Recent Update on Nanocarrier(s) as the Targeted Therapy for Breast Cancer

被引:5
作者
Mukherjee, Debanjan [1 ]
Raikwar, Sarjana [2 ]
机构
[1] ISF Coll Pharm, Dept Qual Assurance, Moga 142001, Punjab, India
[2] ISF Coll Pharm, Dept Pharmaceut, Moga 142001, Punjab, India
关键词
breast cancer; chemotherapy; drug delivery; nanocarriers; nanotechnology; targeted drug delivery; DRUG-DELIVERY SYSTEMS; MICRONEEDLES; NANOPARTICLES; TRASTUZUMAB; COMBINATION; NANOTECHNOLOGY; CHEMOTHERAPY; DIAGNOSIS;
D O I
10.1208/s12249-024-02867-x
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Despite ongoing advances in cancer therapy, the results for the treatment of breast cancer are not satisfactory. The advent of nanotechnology promises to be an essential tool to improve drug delivery effectiveness in cancer therapy. Nanotechnology provides an opportunity to enhance the treatment modality by preventing degradation, improving tumour targeting, and controlling drug release. Recent advances have revealed several strategies to prevent cancer metastasis using nano-drug delivery systems (NDDS). These strategies include the design of appropriate nanocarriers loaded with anti-cancer drugs that target the optimization of physicochemical properties, modulate the tumour microenvironment, and target biomimetic techniques. Nanocarriers have emerged as a preferential approach in the chemotropic treatment for breast cancer due to their pivotal role in safeguarding the therapeutic agents against degradation. They facilitate efficient drug concentration in targeted cells, surmount the resistance of drugs, and possess a small size. Nevertheless, these nanocarrier(s) have some limitations, such as less permeability across the barrier and low bioavailability of loaded drugs. To overcome these challenges, integrating external stimuli has been employed, encompassing infrared light, thermal stimulation, microwaves, and X-rays. Among these stimuli, ultrasound-triggered nanocarriers have gained significant attention due to their cost-effectiveness, non-invasive nature, specificity, ability to penetrate tissues, and capacity to deliver elevated drug concentrations to intended targets. This article comprehensively reviews recent advancements in different nanocarriers for breast cancer chemotherapy. It also delves into the associated hurdles and offers valuable insights into the prospective directions for this innovative field.
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页数:25
相关论文
共 131 条
[1]   Application of microneedle patches for drug delivery; doorstep to novel therapies [J].
Abrbekoh, Fateme Nazary ;
Salimi, Leila ;
Saghati, Sepideh ;
Amini, Hassan ;
Karkan, Sonia Fathi ;
Moharamzadeh, Keyvan ;
Sokullu, Emel ;
Rahbarghazi, Reza .
JOURNAL OF TISSUE ENGINEERING, 2022, 13
[2]   Controlled Drug Delivery Systems: Current Status and Future Directions [J].
Adepu, Shivakalyani ;
Ramakrishna, Seeram .
MOLECULES, 2021, 26 (19)
[3]   Nanoparticles in Drug Delivery: From History to Therapeutic Applications [J].
Afzal, Obaid ;
Altamimi, Abdulmalik S. A. ;
Nadeem, Muhammad Shahid ;
Alzarea, Sami I. ;
Almalki, Waleed Hassan ;
Tariq, Aqsa ;
Mubeen, Bismillah ;
Murtaza, Bibi Nazia ;
Iftikhar, Saima ;
Riaz, Naeem ;
Kazmi, Imran .
NANOMATERIALS, 2022, 12 (24)
[4]  
Amjad MT, 2024, StatPearls Internet
[5]  
Amreddy N., 2020, Nanopharmaceuticals: Princ Appl, V3, P245
[6]   Cancer chemotherapy and beyond: Current status, drug candidates, associated risks and progress in targeted therapeutics [J].
Anand, Uttpal ;
Dey, Abhijit ;
Chandel, Arvind K. Singh ;
Sanyal, Rupa ;
Mishra, Amarnath ;
Pandey, Devendra Kumar ;
De Falco, Valentina ;
Upadhyay, Arun ;
Kandimalla, Ramesh ;
Chaudhary, Anupama ;
Dhanjal, Jaspreet Kaur ;
Dewanjee, Saikat ;
Vallamkondu, Jayalakshmi ;
de la Lastra, Jose M. Perez .
GENES & DISEASES, 2023, 10 (04) :1367-1401
[7]   Current and future burden of breast cancer: Global statistics for 2020 and 2040 [J].
Arnold, Melina ;
Morgan, Eileen ;
Rumgay, Harriet ;
Mafra, Allini ;
Singh, Deependra ;
Laversanne, Mathieu ;
Vignat, Jerome ;
Gralow, Julie R. ;
Cardoso, Fatima ;
Siesling, Sabine ;
Soerjomataram, Isabelle .
BREAST, 2022, 66 :15-23
[8]   Microneedles in Drug Delivery: Progress and Challenges [J].
Avcil, Muhammet ;
Celik, Ayhan .
MICROMACHINES, 2021, 12 (11)
[9]   Ultrasound-Responsive Nanocarriers for Breast Cancer Chemotherapy [J].
Ayana, Gelan ;
Ryu, Jaemyung ;
Choe, Se-woon .
MICROMACHINES, 2022, 13 (09)
[10]   Trastuzumab deruxtecan in HER2-positive breast cancer with brain metastases: a single-arm, phase 2 trial [J].
Bartsch, Rupert ;
Berghoff, Anna Sophie ;
Furtner, Julia ;
Marhold, Maximilian ;
Bergen, Elisabeth Sophie ;
Roider-Schur, Sophie ;
Starzer, Angelika Martina ;
Forstner, Heidrun ;
Rottenmanner, Beate ;
Dieckmann, Karin ;
Bago-Horvath, Zsuzsanna ;
Haslacher, Helmuth ;
Widhalm, Georg ;
Ilhan-Mutlu, Aysegul ;
Minichsdorfer, Christoph ;
Fuereder, Thorsten ;
Szekeres, Thomas ;
Oehler, Leopold ;
Gruenberger, Birgit ;
Singer, Christian F. ;
Weltermann, Ansgar ;
Puhr, Rainer ;
Preusser, Matthias .
NATURE MEDICINE, 2022, 28 (09) :1840-+