEVCHUK A, TAKAHASHI Y, NOVAK P, EEWARDS C, LAB M, GOPAL S, CHIAPPINI C, ANAND U, MAGNAN L, COOMBES R C,GORELIK J, MATSUE T, SCHUHMANN W, KLENERMAN D, SVIDERSKAYA E V, KORCHEV Y. ACS Nano,2016, 10(3):3214-3221.ZHANG Y J, CLAUSMEYER J, BALAKINEJAD B, CÓRDOBA A L, ALI T, SHEVCHUK A, TAKAHASHI Y, NOVAK P, EEWARDS C, LAB M, GOPAL S, CHIAPPINI C, ANAND U, MAGNAN L, COOMBES R C,GORELIK J, MATSUE T, SCHUHMANN W, KLENERMAN D, SVIDERSKAYA E V, KORCHEV Y. ACS Nano,2016, 10(3):3214-3221.

    41. [41]

      ZHU Q, LIANG B, LIANG Y T, JI L, CAI Y, WU K, TU T T, REN H X, HUANG B B, WEI J W, FANG L,LIANG X, YE X S. Biosens. Bioelectron., 2020, 153:112019.ZHU Q, LIANG B, LIANG Y T, JI L, CAI Y, WU K, TU T T, REN H X, HUANG B B, WEI J W, FANG L,LIANG X, YE X S. Biosens. Bioelectron., 2020, 153:112019.

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  • 收稿日期:  2022-02-25
  • 修回日期:  2022-03-17
通讯作者: 陈斌, bchen63@163.com
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