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Antifibrotic Agent Mediated Tumor Microenvironment Modulation and Improved Nanomedicine Delivery in Solid Tumor
Kamalpreet Kaur Sandha1,2, Chittaranjan Behera1, Pankaj Chibber1
1Formulation & Drug Delivery Laboratory, Pharmacology Division, CSIR-Indian Institute of Integrative Medicine, Canal Road, Jammu 180001, India.
Abstract:
The unique physiology of tumors limits the efficacy of chemotherapeutics. In efforts to improve the effectiveness of the existing chemotherapy drugs, nanomedicine emerged as a new hope but proved inadequate due to the transport barriers present within the tumor tissues, which limits the potential of nanomedicine. Dense collagen networks in fibrotic tissues contribute to hindering the penetration of molecular- or nano-scale medicine through tumor interstitium. In the present study, human serum albumin (HSA)-based nanoparticles (NPs) were developed for gemcitabine (GEM) and losartan (LST), which could offer secreted protein acids rich in cysteine (SPARC) and enhanced permeability and retention effect (EPR)-mediated drug accumulation in tumors. Also, the tumor microenvironment (TME) modulation approach using LST was coupled to investigate the impact on antitumor efficacy. GEM-HSA NPs and LST-HSA NPs were prepared by the desolvation-cross-linking method and characterized for size, potential, morphology, drug loading, drug-polymer interactions, and hemocompatibility. For investigating the efficacy of prepared NPs, cytotoxicity and mechanisms of cell death were elucidated in vitro by using various assays. Intracellular uptake studies of prepared HSA NPs indicated their uptake and cytoplasmic localization. Furthermore, in vivo studies demonstrated significantly improved anticancer efficacy of GEM-HSA NPs in combination with LST pretreatment. Extended LST treatment further improved the anticancer potential. It was shown that the improved efficacy of the nanomedicine was correlated with the reduced thrombospondin-1 (TSP-1) and collagen level in tumor tissue upon LST pretreatment. Moreover, this approach exhibited augmented nanomedicine accumulation in the tumor, and hematological, biochemical, and tissue histology indicated the safety profile of this combination regimen. Concisely, the undertaken study demonstrated the potential of the triple targeting (SPARC, EPR, TME modulation) approach for augmented efficacy of chemotherapeutics.
Insights
This study developed human serum albumin nanoparticles for gemcitabine and losartan, improving chemotherapy delivery and efficacy by targeting tumor microenvironment and enhancing drug accumulation.
Area of Science:
- Biomedical Engineering
- Nanomedicine
- Cancer Therapy
Background:
- Tumor physiology and fibrotic tissues impede chemotherapy and nanomedicine efficacy.
- Dense collagen networks hinder nanoparticle penetration into tumor interstitium.
- Existing nanomedicine approaches face limitations due to tumor transport barriers.
Purpose of the Study:
- To develop human serum albumin (HSA)-based nanoparticles (NPs) for gemcitabine (GEM) and losartan (LST).
- To investigate the combined effect of GEM-HSA NPs and LST for enhanced tumor drug accumulation and antitumor efficacy.
- To evaluate the impact of tumor microenvironment (TME) modulation by LST on nanomedicine effectiveness.
Main Methods:
- Preparation and characterization of GEM-HSA NPs and LST-HSA NPs (size, potential, morphology, drug loading, hemocompatibility).
- In vitro cytotoxicity and cell death mechanism assays.
- In vivo studies assessing anticancer efficacy, nanomedicine accumulation, and safety profiles.
Main Results:
- HSA NPs demonstrated effective intracellular uptake and cytoplasmic localization.
- Combination therapy with GEM-HSA NPs and LST pretreatment significantly improved anticancer efficacy.
- LST pretreatment reduced TSP-1 and collagen levels, correlating with improved nanomedicine efficacy and tumor accumulation.
Conclusions:
- The triple targeting approach (SPARC, EPR, TME modulation) significantly enhances chemotherapeutic efficacy.
- HSA nanoparticles combined with TME modulation offer a promising strategy for improved cancer treatment.
- The developed combination regimen showed a favorable safety profile in vivo.
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