Bio-inspired Nanomaterials in Cancer Theranostics
Author:
Publisher
Springer Nature Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-97-3115-2_5
Reference102 articles.
1. Abdallah R, Atallah D, Bitar N, Chahine G, Ghanem H, Ghosn M, Kattan J, Nasr F, Makdessi J, Shamseddine A (2023) Consensus on the management of platinum-sensitive high-grade serous epithelial ovarian cancer in Lebanon. Gynecol Oncol Rep 47:101186
2. Abraham J, Ocen J, Stafford J (2023) Hormonal therapy for cancer. Medicine 51(1):28–31
3. Abudurexiti M, Zhao Y, Wang X, Han L, Liu T, Wang C, Yuan Z (2023) Bio-inspired nanocarriers derived from stem cells and their extracellular vesicles for targeted drug delivery. Pharmaceutics 15(7):2011
4. Akhtar N, Mohammed HA, Yusuf M, Al-Subaiyel A, Sulaiman GM, Khan RA (2022) SPIONs conjugate supported anticancer drug doxorubicin’s delivery: current status, challenges, and prospects. Nanomaterials 12(20):3686
5. Ali F (2022) Regulatory perspectives of nanomaterials for theranostic application. In: Nanotheranostics for treatment and diagnosis of infectious diseases. Academic Press, pp 373–384
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