1 3
Topics in Current Chemistry (2020) 378:15
149. Ania Servant IJ, Bussy Cyrill, Fabbro Chiara, da Ros Tatiana, Pach Elzbieta, Belen Ballesteros MP,
Nicolay Klaas, Kostarelos Kostas (2016) Gadolinium-functionalised multi-walled carbon nanotubes as a T1 contrast agent for MRI cell labelling and tracking. Carbon 97:8
150. Mehri-Kakavand G, Hasanzadeh H, Jahanbakhsh R, Abdollahi M, Nasr R, Bitarafan-Rajabi A,
Jadidi M, Darbandi-Azar A, Emadi A (2019) Gdn (3 +)@CNTs-PEG versus Gadovist(R): in vitro
assay. Oman Med J 34(2):147–155. https ://doi.org/10.5001/omj.2019.27
151. Moghaddam SE, Hernandez-Rivera M, Zaibaq NG, Ajala A, da Graca Cabreira-Hansen M, Mowlazadeh-Haghighi S, Willerson JT, Perin EC, Muthupillai R, Wilson LJ (2018) A new high-performance gadonanotube-polymer hybrid material for stem cell labeling and tracking by MRI. Contrast
Media Mol Imaging 2018:2853736. https ://doi.org/10.1155/2018/28537 36
152. Antaris AL, Yaghi OK, Hong G, Diao S, Zhang B, Yang J, Chew L, Dai H (2015) Single chirality (6,4) single-walled carbon nanotubes for fluorescence imaging with silicon detectors. Small
11(47):6325–6330. https ://doi.org/10.1002/smll.20150 1530
153. Yudasaka M, Yomogida Y, Zhang M, Tanaka T, Nakahara M, Kobayashi N, Okamatsu-Ogura Y,
Machida K, Ishihara K, Saeki K, Kataura H (2017) Near-infrared photoluminescent carbon nanotubes for imaging of brown fat. Sci Rep UK 7:44760. https ://doi.org/10.1038/srep4 4760
154. Kim J-W, Galanzha EI, Shashkov EV, Moon H-M, Zharov VP (2009) Golden carbon nanotubes
as multimodal photoacoustic and photothermal high-contrast molecular agents. Nat Nanotechnol
4(10):688–694. https ://doi.org/10.1038/nnano .2009.231
155. Liang C, Diao S, Wang C, Gong H, Liu T, Hong G, Shi X, Dai H, Liu Z (2014) Tumor metastasis inhibition by imaging-guided photothermal therapy with single-walled carbon nanotubes. Adv
Mater 26(32):5646–5652. https ://doi.org/10.1002/adma.20140 1825
156. McDevitt MR, Chattopadhyay D, Jaggi JS, Finn RD, Zanzonico PB, Villa C, Rey D, Mendenhall J,
Batt CA, Njardarson JT, Scheinberg DA (2007) PET imaging of soluble yttrium-86-labeled carbon
nanotubes in mice. PLoS One 2(9):e907–e907. https ://doi.org/10.1371/journ al.pone.00009 07
157. Georgin D, Czarny B, Botquin M, Mayne-L’Hermite M, Pinault M, Bouchet-Fabre B, Carriere M,
Poncy J-L, Chau Q, Maximilien R, Dive V, Taran F (2009) Preparation of
14 C-labeled multiwalled
carbon nanotubes for biodistribution investigations. J Am Chem Soc 131(41):14658–14659. https
://doi.org/10.1021/ja906 319z
158. Wang H, Wang J, Deng X, Sun H, Shi Z, Gu Z, Liu Y, Zhaoc Y (2004) Biodistribution of carbon single-wall carbon nanotubes in mice. J Nanosci Nanotechnol 4(8):1019–1024. https ://doi.
org/10.1166/jnn.2004.146
159. Guo J, Zhang X, Li Q, Li W (2007) Biodistribution of functionalized multiwall carbon nanotubes
in mice. Nucl Med Biol 34(5):579–583. https ://doi.org/10.1016/j.nucme dbio.2007.03.003
160. Liu Z, Cai W, He L, Nakayama N, Chen K, Sun X, Chen X, Dai H (2007) In vivo biodistribution
and highly efficient tumour targeting of carbon nanotubes in mice. Nat Nanotechnol 2(1):47–52
161. Al-Jamal KT, Nunes A, Methven L, Ali-Boucetta H, Li S, Toma FM, Herrero MA, Al-Jamal WT,
ten Eikelder HMM, Foster J, Mather S, Prato M, Bianco A, Kostarelos K (2012) Degree of chemical functionalization of carbon nanotubes determines tissue distribution and excretion profile.
Angew Chem Int Ed 51(26):6389–6393. https ://doi.org/10.1002/anie.20120 1991
162. Raphey VR, Henna TK, Nivitha KP, Mufeedha P, Sabu C, Pramod K (2019) Advanced biomedical applications of carbon nanotube. Mater Sci Eng C Mater Biol Appl 100:616–630. https ://doi.
org/10.1016/j.msec.2019.03.043
163. Panwar N, Soehartono AM, Chan KK, Zeng S, Xu G, Qu J, Coquet P, Yong KT, Chen X (2019)
Nanocarbons for biology and medicine: sensing, imaging, and drug delivery. Chem Rev. https ://
doi.org/10.1021/acs.chemr ev.9b000 99
164. Mohajeri M, Behnam B, Sahebkar A (2018) Biomedical applications of carbon nanomaterials: drug and gene delivery potentials. J Cell Physiol 234(1):298–319. https ://doi.org/10.1002/
jcp.26899
165. Bianco A, Kostarelos K, Prato M (2005) Applications of carbon nanotubes in drug delivery. Curr
Opin Chem Biol 9(6):674–679
166. Rawal S, Patel MM (2019) Threatening cancer with nanoparticle aided combination oncotherapy. J
Control Release 301:76–109. https ://doi.org/10.1016/j.jconr el.2019.03.015
167. Liu D, Zhang Q, Wang J, Fan L, Zhu W, Cai D (2019) Hyaluronic acid-coated single-walled carbon nanotubes loaded with doxorubicin for the treatment of breast cancer. Pharmazie 74(2):83–90.
https ://doi.org/10.1691/ph.2019.8152
213
Reprinted from the journal
Topics in Current Chemistry (2020) 378:15
149. Ania Servant IJ, Bussy Cyrill, Fabbro Chiara, da Ros Tatiana, Pach Elzbieta, Belen Ballesteros MP,
Nicolay Klaas, Kostarelos Kostas (2016) Gadolinium-functionalised multi-walled carbon nanotubes as a T1 contrast agent for MRI cell labelling and tracking. Carbon 97:8
150. Mehri-Kakavand G, Hasanzadeh H, Jahanbakhsh R, Abdollahi M, Nasr R, Bitarafan-Rajabi A,
Jadidi M, Darbandi-Azar A, Emadi A (2019) Gdn (3 +)@CNTs-PEG versus Gadovist(R): in vitro
assay. Oman Med J 34(2):147–155. https ://doi.org/10.5001/omj.2019.27
151. Moghaddam SE, Hernandez-Rivera M, Zaibaq NG, Ajala A, da Graca Cabreira-Hansen M, Mowlazadeh-Haghighi S, Willerson JT, Perin EC, Muthupillai R, Wilson LJ (2018) A new high-performance gadonanotube-polymer hybrid material for stem cell labeling and tracking by MRI. Contrast
Media Mol Imaging 2018:2853736. https ://doi.org/10.1155/2018/28537 36
152. Antaris AL, Yaghi OK, Hong G, Diao S, Zhang B, Yang J, Chew L, Dai H (2015) Single chirality (6,4) single-walled carbon nanotubes for fluorescence imaging with silicon detectors. Small
11(47):6325–6330. https ://doi.org/10.1002/smll.20150 1530
153. Yudasaka M, Yomogida Y, Zhang M, Tanaka T, Nakahara M, Kobayashi N, Okamatsu-Ogura Y,
Machida K, Ishihara K, Saeki K, Kataura H (2017) Near-infrared photoluminescent carbon nanotubes for imaging of brown fat. Sci Rep UK 7:44760. https ://doi.org/10.1038/srep4 4760
154. Kim J-W, Galanzha EI, Shashkov EV, Moon H-M, Zharov VP (2009) Golden carbon nanotubes
as multimodal photoacoustic and photothermal high-contrast molecular agents. Nat Nanotechnol
4(10):688–694. https ://doi.org/10.1038/nnano .2009.231
155. Liang C, Diao S, Wang C, Gong H, Liu T, Hong G, Shi X, Dai H, Liu Z (2014) Tumor metastasis inhibition by imaging-guided photothermal therapy with single-walled carbon nanotubes. Adv
Mater 26(32):5646–5652. https ://doi.org/10.1002/adma.20140 1825
156. McDevitt MR, Chattopadhyay D, Jaggi JS, Finn RD, Zanzonico PB, Villa C, Rey D, Mendenhall J,
Batt CA, Njardarson JT, Scheinberg DA (2007) PET imaging of soluble yttrium-86-labeled carbon
nanotubes in mice. PLoS One 2(9):e907–e907. https ://doi.org/10.1371/journ al.pone.00009 07
157. Georgin D, Czarny B, Botquin M, Mayne-L’Hermite M, Pinault M, Bouchet-Fabre B, Carriere M,
Poncy J-L, Chau Q, Maximilien R, Dive V, Taran F (2009) Preparation of
14 C-labeled multiwalled
carbon nanotubes for biodistribution investigations. J Am Chem Soc 131(41):14658–14659. https
://doi.org/10.1021/ja906 319z
158. Wang H, Wang J, Deng X, Sun H, Shi Z, Gu Z, Liu Y, Zhaoc Y (2004) Biodistribution of carbon single-wall carbon nanotubes in mice. J Nanosci Nanotechnol 4(8):1019–1024. https ://doi.
org/10.1166/jnn.2004.146
159. Guo J, Zhang X, Li Q, Li W (2007) Biodistribution of functionalized multiwall carbon nanotubes
in mice. Nucl Med Biol 34(5):579–583. https ://doi.org/10.1016/j.nucme dbio.2007.03.003
160. Liu Z, Cai W, He L, Nakayama N, Chen K, Sun X, Chen X, Dai H (2007) In vivo biodistribution
and highly efficient tumour targeting of carbon nanotubes in mice. Nat Nanotechnol 2(1):47–52
161. Al-Jamal KT, Nunes A, Methven L, Ali-Boucetta H, Li S, Toma FM, Herrero MA, Al-Jamal WT,
ten Eikelder HMM, Foster J, Mather S, Prato M, Bianco A, Kostarelos K (2012) Degree of chemical functionalization of carbon nanotubes determines tissue distribution and excretion profile.
Angew Chem Int Ed 51(26):6389–6393. https ://doi.org/10.1002/anie.20120 1991
162. Raphey VR, Henna TK, Nivitha KP, Mufeedha P, Sabu C, Pramod K (2019) Advanced biomedical applications of carbon nanotube. Mater Sci Eng C Mater Biol Appl 100:616–630. https ://doi.
org/10.1016/j.msec.2019.03.043
163. Panwar N, Soehartono AM, Chan KK, Zeng S, Xu G, Qu J, Coquet P, Yong KT, Chen X (2019)
Nanocarbons for biology and medicine: sensing, imaging, and drug delivery. Chem Rev. https ://
doi.org/10.1021/acs.chemr ev.9b000 99
164. Mohajeri M, Behnam B, Sahebkar A (2018) Biomedical applications of carbon nanomaterials: drug and gene delivery potentials. J Cell Physiol 234(1):298–319. https ://doi.org/10.1002/
jcp.26899
165. Bianco A, Kostarelos K, Prato M (2005) Applications of carbon nanotubes in drug delivery. Curr
Opin Chem Biol 9(6):674–679
166. Rawal S, Patel MM (2019) Threatening cancer with nanoparticle aided combination oncotherapy. J
Control Release 301:76–109. https ://doi.org/10.1016/j.jconr el.2019.03.015
167. Liu D, Zhang Q, Wang J, Fan L, Zhu W, Cai D (2019) Hyaluronic acid-coated single-walled carbon nanotubes loaded with doxorubicin for the treatment of breast cancer. Pharmazie 74(2):83–90.
https ://doi.org/10.1691/ph.2019.8152
213
Reprinted from the journal
