Citation:
LU Hui-Ting, LI Jin-Ze, WANG Ye-Yu, GE Ru-Jiao, DONG Hai-Feng. Research Progress of Microneedles in Interstitial Fluid Bioanalysis[J]. Chinese Journal of Analytical Chemistry,
;2022, 50(6): 819-829,858.
doi:
10.19756/j.issn.0253-3820.221013
-
The collection and analysis of biological samples is the effective method for disease diagnosis and treatment. Blood sampling and analysis are standard methods in clinical diagnosis, but they are commonly invasive and usually cause tissue damage and patient discomfort. Interstitial fluid(ISF) is a promising alternative candidate of blood owing to the rich biological information; however,it is still great challenge to minimally and non-invasively sample sufficient targets in skin ISF. In recent years, microneedles(MNs) have received considerable attention in ISF research due to their high efficiency, safety, convenience and painless characteristics. As the micron-level needle array, MNs have achieved remarkable results in medical cosmetology, molecular delivery, diagnostic monitoring and disease treatment, but little attention has been paid to the application of MNs for bioanalysis in ISF. This review summarizes the materials of microneedle, and details the application of MNs in ISF sampling,biomarker capture and analysis, and wearable sensing, while exploring the development prospects of MNs as an emerging research field and summarizing the challenges to be considered and existing in the transformation of technological achievements.
-
Keywords:
- Microneedles,
- Bioanalysis,
- Fluid extraction,
- Minimally invasive,
- Review
-
-
-
[1]
YANG M Z, LIU Y, JIANG X Y. Chem. Soc. Rev., 2019, 48(3):850-884.
-
[2]
SUN W J, LEE J, ZHANG S M, BENYSHEK C, DOKMECI M R, KHADEMHOSSEINI A. Adv. Sci., 2019, 6(1):1801039.
-
[3]
AYALA E S, MEURET A E, RITZ T. J. Psychiatr. Res., 2009, 43(15):1235-1242.
-
[4]
MA G J, WU C W. J. Controlled Release, 2017, 251:11-23.
-
[5]
TANZMAN E S, MANCHESTER R A. N. Engl. J. Med., 2001, 345(26):538-541.
-
[6]
COMBADIERE B, MAHE B. Comp. Immunol. Microb., 2008, 31(2-3):293-315.
-
[7]
GAO W, BROOKS G A, KLONOFF D C. J. Appl. Physiol., 2018, 124(3):548-556.
-
[8]
GARCIA-GUZMAN J J, PEREZ-RAFOLS C, CUARTERO M, CRESPO G A. TrAC-Trends Anal. Chem., 2021, 135:116148.
-
[9]
HEIKENFEID J, JAJACK A, ROGERS J, GUTRUF P, TIAN L, PAN T, LI R, KHINE M, KIM J, WANG J, KIM J.Lab Chip, 2018, 18(2):217-248.
-
[10]
TORIN H J, SIVALOGANATHAN S, KOHANDEL M, FOLDVARI M. Wiley Interdiscip. Rev. Nanomed.Nanobiotechnol., 2011, 3(5):449-462.
-
[11]
BOUWSTRA J A, PONEC M. Biochim. Biophys. Acta, 2006, 1758(12):2080-2095.
-
[12]
GERSTEL M S, PLACE V A. United States Patent, US3964482A.17, 05, 1971.
-
[13]
VAN DAMME P, OOSTERHUIS-KAFEJA F, VAN DER WIELEN M, ALMAGOR Y, SHARON O, LEVIN Y.Vaccine, 2009, 27(3):454-459.
-
[14]
VANGER M K, JISKOOT W, BOUWSTRA J. J. Controlled Release, 2012, 161(2):645-655.
-
[15]
ROUPHAEL N G, PAINE M, MOSLEY R, HENRY S, MCALLISTER D V, KALLURI H, PEWIN W, FREW P M, YU T W, THORNBURG N J, KABBANI S, LAI L L, VASSILIEVA E V, SKOUNTZON I, COMPANS R W, MULLIGAN M J, PRAUSNITZ M R. Lancet, 2017, 390(10095):649-658.
-
[16]
SOKHANVAR S, SHEKHI M, MAZLOMZADEH S, GOLMOHAMMADI Z. J. Cardiovasc. Thorac. Res., 2011, 3(2):57-61.
-
[17]
DIXON R V, SKARIA E, LAU W M, MANNING P, BIRCH-MACHIN M A, MOGHIMI S M, NG K W. Acta Pharm. Sin. B, 2021, 11(8):2344-2361.
-
[18]
XU T L, SHI W X, HUANG J R, SONG Y C, ZHANG F L, XU L P, ZHANG X J, WANG S T. ACS Nano, 2017, 11(1):621-626.
-
[19]
GARCIA-GUZMAN J J, PEREZ-RAFOLS C, CUARTERO M, CRESPO G A. TrAC-Trends Anal. Chem., 2021, 135:116148.
-
[20]
BANGA A K. Expert Opin. Drug Delivery, 2009, 6(4):343-354.
-
[21]
LARRANETA E, LUTTON R E M, WOOLFSON A D, DONNELLY R F. Mater. Sci. Eng., R, 2016, 104:1-32.
-
[22]
JIN Q C, CHEN H J, LI X L, HUANG X S, WU Q N, HE G, HANG T, YANG C D, JIANG Z, LI E L, ZHANG A H, LIN Z H, LIU F M, XIE X. Small, 2019, 15(6):804298.
-
[23]
HWA K Y, SUBRAMANI B, CHANG P W, CHIEN M, HUANG J T. Int. J. Electrochem. Sci., 2015, 10(3):2455-2466.
-
[24]
WANG M, HU L Z, XU C J. Lab Chip, 2017, 17(8):1373-1387.
-
[25]
RAD Z F, PREWETT P D, DAVIES G J. Beilstein J. Nanotechnol., 2021, 12:1034-1046.
-
[26]
SJOBOM U, CHRISTENSON K, HELLSTROM A, NILSSON A K. Front. Immunol., 2020, 11:597632.
-
[27]
TAYLOR R M, MILLER P R, EBRAHIMI P, POLSKY R, BACA J T. Lab Anim., 2018, 52(5):526-530.
-
[28]
NILSSON A K, SJOBOM U, CHRISTENSON K, HELLSTROM A. Lipids Health Dis., 2019, 18(1):164.
-
[29]
LIU X, KRUGER P, MAIBACH H, COLDITZ P B. ROBERTS M S. Adv. Drug Delivery Rev., 2014, 77:40-49.
-
[30]
CHEN L, ZHANG C, XIAO J, YOU J, ZHANG W, LIU Y, XU L, LIU A, XIN H, WANG X. Mat. Sci. Eng., C, 2020, 109:110402.
-
[31]
WANG P M, CORNWELL M, PRAUSNITZ M R. Diabetes Technol. Ther., 2005, 7(1):131-141.
-
[32]
KOLLURU C, WILLIAMS M, CHAE J, PRAUSNITZ M R. Adv. Healthc. Mater., 2019, 8(3):1801262.
-
[33]
STRAMBINI L M, LONGO A, DILIHENTI A, BARILLARO G. Lab Chip, 2012, 12(18):3370-3379.
-
[34]
XUE P, ZHANG L, XU Z G, YAN J J, GU Z, KANG Y J. Appl. Mater. Today, 2018, 13:144-157.
-
[35]
MADDEN J, O'MAHONY C, THOMPSON M, O'RIORDAN A, GALVIN P. Sens. Bio-Sens. Res., 2020, 29:100348.
-
[36]
NICHOLAS D, LOGAN K A, SHENG Y J, GAO J H, FARRELL S, DIXON D, CALLAN B, MCHALE A P, CALLAN J F. Int. J. Pharm., 2018, 547(1-2):244-249.
-
[37]
LEE H, BONFANTE G, SASAKI Y, TAKAMA N, MINAMI T, KIM B. Med. Devices Sens., 2020, 3(4):e10109.
-
[38]
SARABI M R, AHMADPOUR A, YETISEN A K, TASOGLU S. Appl. Sci., 2021, 11(12):5329.
-
[39]
LEE D S, LI C G, IHM C, JUNG H. Sens. Actuator, B, 2018, 255:384-390.
-
[40]
LI C G, LEE C Y, LEE K, JUNG H. Biomed. Microdevices, 2013, 15(1):17-25.
-
[41]
-
[42]
ELTAYIB E, BRADY A J, CAFFAREL-SALADOR E, GONZALEZ-VAZQUEZ P, ZAID A A, MCCARTHY H O, MCELNAY J C, DONNELLY R F. Eur. J. Pharm. Biopharm., 2016, 102:123-131.
-
[43]
CHEN J, WANG M, YE Y, YANG Z, RUAN Z, JIN N. Biomed. Microdevices, 2019, 21(3):63.
-
[44]
CHANG H, ZHENG M, YU X, THAN A, SEENI R Z, KANG R, TIAN J, KHANH D P, LIU L, CHEN P, XU C.Adv. Mater., 2017, 29(37):1702243.
-
[45]
ZHU J, ZHOU X, KIM H J, QU M, JIANG X, LEE K, REN L, WU Q, WANG C, ZHU X, TEBON P, ZHANG S, LEE J, ASHAMAKHI N, AHADIAN S, DOKMECI M R, GU Z, SUN W, KHADEMHOSSEINI A. Small, 2020, 16(16):1905910.
-
[46]
JAMALEDIN R, YIU C K Y, ZARE E N, NIU L N, VECCHIONE R, CHEN G J, GU Z, TAY F R, MAKVAND P.Adv. Mater., 2020, 32(33):2002129.
-
[47]
CORRIE S R, FERNANDO G J, CRICHTON M L, BRUNCK M E, ANDERSO C D, KENDALL M A. Lab Chip, 2010, 10(20):2655-2658.
-
[48]
COFFEY J W, CORRIE S R, KENDALL M A F. Biomaterials, 2018, 170:49-57.
-
[49]
ZHANG X X, CHEN G P, BIAN F K, CAI L J, ZHAO Y J. Adv. Mater., 2019, 31(37):1902825.
-
[50]
KOOPAIE M, ABEDINEJAD F, MANIFAR S, MOUSAVI R, KOLAHDOOZ S, SHAMSHIR A. Gene Rep., 2021, 25:101317
-
[51]
BAUMANN B, ACOSTA A M, RICHARDS Z, DEATON R, SAPATYNSKA A, MURPHY A, KAJDACSYBALLA A, GANN P H, NONN L. Am. J. Pathol., 2019, 189(4):911-923.
-
[52]
AL SULAIMAN S D, CHANG J Y H, BENNETT N R, TOPPOUZI H, HIGGINS C A, IRVINE D J, LADAME S.ACS Nano, 2019, 13(8):9620-9628.
-
[53]
YANG B, FANG X E, KONG J L. Adv. Funct. Mater., 2020, 30(24):2000591.
-
[54]
GOUD K Y, MOONLA C, MISHRA R K, YU C, NARAYAN R, LITVAN I, WANG J. ACS Sens., 2019, 4(8):2196-2204.
-
[55]
MOHAN A M V, WINDMILLER J R, MISHRA R K, WANG J. Biosens. Bioelectron., 2017, 91:574-579.
-
[56]
JIN Q, CHEN H J, LI X, HUANG X, WU Q, HE G, HANG T, YANG C, JIANG Z, LI E, ZHANG A, LIN Z, LIU F, XIE X. Small, 2019, 15(6):1804298.
-
[57]
LI Q L, ZHANG Y, FAN H L, GONG Y J, XU Y, LV Q Y, XU Y R, XIAO F, WANG S, WANG Z, WANG L.Biosens. Bioelectron., 2021, 191:113474.
-
[1]
-
-
-
[1]
Min Gu , Huiwen Xiong , Liling Liu , Jilie Kong , Xueen Fang . Rapid Quantitative Detection of Procalcitonin by Microfluidics: An Instrumental Analytical Chemistry Experiment. University Chemistry, 2024, 39(4): 87-93. doi: 10.3866/PKU.DXHX202310120
-
[2]
Gaofeng Zeng , Shuyu Liu , Manle Jiang , Yu Wang , Ping Xu , Lei Wang . Micro/Nanorobots for Pollution Detection and Toxic Removal. University Chemistry, 2024, 39(9): 229-234. doi: 10.12461/PKU.DXHX202311055
-
[3]
Zijian Jiang , Yuang Liu , Yijian Zong , Yong Fan , Wanchun Zhu , Yupeng Guo . Preparation of Nano Zinc Oxide by Microemulsion Method and Study on Its Photocatalytic Activity. University Chemistry, 2024, 39(5): 266-273. doi: 10.3866/PKU.DXHX202311101
-
[4]
Qi Li , Pingan Li , Zetong Liu , Jiahui Zhang , Hao Zhang , Weilai Yu , Xianluo Hu . Fabricating Micro/Nanostructured Separators and Electrode Materials by Coaxial Electrospinning for Lithium-Ion Batteries: From Fundamentals to Applications. Acta Physico-Chimica Sinica, 2024, 40(10): 2311030-. doi: 10.3866/PKU.WHXB202311030
-
[5]
. . Chinese Journal of Inorganic Chemistry, 2024, 40(12): 0-0.
-
[6]
Xiutao Xu , Chunfeng Shao , Jinfeng Zhang , Zhongliao Wang , Kai Dai . Rational Design of S-Scheme CeO2/Bi2MoO6 Microsphere Heterojunction for Efficient Photocatalytic CO2 Reduction. Acta Physico-Chimica Sinica, 2024, 40(10): 2309031-. doi: 10.3866/PKU.WHXB202309031
-
[7]
Yu Wang , Shoulei Zhang , Tianming Lv , Yan Su , Xianyu Liu , Fuping Tian , Changgong Meng . Introduce a Comprehensive Inorganic Synthesis Experiment: Synthesis of Nano Zinc Oxide via Microemulsion Using Waste Soybean Oil. University Chemistry, 2024, 39(7): 316-321. doi: 10.3866/PKU.DXHX202311035
-
[8]
Zhicheng JU , Wenxuan FU , Baoyan WANG , Ao LUO , Jiangmin JIANG , Yueli SHI , Yongli CUI . MOF-derived nickel-cobalt bimetallic sulfide microspheres coated by carbon: Preparation and long cycling performance for sodium storage. Chinese Journal of Inorganic Chemistry, 2025, 41(4): 661-674. doi: 10.11862/CJIC.20240363
-
[9]
Yadan Luo , Hao Zheng , Xin Li , Fengmin Li , Hua Tang , Xilin She . 调节O,S共掺杂C3N4中的活性氧生成以促进光催化降解微塑料. Acta Physico-Chimica Sinica, 2025, 41(6): 100052-. doi: 10.1016/j.actphy.2025.100052
-
[10]
Zeyi Yan , Ruitao Liu , Xinyu Qi , Yuxiang Zhang , Lulu Sun , Xiangyuan Li , Anchao Feng . Exploration of Suspension Polymerization: Preparation and Fluorescence Stability of Perovskite Polystyrene Microbeads. University Chemistry, 2025, 40(4): 72-79. doi: 10.12461/PKU.DXHX202405110
-
[11]
Changjun You , Chunchun Wang , Mingjie Cai , Yanping Liu , Baikang Zhu , Shijie Li . 引入内建电场强化BiOBr/C3N5 S型异质结中光载流子分离以实现高效催化降解微污染物. Acta Physico-Chimica Sinica, 2024, 40(11): 2407014-. doi: 10.3866/PKU.WHXB202407014
-
[12]
Xuanzhu Huo , Yixi Liu , Qiyu Wu , Zhiqiang Dong , Chanzi Ruan , Yanping Ren . Integrated Experiment of “Electrolytic Preparation of Cu2O and Gasometric Determination of Avogadro’s Constant: Implementation, Results, and Discussion: A Micro-Experiment Recommended for Freshmen in Higher Education at Various Levels Across the Nation. University Chemistry, 2024, 39(3): 302-307. doi: 10.3866/PKU.DXHX202308095
-
[13]
Haitang WANG , Yanni LING , Xiaqing MA , Yuxin CHEN , Rui ZHANG , Keyi WANG , Ying ZHANG , Wenmin WANG . Construction, crystal structures, and biological activities of two LnⅢ3 complexes. Chinese Journal of Inorganic Chemistry, 2024, 40(8): 1474-1482. doi: 10.11862/CJIC.20240188
-
[14]
Xiaowei TANG , Shiquan XIAO , Jingwen SUN , Yu ZHU , Xiaoting CHEN , Haiyan ZHANG . A zinc complex for the detection of anthrax biomarker. Chinese Journal of Inorganic Chemistry, 2024, 40(10): 1850-1860. doi: 10.11862/CJIC.20240173
-
[15]
Jianfeng Yan , Yating Xiao , Xin Zuo , Caixia Lin , Yaofeng Yuan . Comprehensive Chemistry Experimental Design of Ferrocenylphenyl Derivatives. University Chemistry, 2024, 39(4): 329-337. doi: 10.3866/PKU.DXHX202310005
-
[16]
Zhibei Qu , Changxin Wang , Lei Li , Jiaze Li , Jun Zhang . Organoid-on-a-Chip for Drug Screening and the Inherent Biochemistry Principles. University Chemistry, 2024, 39(7): 278-286. doi: 10.3866/PKU.DXHX202311039
-
[17]
Dan Li , Hui Xin , Xiaofeng Yi . Comprehensive Experimental Design on Ni-based Catalyst for Biofuel Production. University Chemistry, 2024, 39(8): 204-211. doi: 10.3866/PKU.DXHX202312046
-
[18]
Yang Liu , Peng Chen , Lei Liu . Chemistry “101 Plan”: Design and Construction of Chemical Biology Textbook. University Chemistry, 2024, 39(10): 45-51. doi: 10.12461/PKU.DXHX202407085
-
[19]
Tianyu Feng , Guifang Jia , Peng Zou , Jun Huang , Zhanxia Lü , Zhen Gao , Chu Wang . Construction of the Chemistry Biology Experiment Course in the Chemistry “101 Program”. University Chemistry, 2024, 39(10): 69-77. doi: 10.12461/PKU.DXHX202409002
-
[20]
Zhaoxin LI , Ruibo WEI , Min ZHANG , Zefeng WANG , Jing ZHENG , Jianbo LIU . Advancements in the construction of inorganic protocells and their cell mimic and bio-catalytical applications. Chinese Journal of Inorganic Chemistry, 2024, 40(12): 2286-2302. doi: 10.11862/CJIC.20240235
-
[1]
Metrics
- PDF Downloads(15)
- Abstract views(882)
- HTML views(198)