Recent Progress of RGD Modified Liposomes as Multistage Rocket Against Cancer

Последние достижения в модифицированных RGD липосомах как многоступенчатой ракете против рака
Prashant Kesharwani, Afsana Sheikh, Nabil A. Alhakamy, Shadab Md, Shadab Md
2022-01-25

RGD modified liposomesintegrin-targetingligand-anchored targeted drug deliverytumor microenvironment accumulation
Cancer is a life-threatening disease, contributing approximately 9.4 million deaths worldwide. To address this challenge, scientific researchers have investigated molecules that could act as speed-breakers for cancer. As an abiotic drug delivery system, liposomes can hold both hydrophilic and lipophilic drugs, which promote a controlled release, accumulate in the tumor microenvironment, and achieve elongated half-life with an enhanced safety profile. To further improve the safety and impair the off-target effect, the surface of liposomes could be modified in a way that is easily identified by cancer cells, promotes uptake, and facilitates angiogenesis. Integrins are overexpressed on cancer cells, which upon activation promote downstream cell signaling and eventually activate specific pathways, promoting cell growth, proliferation, and migration. RGD peptides are easily recognized by integrin over expressed cells. Just like a multistage rocket, ligand anchored liposomes can be selectively recognized by target cells, accumulate at the specific site, and finally, release the drug in a specific and desired way. This review highlights the role of integrin in cancer development, so gain more insights into the phenomenon of tumor initiation and survival. Since RGD is recognized by the integrin family, the fate of RGD has been demonstrated after its binding with the acceptor's family. The role of RGD based liposomes in targeting various cancer cells is also highlighted in the paper.
1
Integrins are overexpressed on cancer cells and their activation promotes signaling pathways that drive tumor growth, proliferation, migration, and angiogenesis.
2
Liposomes can encapsulate both hydrophilic and lipophilic drugs, enabling controlled release, tumor accumulation, prolonged half-life, and improved safety profiles.
3
RGD peptides specifically bind integrin family receptors, enabling RGD-modified liposomes to selectively target integrin-overexpressing cancer cells.
4
RGD-modified liposomes act as a 'multistage rocket': selective recognition, targeted accumulation at tumor sites, and controlled drug release to improve therapeutic delivery.
5
Surface modification of liposomes with targeting ligands can reduce off-target effects and enhance cancer cell recognition and uptake.

RGD-modified liposomes used as targeted drug delivery vehicles against cancer

Their multistage targeting behavior and therapeutic performance including integrin-mediated recognition/uptake, tumor accumulation, controlled drug release, safety (reduced off-target effects), and role in targeting various cancer cells

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Publication Date
2022-01-25
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Authors
Prashant Kesharwani
Afsana Sheikh
Nabil A. Alhakamy
Shadab Md
Shadab Md
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