The bioengineered and multifunctional nanoparticles in pancreatic cancer therapy: Bioresponisive nanostructures, phototherapy and targeted drug delivery

The multidisciplinary approaches in treatment of cancer appear to be essential in term of bringing benefits of several disciplines and their coordination in tumor elimination. Because of the biological and malignant features of cancer cells, they have ability of developing resistance to conventional...

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Veröffentlicht in:Environmental research 2023-09, Vol.233, p.116490-116490, Article 116490
Hauptverfasser: Saadh, Mohamed J., Baher, Hala, Li, Yuanji, chaitanya, Mvnl, Arias-Gonzáles, José Luis, Allela, Omer Qutaiba B., Mahdi, Mohammed H., Carlos Cotrina-Aliaga, Juan, Lakshmaiya, Natrayan, Ahjel, Salam, Amin, Ali H., Gilmer Rosales Rojas, Gregorio, Ameen, Fuad, Ahsan, Muhammad, Akhavan-Sigari, Reza
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Sprache:eng
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Zusammenfassung:The multidisciplinary approaches in treatment of cancer appear to be essential in term of bringing benefits of several disciplines and their coordination in tumor elimination. Because of the biological and malignant features of cancer cells, they have ability of developing resistance to conventional therapies such as chemo- and radio-therapy. Pancreatic cancer (PC) is a malignant disease of gastrointestinal tract in which chemotherapy and radiotherapy are main tools in its treatment, and recently, nanocarriers have been emerged as promising structures in its therapy. The bioresponsive nanocarriers are able to respond to pH and redox, among others, in targeted delivery of cargo for specific treatment of PC. The loading drugs on the nanoparticles that can be synthetic or natural compounds, can help in more reduction in progression of PC through enhancing their intracellular accumulation in cancer cells. The encapsulation of genes in the nanoparticles can protect against degradation and promotes intracellular accumulation in tumor suppression. A new kind of therapy for cancer is phototherapy in which nanoparticles can stimulate both photothermal therapy and photodynamic therapy through hyperthermia and ROS overgeneration to trigger cell death in PC. Therefore, synergistic therapy of phototherapy with chemotherapy is performed in accelerating tumor suppression. One of the important functions of nanotechnology is selective targeting of PC cells in reducing side effects on normal cells. The nanostructures are capable of being surface functionalized with aptamers, proteins and antibodies to specifically target PC cells in suppressing their progression. Therefore, a specific therapy for PC is provided and future implications for diagnosis of PC is suggested. [Display omitted] •Nanostructures mediate targeted therapy of pancreatic cancer (PC).•Targeted cargo therapy by nanoparticles suppresses PC progression.•Phototherapy mediated by nanoparticles impairs PC malignancy.•Stimuli-responsive nanoparticles mediate site-specific delivery of cargo.•Combination therapy of PC is facilitated using nanostructures.
ISSN:0013-9351
1096-0953
DOI:10.1016/j.envres.2023.116490