Personalized Cancer Treatment
Combining computational oncology biology models to simulate individual patient drug responses and optimize therapeutics.
Developing Advanced Nanocarriers for Target-Specific Cancer Therapeutics
Dr. Afsaneh Mennati is a researcher in Pharmaceutical Nanotechnology, specializing in the formulation of nanoparticles and target-specific siRNA delivery. Her cutting-edge research targets malignant breast cancer pathways, achieving gene silencing with minimized standard cytotoxic effects.
The Journey of a Tumor-Suppressor Gene Nanocarrier into Cancer Cells
An automated visualization of hybrid nanocarriers delivering tumor-suppressor genes and siRNA into cancer cells, silencing driver oncogenes across three engineered stages.
Polymer Core Formulation
Therapeutic siRNA chains are loaded into the biodegradable polymer core, surrounded by a lipid bilayer to prevent degradation in physiological fluids.
Active Receptor Targeting
Targeting ligands on the nanoparticle surface bind specifically to HER2 receptors overexpressed on breast cancer cells, triggering receptor-mediated endocytosis.
Oncogene Silencing & Apoptosis
Inside the cell, the carrier degrades, releasing siRNA to slice target oncogene mRNA. This terminates cell proliferation and induces cell apoptosis.
Cancer treatment simulation process
Our lab's research framework for analyzing de-identified genomic datasets — obtained exclusively through formal academic collaborations and research-ethics approvals — and translating them into computational drug-delivery simulation models. This describes a research methodology, published in peer-reviewed literature, not a diagnostic or treatment service offered to patients.
Research Genomic Dataset Acquisition
Under formal research collaboration agreements and IRB/ethics approval, de-identified genomic sequencing datasets are obtained from partner institutions and prepared for computational analysis.
Computational Simulation Modeling for Target Receptor Identification
Developing digital simulation models based on the molecular profiles within research datasets, to identify patterns of targetable receptors and driver oncogenes for scientific study.
Computational Analysis of Compound Efficacy & Synergy
Computationally evaluating the modeled therapeutic response of drug compounds and their combinatorial synergy against studied genetic patterns, as part of drug-resistance research projects — this analysis does not substitute for a treating physician's judgment or clinical decision-making.
Research Findings Dissemination
Results of computational simulations — including modeled oncogene-inhibition rates and theoretical compound efficacy — are disseminated through peer-reviewed publications and shared research reports with partner institutions.
The Scientific Journey of Dr. Afsaneh Mennati
2009 — Present
A curated overview of the academic trajectory, key discoveries, research projects and honors of Dr. Afsaneh Mennati in nanomedicine, siRNA gene therapy and personalized cancer biosimulation.
First Postdoctoral Researcher, Qazvin University of Medical Sciences (QUMS)
Leading the design of nanocarriers for targeted siRNA and tumor-suppressor gene delivery in aggressive breast cancer models.
Ph.D. in Pharmaceutical Nanotechnology
Synthesis and optimization of mPEG-PCL/DDAB hybrid nanoparticles for co-delivery of siRNA and anti-cancer agents to MCF-7 breast cancer cells.
World-First Silencing of > 90% of Breast-Cancer-Driver Genes
A novel anti-breast-cancer formulation that, for the first time worldwide, silenced more than 90% of the driver oncogenes involved in breast cancer.
Research in Genomics-Driven Personalized Cancer Therapy
Developing research frameworks for modeling drug efficacy based on genomic data — integrating computational cancer biology models for theoretical drug-response prediction, published through academic studies.
6+ ISI Publications in Q1 Journals
Published in International Journal of Biological Macromolecules, Journal of Drug Delivery Science and Technology, American Journal of Cancer Research and Advanced Pharmaceutical Bulletin.
Featured by INSF, IRNA, ISNA & the Vice Presidency for Science & Technology
Interviews with national scientific outlets on smart nanocarriers engineered to halt cancer growth.
Interviews & Press Coverage of Dr. Mennati’s Research
Selected national press coverage of Dr. Mennati’s breakthroughs in siRNA-based breast cancer nanotherapy and postdoctoral research.
Iranian Researcher Develops World-First siRNA Nanocarrier for Targeted Breast Cancer Gene Silencing
Read Full Coverage →Smart Nanocarriers to Halt Cancer Growth — Interview with Dr. Afsaneh Mennati
Read Full Coverage →Smart Nanocarriers for Stopping Cancer Growth — Vice Presidency for Science & Technology
Read Full Coverage →Dr. Afsaneh Mennati — First Postdoctoral Researcher at Qazvin University of Medical Sciences
Read Full Coverage →Dr. Mennati's Publications Cited as a Reference in Wikipedia
Dr. Afsaneh Mennati's peer-reviewed findings have been reviewed by Wikipedia editors and accepted as a cited scientific reference in the following articles.
Featured Publications
Dual silencing of integrin αvβ3 receptor and insulin-like growth factor 1 receptor using mPEG-PCL/DDAB hybrid nanoparticle loaded siRNA in breast cancer therapy: An in vitro study on MCF-7 cells
Mennati A, Rostamizadeh K, Fathi M (2024). Novel hybrid nanocarrier co-silencing integrin αvβ3 and IGF-1R for targeted MCF-7 breast cancer therapy.
Co-delivery of siRNA and lycopene encapsulated hybrid lipid nanoparticles for dual silencing of insulin-like growth factor 1 receptor in MCF-7 breast cancer cell line
Mennati A, Rostamizadeh K, Manjili HK, Fathi M, Danafar H (2022). Hybrid lipid nanoparticles co-deliver siRNA + lycopene to dual-silence IGF-1R in MCF-7 breast cancer cells.
Synthesis of methoxy poly(ethylene glycol)-poly(ε-caprolactone) diblock copolymers hybridized with DDAB cationic lipid as the efficient nanocarriers for in vitro delivery of lycopene into MCF-7 breast cancer cells
Mennati A et al. (2021). mPEG-PCL/DDAB hybrid nanocarriers for efficient intracellular lycopene delivery to MCF-7 breast cancer cells.
Scientific News & Cancer Research Reports
A protein older than blood circulation could transform cancer immunotherapy
A protein that evolved long before the human circulatory system may help unlock stronger cancer treatments. When C3 is produced…
ScienceDaily — Cancer ResearchVitamin C may fight cancer — but not the way scientists once thought
Linus Pauling was widely mocked for claiming that vitamin C could fight cancer, especially after trials using vitamin C pills…
ScienceDaily — Cancer ResearchNew autism therapy shows surprising benefits even in adult mice
Blocking the glycine transporter SLC6A20 restored important brain signaling and improved social, communication, and repetitive behaviors in autism-related mouse models.…
National Cancer Institute (NCI)Could Functional Precision Medicine Be the New Precision Oncology?
Functional precision medicine tests drugs directly on living tumor cells to help clinicians identify the most effective, personalized treatments for…
ScienceDaily — Cancer ResearchA common sugar may help cancer cells break free and spread
Chemotherapy-surviving ovarian cancer cells may release fructose to help neighboring tumor cells loosen, escape, and spread. The discovery suggests that…
ScienceDaily — Cancer ResearchCancer may be breaking its own DNA to keep growing
Cancer cells rely on powerful genetic switches to keep growth genes running at full speed, but that intense activity can…
Get in Touch
For inquiries about computational biosimulation research, academic collaborations, or research mentoring.