Targeting Lysosomes: A Strategy Against Chemoresistance in Cancer

Author:

Shirbhate Ekta1ORCID,Singh Vaibhav1,Mishra Aditya1,Jahoriya Varsha1,Veerasamy Ravichandran2ORCID,Tiwari Amit K3ORCID,Rajak Harish1ORCID

Affiliation:

1. Department of Pharmacy, Guru Ghasidas University, Bilaspur-495 009, (C.G.), India

2. Faculty of Pharmacy, AIMST University, Semeling, 08100 Bedong, Kedah Darul Aman, Malaysia

3. UAMS College of Pharmacy; UAMS - University of Arkansas for Medical Sciences, (AR) USA

Abstract

Abstract: Chemotherapy is still the major method of treatment for many types of cancer. Curative cancer therapy is hampered significantly by medication resistance. Acidic organelles like lysosomes serve as protagonists in cellular digestion. Lysosomes, however, are gaining popularity due to their speeding involvement in cancer progression and resistance. For instance, weak chemotherapeutic drugs of basic nature permeate through the lysosomal membrane and are retained in lysosomes in their cationic state, while extracellular release of lysosomal enzymes induces cancer, cytosolic escape of lysosomal hydrolases causes apoptosis, and so on. Drug availability at the sites of action is decreased due to lysosomal drug sequestration, which also enhances cancer resistance. This review looks at lysosomal drug sequestration mechanisms and how they affect cancer treatment resistance. Using lysosomes as subcellular targets to combat drug resistance and reverse drug sequestration is another method for overcoming drug resistance that is covered in this article. The present review has identified lysosomal drug sequestration as one of the reasons behind chemoresistance. The article delves deeper into specific aspects of lysosomal sequestration, providing nuanced insights, critical evaluations, or novel interpretations of different approaches that target lysosomes to defect cancer.

Funder

Department of Science and Technology (DST), New Delhi

Indian Council of Medical Research, ICMR, New Delhi

Publisher

Bentham Science Publishers Ltd.

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