Assist. Prof. D. Parvaneh Naserzadeh | Nanotechnology in Food Science Award | Best Researcher Award

Assist. Prof. D. Parvaneh Naserzadeh | Nanotechnology in Food Science Award | Best Researcher AwardΒ 

Correspond at Iran medical university, Iran

Dr. Parvaneh Naserzadeh is an Assistant Professor at the Institute of Endocrinology and Metabolism, Iran University of Medical Sciences, Tehran, Iran. Her research primarily focuses on cellular and mitochondrial toxicity, microfluidics for cell repairing, smart drug delivery systems using nanoparticles, and various methods of detecting cellular damage and toxicity pathways, particularly in relation to tumor cells. Dr. Naserzadeh has extensive experience in both teaching and research, with a strong focus on cellular mechanisms, pharmacology, and toxicology. She has contributed to numerous academic projects, publications, and patents and is actively involved in international and national collaborations.

Publications Profile

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πŸŽ“ Education Details

  • Ph.D., Pharmacology & Toxicology (Biomedicine)
    Shahid Beheshti University of Medical Sciences, Tehran, Iran (2014–2019)
    Thesis: A search for mitochondrial and cellular toxicity by Silk fibroin nanoparticles using huvec, fibroblast, and lymphocytes, monocytes cells.

  • MSc, General Toxicology
    Tehran University of Medical Sciences, Tehran, Iran (2012–2014)
    Thesis: A search for mitochondrial damage by cigarette smoke extract using isolated mitochondria obtained from the brain, heart, lung, and skin of Wistar rats.

  • BSc, Cellular and Molecular Biology
    Zanjan University, Zanjan, Iran (2007–2011)

πŸ‘©β€πŸ”¬ Professional Experience

  • Assistant Professor, Institute of Endocrinology and Metabolism, Iran University of Medical Sciences
    Tehran, Iran (2024–Present)
    Teaching and research focused on cellular mechanisms in endocrinology diseases, mitochondrial and lysosomal studies on tumor cells, and the application of flow cytometry in medicine.

  • International Branch, Iran University of Medical Sciences
    Tehran, Iran (2024–2025)
    Teaching the application of cellular and molecular concepts in radiobiology.

  • Faculty of Pharmacy, Shahid Beheshti University
    Tehran, Iran (2024–2025)
    Teaching the diagnosis of toxicity using cytotoxic factors and therapeutic strategies.

  • Nanopromaterials Company & Institute of Endocrinology and Metabolism, Iran University of Medical Sciences
    Tehran, Iran (2014–2022)
    Research on nano-delivery and imaging, including cellular and mitochondrial toxicity of nanoparticles by microfluidics.

🌱 Research Interests

  • Development of microfluidic systems for cell repair and toxicity detection.
  • Investigation of cellular and mitochondrial toxicity pathways, particularly in relation to drug delivery systems and tumor cells.
  • Exploration of smart drug delivery using biocompatible materials such as nanoparticles.
  • Cytotoxicity and mechanisms of mitochondrial dysfunction in diseases such as cancer and diabetes.
  • Application of nanomaterials in medical treatments, including their effects on tissue regeneration and cancer therapy.

πŸ† Awards and Honors

  • 2023-2024: Young Researcher Project Grant, Ministry of Health and Medical Education, Tehran, Iran.
  • 2023-2024: Young Researcher Project Grant, Iran University of Medical Sciences, Tehran, Iran.
  • 2014-2015: Ph.D. Project Grant, Ministry of Health and Medical Education, Tehran, Iran.

πŸ” Conclusion

Dr. Parvaneh Naserzadeh’s expertise lies in the fields of pharmacology, toxicology, and biomedicine, with significant contributions to the understanding of mitochondrial and cellular toxicity. Her work is integral to the development of advanced therapeutic strategies, including nano-based drug delivery systems and the use of microfluidic devices in medical research. With her academic background, numerous publications, and international research collaborations, Dr. Naserzadeh has made a substantial impact on the scientific community, particularly in the areas of drug delivery, toxicity mechanisms, and regenerative medicine. Her passion for teaching and mentoring future researchers in these fields further strengthens her contributions to the scientific community.

Publications πŸ“š

  1. πŸ“„ Protective impact of Betanin against noise and scrotal hyperthermia on testicular toxicity in Wistar rat: Role of apoptosis, oxidative stress and inflammation
    S., Bijani, Soroush, P., Naserzadeh, Parvaneh, M.J., Hosseini, Mir Jamal
    Heliyon, 2024


  2. πŸ“„ Cytotoxicity of Zirconium Oxide Nanoparticles on Rabbit Tooth Gum Cells
    S.A.J., Mossavi, Seyed Arash Javad, J.F., Ramandi, Javad F., F., Ghanbary, Fatemeh, F.R., Tay, Franklin R., B., Ashtari, Behnaz
    Nano, 2024


  3. πŸ“„ Photobiomodulation therapy reverses spermatogenesis arrest in hyperthermia-induced azoospermia mouse model
    S., Ziaeipour, Sanaz, M., Noroozian, Mohsen, H.A., Abbaszadeh, Hojjat Allah, M.A., Abdollahifar, Mohammad Amin, S., Paktinat, Shahrokh
    Lasers in Medical Science, 2023


  4. πŸ’‰ A Drug-Eluting Injectable NanoGel for Localized Delivery of Anticancer Drugs to Solid Tumors
    B., Godau, Brent, S., Samimi, Sadaf, A., Seyfoori, Amir, D.D., Fortin, David D., M., Akbari, Mohsen
    Pharmaceutics, 2023


  5. πŸ’‰ Fabrication of a microfluidic device for probiotic drug’s dosage screening: Precision Medicine for Breast Cancer Treatment
    A., Salehi, Ali, P., Naserzadeh, Parvaneh, P., Tarighi, Parastoo, B., Ashtari, Behnaz, M.A., Mozafari, Masoud Amin
    Translational Oncology, 2023


  6. 🩹 Combined Use of Photobiomodulation and Curcumin-Loaded Iron Oxide Nanoparticles Significantly Improved Wound Healing in Diabetic Rats Compared to Either Treatment Alone
    M., Hekmat, Manouchehr, H., Ahmadi, Houssein, F., Baniasadi, Farazad, S., Chien, Sufan, M., Bayat, Mohammad
    Journal of Lasers in Medical Sciences, 2023


  7. πŸ”¬ Stem Cell Differentiation into Cardiomyocytes: Current Methods and Emerging Approaches
    E., Afjeh-Dana, Elham, P., Naserzadeh, Parvaneh, E., Moradi, Elham, A.M., Seifalian, Alexander Marcus, B., Ashtari, Behnaz
    Stem Cell Reviews and Reports, 2022


 

Tianyuan Song | Nutritional Science and Functional Foods | Young Scientist Award

Assoc. Prof. Dr. Tianyuan Song | Nutritional Science and Functional Foods | Young Scientist Award

Assoc. Prof. at Zhejiang Gongshang University, School of Food Science and Biotechnology, China

Dr. Tianyuan Song is an Associate Professor at the School of Food Science and Biotechnology, Zhejiang Gongshang University. After earning a Ph.D. in Food Science and Engineering from South China University of Technology in 2022, he has pursued a research career focused on bioactive peptides, cellular exosomes, and food-drug homologous plants. With nearly eight years of experience in food science research, Dr. Song is committed to advancing the understanding of functional foods and their applications in health and nutrition. He serves as the Secretary of the International Society for Food Nutrition and Safety and is an expert member of the Working Committee on Chinese Special Medicine Foods and Bioactive Peptides.

Professional Profile

Education

Dr. Song completed his Ph.D. in Food Science and Engineering from South China University of Technology in 2022. His doctoral studies focused on developing innovative approaches to studying bioactive compounds in food. Prior to this, he obtained a Master’s degree in Food Biotechnology, where he refined his expertise in molecular food science. His academic training has equipped him with multidisciplinary skills spanning food chemistry, biotechnology, and nutritional sciences.

Professional Experience

Since completing his Ph.D., Dr. Song has served as an Associate Professor at Zhejiang Gongshang University. His academic career includes leading projects funded by the National Natural Science Foundation of China and the Natural Science Foundation of Zhejiang Province. Dr. Song has published 18 SCI-indexed papers and holds two patents related to bioactive peptides and functional food development. Additionally, he actively participates in research collaborations and professional committees, strengthening his academic and industry connections.

Research Interests

Dr. Song’s research focuses on foodborne bioactive peptides, cellular exosomes, and food-drug homologous plants. He investigates the functional properties of peptides and their potential to modulate cellular signaling pathways, particularly those associated with chronic diseases. His work also explores how natural compounds from food sources can serve therapeutic and preventive roles in human health. This interdisciplinary approach merges food science, molecular biology, and biotechnology to develop functional foods that improve public health outcomes.

Awards and Honors

Dr. Song has been recognized for his contributions to food science research with multiple honors. In 2021, he participated in a key research and development initiative under Guangdong Province’s R&D program. In 2023, he received competitive funding from the National Natural Science Foundation of China and the Natural Science Foundation of Zhejiang Province. His innovations have also been acknowledged through patents, emphasizing his commitment to translating research into practical applications. His leadership roles in international and national committees further demonstrate his growing influence in the field.

Conclusion

Tianyuan Song is a highly suitable candidate for the Research for Young Scientist Award due to a robust academic foundation, impactful research contributions, and leadership in professional organizations. Strengthening global collaborations, increasing the practical application of research, and engaging more broadly with the scientific community would elevate the application further. Overall, the candidate demonstrates a promising trajectory in the field of food science and biotechnology, making them a strong contender for this recognition.

Publications Top Noted

1️⃣ Inhibitory Effects of a Sulfated Polysaccharide Isolated from Edible Red Alga Bangia fusco-purpurea on Ξ±-amylase and Ξ±-glucosidase

  • πŸ–‹ Z Jiang, G Yu, Y Liang, T Song, Y Zhu, H Ni, K Yamaguchi, T Oda
  • πŸ“– Bioscience, Biotechnology, and Biochemistry
  • πŸ“… 2019
  • πŸ”’ Citations: 51

2️⃣ Soybean-Derived Antihypertensive Peptide LSW (Leu–Ser–Trp) Antagonizes the Damage of Angiotensin II to Vascular Endothelial Cells Through the Trans-Vesicular Pathway

  • πŸ–‹ T Song, M Lv, M Zhou, M Huang, L Zheng, M Zhao
  • πŸ“– Journal of Agricultural and Food Chemistry
  • πŸ“… 2021
  • πŸ”’ Citations: 22

3️⃣ The Protective Effects of Tripeptides VPP and IPP Against Small Extracellular Vesicles from Angiotensin II-Induced Vascular Smooth Muscle Cells Mediating Endothelial Damage

  • πŸ–‹ T Song, M Lv, L Zhang, X Zhang, G Song, M Huang, L Zheng, M Zhao
  • πŸ“– Journal of Agricultural and Food Chemistry
  • πŸ“… 2020
  • πŸ”’ Citations: 20

4️⃣ Tripeptides Val-Pro-Pro (VPP) and Ile-Pro-Pro (IPP) Regulate the Proliferation and Migration of Vascular Smooth Muscle Cells by Interfering with Ang II-Induced Human Umbilical Vein Cells

  • πŸ–‹ T Song, M Lv, B Sun, L Zheng, M Zhao
  • πŸ“– Journal of Agricultural and Food Chemistry
  • πŸ“… 2020
  • πŸ”’ Citations: 15

5️⃣ The Anti-Inflammatory Effect of Vasoactive Peptides from Soybean Protein Hydrolysates by Mediating Serum Extracellular Vesicles-Derived miRNA-19b/CYLD/TRAF6 Axis

  • πŸ–‹ T Song, M Zhou, W Li, M Lv, L Zheng, M Zhao
  • πŸ“– Food Research International
  • πŸ“… 2022
  • πŸ”’ Citations: 9

6️⃣ Identification and Screening of Potential ACE2 Activating Peptides from Soybean Protein Isolate Hydrolysate Against Ang II-Induced Endothelial Dysfunction

  • πŸ–‹ M Zhou, T Song, W Li, M Huang, L Zheng, M Zhao
  • πŸ“– Journal of Agricultural and Food Chemistry
  • πŸ“… 2023
  • πŸ”’ Citations: 8

7️⃣ Signal Intensity of Stem Diameter Variation for the Diagnosis of Drip Irrigation Water Deficit in Grapevine

  • πŸ–‹ C Ru, X Hu, W Wang, H Ran, T Song, Y Guo
  • πŸ“– Horticulturae
  • πŸ“… 2021
  • πŸ”’ Citations: 8

8️⃣ Effects of Nitrogen on Nitrogen Accumulation and Distribution, Nitrogen Metabolizing Enzymes, Protein Content, and Water and Nitrogen Use Efficiency in Winter Wheat Under Heat Stress

  • πŸ–‹ C Ru, X Hu, M LΓΌ, D Chen, W Wang, T Song
  • πŸ“– Journal
  • πŸ“… 2022
  • πŸ”’ Citations: 5

9️⃣ Soybean-Derived Antihypertensive Hydrolysates Attenuate Ang II-Induced Renal Damage by Modulating MAPK and NF-ΞΊB Signaling Pathways

  • πŸ–‹ T Song, YY Ding, T Zhang, Q Cai, Y Hu, Q Gu, Z Gu
  • πŸ“– Food & Function
  • πŸ“… 2024
  • πŸ”’ Citations: 4

πŸ”Ÿ Tripeptide Leu-Ser-Trp Regulates the Vascular Endothelial Cells Phenotype Switching by Mediating the Vascular Smooth Muscle Cells-Derived Small Extracellular Vesicles Packaging

  • πŸ–‹ T Song, M Zhou, W Li, L Zheng, J Wu, M Zhao
  • πŸ“– Molecules
  • πŸ“… 2022
  • πŸ”’ Citations: 4