Literature DB >> 33289550

Macrophage-Membrane-Camouflaged Disintegrable and Excretable Nanoconstruct for Deep Tumor Penetration.

Kishwor Poudel1, Asmita Banstola2, Milan Gautam1, Zarchi Soe1, Cao Dai Phung1, Le Minh Pham1, Jee-Heon Jeong1, Han-Gon Choi3, Sae Kwang Ku4, Tuan Hiep Tran5,6, Chul Soon Yong1, Jong Oh Kim1.   

Abstract

The consolidation of nanovectors with biological membranes has recently been a subject of interest owing to the prolonged systemic circulation time and delayed clearance by the reticuloendothelial system of such systems. Among the different biomembranes, the macrophage membrane has a similar systemic circulation time, with an additional chemotactic aptitude, targeting integrin proteins. In this study, we aimed to establish a laser-activated, disintegrable, and deeply tumor-penetrative nanoplatform. We used a highly tumor-ablative and laser-responsive disintegrable copper sulfide nanoparticle, loaded it with paclitaxel, and camouflaged it with the macrophage membrane for the fabrication of PTX@CuS@MMNPs. The in vitro paclitaxel release profile was favorable for release in the tumor microenvironment, and the release was accelerated after laser exposure. Cellular internalization was improved by membrane encapsulation. Cellular uptake, cytotoxicity, reactive oxygen species generation, and apoptosis induction of PTX@CuS@MMNPs were further improved upon laser exposure, and boosted permeation was achieved by co-administration of the tumor-penetrating peptide iRGD. In vivo tumor accumulation, tumor inhibition rate, and apoptotic marker expression induced by PTX@CuS@MMNPs were significantly improved by laser irradiation and iRGD co-administration. PTX@CuS@MMNPs induced downregulation of cellular proliferation and angiogenic markers but no significant changes in body weight, survival, or significant toxicities in vital organs after laser exposure, suggesting their biocompatibility. The disintegrability of the nanosystem, accredited to biodegradability, favored efficient elimination from the body. In conclusion, PTX@CuS@MMNPs showed promising traits in combination therapies for excellent tumor eradication.

Entities:  

Keywords:  combination therapy; disintegrability; macrophage membrane; tumor-penetrating peptide

Mesh:

Substances:

Year:  2020        PMID: 33289550     DOI: 10.1021/acsami.0c17235

Source DB:  PubMed          Journal:  ACS Appl Mater Interfaces        ISSN: 1944-8244            Impact factor:   9.229


  7 in total

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2.  Erythrocyte membrane-camouflaged nanoparticles as effective and biocompatible platform: Either autologous or allogeneic erythrocyte-derived.

Authors:  Jun Dai; Zhaojun Chen; Shixuan Wang; Fan Xia; Xiaoding Lou
Journal:  Mater Today Bio       Date:  2022-05-05

3.  Unleashing the potential of cell membrane-based nanoparticles for COVID-19 treatment and vaccination.

Authors:  Miguel Pereira-Silva; Gaurav Chauhan; Matthew D Shin; Clare Hoskins; Marc J Madou; Sergio O Martinez-Chapa; Nicole F Steinmetz; Francisco Veiga; Ana Cláudia Paiva-Santos
Journal:  Expert Opin Drug Deliv       Date:  2021-06-06       Impact factor: 6.648

Review 4.  Research update on cell membrane camouflaged nanoparticles for cancer therapy.

Authors:  Chengfang Wang; Size Wu
Journal:  Front Bioeng Biotechnol       Date:  2022-08-05

Review 5.  Enhancing the therapeutic efficacy of nanoparticles for cancer treatment using versatile targeted strategies.

Authors:  Hailong Tian; Tingting Zhang; Siyuan Qin; Zhao Huang; Li Zhou; Jiayan Shi; Edouard C Nice; Na Xie; Canhua Huang; Zhisen Shen
Journal:  J Hematol Oncol       Date:  2022-09-12       Impact factor: 23.168

6.  Hyaluronic Acid Coated Liposomes Co-Delivery of Natural Cyclic Peptide RA-XII and Mitochondrial Targeted Photosensitizer for Highly Selective Precise Combined Treatment of Colon Cancer.

Authors:  Yanqing Xu; Yongrong Yao; Linxiao Wang; Huachao Chen; Ninghua Tan
Journal:  Int J Nanomedicine       Date:  2021-07-22

7.  Dual Modal Imaging-Guided Drug Delivery System for Combined Chemo-Photothermal Melanoma Therapy.

Authors:  Dong Zhang; Weifen Zhang; Xinghan Wu; Qian Li; Zhiyi Mu; Fengshuo Sun; Mogen Zhang; Guoyan Liu; Linlin Hu
Journal:  Int J Nanomedicine       Date:  2021-05-18
  7 in total

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