Wahsner J. Gale E.M. Rodríguez-Rodríguez A. Caravan P. Chemistry of MRI Contrast Agents: Current Challenges and New Frontiers Chem. Rev. 2019 119 957 1057 10.1021/acs.chemrev.8b00363 30350585
Iyad N. Ahmad S.M. Alkhatib S.G. Hjouj M. Gadolinium Contrast Agents- Challenges and Opportunities of a Multidisciplinary Approach: Literature Review Eur. J. Radiol. Open 2023 11 100503 100513 10.1016/j.ejro.2023.100503 37456927
Hazelton J.M. Chiu M.K. Abujudeh H.H. Nephrogenic Systemic Fibrosis: A Review of History, Pathophysiology, and Current Guidelines Curr Radiol Rep 2019 7 5 10.1007/s40134-019-0312-1
Malikova H. Nephrogenic Systemic Fibrosis: The End of the Story? Quant. Imaging Med. Surg. 2019 9 1470 1474 10.21037/qims.2019.07.11 31559176
Minton L.E. Pandit R. Porter K.K. Contrast-Enhanced MRI: History and Current Recommendations Appl. Radiol. 2021 50 15 19 10.37549/AR2776
Le Fur M. Caravan P. The Biological Fate of Gadolinium-Based MRI Contrast Agents: A Call to Action for Bioinorganic Chemists Metallomics 2019 11 240 254 10.1039/C8MT00302E
Robic C. Port M. Rousseaux O. Louguet S. Fretellier N. Catoen S. Factor C. Le Greneur S. Medina C. Bourrinet P. et al. Physicochemical and Pharmacokinetic Profiles of Gadopiclenol: A New Macrocyclic Gadolinium Chelate With High T1 Relaxivity Invest Radiol 2019 54 475 484 10.1097/RLI.0000000000000563
Botta M. Carniato F. Esteban-Gómez D. Platas-Iglesias C. Tei L. Mn(II) Compounds as an Alternative to Gd-Based MRI Probes Future Med. Chem. 2019 11 1461 1483 10.4155/fmc-2018-0608
Henoumont C. Devreux M. Laurent S. Mn-Based MRI Contrast Agents: An Overview Molecules 2023 28 7275 10.3390/molecules28217275
Bianchi A. Gobbo O.L. Dufort S. Sancey L. Lux F. Tillement O. Coll J. Crémillieux Y. Orotracheal Manganese-enhanced MRI (MEMRI): An Effective Approach for Lung Tumor Detection NMR Biomed. 2017 30 e3790 10.1002/nbm.3790
Yuan D. Ellis C.M. Davis J.J. Mesoporous Silica Nanoparticles in Bioimaging Materials 2020 13 3795 10.3390/ma13173795 32867401
Carniato F. Tei L. Botta M. Gd-Based Mesoporous Silica Nanoparticles as MRI Probes Eur J Inorg Chem 2018 2018 4936 4954 10.1002/ejic.201801039
Marasini R. Thanh Nguyen T.D. Aryal S. Integration of Gadolinium in Nanostructure for Contrast Enhanced-magnetic Resonance Imaging WIREs Nanomed. Nanobiotechnol. 2020 12 e1580 10.1002/wnan.1580 31486295
Gan S. Lin Y. Feng Y. Shui L. Li H. Zhou G. Magnetic Polymeric Nanoassemblies for Magnetic Resonance Imaging-Combined Cancer Theranostics IJN 2018 13 4263 4281 10.2147/IJN.S164817 30087559
Kotha R. Kara D.D. Roychowdhury R. Tanvi K. Rathnanand M. Polymersomes Based Versatile Nanoplatforms for Controlled Drug Delivery and Imaging Adv. Pharm. Bull. 2023 13 218 232 10.34172/apb.2023.028 37342386
Puente-Santiago A.R. Rodríguez-Padrón D. Surface-Modified Nanobiomaterials for Electrochemical and Biomedicine Applications Topics in Current Chemistry Collections Springer International Publishing Cham, Switzerland 2020 978-3-030-55501-6
Fernández-Barahona I. Muñoz-Hernando M. Ruiz-Cabello J. Herranz F. Pellico J. Iron Oxide Nanoparticles: An Alternative for Positive Contrast in Magnetic Resonance Imaging Inorganics 2020 8 28 10.3390/inorganics8040028
Rodríguez-Galván A. Rivera M. García-López P. Medina L.A. Basiuk V.A. Gadolinium-containing Carbon Nanomaterials for Magnetic Resonance Imaging: Trends and Challenges J Cell. Mol. Medi 2020 24 3779 3794 10.1111/jcmm.15065 32154648
Garifo S. Stanicki D. Ayata G. Muller R.N. Laurent S. Nanodiamonds as Nanomaterial for Biomedical Field Front. Mater. Sci. 2021 15 334 351 10.1007/s11706-021-0567-3
Bondon N. Raehm L. Charnay C. Boukherroub R. Durand J.-O. Nanodiamonds for Bioapplications, Recent Developments J. Mater. Chem. B 2020 8 10878 10896 10.1039/D0TB02221G
Tegafaw T. Liu S. Ahmad M.Y. Ali Al Saidi A.K. Zhao D. Liu Y. Yue H. Nam S.-W. Chang Y. Lee G.H. Production, Surface Modification, Physicochemical Properties, Biocompatibility, and Bioimaging Applications of Nanodiamonds RSC Adv. 2023 13 32381 32397 10.1039/D3RA06837D
Jung H.-S. Neuman K.C. Surface Modification of Fluorescent Nanodiamonds for Biological Applications Nanomaterials 2021 11 153 10.3390/nano11010153 33435443
Nanodiamonds: Advanced Material Analysis, Properties and Applications Arnault J.-C. Micro & Nano Technologies Series Elsevier Amsterdam, Netherlands 2017 978-0-323-43029-6
Pan F. Khan M. Ragab A.H. Javed E. Alsalmah H.A. Khan I. Lei T. Hussain A. Mohamed A. Zada A. et al. Recent Advances in the Structure and Biomedical Applications of Nanodiamonds and Their Future Perspectives Mater. Des. 2023 233 112179 10.1016/j.matdes.2023.112179
Mermoux M. Chang S. Girard H.A. Arnault J.-C. Raman Spectroscopy Study of Detonation Nanodiamond Diam. Relat. Mater. 2018 87 248 260 10.1016/j.diamond.2018.06.001
Manus L.M. Mastarone D.J. Waters E.A. Zhang X.-Q. Schultz-Sikma E.A. MacRenaris K.W. Ho D. Meade T.J. Gd(III)-Nanodiamond Conjugates for MRI Contrast Enhancement Nano Lett. 2010 10 484 489 10.1021/nl903264h 20038088
Rammohan N. MacRenaris K.W. Moore L.K. Parigi G. Mastarone D.J. Manus L.M. Lilley L.M. Preslar A.T. Waters E.A. Filicko A. et al. Nanodiamond–Gadolinium(III) Aggregates for Tracking Cancer Growth In Vivo at High Field Nano Lett. 2016 16 7551 7564 10.1021/acs.nanolett.6b03378 27960515
Yano K. Matsumoto T. Okamoto Y. Bito K. Kurokawa N. Hasebe T. Hotta A. Gadolinium-Complexed Carboxylated Nanodiamond Particles for Magnetic Resonance Imaging of the Lymphatic System ACS Appl. Nano Mater. 2021 4 1702 1711 10.1021/acsanm.0c03165
Hou W. Toh T.B. Abdullah L.N. Yvonne T.W.Z. Lee K.J. Guenther I. Chow E.K.-H. Nanodiamond–Manganese Dual Mode MRI Contrast Agents for Enhanced Liver Tumor Detection Nanomed. Nanotechnol. Biol. Med. 2017 13 783 793 10.1016/j.nano.2016.12.013 28003120
Zhao L. Shiino A. Qin H. Kimura T. Komatsu N. Synthesis, Characterization, and Magnetic Resonance Evaluation of Polyglycerol-Functionalized Detonation Nanodiamond Conjugated with Gadolinium(III) Complex J. Nanosci. Nanotechnol. 2015 15 1076 1082 10.1166/jnn.2015.9738 26353615
Perevedentseva E.V. Nanodiamonds for Biomedical Applications – Features of Interaction with Blood Components and Behavior in the Circulatory System J. Biomed. Photonics Eng. 2022 8 040506 10.18287/JBPE22.08.040506
Nakamura T. Ohana T. Yabuno H. Kasai R. Suzuki T. Hasebe T. Simple Fabrication of Gd(III)-DTPA-Nanodiamond Particles by Chemical Modification for Use as Magnetic Resonance Imaging (MRI) Contrast Agent Appl. Phys. Express 2013 6 015001 10.7567/APEX.6.015001
Osipov V.Y. Boukhvalov D.W. Takai K. Isolated Spin-7/2 Species of Gadolinium(III) Chelate Complexes on the Surface of 5-Nm Diamond Particles Nanomaterials 2023 13 1995 10.3390/nano13131995 37446511
Panich A.M. Shames A.I. Sergeev N.A. Osipov V.Y. Alexenskiy A.E. Vul’ A.Y. Magnetic Resonance Study of Gadolinium-Grafted Nanodiamonds J. Phys. Chem. C 2016 120 19804 19811 10.1021/acs.jpcc.6b05403
Panich A.M. Salti M. Goren S.D. Yudina E.B. Aleksenskii A.E. Vul’ A.Y. Shames A.I. Gd(III)-Grafted Detonation Nanodiamonds for MRI Contrast Enhancement J. Phys. Chem. C 2019 123 2627 2631 10.1021/acs.jpcc.8b11655
Panich A.M. Salti M. Prager O. Swissa E. Kulvelis Y.V. Yudina E.B. Aleksenskii A.E. Goren S.D. Vul’ A.Y. Shames A.I. PVP-coated Gd-grafted Nanodiamonds as a Novel and Potentially Safer Contrast Agent for in Vivo MRI Magn. Reson. Med. 2021 86 935 942 10.1002/mrm.28762 33724543
Panich A.M. Salti M. Aleksenskii A.E. Kulvelis Y.V. Chizhikova A. Vul’ A.Y. Shames A.I. Suspensions of Manganese-Grafted Nanodiamonds: Preparation, NMR, and MRI Study Diam. Relat. Mater. 2023 131 109591 10.1016/j.diamond.2022.109591
Qin S.-R. Zhao Q. Cheng Z.-G. Zhang D.-X. Zhang K.-K. Su L.-X. Fan H.-J. Wang Y.-H. Shan C.-X. Rare Earth-Functionalized Nanodiamonds for Dual-Modal Imaging and Drug Delivery Diam. Relat. Mater. 2019 91 173 182 10.1016/j.diamond.2018.11.015
Lin B.-R. Chen C.-H. Kunuku S. Chen T.-Y. Hsiao T.-Y. Niu H. Lee C.-P. Fe Doped Magnetic Nanodiamonds Made by Ion Implantation as Contrast Agent for MRI Sci. Rep. 2018 8 7058 10.1038/s41598-018-25380-1 29728582
Kunuku S. Lin B.-R. Chen C.-H. Chang C.-H. Chen T.-Y. Hsiao T.-Y. Yu H.-K. Chang Y.-J. Liao L.-C. Chen F.-H. et al. Nanodiamonds Doped with Manganese for Applications in Magnetic Resonance Imaging ACS Omega 2023 8 4398 4409 10.1021/acsomega.2c08043
Waddington D.E.J. Sarracanie M. Zhang H. Salameh N. Glenn D.R. Rej E. Gaebel T. Boele T. Walsworth R.L. Reilly D.J. et al. Nanodiamond-Enhanced MRI via in Situ Hyperpolarization Nat. Commun. 2017 8 15118 10.1038/ncomms15118
Waddington D.E.J. Boele T. Rej E. McCamey D.R. King N.J.C. Gaebel T. Reilly D.J. Phase-Encoded Hyperpolarized Nanodiamond for Magnetic Resonance Imaging Sci. Rep. 2019 9 5950 10.1038/s41598-019-42373-w 30976049
Sękowska A. Majchrowicz D. Sabisz A. Ficek M. Bułło-Piontecka B. Kosowska M. Jing L. Bogdanowicz R. Szczerska M. Nanodiamond Phantoms Mimicking Human Liver: Perspective to Calibration of T1 Relaxation Time in Magnetic Resonance Imaging Sci. Rep. 2020 10 6446 10.1038/s41598-020-63581-9 32296116
Lazovic J. Goering E. Wild A. Schützendübe P. Shiva A. Löffler J. Winter G. Sitti M. Nanodiamond-Enhanced Magnetic Resonance Imaging Adv. Mater. 2023 36 2310109 10.1002/adma.202310109 38037437
Servant A. Jacobs I. Bussy C. Fabbro C. da Ros T. Pach E. Ballesteros B. Prato M. Nicolay K. Kostarelos K. Gadolinium-Functionalised Multi-Walled Carbon Nanotubes as a T1 Contrast Agent for MRI Cell Labelling and Tracking Carbon 2016 97 126 133 10.1016/j.carbon.2015.08.051
Paul R. Chatterjee D. Das Ghosh L. Narayanswamy V. Singh M.P. Agarwal M. Ghosh D. Radhakrishna M. Tiwary C.S. Provazník I. et al. Synthesis, Characterization and In-Vitro Studies of CNT/Gd2O3 Hybrid Structure Carbon Trends 2023 11 100272 10.1016/j.cartre.2023.100272
Sitharaman B. Kissell K.R. Hartman K.B. Tran L.A. Baikalov A. Rusakova I. Sun Y. Khant H.A. Ludtke S.J. Chiu W. et al. Superparamagnetic Gadonanotubes Are High-Performance MRI Contrast Agents Chem. Commun. 2005 31 3915 3917 10.1039/b504435a 16075070
Sitharaman B. Van Der Zande M. Ananta J.S. Shi X. Veltien A. Walboomers X.F. Wilson L.J. Mikos A.G. Heerschap A. Jansen J.A. Magnetic Resonance Imaging Studies on Gadonanotube-Reinforced Biodegradable Polymer Nanocomposites J. Biomed. Mater. Res. 2010 93A 1454 1462 10.1002/jbm.a.32650 19927368
Bolskar R.D. Benedetto A.F. Husebo L.O. Price R.E. Jackson E.F. Wallace S. Wilson L.J. Alford J.M. First Soluble M@C60 Derivatives Provide Enhanced Access to Metallofullerenes and Permit in Vivo Evaluation of Gd@C60[C(COOH)2]10 as a MRI Contrast Agent J. Am. Chem. Soc. 2003 125 5471 5478 10.1021/ja0340984 12720461
Tóth É. Bolskar R.D. Borel A. González G. Helm L. Merbach A.E. Sitharaman B. Wilson L.J. Water-Soluble Gadofullerenes: Toward High-Relaxivity, pH-Responsive MRI Contrast Agents J. Am. Chem. Soc. 2005 127 799 805 10.1021/ja044688h
Zheng J. Liu Q. Zhen M. Jiang F. Shu C. Jin C. Yang Y. Alhadlaq H.A. Wang C. Multifunctional Imaging Probe Based on Gadofulleride Nanoplatform Nanoscale 2012 4 3669 10.1039/c2nr30836c
Liu J. Ohta S. Sonoda A. Yamada M. Yamamoto M. Nitta N. Murata K. Tabata Y. Preparation of PEG-Conjugated Fullerene Containing Gd3+ Ions for Photodynamic Therapy J. Control. Release 2007 117 104 110 10.1016/j.jconrel.2006.10.008 17156882
Wang L. Zhu X. Tang X. Wu C. Zhou Z. Sun C. Deng S.-L. Ai H. Gao J. A Multiple Gadolinium Complex Decorated Fullerene as a Highly Sensitive T 1 Contrast Agent Chem. Commun. 2015 51 4390 4393 10.1039/C5CC00285K 25676633
Zhang J. Fatouros P.P. Shu C. Reid J. Owens L.S. Cai T. Gibson H.W. Long G.L. Corwin F.D. Chen Z.-J. et al. High Relaxivity Trimetallic Nitride (Gd3N) Metallofullerene MRI Contrast Agents with Optimized Functionality Bioconjugate Chem. 2010 21 610 615 10.1021/bc900375n 20218678
Han Z. Wu X. Roelle S. Chen C. Schiemann W.P. Lu Z.-R. Targeted Gadofullerene for Sensitive Magnetic Resonance Imaging and Risk-Stratification of Breast Cancer Nat. Commun. 2017 8 692 10.1038/s41467-017-00741-y 28947734
Wang S. Zhou Z. Wang Z. Liu Y. Jacobson O. Shen Z. Fu X. Chen Z. Chen X. Gadolinium Metallofullerene-Based Activatable Contrast Agent for Tumor Signal Amplification and Monitoring of Drug Release Small 2019 15 1900691 10.1002/smll.201900691 30913380
Kim J.B.-K. Mackeyev Y. Raghuram S. Cho S.H. Krishnan S. Synthesis and Characterization of Gadolinium-Decorated [60]Fullerene for Tumor Imaging and Radiation Sensitization Int. J. Radiat. Biol. 2021 97 1129 1139 10.1080/09553002.2021.1872814 33428854
Zou T. Zhen M. Chen D. Li R. Guan M. Shu C. Han H. Wang C. The Positive Influence of Fullerene Derivatives Bonded to Manganese(III) Porphyrins on Water Proton Relaxation Dalton Trans. 2015 44 9114 9119 10.1039/C4DT03482A 25899301
Hung A.H. Duch M.C. Parigi G. Rotz M.W. Manus L.M. Mastarone D.J. Dam K.T. Gits C.C. MacRenaris K.W. Luchinat C. et al. Mechanisms of Gadographene-Mediated Proton Spin Relaxation J. Phys. Chem. C 2013 117 16263 16273 10.1021/jp406909b
Kanakia S. Toussaint J. Hoang D.M. Mullick Chowdhury S. Lee S. Shroyer K.R. Moore W. Wadghiri Y.Z. Sitharaman B. Towards An Advanced Graphene-Based Magnetic Resonance Imaging Contrast Agent: Sub-Acute Toxicity and Efficacy Studies in Small Animals Sci Rep 2015 5 17182 10.1038/srep17182
Chawda N. Basu M. Majumdar D. Poddar R. Mahapatra S.K. Banerjee I. Engineering of Gadolinium-Decorated Graphene Oxide Nanosheets for Multimodal Bioimaging and Drug Delivery ACS Omega 2019 4 12470 12479 10.1021/acsomega.9b00883
Zhang M. Liu X. Huang J. Wang L. Shen H. Luo Y. Li Z. Zhang H. Deng Z. Zhang Z. Ultrasmall Graphene Oxide Based T1 MRI Contrast Agent for in Vitro and in Vivo Labeling of Human Mesenchymal Stem Cells Nanomed. Nanotechnol. Biol. Med. 2018 14 2475 2483 10.1016/j.nano.2017.03.019 28552648
Panich A.M. Can Detonation Nanodiamonds Serve as MRI Phantoms? Magn. Reson. Mater. Phys. 2022 35 345 347 10.1007/s10334-022-01015-5 35471465
Herlem G. Picaud F. Girardet C. Micheau O. Carbon Nanotubes Nanocarriers for Drug Delivery Elsevier Amsterdam, The Netherlands 2019 469 529 978-0-12-814033-8
Prato M. Kostarelos K. Bianco A. Functionalized Carbon Nanotubes in Drug Design and Discovery Acc. Chem. Res. 2008 41 60 68 10.1021/ar700089b 17867649
Hernández-Rivera M. Zaibaq N.G. Wilson L.J. Toward Carbon Nanotube-Based Imaging Agents for the Clinic Biomaterials 2016 101 229 240 10.1016/j.biomaterials.2016.05.045 27294540
Tang L. Xiao Q. Mei Y. He S. Zhang Z. Wang R. Wang W. Insights on Functionalized Carbon Nanotubes for Cancer Theranostics J. Nanobiotechnol. 2021 19 423 10.1186/s12951-021-01174-y 34915901
Sethi R. Mackeyev Y. Wilson L.J. The Gadonanotubes Revisited: A New Frontier in MRI Contrast Agent Design Inorganica Chim. Acta 2012 393 165 172 10.1016/j.ica.2012.07.004
Ananta J.S. Matson M.L. Tang A.M. Mandal T. Lin S. Wong K. Wong S.T. Wilson L.J. Single-Walled Carbon Nanotube Materials as T2-Weighted MRI Contrast Agents J. Phys. Chem. C 2009 113 19369 19372 10.1021/jp907891n
Pochkaeva E.I. Podolsky N.E. Zakusilo D.N. Petrov A.V. Charykov N.A. Vlasov T.D. Penkova A.V. Vasina L.V. Murin I.V. Sharoyko V.V. et al. Fullerene Derivatives with Amino Acids, Peptides and Proteins: From Synthesis to Biomedical Application Prog. Solid State Chem. 2020 57 100255 10.1016/j.progsolidstchem.2019.100255
Gulati S. Mansi Vijayan S. Kumar S. Agarwal V. Harikumar B. Varma R.S. Magnetic Nanocarriers Adorned on Graphene: Promising Contrast Enhancing Agents with State-of-the-Art Performance in Magnetic Resonance Imaging (MRI) and Theranostics Mater. Adv. 2022 3 2971 2989 10.1039/D1MA01071A
Sitharaman B. Bolskar R.D. Rusakova I. Wilson L.J. Gd@C60[C(COOH)2]10 and Gd@C60(OH)x: Nanoscale Aggregation Studies of Two Metallofullerene MRI Contrast Agents in Aqueous Solution Nano Lett. 2004 4 2373 2378 10.1021/nl0485713
Grebowski J. Litwinienko G. Metallofullerenols in Biomedical Applications Eur. J. Med. Chem. 2022 238 114481 10.1016/j.ejmech.2022.114481 35665690
Pathak Y. Thassu D. Fullerene-Based Nanostructures: A Novel High-Performance Platform Technology for Magnetic Resonance Imaging (MRI) Drug Delivery Nanoparticles Formulation and Characterization Informa Health Care New York, NY, USA 2016 330 348 978-1-4200-7805-3
Bolskar R.D. Gadolinium Endohedral Metallofullerene-Based MRI Contrast Agents Medicinal Chemistry and Pharmacological Potential of Fullerenes and Carbon Nanotubes Cataldo F. Da Ros T. Carbon Materials: Chemistry and Physics Springer Dordrecht, The Netherlands 2008 Volume 1 157 180 978-1-4020-6844-7
Sun X. Liu Z. Welsher K. Robinson J.T. Goodwin A. Zaric S. Dai H. Nano-Graphene Oxide for Cellular Imaging and Drug Delivery Nano Res. 2008 1 203 212 10.1007/s12274-008-8021-8 20216934