Page 35 - 南京医科大学学报自然科学版
P. 35
第42卷第9期 段丽珍,郭莉莉,柏根基. 脑胶质瘤靶向SPIO⁃PLA⁃P53分子探针的构建及磁共振成像实验研究[J].
2022年9月 南京医科大学学报(自然科学版),2022,42(09):1223-1229 ·1229 ·
质瘤的定位,将为脑胶质瘤诊断提供新思路。 lective molecular imaging and beyond[J]. Angew Chem
Int Ed Engl,2020,59(33):13734-13762
[参考文献]
[14]DAMMES N,PEER D. Monoclonal antibody⁃based molec⁃
[1] LIU F,YANG B. Double⁃targeted knockdown of miR⁃21
ular imaging strategies and theranostic opportunities[J].
and CXCR4 inhibits malignant glioma progression by sup⁃
Theranostics,2020,10(2):938-955
pression of the PI3K/AKT and Raf/MEK/ERK pathways [15] 岳远斌,赵 婵,刘 昊,等. 金纳米颗粒⁃微气泡复合
[J]. Biomed Res Int,2020,2020:7930160 材料及其体外成像和光热性能研究[J]. 南京医科大学
[2] AKMAL M,HASNAIN N,REHAN A,et al. Glioblastome⁃
学报(自然科学版),2021,41(6):838-846
multiforme:a bibliometric analysis[J]. World Neurosurg,
[16] XIE R,WU Z,ZENG F,et al. Retro⁃enantio isomer of an⁃
2020,136:270-282
giopep⁃2 assists nanoprobes across the blood⁃brain barri⁃
[3] HUANG R,DONG R,WANG N,et al. Adaptive changes
er for targeted magnetic resonance/fluorescence imaging
allow targeting of ferroptosis for glioma treatment[J]. Cell of glioblastoma[J]. Signal Transduct Target Ther,2021,6
Mol Neurobiol,2021:1-20 (1):309
[4] MOLINARO A M,TAYLOR J W,WIENCKE J K,et al. [17] 段丽珍,郭莉莉. 磁共振肿瘤靶向分子探针的研究进展
Genetic and molecular epidemiology of adult diffuse glio⁃ [J]. 南京医科大学学报(自然科学版),2019,39(11):
ma[J]. Nat Rev Neurol,2019,15(7):405-417 1681-1685
[5] BUCHLAK Q D,ESMAILI N,LEVEQUE J C,et al. Ma⁃ [18] MARRIOTT A,BOWEN C,RIOUX J,et al. Simultaneous
chine learning applications to neuroimaging for glioma de⁃ quantification of SPIO and gadolinium contrast agents us⁃
tection and classification:an artificial intelligence aug⁃ ing MR finger printing[J]. Magn Reson Imaging,2021,
mented systematic review[J]. J Clin Neurosci,2021,89: 79:121-129
177-198 [19] SHUKLA S,JADAUN A,ARORA V,et al. In vitro toxicity
[6] DELGADO ⁃ LÓPEZ P D,CORRALES ⁃ GARCÍA E M. assessment of chitosan oligosaccharide coated iron oxide
Role of adjuvant radiotherapy in atypical(WHO grade Ⅱ) nanoparticles[J]. Toxicol Rep,2014,2:27-39
and anaplastic(WHO grade Ⅲ)meningiomas:a systematic [20] MALHOTRA N,LEE J S,LIMAN R A D,et al. Potential
review[J]. Clin Transl Oncol,2021,23(2):205-221 toxicity of iron oxide magnetic nanoparticles:a review[J].
[7] MARTINKOVA P,BRTNICKY M,KYNICKY J,et al. Iro⁃ Molecules,2020,25(14):3159
noxide nanoparticles:innovative tool in cancer diagnosis [21] OLIVEIRA E M N,SELLI G I,SCHMUDE A,et al. De⁃
and therapy[J]. Adv Healthc Mater,2018,7(5):1700932 velopmental toxicity of iron oxide nanoparticles with dif⁃
[8] SHARIFI S,SEYEDNEJAD H,LAURENT S,et al. Super⁃ ferent coatings in zebrafish larvae[J]. J Nanoparticle
paramagnetic iron oxide nanoparticles for in vivo molecu⁃ Res,2020,22(4):1-16
lar and cellular imaging[J]. Contrast Media Mol Imaging, [22] SHEN C,WANG X,ZHENG Z,et al. Doxorubicin and in⁃
2015,10(5):329-355 docyanine green loaded superparamagnetic iron oxide
[9] WU W,ZHONG S,GONG Y,et al. A new molecular nanoparticles with PEGylated phospholipid coating for
probe:an NRP⁃1 targeting probe for the grading diagnosis magnetic resonance with fluorescence imaging and chemo⁃
of glioma in nude mice[J]. Neurosci Lett,2020,714:134617 therapy of glioma[J]. Int J Nanomed,2019,14:101-117
[10] MULLER P A,VOUSDEN K H. p53 mutations in cancer [23] MARITIM S,COMAN D,HANG Y,et al. Mapping extra⁃
[J]. Nat Cell Biol,2013,15(1):2-8 cellular pH of gliomas in presence of superparamagnetic
[11] VIOTTI J,DUPLAN E,CAILLAVA C,et al. Glioma tu⁃ nanoparticles:towards imaging the distribution of drug ⁃
mor grade correlates with parkin depletion in mutant p53⁃ containing nanoparticles and their curative effect on the
linked tumors and results from loss of function of p53 tumor microenvironment[J]. Contrast Media Mol Imag⁃
transcriptional activity[J]. Oncogene,2014,33(14): ing,2017,2017:3849373
1764-1775 [24] WANG H,LIU X,ZHANG M,et al. Prediction of material
[12] FISCGER N W,PRODEUS A,GARIÉPY J. Survival in fatigue parameters for low alloy forged steels considering
males with glioma and gastric adenocarcinoma correlates error circle[J]. Int J Fatigue,2019,121:135-145
with mutant p53 residual transcriptional activity[J]. JCI [25] EFRON B. Bootstrap methods:anotherlook at the jack
Insight,2018,3(15):e121364 knife[J]. Breakthr Stat,1979,7(1):1-26
[13] BRUEMMER K J,CROSSLEY S W M,CHANG C J. Ac⁃ [收稿日期] 2021-12-27
tivity⁃based sensing:a synthetic methods approach for se⁃ (本文编辑:陈汐敏)