Mechanism of Interaction between Nanoparticles and the Body: Molecular, Cellular, and Tissular Levels – a review

سال انتشار: 1404
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 39

فایل این مقاله در 14 صفحه با فرمت PDF قابل دریافت می باشد

استخراج به نرم افزارهای پژوهشی:

لینک ثابت به این مقاله:

شناسه ملی سند علمی:

JR_TIPS-11-1_008

تاریخ نمایه سازی: 6 خرداد 1404

چکیده مقاله:

Nanoparticles (NPs), ranging from ۱ to ۱۰۰ nanometers, exhibit unique properties that enable their use in medical applications such as drug delivery, diagnostics, and therapies. Their interactions with biological systems occur at molecular, cellular, and tissue levels, significantly influencing their behavior and efficacy. At the molecular level, NPs form a dynamic protein corona in biological fluids, affecting cellular uptake and biodistribution. NPs also interact with lipids and nucleic acids, impacting membrane integrity and gene delivery. Cellular uptake of NPs involves various endocytic pathways, influencing intracellular trafficking and potential cytotoxicity. Tissue-level interactions determine NP biodistribution, with accumulation in organs like the liver, spleen, and brain posing both therapeutic opportunities and safety concerns. Comprehensive studies on NP safety, biocompatibility, and regulatory guidelines are essential for advancing nanomedicine. This review delves into the mechanisms of these interactions, referencing key studies and highlighting their implications for the development of nanomedicine.

کلیدواژه ها:

نویسندگان

MOHAMMED KHALID

Department of Pharmaceutics, R.L Jalappa College of Pharmacy, Sri Devaraj Urs Academy Higher Education and Research (a Deemed to be University), Tamaka, Kolar, India.

Ashok Kumar BS

Department of Pharmacognosy, R.L Jalappa College of Pharmacy, Sri Devaraj Urs Academy Higher Education and Research (a Deemed to be University), Tamaka, Kolar, India.

Disha NS

Department of Pharmaceutical Chemistry, R.L Jalappa College of Pharmacy, Sri Devaraj Urs Academy Higher Education and Research (a Deemed to be University), Tamaka, Kolar, India.

Chaithanya A

Department of Pharmaceutical Chemistry, R.L Jalappa College of Pharmacy, Sri Devaraj Urs Academy Higher Education and Research (a Deemed to be University), Tamaka, Kolar, India.

مراجع و منابع این مقاله:

لیست زیر مراجع و منابع استفاده شده در این مقاله را نمایش می دهد. این مراجع به صورت کاملا ماشینی و بر اساس هوش مصنوعی استخراج شده اند و لذا ممکن است دارای اشکالاتی باشند که به مرور زمان دقت استخراج این محتوا افزایش می یابد. مراجعی که مقالات مربوط به آنها در سیویلیکا نمایه شده و پیدا شده اند، به خود مقاله لینک شده اند :
  • Pati R, Shevtsov M, Sonawane A. Nanoparticle Vaccines Against Infectious ...
  • Casals E, Pfaller T, Duschl A, Oostingh GJ, Puntes V. ...
  • Mu Q, Jiang G, Chen L, Zhou H, Fourches D, ...
  • Monopoli MP, Aberg C, Salvati A, Dawson KA. Biomolecular coronas ...
  • Allen TM, Cullis PR. Liposomal drug delivery systems: from concept ...
  • Choi HS, Liu W, Misra P, Tanaka E, Zimmer JP, ...
  • Kanasty R, Dorkin JR, Vegas A, Anderson D. Delivery materials ...
  • Kranz LM, Diken M, Haas H, Kreiter S, Loquai C, ...
  • Zhao X, Ng S, Heng BC, Guo J, Ma L, ...
  • Oh N, Park JH. Endocytosis and exocytosis of nanoparticles in ...
  • Kim JA, Åberg C, Salvati A, Dawson KA. Role of ...
  • Derfus AM, Chan WCW, Bhatia SN. Probing the Cytotoxicity Of ...
  • Gao W, Wang Y, Xiong Y, Sun L, Wang L, ...
  • Gabizon A, Shmeeda H, Barenholz Y. Pharmacokinetics of pegylated liposomal ...
  • Moghimi SM, Hunter AC, Murray JC. Long-circulating and target-specific nanoparticles: ...
  • Kreuter J. Nanoparticulate systems for brain delivery of drugs. Adv ...
  • Dobrovolskaia MA, McNeil SE. Immunological properties of engineered nanomaterials. Nat ...
  • Alric C, Miladi I, Kryza D, Taleb J, Lux F, ...
  • Brigger I, Dubernet C, Couvreur P. Nanoparticles in cancer therapy ...
  • Blanco E, Shen H, Ferrari M. Principles of nanoparticle design ...
  • Danhier F, Ansorena E, Silva JM, Coco R, Le Breton ...
  • Gillies ER, Fréchet JM. Dendrimers and dendritic polymers in drug ...
  • Gref R, Minamitake Y, Peracchia MT, Trubetskoy V, Torchilin V, ...
  • Lundqvist M, Stigler J, Elia G, Lynch I, Cedervall T, ...
  • Allen TM, Cullis PR. Drug delivery systems: entering the mainstream. ...
  • Cedervall T, Lynch I, Lindman S, Berggård T, Thulin E, ...
  • Kataoka K, Harada A, Nagasaki Y. Block copolymer micelles for ...
  • Kwon GS, Kataoka K. Block copolymer micelles as long-circulating drug ...
  • Matsumura Y, Kataoka K. Preclinical and clinical studies of anticancer ...
  • Oerlemans C, Bult W, Bos M, Storm G, Nijsen JF, ...
  • Salvati A, Pitek AS, Monopoli MP, Prapainop K, Bombelli FB, ...
  • Torchilin VP. Micellar nanocarriers: pharmaceutical perspectives. Pharm Res. ۲۰۰۷ Jan;۲۴(۱):۱-۱۶. ...
  • Fréchet JM. Functional polymers and dendrimers: reactivity, molecular architecture, and ...
  • Kobayashi H, Brechbiel MW. Dendrimer-based nanosized MRI contrast agents. Curr ...
  • Kukowska-Latallo JF, Candido KA, Cao Z, Nigavekar SS, Majoros IJ, ...
  • Lee CC, MacKay JA, Fréchet JM, Szoka FC. Designing dendrimers ...
  • Malik N, Evagorou EG, Duncan R. Dendrimer-platinate: a novel approach ...
  • Majoros IJ, Thomas TP, Mehta CB, Baker JR Jr. Poly(amidoamine) ...
  • Mecke A, Uppuluri S, Sassanella TM, Lee DK, Ramamoorthy A, ...
  • Patri AK, Majoros IJ, Baker JR. Dendritic polymer macromolecular carriers ...
  • Tomalia DA, Reyna LA, Svenson S. Dendrimers as multi-purpose nanodevices ...
  • Chithrani BD, Ghazani AA, Chan WC. Determining the size and ...
  • Dykman LA, Khlebtsov NG. Gold nanoparticles in biology and medicine: ...
  • Avouris P, Chen Z, Perebeinos V. Carbon-based electronics. Nat Nanotechnol. ...
  • Berber S, Kwon Y-K, Tománek D. Unusually High Thermal Conductivity ...
  • Cassell AM, Raymakers JA, Kong J, Dai H. Large scale ...
  • نمایش کامل مراجع