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Implantation of In Situ Gelling Systems for the Delivery of Chemotherapeutic Agents.

作者信息

Bakhrushina Elena O, Mikhel Iosif B, Buraya Liliya M, Moiseev Egor D, Zubareva Irina M, Belyatskaya Anastasia V, Evzikov Grigory Y, Bondarenko Alexey P, Krasnyuk Ivan I, Krasnyuk Ivan I

机构信息

Department of Pharmaceutical Technology, A.P. Nelyubin Institute of Pharmacy, I.M. Sechenov First Moscow State Medical University (Sechenov University), Moscow 119048, Russia.

Department of Pharmacology, A.P. Nelyubin Institute of Pharmacy, I.M. Sechenov First Moscow State Medical University (Sechenov University), Moscow 119048, Russia.

出版信息

Gels. 2024 Jan 5;10(1):44. doi: 10.3390/gels10010044.


DOI:10.3390/gels10010044
PMID:38247767
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10815592/
Abstract

Implantation is a modern method of administering chemotherapeutic agents, with a highly targeted effect and better patient tolerance due to the low frequency of administration. Implants are capable of controlled release, which makes them a viable alternative to infusional chemotherapy, allowing patients to enjoy a better quality of life without the need for prolonged hospitalization. Compared to subcutaneous implantation, intratumoral implantation has a number of significant advantages in terms of targeting and side effects, but this area of chemotherapy is still poorly understood in terms of clinical trials. At the same time, there are more known developments of drugs in the form of implants and injections for intratumoral administration. The disadvantages of classical intratumoral implants are the need for surgical intervention to install the system and the increased risk of tumor rupture noted by some specialists. The new generation of implants are in situ implants-systems formed in the tumor due to a phase transition (sol-gel transition) under the influence of various stimuli. Among this systems some are highly selective for a certain type of malignant neoplasm. Such systems are injected and have all the advantages of intratumoral injections, but due to the phase transition occurring in situ, they form depot forms that allow the long-term release of chemotherapeutic agents.

摘要
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b45f/10815592/804eeafc913e/gels-10-00044-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b45f/10815592/804eeafc913e/gels-10-00044-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b45f/10815592/804eeafc913e/gels-10-00044-g001.jpg

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引用本文的文献

[1]
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[2]
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[3]
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[4]
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本文引用的文献

[1]
Response of Locally Advanced Pancreatic Cancer to Intratumoral Injection of Large Surface Area Microparticle Paclitaxel: Initial Report of Safety and Clinical Outcome.

Pancreas. 2023-3-1

[2]
Recent Studies and Progress in the Intratumoral Administration of Nano-Sized Drug Delivery Systems.

Nanomaterials (Basel). 2023-7-31

[3]
Injectable Poloxamer Hydrogels for Local Cancer Therapy.

Gels. 2023-7-24

[4]
Adjuvant hepatic artery infusion pump chemotherapy for resected colorectal cancer liver metastases.

Surgery. 2023-9

[5]
Intratumoral injection therapies for locally advanced pancreatic cancer: systematic review.

BJS Open. 2023-5-5

[6]
Iron-based and BRD-downregulated strategy for amplified ferroptosis based on pH-sensitive/NIR-II-boosted nano-matchbox.

Acta Pharm Sin B. 2023-2

[7]
Optimization of thermoresponsive chitosan/β-glycerophosphate hydrogels for injectable neural tissue engineering application.

Colloids Surf B Biointerfaces. 2023-4

[8]
Adherence to Oral Chemotherapy in Acute Lymphoblastic Leukemia during Maintenance Therapy in Children, Adolescents, and Young Adults: A Systematic Review.

Curr Oncol. 2023-1-5

[9]
Poly (N-Vinylcaprolactam-Grafted-Sodium Alginate) Based Injectable pH/Thermo Responsive In Situ Forming Depot Hydrogels for Prolonged Controlled Anticancer Drug Delivery; In Vitro, In Vivo Characterization and Toxicity Evaluation.

Pharmaceutics. 2022-5-13

[10]
MMP-responsive forming hydrogel loaded with doxorubicin-encapsulated biodegradable micelles for local chemotherapy of oral squamous cell carcinoma.

RSC Adv. 2019-10-2

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