Silicio poroso en teranóstico humano
PDF

Palabras clave

Semiconductor poroso
Liberación farmacéutica
Oncoinmunoterapia
Regeneración cutánea
Biosensor

Cómo citar

M. Ramírez, E., & Wang, C. (2023). Silicio poroso en teranóstico humano. Materiales Avanzados, (3), 81–86. https://doi.org/10.22201/iim.rma.2023.3.14

Resumen

El teranóstico (terapia y diagnóstico) es un nuevo concepto que busca integrar la detección, rectificación y liberación de medicamentos en un solo microdispositivo. Este artículo presenta los avances recientes del silicio poroso aplicados al área biomédica. Estas aplicaciones van desde sensores de fluidos biológicos, microsuministro de medicamentos, inmunoterapia de cáncer, hasta la regeneración de tejido cutáneo.

https://doi.org/10.22201/iim.rma.2023.3.14
PDF

Citas

K. D. Hirschman, L. Tsybeskov, S. P. Duttagupta y P. M. Fauchet, Silicon-based visible light-emitting devices integrated into microelectronic circuits, Nature 384, 338-341 (1996).

A. Palavicini y C. Wang, Ab-initio determination of porous silicon refractive index confirmed by infrared transmittance measurements of an omnidirectional multilayer reflector, Appl. Phys. B 124, 65 (8pp) (2018).

S. Ben-Tabou de Leon, A. Sa’ar, R. Oren, M. E. Spira y S. Yitzchaik, Neurons culturing and biophotonic sensing using porous silicon, Appl. Phys. Lett. 84 (22), 4361-4363 (2004).

L. T. Canham (Ed.), Handbook of Porous Silicon, 2nd edition (Springer, 2018) pp. 215, 286, 287 y 1089.

L. T. Canham, Bioactive silicon structure fabrication through nanoetching techniques, Adv. Mater. 7 (12), 1033-1037 (1995).

M. J. Sailor, Porous Silicon in Practice: Preparation, Characterization and Applications (Wiley‐VCH, 2011) p. 1; A. Uhlir Jr. y I. Uhlir, Historical perspective on the discovery of porous silicon, Phys. Stat. Sol. C 2 (9), 3185-3187 (2005).

L. T. Canham, Silicon quantum wire array fabrication by electrochemical and chemical dissolution of wafers, Appl. Phys. Lett. 57, 1046-1048 (1990).

R. Cisneros, H. Pfeiffer y C. Wang, Oxygen absorption in free-standing porous silicon: A structural, optical and kinetic analysis, Nanoscale Res. Lett. 5, 686-691 (2010).

E. J. Anglina, L. Cheng, W. R. Freemanb y M. J. Sailor, Porous silicon in drug delivery devices and materials, Adv. Drug Deliv. Rev. 60 (11), 1266-1277 (2008).

A. B. Foraker, R. J. Walczak, M. H. Cohen, T. A. Boiarski, C. F. Grove y P. W. Swaan, Microfabricated porous silicon particles enhance paracellular delivery of insulin across intestinal Caco-2 cell monolayers, Pharm. Res. 20, 110-116 (2003).

R. Rao, X. Liu, Y. Li, X. Tan, H. Zhou, X. Bai, X. Yang y W. Liu, Bioinspired zwitterionic polyphosphoester modified porous silicon nanoparticles for efficient oral insulin delivery, Biomater. Sci. 9, 685-699 (2021).

S. Qi, P. Zhang, M. Ma, M. Yao, J. Wu, E. Mäkilä, J. Salonen, H. Ruskoaho, Y. Xu, H. A. Santos y H. Zhang, Cellular internalization–induced aggregation of porous silicon nanoparticles for ultrasound imaging and protein-mediated protection of stem cells, Small 15, 1804332 (13pp) (2019).

W. Li, Z. Liu, F. Fontana, Y. Ding, D. Liu, J. T. Hirvonen y H. A. Santos, Tailoring porous silicon for biomedical applications: from drug delivery to cancer immunotherapy, Adv. Mater. 30, 1703740 (38pp) (2018).

L. Vaccari, D. Canton, N. Zaffaroni, R. Villa, M. Tormen y E. di Fabrizio, Porous silicon as drug carrier for controlled delivery of doxorubicin anticancer agent, Microelectron. Eng. 83, 1598-1601 (2006).

W. Duan, X. Liu, J. Zhao, Y. Zheng y J. Wu, Porous silicon carrier endowed with photothermal and therapeutic effects for synergistic wound disinfection, ACS Appl. Mater. Interfaces 14, 48368-48383 (2022).

Y. Cui, W. Duan, Y. Jin, F. Wo, F. Xi y J. Wu, Graphene quantum dot-decorated luminescent porous silicon dressing for theranostics of diabetic wounds, Acta Biomaterialia 131, 544-554 (2021).

J. Ahmed, M. Faisal, S.A. Alsareii, M. Jalalah y F. A. Harraz, A novel gold-decorated porous silicon-poly (3-hexylthiophene) ternary nanocomposite as a highly sensitive and selective non-enzymatic dopamine electrochemical sensor, J. Alloys Compounds 931, 167403 (12pp) (2023).

S. Zhang, M. Sun, X. Wang, J. Wang, Z. Jia, X. Lv y X. Huang, Spectral-free double light detection of DNA based on a porous silicon Bragg mirror, Sensors 22, 7048 (14pp) (2022).

Creative Commons License

Esta obra está bajo una licencia internacional Creative Commons Atribución-NoComercial-SinDerivadas 4.0.

Derechos de autor 2023 Universidad Nacional Autónoma de México

Descargas

Los datos de descargas todavía no están disponibles.