Marco Malferrari

About Marco Malferrari

Marco Malferrari, With an exceptional h-index of 18 and a recent h-index of 15 (since 2020), a distinguished researcher at Università degli Studi di Bologna, specializes in the field of Biophysics, Biochemistry, Bioelectrochemistry.

His recent articles reflect a diverse array of research interests and contributions to the field:

Labile assembly of a tardigrade protein induces biostasis

Nongenetic Optical Modulation of Pluripotent Stem Cells Derived Cardiomyocytes Function in the Red Spectral Range

Abstract P1102: Organic Semiconductor Photomodulation Enhances Maturation Of Pluripotent Stem Cell-derived Cardiomyocytes

Geneless optical control of cell redox balance in HL-1 cardiac muscle cells

Semiconducting Polymer Nanoporous Thin Films as a Tool to Regulate Intracellular ROS Balance in Endothelial Cells

Glucose micro-biosensor for scanning electrochemical microscopy characterization of cellular metabolism in hypoxic microenvironments

Nano-electrochemical characterization of a 3D bioprinted cervical tumor model

Autonomous Non‐Equilibrium Self‐Assembly and Molecular Movements Powered by Electrical Energy

Marco Malferrari Information

University

Position

___

Citations(all)

696

Citations(since 2020)

506

Cited By

350

hIndex(all)

18

hIndex(since 2020)

15

i10Index(all)

22

i10Index(since 2020)

20

Email

University Profile Page

Google Scholar

Marco Malferrari Skills & Research Interests

Biophysics

Biochemistry

Bioelectrochemistry

Top articles of Marco Malferrari

Labile assembly of a tardigrade protein induces biostasis

bioRxiv

2023

Nongenetic Optical Modulation of Pluripotent Stem Cells Derived Cardiomyocytes Function in the Red Spectral Range

Advanced Science

2024/1

Abstract P1102: Organic Semiconductor Photomodulation Enhances Maturation Of Pluripotent Stem Cell-derived Cardiomyocytes

Circulation Research

2023/8/4

Geneless optical control of cell redox balance in HL-1 cardiac muscle cells

Electrochimica Acta

2023/7/20

Semiconducting Polymer Nanoporous Thin Films as a Tool to Regulate Intracellular ROS Balance in Endothelial Cells

ACS Applied Materials & Interfaces

2023/7/19

Glucose micro-biosensor for scanning electrochemical microscopy characterization of cellular metabolism in hypoxic microenvironments

Bioelectrochemistry

2023/4/1

Nano-electrochemical characterization of a 3D bioprinted cervical tumor model

Cancers

2023/2/19

Autonomous Non‐Equilibrium Self‐Assembly and Molecular Movements Powered by Electrical Energy

Angewandte Chemie International Edition

2023/1/26

Electrochemical Characterization and CO2 Reduction Reaction of a Family of Pyridazine-Bridged Dinuclear Mn(I) Carbonyl Complexes

Molecules

2023/1/23

In vivo isolation of a quiescent melanoma population with invasive properties unveils a transcriptional reprogramming driven by the tumor niche

bioRxiv

2023

Marco Malferrari
Marco Malferrari

H-Index: 10

Stefania Rapino
Stefania Rapino

H-Index: 20

Development of a tissue construct with spatially controllable stiffness via a one-step 3D bioprinting and dual-crosslinking process

Materials Advances

2023

Nature-inspired functional porous materials for low-concentration biomarker detection

Materials Horizons

2023

Enhanced Uptake and Phototoxicity of C60@albumin Hybrids by Folate Bioconjugation

Nanomaterials

2022/10/6

Autonomous use of electrical energy by an artificial molecular machine

2021/11/18

Tardigrade cahs proteins act as molecular swiss army knives to mediate desiccation tolerance through multiple mechanisms

bioRxiv

2021/8/17

Human serum albumin–oligothiophene bioconjugate: a phototheranostic platform for localized killing of cancer cells by precise light activation

JACS Au

2021/7/6

Trehalose matrix effects on electron transfer in Mn-depleted protein-pigment complexes of Photosystem II

Biochimica et Biophysica Acta (BBA)-Bioenergetics

2021/7/1

Marco Malferrari
Marco Malferrari

H-Index: 10

Molecular Swiss army knives: Tardigrade CAHS proteins mediate desiccation tolerance through multiple mechanisms

BioRxiv

2021

Soft dynamic confinement of membrane proteins by dehydrated trehalose matrices: high-field EPR and fast-laser studies

2020/10

Marco Malferrari
Marco Malferrari

H-Index: 10

Structural and electrochemical characterization of lawsone-dependent production of tellurium-metal nanoprecipitates by photosynthetic cells of Rhodobacter capsulatus

Journal of Nanotechnology (Print)

2009/7/1

See List of Professors in Marco Malferrari University(Università degli Studi di Bologna)