High-efficient synthesis of carbon quantum dots from orange pericarp as fluorescence turn-on probes for Ca۲+ and Zn۲+ ion detection and their application in trypsin activity characterization

سال انتشار: 1402
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 229

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شناسه ملی سند علمی:

JR_IJBMS-26-2_008

تاریخ نمایه سازی: 8 دی 1401

چکیده مقاله:

Objective(s): In this work, we propose an efficient preparation process for the synthesis of natural carbon quantum dots (NCQDs) by the usage of orange pericarp as the carbon natural resource, which is performed through hydrothermal treatment and top-down approaches.Materials and Methods: The structural, morphological, average size, and optical properties of synthesized NCQDs were investigated via dynamic light scattering (DLS), transform infrared spectroscopy (FTIR), X-ray diffraction (XRD), transmission electron microscopy (TEM), atomic force microscopy (AFM), field emission scanning electron microscope (FESEM), energy dispersive x-ray spectroscopy (EDX), ultraviolet-visible spectroscopy (UV-Vis), and fluorescence PL spectra.Results:  The shape of obtained NCQDs was observed to be spherical in the results of TEM analysis with an average size of ۶–۷ nm which confirms NCQDs essence. The signs of a strong peak (absorption) at around ۲۸۲ nm throughout the UV-vis spectrum have been detected. The provided FTIR spectroscopy confirmed the existence of functional groups above the NCQDs surface. Furthermore, the surface charge of -۱۱ mV through the obtained zeta potential regarding the synthesized NCQDs has been identified. MTT assay on mouse colon carcinoma cells (C۲۶) demonstrated the lack of any signs of toxicity in NCQDs. Conclusion: The obtained NCQDs contain high photo-stability, excellent PL activity, and efficient fluorescent emission based on excitation. The results of kinetic studies revealed the ability of NCQDs to inhibit trypsin activity in a non-competitive model, which qualifies them as potent inhibitors and quenchers of trypsin. It can be suggested that the synthesized NCQDs have the potential of functioning as a sustainable and eco-friendly source for various applications such as sensors for detecting Ca۲+ and Zn۲+ and trypsin biosensor for determining enzyme activity.

نویسندگان

Shakiba Tolou-Shikhzadeh-Yazdi

Department of Biology, Faculty of Sciences, Mashhad Branch, Islamic Azad University, Mashhad, Iran

Niloofar Shakibapour

Department of Biology, Faculty of Sciences, Mashhad Branch, Islamic Azad University, Mashhad, Iran

Sare Hosseini

Cancer Research Center, Mashhad University of Medical Sciences, Mashhad, Iran

Parisa Mokaberi

Department of Biology, Faculty of Sciences, Mashhad Branch, Islamic Azad University, Mashhad, Iran

Bizhan Malaekeh-Nikouei

Nanotechnology Research Center, Pharmaceutical Technology Institute, Mashhad University of Medical Sciences, Mashhad, Iran

Jamshidkhan Chamani

Department of Biology, Faculty of Sciences, Mashhad Branch, Islamic Azad University, Mashhad, Iran

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  • Xi N, Lai K. Nano Optoelectronic Sensors and Devices: Nanophotonics ...
  • Mehrotra P. Biosensors and their applications-A review. J Oral Biol ...
  • Pal T, Mohiyuddin S, Packirisamy G. Facile and green synthesis ...
  • Gong X, Lu W, Paau MC, Hu Q, Wu X, ...
  • Teng X, Ma C, Ge C, Yan M, Yang J, ...
  • Sun YP, Zhou B, Lin Y, Wang W, Fernando KS, ...
  • Liu W, Li C, Ren Y, Sun X, Pan W, ...
  • Molaei MJ. The optical properties and solar energy conversion applications ...
  • Lim SY, Shen W, Gao Z. Carbon quantum dots and ...
  • Kulkarni NS, Guererro Y, Gupta N, Muth A, Gupta V. ...
  • Bhamore JR, Jha S, Park TJ, Kailasa SK. Green synthesis ...
  • Li H, Kang Z, Liu Y, Lee ST. Carbon nanodots: ...
  • Zhou J, Lin P, Ma J, Shan X, Feng H, ...
  • Li H, He X, Kang Z, Huang H, Liu Y, ...
  • Hu S, Guo Y, Tian R. Synthesis and size control ...
  • Ding H, Cheng LW, Ma YY, Kong JL, Xiong HM.Luminescent ...
  • Liu H, Ye T, Mao C. Fluorescent carbon nanoparticles derived ...
  • Thambiraj S, Shankaran R. Green synthesis of highly fluorescent carbon ...
  • Zhang X, Ming H, Liu R, Han X, Kang Z, ...
  • Yu J, Song N, Zhang YK, Zhong SX, Wang AJ, ...
  • Mehta VN, Jha S, Kailasa SK. One-pot green synthesis of ...
  • Weng CI, Chang HT, Lin CH, Shen YW, Unnikrishnan B, ...
  • Kumar D, Singh K, Verma V, Bhatti H. Synthesis and ...
  • Kasibabu BSB, D’souza SL, Jha S, Kailasa SK. Imaging of ...
  • Wang F, Chen YH, Liu CY, Ma DG. White light-emitting ...
  • Godavarthi S, Kumar KM, Vélez EV, Hernandez-Eligio A, Mahendhiran M, ...
  • Matai I, Sachdev A, Gopinath P. Self-assembled hybrids of fluorescent ...
  • Kamelnia E, Divsalar A, Darroudi M, Yaghmaei P, Sadri K. ...
  • Yang X, Peng L, Zong J, Zhu Y. Preparation of ...
  • Li H, Liu R, Liu Y, Huang H, Yu H, ...
  • Zhang X, Jiang M, Niu N, Chen Z, Li S, ...
  • Wang R, Lu KQ, Tang ZR, Xu YJ. Recent progress ...
  • Surendran P, Lakshmanan A, Priya SS, Balakrishnan K, Rameshkumar P, ...
  • Liu S, Tian J, Wang L, Zhang Y, Qin X, ...
  • Baker SN, Baker GA. Luminescent carbon nanodots: Emergent nanolights. Angew ...
  • Yang ST, Wang X, Wang H, Lu F, Luo PG, ...
  • Yang ST, Cao L, Luo PG, Lu F, Wang X, ...
  • Oliveira BP, Silva Abreu FOM. Carbon quantum dots synthesis from ...
  • Zhang H, Ming H, Lian S, Huang H, Li H, ...
  • Li H, Zhu Y, Cao H, Yang X, Li C. ...
  • Wang R, Li G, Dong Y, Chi Y, Chen G. ...
  • Minati L, Del Piano A. Facile synthesis of water-soluble, highly-fluorescent ...
  • Jiao XY, Li LS, Qi S, Zhang Y, Huang K, ...
  • Pirsaheb M, Asadi A, Sillanpää M, Farhadian N. Application of ...
  • Zhao DL, Chung TS. Applications of carbon quantum dots (CQDs) ...
  • Sharma S, Dutta V, Singh P, Raizada P, Rahmani-Sani Hosseini-Bandegharaei ...
  • Singh R, Kumar R, Singh D, Savu R, Moshkalev S. ...
  • Wang Y, Q Han, H Zhang. Evaluation of the toxicity ...
  • Wang Y, Zhang HM, Kang YJ, Gu YL, Cao L. ...
  • Howard DR, Herr J, Hollister R. Using trypsin & soybean ...
  • Hu X, Li Y, Xu Y, Gan Z, Zou X, ...
  • Zulfajri M, Dayalan S, Li WY, Chang CJ, Chang YP, ...
  • Vandarkuzhali SAA, Jeyalakshmi V, Sivaraman G, Singaravadivel S, Krishnamurthy KR, ...
  • Xue B, Yang Y, Sun Y, Fan J, Li X, ...
  • Liu Y, Chen Z, Li W, Ma C, Wu P, ...
  • Fan Y, Wang X, Li J, Zhang L, Yang L,Gao ...
  • Ding Z, Li F, Wen J, Wang X, Sun R. ...
  • Chen W, Li D, Tian L, Xiang W, Wang T, ...
  • Kamelnia E, Divsalar A, Darroudi M, Yaghmaei P, Sadri K. ...
  • Revanth JS, Madhav VS, Sai YK, Krishna DV, Srividya K, ...
  • Tai JY, Leong KH, Saravanan P, Sim LC. Bioinspired Synthesis ...
  • Wei Y, Zhang D, Fang Y, Wang H, Liu Y, ...
  • Arsalani N, Nezhad-Mokhtari P, Jabbari E. Microwave-assisted and one-step synthesis ...
  • Martindale BC, Hutton GA, Caputo CA, Reisner E. Solar hydrogen ...
  • Chandra S, Pradhan S, Mitra S, Patra P, Bhattacharya A, ...
  • Wu F, Su H, Wang K, WK Wong, X Zhu. ...
  • Masha S, Oluwafemi OS. Synthesis of blue and green emitting ...
  • Li B, Ma H, Zhang B, Qian J, Cao T, ...
  • Yanqing W, Hongmei Zh, Jian C, Qiuhua Zh. Interaction of ...
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