Therapeutic applications of carbon nanomaterials in renal cancer

被引:0
作者
Jyotsna Priyam
Urmila Saxena
机构
[1] National Institute of Technology Warangal,Department of Biotechnology
来源
Biotechnology Letters | 2023年 / 45卷
关键词
Carbon-based nanomaterials; Kidney cancer; Drug delivery; Therapeutic applications;
D O I
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中图分类号
学科分类号
摘要
Carbon nanomaterials (CNMs), including carbon nanotubes (CNTs), graphene, and nanodiamonds (NDs), have shown great promise in detecting and treating numerous cancers, including kidney cancer. CNMs can increase the sensitivity of diagnostic techniques for better kidney cancer identification and surveillance. They enable targeted medicine delivery specifically to tumour locations, with little effect on healthy tissue. Because of their unique chemical and physical characteristics, they can avoid the body's defence mechanisms, making it easier to accumulate where tumours exist. Consequently, CNMs provide more effective drug delivery to kidney cancer cells. It also helps in improving the efficacy of treatment. This review explores the potential of several CNMs in improving therapeutic strategies for kidney cancer. We briefly covered the physicochemical properties and therapeutic applications of CNMs. Additionally, we discussed how structural modifications in CNMs enhance their precision in treating renal cancer. A thorough overview of CNM-based gene, peptide, and drug delivery strategies for the treatment of renal cancer is presented in this review. It covers information on other CNM-based therapeutic approaches, such as hyperthermia, photodynamic therapy, and photoacoustic therapy. Also, the interactions of CNMs with the tumour microenvironment (TME) are explored, including modulation of the immune response, regulation of tumour hypoxia, interactions between CNMs and TME cells, effects of TME pH on CNMs, and more. Finally, potential side effects of CNMs, such as toxicity, bio corona formation, enzymatic degradation, and biocompatibility, are also discussed.
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页码:1395 / 1416
页数:21
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  • [21] Vandamme TF(2009)Nanodiamond-mediated delivery of water-insoluble therapeutics ACS Nano 2 238-930
  • [22] Attri P(2012)Applications of Functionalized Fullerenes in Tumor Theranostics Theranostics 7 1874-611
  • [23] Gaur J(2016)Water-enhanced oxidation of graphite to graphene oxide with controlled species of oxygenated groups Chem Sci 42 914-749
  • [24] Choi S(2017)How do enzymes ‘meet’nanoparticles and nanomaterials? Trends Biochem Sci 16 598-1468
  • [25] Kim M(2019)The role of hyperthermia in the multidisciplinary treatment of malignant tumours Integrative Cancer Ther 169 736-5724
  • [26] Bhatia R(2021)Anti-EpCAM functionalized graphene oxide vector for tumor targeted siRNA delivery and cancer therapy Asian J Pharmaceut Sci 13 1459-366
  • [27] Kumar N(2017)An immune atlas of clear cell renal cell carcinoma Cell 9 5713-262
  • [28] Lee W(2018)Dual-Responsive Carbon Dot for pH/Redox-Triggered Fluorescence Imaging with Controllable Photothermal Ablation Therapy of Cancer ChemMedChem 376 354-85
  • [29] Augustine S(2015)Reduced cytotoxicity of graphene nanosheets mediated by blood-protein coating ACS Nano 42 3222-31
  • [30] Singh J(2017)Systemic Therapy for Metastatic Renal-Cell Carcinoma N Engl J Med 64 247-2741