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1.
Nutrients ; 16(12)2024 Jun 07.
Article in English | MEDLINE | ID: mdl-38931154

ABSTRACT

Psoriasis is a chronic systemic disease with a multifaceted pathomechanism and immunological basis, with the presence of inflammatory skin lesions and joint ailments. Diseases accompanying psoriasis include metabolic and cardiovascular disorders. It has been suggested that inflammation is involved in the development of each of these conditions. The main objective of this study was to analyse the fatty acid profile, including polyunsaturated fatty acids, in the erythrocyte membranes of patients suffering from psoriasis. A total of 58 adult patients of the Department of Skin and Venereal Diseases of the Pomeranian Medical University in Szczecin, suffering from psoriasis, were qualified for this study. The patients had undergone an interview and physical examination, during which the severity of psoriasis was assessed. All patients had their weight and height measured to assess their body mass index (BMI). After 3 months of treatment, biochemical parameters (ALT, AST, total cholesterol) and inflammatory markers (CRP) in the blood were assessed. In addition, the isolation of fatty acids (PUFAs, SFAs, MUFAs) from erythrocyte membranes and the qualitative and quantitative analysis of their profile using a gas chromatograph were carried out. In patients with severe psoriasis requiring systemic treatment, an altered profile of fatty acids in erythrocyte membranes was found, including a significantly lower concentration of polyunsaturated fatty acids (omega-3), which have an anti-inflammatory effect; a significantly higher concentration of saturated fatty acids; and a decreased concentration of oleic acid (omega-9), compared to the results obtained in patients with less severe psoriasis receiving topical treatment. In patients with psoriasis and BMI ≥ 25, significantly higher concentrations of AST and ALT in the blood and significantly higher concentrations of pro-inflammatory arachidonic acid in erythrocyte membranes were found. Elevated concentrations of saturated (R = 0.31) and monounsaturated fatty acids (R = 0.29) may correlate with a greater severity of psoriasis.


Subject(s)
Erythrocyte Membrane , Fatty Acids , Psoriasis , Humans , Psoriasis/blood , Erythrocyte Membrane/metabolism , Erythrocyte Membrane/chemistry , Female , Male , Middle Aged , Fatty Acids/blood , Adult , Body Mass Index , Fatty Acids, Unsaturated/blood , Severity of Illness Index , Biomarkers/blood , Aged
2.
Nanoscale ; 16(25): 11863-11878, 2024 Jun 27.
Article in English | MEDLINE | ID: mdl-38841898

ABSTRACT

Red blood cells (RBCs), which function as material transporters in organisms, are rich in materials that are exchanged with metabolically active tumor cells. Recent studies have demonstrated that tumor cells can regulate biological changes in RBCs, including influencing differentiation, maturation, and morphology. RBCs play an important role in tumor development and immune regulation. Notably, the novel scientific finding that RBCs absorb fragments of tumor-carrying DNA overturns the conventional wisdom that RBCs do not contain nucleic acids. RBC membranes are excellent biomimetic materials with significant advantages in terms of their biocompatibility, non-immunogenicity, non-specific adsorption resistance, and biodegradability. Therefore, RBCs provide a new research perspective for the development of tumor liquid biopsies, molecular imaging, drug delivery, and other tumor precision diagnosis and treatment technologies.


Subject(s)
Erythrocytes , Neoplasms , Humans , Erythrocytes/metabolism , Neoplasms/therapy , Neoplasms/diagnosis , Neoplasms/pathology , Precision Medicine , Animals , Drug Delivery Systems , Erythrocyte Membrane/chemistry , Erythrocyte Membrane/metabolism , Biomimetic Materials/chemistry
3.
Neuroimage ; 296: 120666, 2024 Aug 01.
Article in English | MEDLINE | ID: mdl-38830440

ABSTRACT

Direct imaging of semi-solid lipids, such as myelin, is of great interest as a noninvasive biomarker of neurodegenerative diseases. Yet, the short T2 relaxation times of semi-solid lipid protons hamper direct detection through conventional magnetic resonance imaging (MRI) pulse sequences. In this study, we examined whether a three-dimensional ultrashort echo time (3D UTE) sequence can directly acquire signals from membrane lipids. Membrane lipids from red blood cells (RBC) were collected from commercially available blood as a general model of the myelin lipid bilayer and subjected to D2O exchange and freeze-drying for complete water removal. Sufficiently high MR signals were detected with the 3D UTE sequence, which showed an ultrashort T2* of ∼77-271 µs and a short T1 of ∼189 ms for semi-solid RBC membrane lipids. These measurements can guide designing UTE-based sequences for direct in vivo imaging of membrane lipids.


Subject(s)
Erythrocyte Membrane , Magnetic Resonance Imaging , Membrane Lipids , Myelin Sheath , Humans , Magnetic Resonance Imaging/methods , Myelin Sheath/chemistry , Erythrocyte Membrane/chemistry , Erythrocyte Membrane/metabolism , Membrane Lipids/chemistry , Freeze Drying , Erythrocytes/metabolism
4.
Bull Exp Biol Med ; 176(6): 811-815, 2024 Apr.
Article in English | MEDLINE | ID: mdl-38896317

ABSTRACT

The qualitative composition and zeta potential of magnetite nanoparticles (size 4.2±1.2 nm) obtained by co-precipitation method were determined by X-ray and diffraction dynamic light scattering. The zeta potential of Fe3O4 particles was -15.1±4.5 mV. The possibility of interaction of magnetite nanoparticles with human blood plasma proteins and hemoglobin as well as with erythrocyte membranes was demonstrated by spectrophotometry, electrophoresis, and fluorescence methods. No changes in the sizes of hemoglobin molecules and plasma proteins after their modification by Fe3O4 particles were detected. The possibility of modifying the structural state of erythrocyte membranes in the presence of magnetite nanoparticles was demonstrated by means of fluorescent probe 1-anilinonaphthalene-8-sulfonate.


Subject(s)
Hemoglobins , Magnetite Nanoparticles , Humans , Magnetite Nanoparticles/chemistry , Hemoglobins/chemistry , Erythrocyte Membrane/drug effects , Erythrocyte Membrane/chemistry , Erythrocyte Membrane/metabolism , Particle Size , Blood Proteins/chemistry , Anilino Naphthalenesulfonates/chemistry , X-Ray Diffraction , Ferrosoferric Oxide/chemistry , Fluorescent Dyes/chemistry
5.
ACS Appl Mater Interfaces ; 16(27): 34607-34619, 2024 Jul 10.
Article in English | MEDLINE | ID: mdl-38924764

ABSTRACT

Photothermal therapy (PTT), which uses the high thermal conversion ability of photothermal agents to ablate tumor cells at high temperatures, has gained significant attention because it has the advantages of high selectivity and specificity, precise targeting of tumor sites, and low invasiveness and trauma. However, PTT guided by the NIR-I has limitations in tissue penetration depth, resulting in limited imaging monitoring and therapeutic effects on deep-seated tumor tissues. Moreover, nanoparticles are easily cleared by the immune system and difficult to passively target tumor sites during the process of treatment. To address these issues, we prepared nanoparticles using NIR-II dyes IR1048 and DSPE-PEG-OH and further encapsulated them in red blood cell membranes derived from mice. These biomimetic nanoparticles, called RDIR1048, showed reduced clearance by the immune system and had long circulation characteristics. They effectively accumulated at tumor sites, and strong fluorescence could still be observed at the tumor site 96 h after administration. Furthermore, through mouse thermal imaging experiments, we found that RDIR1048 exhibited good PTT ability. When used in combination with an immune checkpoint inhibitor, anti-PD-L1 antibodies, it enhanced the immunogenic cell death of tumor cells caused by PTT and improved the therapeutic effect of immunotherapy, which demonstrated good therapeutic efficacy in the treatment of tumor-bearing mice. This study provides a feasible basis for the future development of NIR-II nanoparticles with long circulation properties.


Subject(s)
Erythrocyte Membrane , Immunotherapy , Nanoparticles , Photothermal Therapy , Animals , Mice , Nanoparticles/chemistry , Nanoparticles/therapeutic use , Immunotherapy/methods , Erythrocyte Membrane/chemistry , Infrared Rays , Humans , Cell Line, Tumor , Mice, Inbred BALB C , Neoplasms/diagnostic imaging , Neoplasms/therapy , Female , Phototherapy/methods
6.
J Control Release ; 369: 325-334, 2024 May.
Article in English | MEDLINE | ID: mdl-38565395

ABSTRACT

Challenges for glioma treatment with nanomedicines include physio-anatomical barriers (the blood-brain barrier and blood-brain tumor barrier), low drug loading capacity, and limited circulation time. Here, a red blood cell membrane-coated docetaxel drug nanocrystal (pV-RBCm-NC(DTX)), modified with pHA-VAP (pV) for all-stage targeting of glioma, was designed. The NC(DTX) core exhibited a high drug loading capacity but low in vivo stability, and the RBCm coating significantly enhanced the stability and prolonged in vivo circulation. Moreover, the Y-shaped targeting ligand pV was modified by a mild avidin-biotin interaction, which endowed RBCm-NC(DTX) with superior barrier-crossing ability and therapeutic efficacy. The integration of nanocrystal technology, cell membrane coating, and the avidin-biotin insertion method into this active targeting biomimetic formulation represents a promising drug delivery strategy for glioma.


Subject(s)
Antineoplastic Agents , Brain Neoplasms , Docetaxel , Erythrocyte Membrane , Glioma , Nanoparticles , Docetaxel/administration & dosage , Docetaxel/pharmacokinetics , Docetaxel/chemistry , Glioma/drug therapy , Animals , Nanoparticles/chemistry , Antineoplastic Agents/administration & dosage , Antineoplastic Agents/pharmacokinetics , Antineoplastic Agents/chemistry , Antineoplastic Agents/therapeutic use , Erythrocyte Membrane/drug effects , Erythrocyte Membrane/chemistry , Cell Line, Tumor , Brain Neoplasms/drug therapy , Male , Drug Delivery Systems , Avidin/administration & dosage , Avidin/chemistry , Humans , Biotin/chemistry , Biotin/administration & dosage , Rats, Sprague-Dawley , Blood-Brain Barrier/metabolism , Mice, Inbred BALB C , Mice, Nude
7.
Urologiia ; (1): 24-30, 2024 Mar.
Article in Russian | MEDLINE | ID: mdl-38650402

ABSTRACT

AIM: To determine the effect of standard treatment on changes in the structural and functional properties of erythrocytes in obstructive and non-obstructive acute pyelonephritis. MATERIALS AND METHODS: The structural and functional properties of erythrocytes and their intracellular metabolism in 78 patients with a diagnosis of primary non-obstructive and secondary obstructive acute pyelonephritis, randomized by age, gender, and the minimum number of concomitant diseases were investigated. RESULTS AND DISCUSSION: In acute non-obstructive pyelonephritis, changes of the content of proteins in circulating erythrocytes responsible for the structure formation and stabilization of the plasma membrane (-spectrin, anion transport protein, pallidin, protein 4.1), intracellular metabolism (anion transport protein, glutathione-S-transferase), membrane flexibility and shape (actin, tropomyosin) are insignificant, alike from acute obstructive pyelonephritis. In addition, processes of lipid peroxidation inside red blood cells are intensified, and oxidative stress develops with a decrease in the sorption capacity of erythrocytes, as well as the content and ratio of lipid fractions in the plasma membrane, which form the basis of the lipid components and play the main role in the sequencing of protein macromolecules and the normal metabolism of red blood cells. CONCLUSION: In acute obstructive pyelonephritis, changes in the content and ratio of proteins and lipids in the erythrocyte membrane lead to functional rearrangements that are not corrected by standard treatment.


Subject(s)
Erythrocytes , Pyelonephritis , Humans , Pyelonephritis/blood , Pyelonephritis/metabolism , Erythrocytes/metabolism , Female , Male , Acute Disease , Adult , Middle Aged , Erythrocyte Membrane/metabolism , Erythrocyte Membrane/chemistry
8.
Cryobiology ; 115: 104898, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38663665

ABSTRACT

Trehalose is widely acknowledged for its ability to stabilize plasma membranes during dehydration. However, the exact mechanism by which trehalose interacts with lipid bilayers remains presently unclear. In this study, we conducted atomistic molecular dynamic simulations on asymmetric model bilayers that mimic the membrane of human red blood cells at various trehalose and water contents. We considered three different hydration levels mimicking the full hydration to desiccation scenarios. Results indicate that the asymmetric distribution of lipids did not significantly influence the computed structural characteristics at full and low hydration. At dehydration, however, the order parameter obtained from the symmetric bilayer is significantly higher compared to those obtained from asymmetric ones. Analysis of hydrogen bonds revealed that the protective ability of trehalose is well described by the water replacement hypothesis at full and low hydration, while at dehydration other interaction mechanisms associated with trehalose exclusion from the bilayer may involve. In addition, we found that trehalose exclusion is not attributed to sugar saturation but rather to the reduction in hydration levels. It can be concluded that the protective effect of trehalose is not only related to the hydration level of the bilayer, but also closely tied to the asymmetric distribution of lipids within each leaflet.


Subject(s)
Erythrocyte Membrane , Hydrogen Bonding , Lipid Bilayers , Molecular Dynamics Simulation , Trehalose , Trehalose/metabolism , Trehalose/chemistry , Lipid Bilayers/chemistry , Lipid Bilayers/metabolism , Humans , Erythrocyte Membrane/metabolism , Erythrocyte Membrane/chemistry , Water/chemistry , Water/metabolism , Erythrocytes/metabolism , Erythrocytes/chemistry , Desiccation
9.
Clin Nutr ; 42(12): 2328-2337, 2023 12.
Article in English | MEDLINE | ID: mdl-37862819

ABSTRACT

BACKGROUND & AIMS: Polyunsaturated fatty acids (PUFAs) may play a vital role in maintaining skeletal muscle mass in the aged population. This study investigated the longitudinal relationship between the concentrations of erythrocyte membrane PUFAs and age-related changes in skeletal muscle mass over an average 6.5 years of follow-up in a Chinese middle-aged and older adult population. METHODS: A total of 1494 participants aged 57.4 ± 4.7 years were included in this study. Skeletal muscle mass was determined using dual-energy X-ray absorptiometry. Per year percent changes in the skeletal muscle index (Δ% SMI), appendicular skeletal muscle index (Δ% ASMI), and total body lean mass index (Δ% TBLMI) from baseline were calculated. Concentrations of total and individual cis-n-3 and cis-n-6 PUFAs of the erythrocyte membrane were determined using gas-liquid chromatography. RESULTS: Fully adjusted linear regression models showed that per unit increases in the concentrations of C18:2 n-6, C20:4 n-6, C22:4 n-6, and total n-6 PUFAs resulted in increases of 0.022%-0.155 % in the Δ% SMI (P for linearity: <0.001-0.006). Restricted cubic spline analysis revealed an inverted U-shaped relationship between the concentrations of C20:2 n-6, C22:5 n-3, C22:6 n-3, and total n-3 PUFAs and the Δ% SMI (P for non-linearity: <0.001-0.036). In addition, an inverted U-shaped curve was also detected for the relationships of the linoleic acid/α-linolenic acid ratio (P for non-linearity = 0.010) and n-6/n-3 PUFA ratio (P for non-linearity = 0.013) with the Δ% SMI, with the Δ% SMI peaking at respective ratios of 124.96 and 3.69. Similar associations were revealed by the Bayesian kernel machine regression model. No interaction effect was detected between the individual PUFAs for the Δ% SMI in the bivariate exposure-response analysis. Overall, similar results were observed for the Δ% ASMI and Δ% TBLMI. CONCLUSIONS: The associations between different individual PUFAs and age-related muscle loss in middle-aged and older adults may be different. Our results suggest that high concentrations of erythrocyte membrane n-6 PUFAs may be correlated with less skeletal muscle mass loss, whereas extremely high concentrations of n-3 PUFAs may be correlated with more muscle loss.


Subject(s)
Erythrocyte Membrane , Fatty Acids, Omega-3 , Middle Aged , Humans , Aged , Erythrocyte Membrane/chemistry , Prospective Studies , Bayes Theorem , Fatty Acids, Unsaturated , Muscle, Skeletal , Fatty Acids/analysis
10.
J Trace Elem Med Biol ; 80: 127316, 2023 Dec.
Article in English | MEDLINE | ID: mdl-37862897

ABSTRACT

BACKGROUND: Deformability and fluidity function of the red blood cell membrane are properties defined by the lipid composition. Toxic copper level induces membrane lipid peroxidation which could cause membrane instability. This study therefore investigated the effect of exposure to toxic copper level for 30 days on red blood cell membrane deformability and fluidity in female Wistar rats. METHODS: Twelve (12) female Wistar rats (160 ± 10 g) were randomly grouped (n = 6) into control (given 0.1 ml distilled water p.o.) and copper-toxic (100 mg/kg Copper Sulphate, p.o.), and treated for 30 days. Plasma obtained and RBC membrane prepared from blood collected over EDTA post-treatment were assayed for total cholesterol (TC), phospholipids and fatty acid profile using spectrophotometry and Gas chromatography while heparinized blood was subjected to fragility test. Data were analyzed using student T-test for statistical significance at p < 0.05. RESULTS AND CONCLUSION: Plasma TC increased by 4.33% while RBC membrane TC decreased by 20.32% in copper-toxic group compared to control. Compared to control, excess copper significantly increased membrane phospholipids level (0.72 ± 0.01 vs 0.59 ± 0.04 mg/dL) but reduced membrane cholesterol/phospholipid ratio (46.61 ± 4.72 vs 72.66 ± 6.47) and stability (by 23.53%). Number of cis- and saturated fatty acids increased in copper-treated plasma and RBC membrane compared to control. Exposure to toxic copper level alters erythrocyte membrane fluidity and deformability by disrupting membrane lipid composition, saturation, bond configuration in phospholipids and permeability.


Subject(s)
Erythrocyte Membrane , Fatty Acids , Rats , Animals , Female , Erythrocyte Membrane/chemistry , Rats, Wistar , Copper/analysis , Phospholipids/analysis , Phospholipids/metabolism , Cholesterol/metabolism
11.
Biomater Adv ; 151: 213456, 2023 Aug.
Article in English | MEDLINE | ID: mdl-37196459

ABSTRACT

Cell-membrane-coated biomimetic nanoparticles (NPs) have attracted great attention due to their prolonged circulation time, immune escape mechanisms and homotypic targeting properties. Biomimetic nanosystems from different types of cell -membranes (CMs) can perform increasingly complex tasks in dynamic biological environments thanks to specific proteins and other properties inherited from the source cells. Herein, we coated doxorubicin (DOX)-loaded reduction-sensitive chitosan (CS) NPs with 4T1 cancer cell -membranes (CCMs), red blood cell -membranes (RBCMs) and hybrid erythrocyte-cancer membranes (RBC-4T1CMs) to enhance the delivery of DOX to breast cancer cells. The physicochemical properties (size, zeta potential and morphology) of the resulting RBC@DOX/CS-NPs, 4T1@DOX/CS-NPs and RBC-4T1@DOX/CS-NPs, as well as their cytotoxic effect and cellular NP uptake in vitro were thoroughly characterized. The anti-cancer therapeutic efficacy of the NPs was evaluated using the orthotopic 4T1 breast cancer model in vivo. The experimental results showed that DOX/CS-NPs had a DOX-loading capacity of 71.76 ± 0.87 %, and that coating of DOX/CS-NPs with 4T1CM significantly increased the NP uptake and cytotoxic effect in breast cancer cells. Interestingly, by optimizing the ratio of RBCMs:4T1CMs, it was possible to increase the homotypic targeting properties towards breast cancer cells. Moreover, in vivo tumor studies showed that compared to control DOX/CS-NPs and free DOX, both 4T1@DOX/CS-NPs and RBC@DOX/CS-NPs significantly inhibited tumor growth and metastasis. However, the effect of 4T1@DOX/CS-NPs was more prominent. Moreover, CM-coating reduced the uptake of NPs by macrophages and led to rapid clearance from the liver and lungs in vivo, compared to control NPs. Our results suggest that specific self-recognition to source cells resulting in homotypic targeting increased the uptake and the cytotoxic capacity of 4T1@DOX/CS-NPs by breast cancer cells in vitro and in vivo. In conclusion, tumor-disguised CM-coated DOX/CS-NPs exhibited tumor homotypic targeting and anti-cancer properties, and were superior over targeting with RBC-CM or RBC-4T1 hybrid membranes, suggesting that the presence of 4T1-CM is critical for treatment outcome.


Subject(s)
Antineoplastic Agents , Breast Neoplasms , Nanoparticles , Humans , Female , Breast Neoplasms/drug therapy , Doxorubicin/pharmacology , Doxorubicin/therapeutic use , Doxorubicin/chemistry , Antineoplastic Agents/pharmacology , Antineoplastic Agents/therapeutic use , Nanoparticles/therapeutic use , Nanoparticles/chemistry , Erythrocyte Membrane/chemistry
12.
Rejuvenation Res ; 26(4): 139-146, 2023 Aug.
Article in English | MEDLINE | ID: mdl-37166369

ABSTRACT

Acarbose (ACA), a well-studied and effective inhibitor of α-amylase and α-glucosidase, is a postprandial-acting antidiabetic medicine. The membrane of the erythrocyte is an excellent tool for analyzing different physiological and biochemical activities since it experiences a range of metabolic alterations throughout aging. It is uncertain if ACA modulates erythrocyte membrane activities in an age-dependent manner. As a result, the current study was conducted to explore the influence of ACA on age-dependent deteriorated functions of transporters/exchangers, disrupted levels of various biomarkers such as lipid hydroperoxides (LHs), protein carbonyl (PCO), sialic acid (SA), total thiol (-SH), and erythrocyte membrane osmotic fragility. In addition to a concurrent increase in Na+/H+ exchanger activity and concentration of LH, PCO, and osmotic fragility, we also detected a considerable decrease in membrane-linked activities of Ca2+-ATPase (PMCA) and Na+/K+-ATPase (NKA), as well as concentrations of SA and -SH in old-aged rats. The aging-induced impairment of the activities of membrane-bound ATPases and the changed levels of redox biomarkers were shown to be effectively restored by ACA treatment.


Subject(s)
Acarbose , Aging , Erythrocyte Membrane , Glycoside Hydrolase Inhibitors , Plasma Membrane Calcium-Transporting ATPases , Sodium-Potassium-Exchanging ATPase , Acarbose/pharmacology , Glycoside Hydrolase Inhibitors/pharmacology , Erythrocyte Membrane/chemistry , Erythrocyte Membrane/drug effects , Erythrocyte Membrane/enzymology , Aging/drug effects , Aging/metabolism , Lipid Peroxides/analysis , Sialic Acids/analysis , Protein Carbonylation/drug effects , Sulfhydryl Compounds/analysis , Osmotic Fragility/drug effects , Animals , Rats , Male , Rats, Wistar , Plasma Membrane Calcium-Transporting ATPases/analysis , Plasma Membrane Calcium-Transporting ATPases/metabolism , Sodium-Potassium-Exchanging ATPase/analysis , Sodium-Potassium-Exchanging ATPase/metabolism , Oxidation-Reduction/drug effects , Biomarkers/analysis , Biomarkers/metabolism
13.
Biochimie ; 212: 95-105, 2023 Sep.
Article in English | MEDLINE | ID: mdl-37098369

ABSTRACT

It is known that the activities of Na+/K+- and Ca2+-ATPases in the plasma membrane with an excess of cholesterol are compromised. Our main goal was to find out whether quercetin, resveratrol, or caffeic acid, in the nano- and low micromolar concentration ranges, can improve the ATPase activity in human erythrocyte membranes with excess cholesterol. These molecules belong to different chemical classes of polyphenols and are widely present in plant foods. Also, due to some variations in the protocol for determining the ATPase activity, we first analyzed several key parameters of the protocol to improve the accuracy of the results. The activities of Na+/K+- and Ca2+-ATPases were reduced in membranes with moderate and high cholesterol levels compared to membranes from normocholesterolemic subjects (p < 0.01). All three polyphenols affected the ATPase activity in a similar biphasic manner. Namely, the ATPase activity gradually increased with increasing polyphenol concentration up to 80-200 nM, and then gradually decreased with further increase in polyphenol concentration. Moreover, the stimulating effect of the polyphenols was highest in membranes with high cholesterol content, making ATPase activity values close/equal to those in normal cholesterol membranes. In other words, quercetin, resveratrol, and caffeic acid at nanomolar concentrations were able to improve/restore the functioning of Na+/K+- and Ca2+-ATPases in erythrocyte membranes with high cholesterol levels. This suggests a common membrane-mediated mechanism of action for these polyphenols, related to the content of membrane cholesterol.


Subject(s)
Erythrocyte Membrane , Hypercholesterolemia , Humans , Erythrocyte Membrane/chemistry , Sodium-Potassium-Exchanging ATPase/metabolism , Polyphenols/pharmacology , Resveratrol/pharmacology , Resveratrol/analysis , Quercetin/pharmacology , Cholesterol/analysis , Ions/metabolism
14.
Small Methods ; 7(6): e2201548, 2023 06.
Article in English | MEDLINE | ID: mdl-36914575

ABSTRACT

Cell membrane-cloaked nanoparticles are exploited as a promising drug carrier to enhance circulation, accumulation, penetration into tumor sites and cellular internalization. However, the effect of physicochemical properties (e.g., size, surface charge, shape, and elasticity) of cell membrane-cloaked nanoparticles on nano-bio interaction is rarely studied. In the present study, keeping the other parameters constant, erythrocyte membrane (EM)-cloaked nanoparticles (nanoEMs) with different Young's moduli are fabricated by altering different kinds of nano-core (i.e., aqueous phase core, gelatin nanoparticles, and platinum nanoparticles). The designed nanoEMs are used to investigate the effect of nanoparticle elasticity on nano-bio interaction including cellular internalization, tumor penetration, biodistribution, blood circulation, and so on. The results demonstrate that the nanoEMs with intermediate elasticity (≈95 MPa) have a relatively higher increase in cellular internalization and inhibition of tumor cells migration than the soft (≈11 MPa) and stiff (≈173 MPa) ones. Furthermore, in vivo studies show that nanoEMs with intermediate elasticity preferentially accumulate and penetrate into tumor sites than the soft and stiff ones, while in circulation, softer nanoEMs show a longer blood circulation time. This work provides an insight for optimizing the design of biomimetic carriers and may further contribute to the selection of nanomaterials on biomedical application.


Subject(s)
Metal Nanoparticles , Tissue Distribution , Platinum , Elasticity , Erythrocyte Membrane/chemistry , Erythrocyte Membrane/metabolism
15.
J Proteome Res ; 22(3): 896-907, 2023 03 03.
Article in English | MEDLINE | ID: mdl-36792548

ABSTRACT

Red blood cell (RBC)-derived systems offer a potential platform for delivery of biomedical cargos. Although the importance of specific proteins associated with the biodistribution and pharmacokinetics of these particles has been recognized, it remains to be explored whether some of the key transmembrane and cytoskeletal proteins responsible for immune-modulatory effects and mechanical integrity of the particles are retained. Herein, using sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) and quantitative tandem mass tag mass spectrometry in conjunction with bioinformatics analysis, we have examined the proteomes of micro- and nanosized erythrocyte ghosts doped with indocyanine green and compared them with those of RBCs. We identified a total of 884 proteins in each set of RBCs, micro-, and nanosized particles, of which 8 and 45 proteins were expressed at significantly different relative abundances when comparing micro-sized particles vs RBCs and nanosized particles vs RBCs, respectively. We found greater differences in relative abundances of some mechano-modulatory proteins, such as band 3 and protein 4.2, and immunomodulatory proteins like CD44, CD47, and CD55 in nanosized particles as compared to RBCs. Our findings highlight that the methods utilized in fabricating RBC-based systems can induce substantial effects on their proteomes. Mass spectrometry data are available at ProteomeXchange with the identifier PXD038780.


Subject(s)
Erythrocytes , Proteome , Proteome/analysis , Tissue Distribution , Erythrocytes/chemistry , Erythrocyte Membrane/chemistry , Tandem Mass Spectrometry
16.
J Mol Biol ; 435(1): 167539, 2023 01 15.
Article in English | MEDLINE | ID: mdl-35292348

ABSTRACT

Red blood cell (RBC) membrane-hitchhiking nanoparticles (NPs) have been an increasingly popular supercarrier for targeted drug delivery. However, the kinetic details of the shear-induced NP detachment process from RBC in blood flow remain unclear. Here, we perform detailed computational simulations of the traversal dynamics of an RBC-NP composite supercarrier with tunable properties. We show that the detachment of NPs from RBC occurs in a shear-dependent manner which is consistent with previous experiment results. We quantify the NP detachment rate in the microcapillary flow, and our simulation results suggest that there may be an optimal adhesion strength span of 25-40 µJ/m2 for rigid spherical NPs to improve the supercarrier performance and targeting efficiency. In addition, we find that the stiffness and the shape of NPs alter the detachment efficiency by changing the RBC-NP contact areas. Together, these findings provide unique insights into the shear-dependent NP release from the RBC surface, facilitating the clinical utility of RBC-NP composite supercarriers in targeted and localized drug delivery with high precision and efficiency.


Subject(s)
Drug Carriers , Erythrocyte Membrane , Nanoparticles , Computer Simulation , Kinetics , Nanoparticles/chemistry , Erythrocyte Membrane/chemistry , Drug Carriers/chemistry , Shear Strength , Stress, Mechanical
17.
Lipids Health Dis ; 21(1): 96, 2022 Oct 08.
Article in English | MEDLINE | ID: mdl-36209108

ABSTRACT

AIMS: To explore the relationship between the fatty acid lipophilic index (LI) of the erythrocyte membrane and oral cancer risk, as well as to evaluate the possibility of LI acting as a mediator of the association between body mass index (BMI) and oral cancer. METHOD: Twenty-three fatty acids (FAs) of the erythrocyte membrane were measured using gas chromatography in 380 patients with oral cancer and 387 control subjects. The LI was calculated based on the FA proportion and FA melting points. The association of BMI and erythrocyte LI with oral cancer risk was analysed using logistic regression. The mediation effect of LI on the association between BMI and oral cancer risk was evaluated using mediation analysis. RESULTS: Among the control group, 46.0% were overweight or obese, which was significantly higher than that of oral cancer patients (29.5%). Significant differences in erythrocyte membrane saturated fatty acids (SFAs), monounsaturated fatty acids (MUFAs), and polyunsaturated fatty acids (PUFAs) were observed between the patient and control groups. The proportion of C18:1 n-9 from the MUFA family increased in oral cancer patients (12.67%) compared with controls (12.21%). While the total proportion of n-3 PUFAs decreased in oral cancer patients compared with controls, with C20:5 n-3 decreasing from 0.66 to 0.47%, and C22:6 n-3 decreasing from 5.82 to 4.86%. The LI was lower in the control participants (M = 27.6, IQR: 27.3-27.9) than in the oral cancer patients (M = 28.2, IQR: 27.9-28.5). BMI was inversely associated with oral cancer risk with a fully adjusted OR of 0.59 (95% CI: 0.43-0.83), while LI was positively associated with oral cancer risk with a fully adjusted OR of 1.99 (95% CI:1.36-2.94). LI explained 7% of the variance in the relationship between BMI and oral cancer risk. CONCLUSIONS: The distribution of the FA profile in erythrocyte membranes differed between the oral cancer patients and the control group. The LI derived from the profile of FAs was positively associated with the risk of oral cancer, and the associations between BMI and oral cancer risk can be explained, at least in part, by LI.


Subject(s)
Mediation Analysis , Mouth Neoplasms , Body Mass Index , Erythrocyte Membrane/chemistry , Fatty Acids/analysis , Fatty Acids, Monounsaturated/pharmacology , Fatty Acids, Unsaturated/pharmacology , Humans , Mouth Neoplasms/epidemiology
18.
Gene ; 843: 146796, 2022 Nov 15.
Article in English | MEDLINE | ID: mdl-35961434

ABSTRACT

Hereditary Elliptocytosis (HE) and Hereditary Pyropoikilocytosis (HPP) are clinically and genetically heterogeneous red cell membranopathies that result from the defects in the horizontal linkage between RBC (red blood cell) membrane and cytoskeletal proteins affecting its mechanical stability and deformability thereby reducing its lifespan. The principal defect in HE and HPP is due to dysfunction or deficiency of RBC cytoskeletal proteins namely, α-spectrin (SPTA1), ß-spectrin (SPTB) and protein 4.1R (EPB41R). This study reports the genetic and phenotypic heterogeneity of 10 Indian patients (5 with HE and 5 with HPP)harboringSPTA1 gene variants. We used targeted next-generation sequencing (t-NGS) to characterize the causative genetic variants in 10 HE/HPP suspected patients and studied the correlation between the identified variants with their corresponding phenotypic features.t-NGS detected 12 SPTA1 variants, out of which 8 are novel. Nearly all of the detected variants have a damaging effect on the protein stability and function, as shown by the insilico analysis. The possible effect of the detected variants on the protein structure was studied using the HOPE software and DynaMut tools wherever possible. To the best of our knowledge, this is the first report on HE/HPP cases confirmed by a genetic study from India. To conclude, HE is caused by monoallelic mutations while HPP, the more severe form, is typically caused by biallelic (homozygous or compound heterozygous) mutations justifying the phenotypic heterogeneity associated with patients. Moreover, analysis at the molecular level by NGS permits diagnosis in these disorders with highly variable heterogeneity requiring regular transfusions and may facilitate prognostic contemplations.


Subject(s)
Elliptocytosis, Hereditary , Cytoskeletal Proteins/genetics , Cytoskeletal Proteins/metabolism , Elliptocytosis, Hereditary/diagnosis , Elliptocytosis, Hereditary/genetics , Erythrocyte Membrane/chemistry , Erythrocyte Membrane/metabolism , High-Throughput Nucleotide Sequencing , Humans , Mutation , Spectrin/genetics
19.
Nat Struct Mol Biol ; 29(7): 706-718, 2022 07.
Article in English | MEDLINE | ID: mdl-35835865

ABSTRACT

The stability and shape of the erythrocyte membrane is provided by the ankyrin-1 complex, but how it tethers the spectrin-actin cytoskeleton to the lipid bilayer and the nature of its association with the band 3 anion exchanger and the Rhesus glycoproteins remains unknown. Here we present structures of ankyrin-1 complexes purified from human erythrocytes. We reveal the architecture of a core complex of ankyrin-1, the Rhesus proteins RhAG and RhCE, the band 3 anion exchanger, protein 4.2, glycophorin A and glycophorin B. The distinct T-shaped conformation of membrane-bound ankyrin-1 facilitates recognition of RhCE and, unexpectedly, the water channel aquaporin-1. Together, our results uncover the molecular details of ankyrin-1 association with the erythrocyte membrane, and illustrate the mechanism of ankyrin-mediated membrane protein clustering.


Subject(s)
Anion Exchange Protein 1, Erythrocyte , Ankyrins , Anion Exchange Protein 1, Erythrocyte/analysis , Anion Exchange Protein 1, Erythrocyte/chemistry , Anion Exchange Protein 1, Erythrocyte/metabolism , Ankyrins/metabolism , Cytoskeletal Proteins/metabolism , Erythrocyte Membrane/chemistry , Erythrocyte Membrane/metabolism , Erythrocytes/metabolism , Humans , Spectrin
20.
Nat Struct Mol Biol ; 29(7): 698-705, 2022 07.
Article in English | MEDLINE | ID: mdl-35655099

ABSTRACT

The cytoskeleton of a red blood cell (RBC) is anchored to the cell membrane by the ankyrin complex. This complex is assembled during RBC genesis and comprises primarily band 3, protein 4.2 and ankyrin, whose mutations contribute to numerous human inherited diseases. High-resolution structures of the ankyrin complex have been long sought-after to understand its assembly and disease-causing mutations. Here, we analyzed native complexes on the human RBC membrane by stepwise fractionation. Cryo-electron microscopy structures of nine band-3-associated complexes reveal that protein 4.2 stabilizes the cytoplasmic domain of band 3 dimer. In turn, the superhelix-shaped ankyrin binds to this protein 4.2 via ankyrin repeats (ARs) 6-13 and to another band 3 dimer via ARs 17-20, bridging two band 3 dimers in the ankyrin complex. Integration of these structures with both prior data and our biochemical data supports a model of ankyrin complex assembly during erythropoiesis and identifies interactions essential for the mechanical stability of RBC.


Subject(s)
Ankyrins , Erythrocyte Membrane , Ankyrin Repeat , Ankyrins/chemistry , Cryoelectron Microscopy , Cytoskeleton/metabolism , Erythrocyte Membrane/chemistry , Erythrocyte Membrane/metabolism , Humans
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