Dash S, Shakyawar SK, Sharma M, Kaushik S. Big data in healthcare: Management, analysis and future prospects. J Big Data. 2019;6:54.
Gandrup J, Ali SM, McBeth J, van der Veer SN, Dixon WG. Remote symptom monitoring integrated into electronic health records: A systematic review. J Am Med Inform Assoc. 2020;27:1752–63.
Article PubMed PubMed Central Google Scholar
Naresh V, Lee N. A Review on Biosensors and Recent Development of Nanostructured Materials-Enabled Biosensors. Sensors. 2021;21(4):1109.
Article CAS PubMed PubMed Central ADS Google Scholar
Anushka A, Bandopadhyay PK. Das, Paper based microfluidic devices: a review of fabrication techniques and applications. Eur Phys J Spec Top. 2023;232:781–815.
Article CAS PubMed ADS Google Scholar
Prabhu A, Giri Nandagopal MS, Peralam Yegneswaran P, Singhal HR, Mani NK. Inkjet printing of paraffin on paper allows low-cost point-of-care diagnostics for pathogenic fungi. Cellulose. 2020;27:7691–701.
Kelkar N, Prabhu A, Prabhu A, Giri Nandagopal MS, Mani NK. Sensing of body fluid hormones using paper-based analytical devices. Microchem J. 2022;174:107069.
Zhang Y, Li Y-L, Cui S-H, Wen C-Y, Li P, Yu J-F, Tang S-M, Zeng J-B. Distance-based detection of Ag+ with gold nanoparticles-coated microfluidic paper. J Anal Test. 2021;5:11–8.
Ray R, Prabhu A, Prasad D, Kumar Garlapati V, Aminabhavi TM, Mani NK, Simal-Gandara J. Paper-based microfluidic devices for food adulterants: Cost-effective technological monitoring systems. Food Chem. 2022;390:133173.
Article CAS PubMed Google Scholar
Tao KJ, Castleman MD, Tao S. Reagent-loaded annulus-shaped reactor on filter-paper with virtual colorimeter for onsite quick detection of chlorogenic acid. J Anal Test. 2023;7:25–32.
Liu Z-G, Xiao M, Yang R-Z, Zhou Q-Q, Ye H-F, Yi C-Q. Multiplexed detection of Fe3+, cobalamin and folate using fluorescent nanoprobe-based microarrays and a smartphone. J Anal Test. 2021;5:19–29.
Hou Y, Lv CC, Guo YL. Recent advances and applications in paper-based devices for point-of-care testing. J Anal Test. 2022;6:247–73.
Article PubMed PubMed Central Google Scholar
Mani NK, Das SS, Dawn S, Chakraborty S. Electro-kinetically driven route for highly sensitive blood pathology on a paper-based device. Electrophoresis. 2020;41:615–20.
Article CAS PubMed Google Scholar
Hasandka A, Prabhu A, Prabhu A, Singhal HR, Nandagopal MSG, Shenoy R, Mani NK. “Scratch it out”: carbon copy based paper devices for microbial assays and liver disease diagnosis. Anal Methods. 2021;13:3172–3180.
Ray R, Goyal A, Prabhu A, Parekkh S, Maddasani S, Mani NK. Paper-based dots and smartphone for detecting counterfeit country eggs. Food Chem. 2023;403:134484.
Article CAS PubMed Google Scholar
Sudarsan S, Prabhu A, Prasad D, Mani NK. DNA compaction enhances the sensitivity of fluorescence-based nucleic acid assays: a game changer in point of care sensors? Analyst. 2023;148:2295–307.
Article CAS PubMed ADS Google Scholar
Sudarsan S, Shetty P, Chinnappan R, Mani NK. Tuning hydrophobicity of paper substrates for effective colorimetric detection of glucose and nucleic acids. Anal Bioanal Chem. 2023;415:6449–60.
Article CAS PubMed PubMed Central Google Scholar
Prabhu A, Nandagopal MSG, Peralam Yegneswaran P, Prabhu V, Verma U, Mani NK. Thread integrated smart-phone imaging facilitates early turning point colorimetric assay for microbes. RSC Adv. 2020;10:26853–61.
Article CAS PubMed PubMed Central ADS Google Scholar
Prabhu A, Singhal H, Giri Nandagopal MS, Kulal R, Peralam Yegneswaran P, Mani NK. Knitting thread devices: detecting candida albicans using napkins and tampons. ACS Omega. 2021;6:12667–75.
Article CAS PubMed PubMed Central Google Scholar
Selvam GS, Dheivasigamani T, Prabhu A, Mani NK. Embellishing 2-D MoS2 nanosheets on lotus thread devices for enhanced hydrophobicity and antimicrobial activity. ACS Omega. 2022;7:24606–13.
Article CAS PubMed PubMed Central Google Scholar
Agustini D, Bergamini MF, Marcolino-Junior LH. Tear glucose detection combining microfluidic thread based device, amperometric biosensor and microflow injection analysis. Biosens Bioelectron. 2017;98:161–7.
Article CAS PubMed Google Scholar
Cabot JM, Breadmore MC, Paull B. Thread based electrofluidic platform for direct metabolite analysis in complex samples. Anal Chim Acta. 2018;1000:283–92.
Article CAS PubMed Google Scholar
Gonzalez A, Gaines M, Gomez FA. Thread-based microfluidic chips as a platform to assess acetylcholinesterase activity. Electrophoresis. 2017;38:996–1001.
Article CAS PubMed Google Scholar
Malon RSP, Heng LY, Córcoles EP. Recent developments in microflluidic paper-, cloth-, and thread-based electrochemical devices for analytical chemistry. Rev Anal Chem. 2017;36:1–19.
Nilghaz A, Zhang L, Li M, Ballerini DR, Shen W. Understanding thread properties for red blood cell antigen assays: Weak ABO blood typing. ACS Appl Mater Interfaces. 2014;6:22209–15.
Article CAS PubMed Google Scholar
Terse-Thakoor T, Punjiya M, Matharu Z, Lyu B, Ahmad M, Giles GE, Owyeung R, Alaimo F, Shojaei Baghini M, Brunyé TT, Sonkusale S. Thread-based multiplexed sensor patch for real-time sweat monitoring, Npj Flex. Electron. 2020;4(1):159–68.
Sateanchok S, Wangkarn S, Saenjum C, Grudpan K. A cost-effective assay for antioxidant using simple cotton thread combining paper based device with mobile phone detection. Talanta. 2018;177:171–5.
Article CAS PubMed Google Scholar
Xiao G, He J, Chen X, Qiao Y, Wang F, Xia Q, Yu L, Lu Z. A wearable, cotton thread/paper-based microfluidic device coupled with smartphone for sweat glucose sensing. Cellulose. 2019;26:4553–62.
Choi JR, Nilghaz A, Chen L, Chou KC, Lu X. Modification of thread-based microfluidic device with polysiloxanes for the development of a sensitive and selective immunoassay. Sens Actuat B Chem. 2018;260:1043–51.
Suarez WT, Franco MOK, Capitán-Vallvey LF, Erenas MM. Chitosan-modified cotton thread for the preconcentration and colorimetric trace determination of Co(II). Microchem J. 2020;158: 105137.
Weng X, Kang Y, Guo Q, Peng B, Jiang H. Recent advances in thread-based microfluidics for diagnostic applications. Biosens Bioelectron. 2019;132:171–85.
Article CAS PubMed PubMed Central Google Scholar
Gonzalez A, Gaines M, Gallegos LY, Guevara R, Gomez FA. Enzyme-linked immunosorbent assays (ELISA) based on thread, paper, and fabric. Electrophoresis. 2018;39:476–84.
Article CAS PubMed Google Scholar
Arroyo MJ, Erenas MM, de Orbe-Payá I, Cantrell K, Dobado JA, Ballester P, Blondeau P, Salinas-Castillo A, Capitán-Vallvey LF. Thread based microfluidic platform for urinary creatinine analysis. Sens Actuat B Chem. 2020;305: 127407.
Jiang N, Tansukawat ND, Gonzalez-Macia L, Ates HC, Dincer C, Güder F, Tasoglu S, Yetisen AK. Low-cost optical assays for point-of-care diagnosis in resource-limited settings. ACS Sensors. 2021;6:2108–24.
Article CAS PubMed Google Scholar
Tomazelli Coltro WK, Cheng C-MM, Carrilho E, de Jesus DP. Recent advances in low-cost microfluidic platforms for diagnostic applications. Electrophoresis. 2014;35:2309–24.
Article CAS PubMed Google Scholar
Li YD, Li WY, Chai HH, Fang C, Kang YJ, Li CM, Yu L. Chitosan functionalization to prolong stable hydrophilicity of cotton thread for thread-based analytical device application. Cellulose. 2018;25:4831–40.
Cosgun Y, Yildirim A, Yucel M, Karakoc AE, Koca G, Gonultas A, Gursoy G, Ustun H, Korkmaz M. Evaluation of invasive and noninvasive methods for the diagnosis of helicobacter pylori infection. Asian Pac J Cancer Prev. 2016;17:5265–72.
PubMed PubMed Central Google Scholar
Andari MVC, Bussamra SLC, Tedesco TGD, Peixoto PAB, Pares PDBS, Braga A, Araujo Júnior E, Aoki T. Noninvasive prenatal testing: benefits and limitations of the available tests. Ces Gynekol. 2020;85:41–8.
Tooley KL, Howarth GS, Butler RN. Mucositis and non-invasive markers of small intestinal function. Cancer Biol Ther. 2009;8:753–8.
Article CAS PubMed Google Scholar
Sumida Y, Nakajima A, Itoh Y. Limitations of liver biopsy and non-invasive diagnostic tests for the diagnosis of nonalcoholic fatty liver disease/nonalcoholic steatohepatitis. World J Gastroenterol. 2014;20:475–85.
Comments (0)