Chemical Research in Chinese Universities ›› 2026, Vol. 42 ›› Issue (2): 436-455.doi: 10.1007/s40242-026-6003-6
Previous Articles Next Articles
WEI Qinsong, MA Bing, WANG Weizhi
Received:2026-01-04
Online:2026-04-01
Published:2026-04-02
Contact:
MA Bing,E-mail:mabing@bit.edu.cn;WANG Weizhi,E-mail:wangwz@bit.edu.cn
E-mail:mabing@bit.edu.cn;wangwz@bit.edu.cn
Supported by:WEI Qinsong, MA Bing, WANG Weizhi. Peptide-based Biosensing and In vivo Imaging Approaches for Early Detection and Targeted Therapy of Diabetic Retinopathy[J]. Chemical Research in Chinese Universities, 2026, 42(2): 436-455.
Add to citation manager EndNote|Reference Manager|ProCite|BibTeX|RefWorks
| [1] Isherwood B., Timpson P., McGhee E. J., Anderson K. I., Canel M., Serrels A., Brunton V. G., Carragher N. O., Pharmaceutics, 2011, 3, 141. [2] Jia D., Cui M., Ding X., Small, 2024, 20, e2404482. [3] Kim S. J., Lee H.-Y., Laboratory Animal Res., 2022, 38, 31. [4] Neettiyath A., Pumera M., Adv. Funct. Mater., 2024, 35, 2415875. [5] Ray P., J. Biosci., 2011, 36, 499. [6] Allport J. R., Weissleder R., Experimental Hematology, 2001, 29, 1237. [7] Saji H., Biological & Pharmaceutical Bulletin, 2017, 40, 1605. [8] Choy G., Choyke P., Libutti S. K., Molecular Imaging, 2003, 2, 303. [9] Wang Y., Shyy J. Y. J., Chien S., Annu. Rev. Biomed. Engineering, 2008, 10, 1. [10] Guo Z., Cui Z., WIREs Nanomedicine, Nanobiotechnology, 2021, 13, e1705. [11] Nabil M., Megahed F., J. Fluorescence, 2023, 34, 2467. [12] Che Y., Feng S., Guo J., Hou J., Zhu X., Chen L., Yang H., Chen M., Li Y., Chen S., Cheng Z., Luo Z., Chen J., Nanoscale, 2020, 12, 43. [13] Weihs F., Gel M., Wang J., Anderson A., Trowell S., Dacres H., Biosen. Bioelectron., 2020, 158, 112162. [14] Yan Y., Shi P., Song W., Bi S., Theranostics, 2019, 9, 4047. [15] Kim J. E., Kalimuthu S., Ahn, B.-C., Nuclear Medicine and Molecular Imaging, 2014, 49, 3. [16] Li Q., Huo H., Wu Y., Chen L., Su L., Zhang X., Song J., Yang H., Adv Sci., 2023, 10, e2202051. [17] Shamsi E. A., Siddiqui H., Hameed A., Rashedi K. A., Fusion of Multidisciplinary Research, An International Journal, 2024, 5, 592. [18] Mishra A., Singh P. K., Chauhan N., Roy S., Tiwari A., Gupta S., Tiwari A., Patra S., Das T. R., Mishra P., Nejad A. S., Shukla Y. K., Jain U., Tiwari A., Sensors & Diagnostics, 2024, 3, 718. [19] De A., Jasani A., Arora R., Gambhir S. S., Frontiers in Endocrinology, 2013, 4, 131. [20] Schasfoort R. B. M., van Weperen J., van Amsterdam M., Parisot J., Hendriks J., Koerselman M., Karperien M., Mentink A., Bennink M., Krabbe H., Terstappen L. W. M. M., Mulder A. H. L., Biosen. Bioelectron., 2021, 183, 113165. [21] Wang M., Li L., Zhang L., Zhao J., Jiang Z., Wang W., Anal. Chem, 2022, 94, 431. [22] Yin Y., Li Z., Liu C., Zhang X.-B., Ou Q., ACS Sensors, 2025, 10, 5456. [23] Sahu A., Peterson G., Cordova M., Oh Y., Navarrete-Dechent C., Gill M., Alessi-Fox C., Gonzalez S., Phillips W., Wilson S., Afzalneia R., Bello D., Rotemberg V., Marghoob A., Rossi A., Chen C. S. J., Rajadhyaksha M., Research Square, 2021, 11, 23124. [24] Ounkomol C., Seshamani S., Maleckar M. M., CollmanF., Johnson G. R., Nature Methods, 2018, 15, 917. [25] Morales-Curiel L. F., Gonzalez A. C., Castro-Olvera G., Lin L.-C., El-Quessny M., Porta-de-la-Riva,M., Severino J., Morera L. B., Venturini V., Ruprecht V., Ramallo D., Loza-Alvarez P., Krieg M., Communications Biology, 2022, 5, 1330. [26] Shakhova E. S., Karataeva T. A., Markina N. M., Mitiouchkina T., Palkina K. A., Perfilov M. M., Wood M. G., Hoang T. T., Hall M. P., Fakhranurova L. I., Alekberova A. E., Malyshevskaia A. K., Gorbachev D. A., Bugaeva E. N., Pletneva L. K., Babenko V. V., Boldyreva D. I., Gorokhovatsky A. Y., Balakireva A. V., Gao F., Choob V. V., Encell L. P., Wood K. V., Yampolsky I. V., Sarkisyan K. S., Mishin A. S., Nature Methods, 2024, 21, 406. [27] John S., Rolnick K., Wilson L., Wong S., Van Gelder R. N., Pepple K. L., Scientific Reports, 2020, 10, 11377. [28] Yu Y., Feng T., Qiu H., Gu Y., Chen Q., Zuo C., Ma H., Ultrasonics, 2024, 139, 107277. [29] Yang F., Wang Z., Shi W., Wang M., Ma R., Zhang W., Li X., Wang E., Xie W., Zhang Z., Shen Q., Zhou F., Yang S., Light: Science & Applications, 2024, 13, 96. [30] Zhong X., Liang Y., Wang X., Lan H., Bai X., Jin L., Guan B.-O., Light: Science & Applications, 2024, 13, 5. [31] Gupta S., Singh R., Bhardwaj S., Kuzmin A., Thakkur S., Garg S., Rzhevskii A., Vaitla J., Baev A., Siddhanta S., Prasad P. N., ACS Photonics, 2025, 12, 5074. [32] Tortarolo G., Zunino A., Fersini F., Castello M., Piazza S., Sheppard C. J. R., Bianchini P., Diaspro A., Koho S., Vicidomini G., Nat. Commun., 2022, 13, 7723. [33] Qiao C., Li Z., Wang Z., Lin Y., Liu C., Zhang S., Liu Y., Feng Y., Yang X., Fu W., Dong X., Guo J., Xu W., Wang X., Jiang T., Meng Q., Wang Q., Dai Q., Li, D., Nature Methods, 2025, 22, 1059. [34] Qiao C., Li D., Liu Y., Zhang S., Liu K., Liu C., Guo Y., Jiang T., Fang C., Li N., Zeng Y., He K., Zhu X., Lippincott-Schwartz J., Dai Q., Li D., Nat. Biotechn., 2023, 41, 367. [35] Zhong H., Wu Y.-X., Yu S., Wang X., He K., Li D., Cao Y., Gan N., Anal. Chem., 2021, 93, 5691. [36] Takano K., Yamada M., Magnetic Resonance Imaging, 2020, 71, 11. [37] Amalachandran J., Sivathapandi T., Gunasekaran, G., J. Gastrointestinal and Abdominal Radiology, 2024, 7, 121. [38] Shamim S. A., Kumar N., Arora G., Jaswal S., Shalimar U., Gamanagatti S., Bal C., Annals of Nuclear Medicine, 2023, 38, 103. [39] Qu R., Ji X., Wang S., Wang Z., Wang L., Yang X., Yin S., Gu J., Wang A., Xu G., Bioengineering, 2023, 10, 1234. [40] Kawakubo M., Nagao M., Kaimoto Y., Nakao R., Yamamoto A., Kawasaki H., Iwaguchi T., Matsuo Y., Kaneko K., Sakai A., Sakai S., Annals of Nuclear Medicine, 2023, 38, 199. [41] Wang Y., Yi Z., Guo J., Liao S., Li Z., Xu S., Yin B., Liu Y., Feng Y., Rong Q., Liu X., Song G., Zhang X.-B., Tan W., Nature Photonics, 2024, 18, 334. [42] Qorchi S., Vray D., Orkisz M., Ultrasound in Medicine & Biology, 2021, 47, 1367. [43] Tai H., Khairalseed M., Hoyt K., Ultrasound in Medicine & Biology, 2020, 46, 2810. [44] Zhang X., Hou Y., Peng C., Wang C., Wang X., Liang Z., Lu J., Chen B., Dai J., Liu B., Cui M., J. Medic. Chem., 2018, 61, 1330. [45] Metternich J. T., Wartmann J. A. C., Sistemich L., Nißler R., Herbertz S., Kruss S., J. Am. Chem. Soc., 2023, 145, 14776. [46] Guo X., Wu X., Sun M., Xu L., Kuang H., Xu C., Anal. Chem., 2020, 92, 2310. [47] Sun F., Hung H.-C., Sinclair A., Zhang P., Bai T., Galvan D. D., Jain P., Li B., Jiang S., Yu Q., Nat. Commun., 2016, 7, 13437. [48] Shakya A. K., Ramola A., Singh S., Vidyarthi A., Plasmonics, 2025, 20, 1789. [49] Ibrahimi K. M., Kumar R., Pakhira W., Plasmonics, 2023, 18, 995. [50] Parnsubsakul A., Oaew S., Surareungchai W., Nanoscale, 2018, 10, 5466. [51] Green O., Gnaim S., Blau R., Eldar-Boock A., Satchi-Fainaro R., Shabat D., J. Am. Chem. Soc., 2017, 139, 13243. [52] Branchini B. R., Southworth T. L., Fontaine D. M., Kohrt D., Talukder M., Michelini E., Cevenini L., Roda A., Grossel M. J., Anal. Biochem., 2015, 484, 148. [53] Porterfield W. B., Jones K. A., McCutcheon D. C., Prescher J. A., J. Am. Chem. Soc., 2015, 137, 8656. [54] Baek S. H., Kim M. W., Park C. Y., Choi C.-S., Kailasa S. K., Park J. P., Park T. J., Biosen. Bioelectron., 2019, 123, 223. [55] Cho C. H., Kim J. H., Song D.-K., Park T. J., Park J. P., Biosen. Bioelectron., 2019, 142, 111482. [56] Malvano F., Pilloton R., Albanese D., Food Chemistry, 2020, 325, 126868. [57] Yang H., Wang P., Geng F., Wu Q., Song F., Ding C., Sensors and Actuators B: Chemical, 2023, 387, 133820. [58] Hong C., Zhang P., Lu K., Ji Y., He S., Liu D., Jia, N., Biosensors and Bioelectronics, 2021, 194, 113591. [59] Tian Y., Wang B., Wang J., Guo Q., Yang X., Nie G., Microchem. J., 2022, 175, 107140. [60] Huang L., Ding L., Zhou J., Chen S., Chen F., Zhao C., Xu J., Hu W., Ji J., Xu H., Liu G. L., Biosens. Bioelectron., 2021, 171, 112685. [61] Xie M., Yao G., Gan X., Zhang C., Zhang T., Wang Q., Li X., Zhou C., Zhao K., Gao M., Pan T., Lin Y., Adv. Fiber Mater., 2024, 6, 501. [62] Guo Y., Yao R., Wang Z., Zhang Y., Cui M., Zhao Q., Wang H., J. Solid State Electrochem., 2018, 22, 41. [63] Pan J., Li Q., Feng Y., Zhong R., Fu Z., Yang S., Sun W., Zhang B., Sui Q., Chen J., Shen Y., Li Z., Nat. Commun., 2023, 14, 3250. [64] Wong T. Y., Cheung C. M., Larsen M., Sharma S., Simo R., Nat. Rev. Dis. Primers, 2016, 2, 16012. [65] Silva M., Peng T., Zhao X., Li S., Farhan M., Zheng W., Adv. Drug Deliv. Rev., 2021, 173, 439. [66] Liu Y., Wu N., International J. Nanomed., 2021, 16, 1391. [67] Qian B., Chen H., Wang X., Guan Z., Li T., Jin Y., Wu Y., Wen Y., Che H., Kwon G., Kim J., Choi S., Shin S., Krause F., Unterdechler M., Hou J., Feng R., Li Y., El Habib Daho M., Yang D., Wu Q., Zhang P., Yang X., Cai Y., Tan G. S. W., Cheung C. Y., Jia W., Li H., Tham Y. C., Wong T. Y., Sheng B., Patterns, 2024, 5, 100929. [68] Krishnamoorthy S., Weifeng Y., Luo J., Kadry S., Expert Systems with Applications, 2023, 229, 120408. [69] Karkera T., Adak C., Chattopadhyay S., Saqib M., Neurocomputing, 2024, 597, 127991. [70] Olivares A. M., Althoff K., Chen G. F., Wu S., Morrisson M. A., DeAngelis M. M., Haider N., Current Diabetes Reports, 2017, 17, 93. [71] Cheung N., Mitchell P., Wong T. Y., Lancet (London, England), 2010, 376, 124. [72] Quiroz J., Yazdanyar A., Annals of Translational Medicine, 2021, 9, 1272. [73] Hu G., Gu L., Wang R., Jian Q., Lv K., Xia M., Lai M., Shen T., Hu J., Yang S., Ye C., Zhang X., Wang Y., Xu X., Zhang F., Science Bulletin, 2024, 69, 1920. [74] Kung E. W. T., Chan V. T. T., Tang Z., Yang D., Sun Z., Wang Y. M., Chan C. H., Kwan M. C. H., Shi J., Cheung C. Y., Ophthalmology Science, 2022, 2, 100130. [75] Shah K. P., Sah S. N., Kothari O., Singh T., Patra P., 202415th International Conference on Computing Communication and Networking Technologies (ICCCNT), IEEE, Kamand, India, 2024. [76] Yu S., Lu J., Cao D., Liu R., Liu B., Li T., Luo Y., Lu L., BMC Ophthalmology, 2016, 16, 107. [77] Tian C., Feng T., Wang C., Liu S., Cheng Q., Oliver D. E., Wang X., Xu G., IEEE Sensors Journal, 2016, 16, 8381. [78] Pichi F., Abboud E. B., Ghazi N. G., Khan A. O., Acta Ophthalmologica, 2018, 96, e549. [79] Mahajan S., Saxena R. K., Delhi J. Ophthalmology, 2025, 35, 182. [80] Yu D., Dou X., Chen J., Lu Y., Ye B., Wu X., Wu Z., Li Q., Tian X., Zhou B., Deng Y., Li W., Hu X., Mou L., Pu Z., BMJ Open, 2021, 11, e051761. [81] Zhou W., Yuan X.-J., Li J., Wang W., Zhang H.-Q., Hu Y.-Y., Ye S.-D., World J. Diabetes, 2024, 15, 251. [82] Castro C., Marques J. H., Silva N., Abreu A. C., Furtado M. J., Lume M., Clinical Ophthalmology, 2023, 17, 2515. [83] Lavanya D., Derwin D. J., Remya R., Shan B. P., Singh O. J., K U., 2022 Second International Conference on Advances in Electrical, Computing, Communication and Sustainable Technologies (ICAECT), IEEE, Bhilai, India, 2022. [84] Zhang Z., Deng C., Paulus Y. M., Biomedicines, 2024, 12, 1405. [85] Numan M., Khoso A. H., Chandio Z. H., Ahmed M., Gul S., Hira, Malhi L. D., Saifullah, Insights-Journal of Health and Rehabilitation, 2025, 3, 357. [86] Ratnakar A., Interantional Journal of Scientific Research in Engineering and Management, 2024, 8, 1. [87] Aloui A., Zouai M., Bouhitem F., Kazar O., International Journal of Diabetes in Developing Countries, 2025, 45, 1. [88] Dash A. K., Mohapatra P., Advances in Medical Technologies and Clinical Practice, 2021, 6, 140. [89] Marques I., Mendes L., Cunha-Vaz J., ESASO Course Series, 2018, 88. [90] Jacob S., Sivaraj R. R., Diabetic Retinopathy: Screening to Treatment (Oxford Diabetes Library), 2020, 161. [91] Wijesingha N., Tsai W.-S., Keskin A. M., Holmes C., Kazantzis D., Chandak S., Kubravi H., Sivaprasad S., Diagnostics, 2024, 14, 326. [92] Zhang Q., Gong D., Huang M., Zhu Z., Yang W., Ma G., Frontiers in Endocrinology, 2025, 16, 1438739. [93] Gildea D., International Ophthalmology, 2018, 39, 2413. [94] Pomytkina N. V., Sorokin E. L., Modern Technologies in Ophtalmology, 2023, 1, 163. [95] Chua J., Sim R., Tan B., Wong D., Yao X., Liu X., Ting D. S. W., Schmidl D., Ang M., Garhöfer G., Schmetterer L., J. Clinical Medicine, 2020, 9, 1723. [96] Wang Y., Luo Y., Annals of Eye Science, 2018, 2, 52. [97] Nouri H., Abtahi S.-H., Mazloumi M., Samadikhadem S., Arevalo J. F., Ahmadieh H., Survey of Ophthalmology, 2024, 69, 558. [98] Veritti D., Sarao V., Francescutti L., Rota N., Loewenstein A., Borrelli E., Sadda S. R., Lanzetta P., Expert Review of Ophthalmology, 2017, 12, 475. [99] Wen S., Xu C., Yuan Y., Chen L., Ren Y., Xu Z., Jin J., Li,J., Zhou L., Frontiers in Medicine, 2025, 12, 1670643. [100] Kaštelan S., Konjevoda S., Sarić A., Urlić I., Lovrić I., Čanović S., Matejić T., Šešelja Perišin A., Molecules, 2025, 30, 3262. [101] Wang M., Li L., Zhang L., Zhao J., Jiang Z., Wang W., Anal. Chem., 2022, 94, 431. [102] Ilieş B. D., Yildiz I., Abbas M., ChemBioChem, 2024, 25, e202300867. [103] Su M., Dai Q., Chen C., Zeng Y., Chu C., Liu G., Nano-Micro Lett., 2020, 12, 96. [104] He K., Hu C., Ding Y.-F., Cai W., Huang D., Mo L., Liu J., Wang R., Nano Today, 2024, 56, 102245. [105] Wang W., Ma Z., Zhu S., Wan H., Yue J., Ma H., Ma R., Yang Q., Wang Z., Li Q., Qian Y., Yue C., Wang Y., Fan L., Zhong Y., Zhou Y., Gao H., Ruan J., Hu Z., Liang Y., Dai H., Adv. Mater., 2018, 30, 1800106. [106] Zhang W., Liang X., Zhang X., Tong W., Shi G., Guo H., Jin Z., Tian J., Du Y., Xue H., European J. Nuclear Medicine and Molecular Imaging, 2024, 51, 1841. [107] Schmidt E. L., Ou Z., Ximendes E., Cui H., Keck C. H. C., Jaque D., Hong G., Nature Reviews Methods Primers, 2024, 4, 23. [108] Chang B., Li D., Ren Y., Qu C., Shi X., Liu R., Liu H., Tian J., Hu Z., Sun T., Cheng Z., Nat. Biomed. Engineering, 2021, 6, 629. [109] Li L., Liu M., Deng S., Zhu X., Song Y., Song E., Small, 2023, 19, 2208429. [110] Lu S., Guo X., Zhang F., Li X., Zou M., Li L.-L., Chin. Chem. Lett., 2021, 32, 1947. [111] Fu Y., Liu T., Wang H., Wang Z., Hou L., Jiang J., Xu T., J. Sci.: Adv. Mater. Dev., 2024, 9, 100694. [112] Bayrak S., Gergeroglu H., Food Chemistry, 2024, 440, 138257. [113] He Y., Yuan J., Khan I. M., Zhang L., Ma P., Wang Z., Food Control, 2023, 153, 109891. [114] Zhou S., Li J., Zhang Q., Tong Y., Qi X., Duan Y., Zhang X., Luo Z., Li,Y., Optics & Laser Technology, 2024, 175, 110783. [115] Zhang D., Qian M., Yang X., Zhang C., Qi H., Chemistry – An Asian Journal, 2024, 19, e202400743. [116] Parassol B. G., Kusimoto Takeuti N. N., Faria H. A. M., Jorge K. C., Sampaio I., Zucolotto V., Vieira N. C. S., Biosens. Bioelectron.: X, 2024, 18, 100478. [117] Zhang K., Xu H., Li K., Advances in Experimental Medicine, Biology, 2023, 1199, 39. [118] Böttger R., Knappe D., Hoffmann R., J. Controlled Release, 2018, 292, 58. [119] Naito M., Chaya H., Toh K., Kim B. S., Hayashi K., Fukushima S., Nagata T., Yokota T., Kataoka K., Miyata K., J. Controlled Release, 2021, 330, 812. [120] Oh E. J., Choi J.-S., Kim H., Joo C.-K., Hahn S. K., Biomaterials, 2011, 32, 3115. [121] Wang L., Zhang X., Pang N., Xiao L., Li Y., Chen N., Ren M., Deng X., Wu J., Cell Death & Disease, 2015, 6, e1796. [122] Seo S. J., Lee S. H., Kim K. H., Kim J. K., J. Biomed. Mater. Res. Part B: Appl. Biomater., 2018, 107, 1272. [123] Kim M. H., Kim S.-G., Kim D.-W., Nuclear Medicine and Molecular Imaging, 2018, 52, 359. [124] Kang M. J., Roh K.-H., Lee J. S., Lee J. H., Park S., Lim D. W., ACS Applied Materials & Interfaces, 2023, 15, 32201. [125] Nagano H., Tomida C., Yamagishi N., Teshima-Kondo S., International J. Molecular Sciences, 2019, 20, 5608. [126] Liang H., Ren Y., Huang Y., Xie X., Zhang M., J. Ethnopharmacology, 2024, 328, 118078. [127] Lin Y.-T., Tan J., Tao Y.-L., Hu W.-W., Wang Y.-C., Huang J., Zhou Q., Xiao A., World Journal of Diabetes, 2025, 16, 99473. [128] Leitch I. M., Gerometta M., Eichenbaum D., Finger R. P., Steinle N. C., Baldwin M. E., Ophthalmology and Therapy, 2024, 13, 1857. [129] Guo X., Yi H., Li T. C., Wang Y., Wang H., Chen X., Biomolecules, 2021, 11, 253. [130] Tremolada G., Lattanzio R., Mazzolari G., Zerbini G., American Journal of Cardiovascular Drugs, 2007, 7, 393. [131] Peng L., Zhan P., Zhou Y., Fang W., Zhao P., Zheng Y., Xu N., Molecular Biology Reports, 2012, 39, 9473. [132] Sasso F. C., Zuchegna C., Tecce M. F., Capasso A., Adinolfi L. E., Romano A., Bartollino S., Porcellini A., Costagliola C., Acta Diabetologica, 2020, 57, 947. [133] Elamurugan V., Varshney T., Naresh Babu K., Narendran S., Raj Deivarajan H., Sevugamurthi K., Medical Hypotheses, 2023, 178, 111137. [134] Kang M. J., Roh K. H., Lee J. S., Lee J. H., Park S., Lim D. W., ACS Appl. Mater. Interfaces, 2023, 15, 32201. [135] Lindgren A., Anttila M., Arponen O., Hämäläinen K., Könönen M., Vanninen R., Sallinen H., European Journal of Radiology, 2023, 165, 110925. [136] Hristodorov D., Lohoff T., Luneborg N., Mulder G.-J., Clark S. J., Progress in Retinal and Eye Research, 2024, 99, 101243. [137] Kim E. L., Moshfeghi A. A., Current Ophthalmology Reports, 2016, 4, 61. [138] Zhou X., Yan N., Cornel E. J., Cai H., Xue S., Xi H., Fan Z., He S., Du J., Biomaterials, 2021, 269, 120345. [139] Rabiee N., Yaraki M. T., Garakani S. M., Garakani S. M., Ahmadi S., Lajevardi A., Bagherzadeh M., Rabiee M., Tayebi L., Tahriri M., Hamblin M. R., Biomaterials, 2020, 232, 119707. [140] Atcı Ş. Y., Güneş A., Zontul M., Arslan Z., Tomography, 2024, 10, 215. [141] Du M., Zhao X., Guo M., Wang X., Zhang Y., Yang L., Liu S., Sun L., Liao M., Dong X., Lei Y., Zhao Y., Liang S., Wang X., You C., Yang H., Yan H., Theranostics, 2025, 15, 3943. [142] Xie Z., Wu X. J., Cheng R. W., Cui J. H., Yuan S. T., Zhou J. W., Liu Q. H., Acta Pharmacol. Sin, 2023, 44, 897. [143] Li Y., Liu Y., Liu S., Gao M., Wang W., Chen K., Huang L., Liu Y., Signal Transduct Target Ther., 2023, 8, 152. [144] Dashti R., Safaei F., Sadeghian G., Hosseini S. A., Salimibani M., J. Biomater. Appl., 2025, 8853282251395196. [145] Xiao W., Jiang W., Chen Z., Huang Y., Mao J., Zheng W., Hu Y., Shi J., Signal Transduction and Targeted Therapy, 2025, 10, 74. [146] Sivagnanam S., Das K., Basak M., Mahata T., Stewart A., Maity B., Das P., Nanoscale Advances, 2022, 4, 1694. [147] Diou O., Fattal E., Tsapis N., Molecular Imaging Techniques: New Frontiers, 2013, 178. [148] Hapuarachchige S., Artemov D., Frontiers in Oncology, 2020, 10, 1131. [149] Jain S., Raza K., Agrawal A. K., Vaidya A., Nanotechnology Applications for Cancer Chemotherapy, 2021, 589. [150] Yang C., Yang C., Chen Y., Liu J., Liu Z., Chen H.-J., J. Sci.: Adv. Mater. Dev., 2023, 8, 100619. [151] Moon C.-H., Lee A.-J., Jeon H.-Y., Kim E.-B., Ha K.-S., Theranostics, 2023, 13, 2424. [152] Chen P.-L., Shi Q.-Y., Chen T., Wang P., Liu Y., Liu L.-H., J. Mater. Sci., 2020, 55, 7843. [153] Luo H., Yang J., Jin H., Huang C., Fu J., Yang F., Gong H., Zeng S., Luo Q., Zhang Z., The FASEB Journal, 2011, 25, 1865. [154] Barnett E. M., Zhang X., Maxwell D., Chang Q., Piwnica-Worms D., Proceedings of the National Academy of Sciences, 2009, 106, 9391. [155] Sivasubramanian M., Hsia Y., Lo L.-W., Frontiers in Molecular Biosciences, 2014, 1, 15. [156] Hao J., Cai H., Gu L., Ma Y., Li Y., Liu B., Zhu H., Zeng F., Wu M., Regenerative Biomaterials, 2024, 11, rbae015. [157] Zhang L., Wang X., Zhao J., Sun B., Wang W., Chemical & Biomedical Imaging, 2023, 2, 233. [158] Cho H.-J., Lee S.-J., Park S.-J., Paik C. H., Lee S.-M., Kim S., Lee Y.-S., Journal of Controlled Release, 2016, 237, 177. [159] Qiu X., Johnson J. R., Wilson B. S., Gammon S. T., Piwnica-Worms D., Barnett E. M., PLoS One, 2014, 9, e88855. [160] Lee S., Park K., Kim K., Choi K., Kwon I. C., Chem. Commun., 2008, 4250. [161] Zhou X., Miao L., Xu N., Chen Y., Shi J., Zhou J., Wang G., Qiao Q., Xu Z., Adv. Sci., 2025, 12, e05967. [162] Yao D., Wang D., Photodiagnosis and Photodynamic Therapy, 2025, 56, 105182. [163] Wu X., Deng Y., Xu Y., Kang H., Hu J. J., Yoon J., Liang G., Adv. Mater., 2024, 36, 2409893. [164] Zhai C., Schreiber C. L., Padilla-Coley S., Oliver A. G., Smith B. D., Angew. Chem. Int. Ed., 2020, 59, 23740. [165] Burks S. R., Legenzov E. A., Martin E. W., Li C., Lu W., Kao J. P. Y., PLoS One, 2015, 10, e0120982. [166] Martins B., Pires M., Ambrósio A. F., Girão H., Fernandes R., J. Biomed. Sci., 2024, 31, 48. [167] Servillo A., Sacconi R., Oldoni G., Barlocci E., Tombolini B., Battista M., Fantaguzzi F., Rissotto F., Mularoni C., Parravano M., Zucchiatti I., Querques L., Bandello F., Querques G., Ophthalmology and Therapy, 2024, 13, 2067. [168] Zeng S., Chen Y., Zhou F., Zhang T., Fan X., Chrzanowski W., Gillies M. C., Zhu L., Advanced Drug Delivery Reviews, 2023, 199, 114965. [169] Watanabe K., Nishimura Y., Nomoto T., Umemoto N., Zhang Z., Zhang B., Kuroyanagi J., Shimada Y., Shintou T., Okano M., Miyazaki T., Imamura T., Tanaka T., BMC Neuroscience, 2012, 13, 101. [170] Lapidot I., Baranes D., Pinhasov A., Gellerman G., Albeck A., Grynszpan F., E. Shatzmiller, S., Med. Chemi., 2016, 12, 48. [171] Paulus A., Desai P., Carney B., Carlucci G., Reiner T., Brand C., Weber W. A., EJNMMI Research, 2015, 5, 120. [172] Buckle T., Rietbergen D. D. D., de Wit-van der Veen L., Schottelius M., European Journal of Nuclear Medicine and Molecular Imaging, 2024, 51, 3040. [173] Tung C. H., Peptide Science, 2004, 76, 391. [174] Miao Y., Tian Y., Ye D., Chem. Soc. Rev., 2025, 54, 11624. [175] Lee S., Xie J., Chen X., Biochemistry, 2010, 49, 1364. [176] Huhtala T., Weisell J., Rytkönen J., Närvänen A., Methods in Molecular Biology, 2013, 171. [177] A. Moss, J., L. Vavere, A., Azhdarinia, A., Current Medicinal Chemistry, 2012, 19, 3255. [178] Wu H., Huang J., Current Protein & Peptide Science, 2016, 17, 582. [179] Teribele Venturin G., Cheng Z., Current Protein & Peptide Science, 2016, 17, 543. [180] Sun X., Li Y., Liu T., Li Z., Zhang X., Chen X., Advanced Drug Delivery Reviews, 2017, 38. [181] Li R., Gong X., Hong C., Wang H., Chen Y., Tan K., Liu X., Wang F., Biomaterials, 2021, 279, 121234. [182] Ehlerding E. B., Sun L., Lan X., Zeng D., Cai W., J. Nuclear Medicine, 2018, 59, 390. [183] Zhang L., Zhao J., Ma B., Wang X., Zhang J., Wang W., ChemBioChem, 2024, 26, e202400753. [184] Ren C., Wang Z., Wang Q., Yang C., Liu J., Small Methods, 2019, 4, 1900403. [185] Liu Z., Liang G., Zhan W., Chem. Res. Chinese Universities, 2021, 37, 889. [186] Zhao H., Zhao H., Jiao Y., Zhu Y., Liu C., Li F., Wang Y., Gu Z., Yang D., Biomaterials, 2020, 256, 120220. [187] Allen S. D., Liu X., Jiang J., Liao Y.-P., Chang C. H., Nel A. E., Meng H., Biomaterials, 2021, 269, 120635. [188] Li B., Wang Y., Chang P., Chen H., Zhu Y., Zhao N., Yang Z., Li J., Chem. Engineering J., 2025, 521, 167162. [189] Malviya G., Singh P. K., Evolving Landscape of Molecular Diagnostics, 2024, 87. [190] Zhang X., Wang X., Wu Z., Zhou Q., Zhou H., Deng G., Chinese Journal of Veterinary Science, 2023, 43, 818. [191] Farkasinszky G., Dénes N., Rácz S., Kis A., Péliné J. S., Opposits G., Veres G., Balkay L., Kertész I., Mező G., Hunyadi J., Trencsényi G., In Vivo, 2022, 36, 657. [192] Nguyen V. P., Qian W., Wang X., Paulus Y. M.; Ed.: Chan J., Method in Enzymology, Vol. 657, Academic Press, Cambridge, 2021. [193] Chen Z. B., Jin H. H., Yang Z. G., He D. P., Rare Metals, 2022, 42, 1098. [194] Gandhi M., Electrochem, 2024, 5, 146. [195] Scott G. Y., Aborode A. T., Adesola R. O., Elebesunu E. E., Agyapong J., Ibrahim A. M., Andigema, A. S., Kwarteng S., Onifade I. A., Adeoye A. F., Aluko B. A., Bakare-Abidola T., Fatai L. O., Osayawe O. J.-K., Oladayo M., Osinuga A., Olapade Z., Osu A. I., Obidi P. O., Adv. Biomarker Sci. Tech., 2024, 6, 59. [196] Devi K. S. S., Prakash J., Tsujimura S., Hybrid Advances, 2024, 5, 100123. [197] Mansour M., Saeed Darweesh M., Soltan A., Alexandria Engineering Journal, 2024, 89, 224. [198] Narayanasamy D., Taufik S., Mohd Azmi A. F., Mohd Nor S. A., Abdul Rashid J. I., Biosens. Bioelectron.: X, 2024, 17, 100441. [199] Dey P., Raza M. J., Khera A., Sharma A., Khajuria A., Pandey A., Pandey C. M., Sharma R. K., Singh G., Barnwal R. P., Environmental Nanotechnology, Monitoring & Management, 2024, 21, 100914. [200] Hazarika G., Jadhav S. V., Ingole P. G., Materials Today Communications, 2024, 39, 109022. [201] Xiao Y., Zhang T., Zhang H., Colloids and Surfaces B: Biointerfaces, 2023, 231, 113559. [202] Sanli S., Food Chemistry, 2024, 437, 137823. [203] Ahmad F., Ghazal H., Rasheed F., Shahid M., Vasantham S. K., Rafiq W., Abbas Z., Sarwar S., Ain Q. U., Waqar A., Awais M., Asim M., Atiq S., Synthetic Metals, 2024, 304, 117594. [204] Wang S., Huang H., Wang X., Zhou Z., Luo Y., Huang K., Cheng N., Foods, 2023, 12, 3947. [205] Mirzadeh-rafie F., Rahbarizadeh F., Shoaei N., Nasiri F., Akbarizadeh M. R., Khatami M., Sensors International, 2023, 4, 100246. [206] Li W., Xie T., Gan S., Gong Y., Zhang J., Tang Q., Zhang K., Liao X., Anal. Chim. Acta, 2025, 1374, 344514. [207] Ahmed T., Memories-Materials, Devices, Circuits and Systems, 2023, 6, 100088. [208] Deng S., Wang F., Li Y., Li J., Zhan J., Shen Y., Peng Z., Song C., Cai R., Yang H., Tan W., Anal. Chem., 2024, 96, 20312. [209] Xiang X., Song M., Xu X., Lu J., Chen Y., Chen S., He Y., Shang Y., Anal. Chem., 2023, 95, 7993. [210] Tang Y., Gao Y., Nie K., Wang H., Chen S., Su H., Huang W., Dong H., J. Ethnopharm., 2024, 324, 117829. [211] Wang Z., Wang Y., Jia X., Han Q., Qian Y., Li Q., Xiang J., Wang Q., Hu Z., Wang W., Theranostics, 2019, 9, 1728. [212] Fu Y., Xiao K., Zhang X., Du C., Chen J., Anal. Chem., 2021, 93, 1076. [213] Ahmed T. S., Shah J., Zhen Y. N. B., Chua J., Wong D. W. K., Nusinovici S., Tan R., Tan G., Schmetterer L., Tan B., BMJ Open Diabetes Research & Care, 2024, 12, e003758. [214] Csősz É., Deák E., Kalló G., Csutak A., Tőzsér J., J. Proteom., 2017, 150, 351. [215] Cantó A., Martínez J., Perini-Villanueva G., Miranda M., Bejarano E., Int. J. Trans. Med., 2021, 2, 1. [216] Grunwald J. E., Bursell S.-E., Current Opinion in Endocrinology and Diabetes, 1996, 3, 298. [217] Ebrahim A. S., Carion T. W., Ebrahim T., Win J., Kani H., Wang Y., Stambersky A., Ibrahim A. S., Sosne G., Berger E. A., Biosensors (Basel), 2023, 13, 974. [218] Mahapadi A. A., Shirsath V., Pundge A., Biomed. Mater. & Dev., 2026, 4, 2164. [219] Latha G., Priya P. A., Smitha V. K., Multimedia Tools and Applications, 2024, 83, 77785. [220] Sivakumar R., Ravindran G., Muthayya M., Lakshminarayanan S., Velmurughendran C. U., BioMed. Research International, 2005, 2005, 20. |
| [1] | LIN Yao, WANG Xinyu, WANG Xinyue, LUO Mingyue, YANG Mei, WU Ci. In-depth Phosphoproteome Analysis from Microscale Samples with Rapid In-situ One-tip IMAC Strategy [J]. Chemical Research in Chinese Universities, 2026, 42(2): 504-513. |
| [2] | NIU Yunhan, HUANG Yinan, CHEN Xiaosong, SONG Jiajun, WANG Zhongwu, SUN Mengxiao, LI Liqiang. Biofunctional Interfaces: The Role of Hydrogels in Organic Transistors [J]. Chemical Research in Chinese Universities, 2025, 41(6): 1387-1404. |
| [3] | GUO Xin, CONG Yunhong, ZHAO Jian, ZHAO Dongxia, YANG Zhongzhi. Developing Quantum Chemical Topology for Polypeptide Charge Distributions Using Kohn-Sham One-electron Potential [J]. Chemical Research in Chinese Universities, 2025, 41(5): 1121-1132. |
| [4] | CHEN Yingqi, BUDIANTA Richard, NING Yingying. Near-infrared Emissive 1,2-Dioxetane-based Chemiluminescent Probes [J]. Chemical Research in Chinese Universities, 2024, 40(5): 806-823. |
| [5] | TIAN Lin, CHENG Cheng, ZHAO Zhenwen, LIU Wei, and QI Li. Colorimetric Recognition of 3,4-Dihydroxy-D,L-phenylalanine with Tetrapeptide-modified Copper Nanoparticles as Chiral Nanozymes [J]. Chemical Research in Chinese Universities, 2023, 39(6): 1092-1099. |
| [6] | JIANG Dandan, QI Ruixue, LYU Siqi, WANG Wei, LIU Jinghai, JIA Qiong. Preparation of Cerium Dioxide Functionalized Magnetic Layered Double Hydroxides for High-efficiency Phosphopeptide Enrichment [J]. Chemical Research in Chinese Universities, 2023, 39(2): 253-259. |
| [7] | YAN Yaqiong, WANG Lei, WANG Hao. Functional Peptides from One-bead One-compound High-throughput Screening Technique [J]. Chemical Research in Chinese Universities, 2023, 39(1): 83-91. |
| [8] | WANG Yuda, ZULPYA Mahmut, ZHANG Xinyao, XU Shihan, SUN Jiao, DONG Biao. Recent Advances of Metal-Organic Frameworks-based Nanozymes for Bio-applications [J]. Chemical Research in Chinese Universities, 2022, 38(6): 1324-1343. |
| [9] | ZHANG Qian, LIANG Yuyan, XING Hang. Caging-Decaging Strategies to Realize Spatiotemporal Control of DNAzyme Activity for Biosensing and Bioimaging [J]. Chemical Research in Chinese Universities, 2022, 38(4): 902-911. |
| [10] | XU Min, ZHOU Baomei, DING Yan, DU Shanshan, SU Mengke, LIU Honglin. Programmable Oligonucleotide-Peptide Complexes:Synthesis and Applications [J]. Chemical Research in Chinese Universities, 2022, 38(4): 856-865. |
| [11] | ZHANG Mengqian, HE Peiyang, LI Yanmei. Contemporary Approaches to α,β-Dehydroamino Acid Chemical Modifications [J]. Chemical Research in Chinese Universities, 2021, 37(5): 1044-1054. |
| [12] | YANG Jia, ZHENG Rui, AN Hongwei, WANG Hao. In vivo Self-assembled Peptide Nanoprobes for Disease Diagnosis [J]. Chemical Research in Chinese Universities, 2021, 37(4): 855-869. |
| [13] | YUAN Hui, LIANG Hanyu, HOU Peidong, LI Juan. Advanced Nanomaterials for Multimodal Molecular Imaging [J]. Chemical Research in Chinese Universities, 2021, 37(4): 840-845. |
| [14] | LI Haonan, WANG Zhao, HUO Fengwei, WANG Shutao. Dip-Pen Nanolithography(DPN): from Micro/Nano-patterns to Biosensing [J]. Chemical Research in Chinese Universities, 2021, 37(4): 846-854. |
| [15] | LIU Zhiyu, LIANG Gaolin, ZHAN Wenjun. In situ Activatable Peptide-based Nanoprobes for Tumor Imaging [J]. Chemical Research in Chinese Universities, 2021, 37(4): 889-899. |
| Viewed | ||||||
|
Full text |
|
|||||
|
Abstract |
|
|||||

