Luiz Duarte Ramos | Biochemistry, Genetics and Molecular Biology | Innovative Research Award

Innovative Research Award

Luiz Duarte Ramos
Universidade Federal do ABC, Brazil

Luiz Duarte Ramos
Affiliation Universidade Federal do ABC
Country Brazil
Scopus ID 57189380008
Documents 14
Citations 204
h-index 8
Subject Area Biochemistry, Genetics and Molecular Biology
Event International Forensic Scientist Awards
ORCID 0000-0002-1002-0318

Luiz Duarte Ramos is a researcher in biochemistry and molecular biology whose scholarly work addresses oxidative processes, reactive intermediates, protein chemistry, and biologically relevant carbonyl chemistry. His indexed research record comprises 14 documents and 204 citations, with an h-index of 8, providing a measurable basis for assessing research influence. [1]

Abstract

Luiz Duarte Ramos’s research profile reflects sustained investigation of chemically reactive species and their interactions with biomolecules. His publications examine triplet carbonyl generation, singlet oxygen chemistry, hemoglobin and aminoacetone oxidation, and peroxidase-related reaction pathways. These studies connect mechanistic biochemical chemistry with broader questions concerning oxidative modification and molecular reactivity. [3]

Keywords

Biochemistry; molecular biology; oxidative chemistry; triplet carbonyls; singlet oxygen; myoglobin; hemoglobin; peroxidase; reactive intermediates; photochemistry.

Introduction

The research record associated with Ramos is centered on mechanistic studies of biological oxidation and reactive molecular species. His work contributes to understanding how proteins and small biomolecules participate in reactions capable of producing transient excited-state or oxidizing species. Such investigations are relevant to biochemical reaction mechanisms and the characterization of molecular damage and quenching processes. [2]

Research Profile

Ramos’s publication portfolio demonstrates an interdisciplinary approach combining biochemical experimentation with photochemical and free-radical perspectives. Particular attention is given to protein-mediated oxidation, reactive carbonyl chemistry, and the behavior of biological Schiff bases. His 2026 contribution on triplet acetone generation by myoglobin extends this research direction toward structural damage and quenching phenomena. [1]

Research Contributions

  • Investigated triplet carbonyl formation and associated biochemical reaction pathways.
  • Examined reactive oxygen and carbonyl species generated through biological oxidation.
  • Studied hemoglobin, myoglobin, aminoacetone, and peroxidase-mediated reaction systems.
  • Contributed to photochemical studies involving biological Schiff bases and singlet oxygen.

Publications

Selected publications illustrate the thematic continuity of the research program. The 2026 article in Luminescence addresses triplet acetone generation through pseudoperoxidase activity of myoglobin. [2] Earlier studies examined biological Schiff bases as sources of reactive triplet carbonyls and singlet oxygen, as well as aerobic co-oxidation involving hemoglobin and aminoacetone. [3] Additional work investigated L-tryptophan interactions with horseradish-peroxidase-catalyzed triplet acetone generation. [4]

Research Impact

The indexed record reports 204 citations across 14 documents and an h-index of 8. [1] These indicators provide quantitative evidence of scholarly visibility, while the publication themes demonstrate continuing engagement with reactive intermediates and biological oxidation. The combination of citation activity and specialized research output supports assessment within an innovation-oriented research category.

Award Suitability

The Innovative Research Award recognizes research characterized by methodological originality, scientific relevance, and evidence of meaningful scholarly contribution. Ramos’s work is suitable for consideration because it addresses complex biochemical reaction mechanisms through focused studies of reactive oxygen and carbonyl species, protein-mediated chemistry, and photochemical processes. The documented publication and citation record provides an additional quantitative basis for recognition.

Conclusion

Luiz Duarte Ramos has developed a focused research profile in biochemistry and molecular reaction chemistry. His studies of reactive intermediates, protein oxidation, triplet carbonyls, and related photochemical mechanisms demonstrate a coherent scientific direction supported by indexed scholarly output and citation activity. These characteristics provide a substantive foundation for recognition under the Innovative Research Award.

References

  1. Elsevier. (n.d.). Scopus author details: Luiz Duarte Ramos, Author ID 57189380008. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57189380008
  2. Ramos, L. D., et al. (2026). Triplet Acetone Generation by Pseudoperoxidase Activity of Myoglobin: Structural Damage and Quenching. Luminescence.
    https://doi.org/10.1002/bio.70618
  3. Ramos, L. D., et al. (2022). Biological Schiff bases may generate reactive triplet carbonyls and singlet oxygen: A model study. Free Radical Biology and Medicine.
    https://doi.org/10.1016/j.freeradbiomed.2022.08.034
  4. Ramos, L. D., et al. (2021). l-Tryptophan Interactions with the Horseradish Peroxidase-Catalyzed Generation of Triplet Acetone. Photochemistry and Photobiology.
    https://doi.org/10.1111/php.13363
  5. Ramos, L. D., et al. (2021). Aerobic co-oxidation of hemoglobin and aminoacetone, a putative source of methylglyoxal. Free Radical Biology and Medicine.
    https://doi.org/10.1016/j.freeradbiomed.2021.02.023
  6. Ramos, L. D., et al. (2023). DESENVOLVIMENTO DE COMPLEXOS POLIPIRIDÍNICOS DE Ru(II) PARA ATUAREM COMO photoCORMs. Data Management Plan.
    https://doi.org/10.48321/D17H09

Xiao Li | Biological Sciences | Best Researcher Award

Mrs. Xiao Li | Biological Sciences | Best Researcher Award

Associate Professor | Northwest A&F University | China

 Xiao Li is an Associate Professor at the College of Animal Sciences and Technology, Northwest A & F University. His research focuses on the genetic and epigenetic mechanisms that regulate skeletal muscle and adipose tissue development, with significant implications for the livestock industry. His studies explore the roles of noncoding RNAs, epigenetic pathways, and the interactions between skeletal myofibers and intramuscular adipocytes to enhance pig growth and pork quality.

Profile👤

ORCID

Strengths for the Awards🎗️

  • Outstanding Research Contributions – Xiao Li has a strong research focus on skeletal muscle and adipose tissue development, with particular interest in epigenetic and genetic mechanisms regulating myogenesis, adipogenesis, and lipogenesis. These areas have significant implications in both livestock industries and human health.

  • High-Impact Publications – Xiao Li has 19+ publications in renowned journals like the American Journal of Physiology-Cell Physiology, Journal of Biological Chemistry, Animal Biotechnology, and Acta Biochimica et Biophysica Sinica. These papers demonstrate substantial contributions to muscle biology, adipogenesis, and epigenetic regulation.

  • Interdisciplinary Research Impact – Xiao Li’s work bridges animal science, genetics, and nutrition, contributing to both fundamental research and practical applications in improving pig growth and meat quality.

  • International Collaborations & Experience – Xiao Li has collaborated with leading global institutions, including Virginia Tech, Cornell University, and Washington State University, showcasing a strong international research network.

Education 🎓

  • Ph.D. (2005-2011) – Key Laboratory of Animal Physiology & Biochemistry, Nanjing Agricultural University
  • Joint Ph.D. (2009-2010) – Laboratory of Muscle Biology, Virginia Tech
  • Visiting Scholar (2010-2011) – Division of Nutritional Sciences, Cornell University

Experience 🎓🌐

  • Lecturer (2012-2018) – College of Animal Sciences and Technology, Northwest A & F University
  • Visiting Scholar (2017-2018) – Department of Animal Sciences, Washington State University
  • Associate Professor (2018-present) – College of Animal Sciences and Technology, Northwest A & F University

Research Interests On Biological Sciences 🌿

  • The role and mechanisms of noncoding RNAs in myogenesis, adipogenesis, and lipogenesis
  • Epigenetic pathways mediating maternal/paternal programming in skeletal muscle and adipose tissue development
  • The cross-talk between skeletal myofibers and intramuscular adipocytes
  • Nutritional strategies to enhance pig growth and improve pork quality

Awards 🏆

Xiao Li has been recognized for his contributions to the field of animal physiology and genetics through various academic and research awards. His work has received funding and accolades from prestigious institutions supporting advancements in livestock research.

Publications 📚

  1. Screening of lncRNA profiles during intramuscular adipogenic differentiation in longissimus dorsi and semitendinosus muscles in pigs

    • Authors: Yanru Yue, Zihao Ge, Zhicheng Guo, Yuhe Wang, Gongshe Yang, Shiduo Sun, Xiao Li
    • Publication Year: 2023
    • DOI: 10.1080/10495398.2023.2176319
  2. Effects of maternal supplementation of fish oil during late gestation and lactation on growth performance, fecal microbiota structure and post-weaning diarrhoea of offspring piglets

    • Authors: Peiyuan Han, Zhaohui Du, Xiaowei Liu, Junyi You, Xin’e Shi, Shiduo Sun, Gongshe Yang, Xiao Li
    • Publication Year: 2023
    • DOI: 10.1017/S0007114522003981
  3. Rosiglitazone-induced PPARγ activation promotes intramuscular adipocyte adipogenesis of pig

    • Authors: Zhaolu Wang, Youlei Li, Lingling Wu, Yuan Guo, Gongshe Yang, Xiao Li, Xin’e Shi
    • Publication Year: 2023
    • DOI: 10.1080/10495398.2023.2206872
  4. Effect of fermented corn–soybean meal on carcass and meat quality of grower‐finisher pigs

    • Authors: Junfeng Lu, Qichun Han, Shaoying Wang, Zhaolu Wang, Xiao Li, Jianhong Hu, Gongshe Yang, Lei Wang, Xin’e Shi
    • Publication Year: 2021
    • DOI: 10.1111/jpn.13444
  5. MiR-370 enhances cell cycle and represses lipid accumulation in porcine adipocytes

  6. Triptolide enhances lipolysis of adipocytes by enhancing ATGL transcription via upregulation of p53

    • Authors: Xiaoyu Wang, Meixue Xu, Ying Peng, Qimuge Naren, Yanting Xu, Xin Wang, Gongshe Yang, Xin’E Shi, Xiao Li
    • Publication Year: 2020
    • DOI: 10.1002/ptr.6779
  7. Elevated miR-10a-5p facilitates cell cycle and restrains adipogenic differentiation via targeting Map2k6 and Fasn, respectively

    • Authors: Xiaoyu Wang, Huifang Zhang, Meixue Xu, Xin’E Shi, Gongshe Yang, Shiduo Sun, Xiao Li
    • Publication Year: 2020
    • DOI: 10.1093/abbs/gmaa111
  8. Morus nigra L. leaves improve the meat quality in finishing pigs

    • Authors: Lujie Fan, Ying Peng, Dan Wu, Jianhong Hu, Xin’E Shi, Gongshe Yang, Xiao Li
    • Publication Year: 2020
    • DOI: 10.1111/jpn.13439
  9. Screening of lncRNA Profiles During Intramuscular Adipogenic Differentiation in Longissimus Dorsi and Semitendinosus Muscles in Pigs

    • Authors: Xiaoyu Wang, Ying Peng, Meixue Xu, Xiaochang Chen, Gongshe Yang, Xin’e Shi, Xiao Li
    • Publication Year: 2020
    • DOI: 10.21203/rs.3.rs-55654/v1
  10. The long noncoding RNA MyHC IIA/X-AS contributes to skeletal muscle myogenesis and maintains the fast fiber phenotype

  • Authors: Mingle Dou, Ying Yao, Lu Ma, Xiaoyu Wang, Xin’e Shi, Gongshe Yang, Xiao Li
  • Publication Year: 2020
  • DOI: 10.1074/jbc.RA119.010498

Conclusion 🔍

Xiao Li’s research has significantly contributed to understanding the molecular and genetic mechanisms regulating muscle and fat development in livestock. His work enhances knowledge in animal science and provides practical applications for improving meat quality and agricultural productivity. His continued efforts in noncoding RNA, epigenetics, and nutritional strategies will help advance the field and benefit both academia and the livestock industry.