Example of Biochemistry Research International format
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Example of Biochemistry Research International format Example of Biochemistry Research International format Example of Biochemistry Research International format Example of Biochemistry Research International format Example of Biochemistry Research International format Example of Biochemistry Research International format Example of Biochemistry Research International format Example of Biochemistry Research International format Example of Biochemistry Research International format Example of Biochemistry Research International format
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Example of Biochemistry Research International format Example of Biochemistry Research International format Example of Biochemistry Research International format Example of Biochemistry Research International format Example of Biochemistry Research International format Example of Biochemistry Research International format Example of Biochemistry Research International format Example of Biochemistry Research International format Example of Biochemistry Research International format Example of Biochemistry Research International format
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open access Open Access

Biochemistry Research International — Template for authors

Publisher: Hindawi
Categories Rank Trend in last 3 yrs
Biochemistry #248 of 415 up up by 5 ranks
journal-quality-icon Journal quality:
Medium
calendar-icon Last 4 years overview: 57 Published Papers | 211 Citations
indexed-in-icon Indexed in: Scopus
last-updated-icon Last updated: 23/06/2020
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Related Journals

open access Open Access
recommended Recommended

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Quality:  
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SJR: 4.634
SNIP: 2.046
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SJR: 0.633
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De Gruyter

Quality:  
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SJR: 1.246
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Royal Society of Chemistry

Quality:  
High
CiteRatio: 6.0
SJR: 0.923
SNIP: 0.776

Journal Performance & Insights

CiteRatio

SCImago Journal Rank (SJR)

Source Normalized Impact per Paper (SNIP)

A measure of average citations received per peer-reviewed paper published in the journal.

Measures weighted citations received by the journal. Citation weighting depends on the categories and prestige of the citing journal.

Measures actual citations received relative to citations expected for the journal's category.

3.7

38% from 2019

CiteRatio for Biochemistry Research International from 2016 - 2020
Year Value
2020 3.7
2019 6.0
2018 4.5
2017 3.1
2016 2.6
graph view Graph view
table view Table view

0.631

7% from 2019

SJR for Biochemistry Research International from 2016 - 2020
Year Value
2020 0.631
2019 0.589
2018 0.532
2017 0.437
2016 0.49
graph view Graph view
table view Table view

1.608

17% from 2019

SNIP for Biochemistry Research International from 2016 - 2020
Year Value
2020 1.608
2019 1.375
2018 1.561
2017 0.78
2016 0.795
graph view Graph view
table view Table view

insights Insights

  • CiteRatio of this journal has decreased by 38% in last years.
  • This journal’s CiteRatio is in the top 10 percentile category.

insights Insights

  • SJR of this journal has increased by 7% in last years.
  • This journal’s SJR is in the top 10 percentile category.

insights Insights

  • SNIP of this journal has increased by 17% in last years.
  • This journal’s SNIP is in the top 10 percentile category.

Biochemistry Research International

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Hindawi

Biochemistry Research International

Biochemistry Research International is a peer-reviewed, open access journal that publishes original research articles as well as review articles in all areas of biochemistry.... Read More

Biochemistry

Biochemistry, Genetics and Molecular Biology

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Last updated on
23 Jun 2020
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ISSN
2090-2247
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Impact Factor
Medium - 0.705
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Acceptance Rate
43%
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Frequency
Not provided
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Open Access
Yes
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Sherpa RoMEO Archiving Policy
Green faq
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Plagiarism Check
Available via Turnitin
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Endnote Style
Download Available
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Bibliography Name
unsrt
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Citation Type
Numbered
[25]
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Bibliography Example
C. W. J. Beenakker. “Specular andreev reflection in graphene”. Phys. Rev. Lett., vol. 97, no. 6, 067007, 2006.

Top papers written in this journal

open accessOpen access Journal Article DOI: 10.1155/2011/195209
NPM1/B23: A Multifunctional Chaperone in Ribosome Biogenesis and Chromatin Remodeling.
Mikael S. Lindström1

Abstract:

At a first glance, ribosome biogenesis and chromatin remodeling are quite different processes, but they share a common problem involving interactions between charged nucleic acids and small basic proteins that may result in unwanted intracellular aggregations. The multifunctional nuclear acidic chaperone NPM1 (B23/nucleophosm... At a first glance, ribosome biogenesis and chromatin remodeling are quite different processes, but they share a common problem involving interactions between charged nucleic acids and small basic proteins that may result in unwanted intracellular aggregations. The multifunctional nuclear acidic chaperone NPM1 (B23/nucleophosmin) is active in several stages of ribosome biogenesis, chromatin remodeling, and mitosis as well as in DNA repair, replication and transcription. In addition, NPM1 plays an important role in the Myc-ARF-p53 pathway as well as in SUMO regulation. However, the relative importance of NPM1 in these processes remains unclear. Provided herein is an update on the expanding list of the diverse activities and interacting partners of NPM1. Mechanisms of NPM1 nuclear export functions of NPM1 in the nucleolus and at the mitotic spindle are discussed in relation to tumor development. It is argued that the suggested function of NPM1 as a histone chaperone could explain several, but not all, of the effects observed in cells following changes in NPM1 expression. A future challenge is to understand how NPM1 is activated, recruited, and controlled to carry out its functions. read more read less

Topics:

Chromatin remodeling (65%)65% related to the paper, Ribosome biogenesis (61%)61% related to the paper, Histone (53%)53% related to the paper, Nuclear export signal (51%)51% related to the paper, Chaperone (protein) (50%)50% related to the paper
View PDF
273 Citations
open accessOpen access Journal Article DOI: 10.1155/2011/618127
Hsp70 and Its Molecular Role in Nervous System Diseases
Giuseppina Turturici1, Gabriella Sconzo1, Fabiana Geraci1

Abstract:

Heat shock proteins (HSPs) are induced in response to many injuries including stroke, neurodegenerative disease, epilepsy, and trauma. The overexpression of one HSP in particular, Hsp70, serves a protective role in several different models of nervous system injury, but has also been linked to a deleterious role in some diseas... Heat shock proteins (HSPs) are induced in response to many injuries including stroke, neurodegenerative disease, epilepsy, and trauma. The overexpression of one HSP in particular, Hsp70, serves a protective role in several different models of nervous system injury, but has also been linked to a deleterious role in some diseases. Hsp70 functions as a chaperone and protects neurons from protein aggregation and toxicity (Parkinson disease, Alzheimer disease, polyglutamine diseases, and amyotrophic lateral sclerosis), protects cells from apoptosis (Parkinson disease), is a stress marker (temporal lobe epilepsy), protects cells from inflammation (cerebral ischemic injury), has an adjuvant role in antigen presentation and is involved in the immune response in autoimmune disease (multiple sclerosis). The worldwide incidence of neurodegenerative diseases is high. As neurodegenerative diseases disproportionately affect older individuals, disease-related morbidity has increased along with the general increase in longevity. An understanding of the underlying mechanisms that lead to neurodegeneration is key to identifying methods of prevention and treatment. Investigators have observed protective effects of HSPs induced by preconditioning, overexpression, or drugs in a variety of models of brain disease. Experimental data suggest that manipulation of the cellular stress response may offer strategies to protect the brain during progression of neurodegenerative disease. read more read less

Topics:

Neurodegeneration (63%)63% related to the paper, Alzheimer's disease (54%)54% related to the paper, Disease (54%)54% related to the paper, Heat shock protein (51%)51% related to the paper, Multiple sclerosis (51%)51% related to the paper
View PDF
222 Citations
open accessOpen access Journal Article DOI: 10.1155/2017/7616791
Antioxidant and Antiradical Properties of Selected Flavonoids and Phenolic Compounds
Zübeyir Huyut1, Şükrü Beydemir2, İlhami Gülçin3

Abstract:

Phenolic compounds and flavonoids are known by their antioxidant properties and one of the most important sources for humans is the diet. Due to the harmful effects of synthetic antioxidants such as BHA and BHT, natural novel antioxidants have become the focus of attention for protecting foods and beverages and reducing oxida... Phenolic compounds and flavonoids are known by their antioxidant properties and one of the most important sources for humans is the diet. Due to the harmful effects of synthetic antioxidants such as BHA and BHT, natural novel antioxidants have become the focus of attention for protecting foods and beverages and reducing oxidative stress in vivo. In the current study, we investigated the total antioxidant, metal chelating, Fe3+ and Cu2+ reduction, and free radical scavenging activities of some phenolic and flavonoid compounds including malvin, oenin, ID-8, silychristin, callistephin, pelargonin, 3,4-dihydroxy-5-methoxybenzoic acid, 2,4,6-trihydroxybenzaldehyde, and arachidonoyl dopamine. The antioxidant properties of these compounds at different concentrations (10–30 μg/mL) were compared with those of reference antioxidants such as BHA, BHT, α-tocopherol, and trolox. Each substance showed dose-dependent antioxidant activity. Furthermore, oenin, malvin, arachidonoyl dopamine, callistephin, silychristin, and 3,4-dihydroxy-5-methoxybenzoic acid exhibited more effective antioxidant activity than that observed for the reference antioxidants. These results suggest that these novel compounds may function to protect foods and medicines and to reduce oxidative stress in vivo. read more read less

Topics:

Trolox (58%)58% related to the paper, Oenin (54%)54% related to the paper, Antioxidant (53%)53% related to the paper, Malvin (50%)50% related to the paper
View PDF
196 Citations
open accessOpen access Journal Article DOI: 10.1155/2012/841362
Endoplasmic Reticulum Stress and Lipid Metabolism: Mechanisms and Therapeutic Potential
Sana Basseri1, Richard C. Austin1

Abstract:

The endoplasmic reticulum (ER) plays a crucial role in protein folding, assembly, and secretion. Disruption of ER homeostasis may lead to accumulation of misfolded or unfolded proteins in the ER lumen, a condition referred to as ER stress. In response to ER stress, a signal transduction pathway known as the unfolded protein r... The endoplasmic reticulum (ER) plays a crucial role in protein folding, assembly, and secretion. Disruption of ER homeostasis may lead to accumulation of misfolded or unfolded proteins in the ER lumen, a condition referred to as ER stress. In response to ER stress, a signal transduction pathway known as the unfolded protein response (UPR) is activated. UPR activation allows the cell to cope with an increased protein-folding demand on the ER. Recent studies have shown that ER stress/UPR activation plays a critical role in lipid metabolism and homeostasis. ER-stress-dependent dysregulation of lipid metabolism may lead to dyslipidemia, insulin resistance, cardiovascular disease, type 2 diabetes, and obesity. In this paper, we examine recent findings illustrating the important role ER stress/UPR signalling pathways play in regulation of lipid metabolism, and how they may lead to dysregulation of lipid homeostasis. read more read less

Topics:

Unfolded protein response (66%)66% related to the paper, Lipid metabolism (57%)57% related to the paper, Endoplasmic reticulum (57%)57% related to the paper
View PDF
185 Citations
open accessOpen access Journal Article DOI: 10.1155/2012/346972
Hyaluronan regulates cell behavior: a potential niche matrix for stem cells.

Abstract:

Hyaluronan is a linear glycosaminoglycan that has received special attention in the last few decades due to its extraordinary physiological functions. This highly viscous polysaccharide is not only a lubricator, but also a significant regulator of cellular behaviors during embryogenesis, morphogenesis, migration, proliferatio... Hyaluronan is a linear glycosaminoglycan that has received special attention in the last few decades due to its extraordinary physiological functions. This highly viscous polysaccharide is not only a lubricator, but also a significant regulator of cellular behaviors during embryogenesis, morphogenesis, migration, proliferation, and drug resistance in many cell types, including stem cells. Most hyaluronan functions require binding to its cellular receptors CD44, LYVE-1, HARE, layilin, and RHAMM. After binding, proteins are recruited and messages are sent to alter cellular activities. When low concentrations of hyaluronan are applied to stem cells, the proliferative activity is enhanced. However, at high concentrations, stem cells acquire a dormant state and induce a multidrug resistance phenotype. Due to the influence of hyaluronan on cells and tissue morphogenesis, with regards to cardiogenesis, chondrogenesis, osteogenesis, and neurogenesis, it is now been utilized as a biomaterial for tissue regeneration. This paper summarizes the most important and recent findings regarding the regulation of hyaluronan in cells. read more read less

Topics:

Hyaluronan-mediated motility receptor (59%)59% related to the paper, Stem cell (58%)58% related to the paper, Neurogenesis (54%)54% related to the paper, Morphogenesis (52%)52% related to the paper, CD44 (51%)51% related to the paper
View PDF
178 Citations
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Biochemistry Research International format uses unsrt citation style.

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Frequently asked questions

1. Can I write Biochemistry Research International in LaTeX?

Absolutely not! Our tool has been designed to help you focus on writing. You can write your entire paper as per the Biochemistry Research International guidelines and auto format it.

2. Do you follow the Biochemistry Research International guidelines?

Yes, the template is compliant with the Biochemistry Research International guidelines. Our experts at SciSpace ensure that. If there are any changes to the journal's guidelines, we'll change our algorithm accordingly.

3. Can I cite my article in multiple styles in Biochemistry Research International?

Of course! We support all the top citation styles, such as APA style, MLA style, Vancouver style, Harvard style, and Chicago style. For example, when you write your paper and hit autoformat, our system will automatically update your article as per the Biochemistry Research International citation style.

4. Can I use the Biochemistry Research International templates for free?

Sign up for our free trial, and you'll be able to use all our features for seven days. You'll see how helpful they are and how inexpensive they are compared to other options, Especially for Biochemistry Research International.

5. Can I use a manuscript in Biochemistry Research International that I have written in MS Word?

Yes. You can choose the right template, copy-paste the contents from the word document, and click on auto-format. Once you're done, you'll have a publish-ready paper Biochemistry Research International that you can download at the end.

6. How long does it usually take you to format my papers in Biochemistry Research International?

It only takes a matter of seconds to edit your manuscript. Besides that, our intuitive editor saves you from writing and formatting it in Biochemistry Research International.

7. Where can I find the template for the Biochemistry Research International?

It is possible to find the Word template for any journal on Google. However, why use a template when you can write your entire manuscript on SciSpace , auto format it as per Biochemistry Research International's guidelines and download the same in Word, PDF and LaTeX formats? Give us a try!.

8. Can I reformat my paper to fit the Biochemistry Research International's guidelines?

Of course! You can do this using our intuitive editor. It's very easy. If you need help, our support team is always ready to assist you.

9. Biochemistry Research International an online tool or is there a desktop version?

SciSpace's Biochemistry Research International is currently available as an online tool. We're developing a desktop version, too. You can request (or upvote) any features that you think would be helpful for you and other researchers in the "feature request" section of your account once you've signed up with us.

10. I cannot find my template in your gallery. Can you create it for me like Biochemistry Research International?

Sure. You can request any template and we'll have it setup within a few days. You can find the request box in Journal Gallery on the right side bar under the heading, "Couldn't find the format you were looking for like Biochemistry Research International?”

11. What is the output that I would get after using Biochemistry Research International?

After writing your paper autoformatting in Biochemistry Research International, you can download it in multiple formats, viz., PDF, Docx, and LaTeX.

12. Is Biochemistry Research International's impact factor high enough that I should try publishing my article there?

To be honest, the answer is no. The impact factor is one of the many elements that determine the quality of a journal. Few of these factors include review board, rejection rates, frequency of inclusion in indexes, and Eigenfactor. You need to assess all these factors before you make your final call.

13. What is Sherpa RoMEO Archiving Policy for Biochemistry Research International?

SHERPA/RoMEO Database

We extracted this data from Sherpa Romeo to help researchers understand the access level of this journal in accordance with the Sherpa Romeo Archiving Policy for Biochemistry Research International. The table below indicates the level of access a journal has as per Sherpa Romeo's archiving policy.

RoMEO Colour Archiving policy
Green Can archive pre-print and post-print or publisher's version/PDF
Blue Can archive post-print (ie final draft post-refereeing) or publisher's version/PDF
Yellow Can archive pre-print (ie pre-refereeing)
White Archiving not formally supported
FYI:
  1. Pre-prints as being the version of the paper before peer review and
  2. Post-prints as being the version of the paper after peer-review, with revisions having been made.

14. What are the most common citation types In Biochemistry Research International?

The 5 most common citation types in order of usage for Biochemistry Research International are:.

S. No. Citation Style Type
1. Author Year
2. Numbered
3. Numbered (Superscripted)
4. Author Year (Cited Pages)
5. Footnote

15. How do I submit my article to the Biochemistry Research International?

It is possible to find the Word template for any journal on Google. However, why use a template when you can write your entire manuscript on SciSpace , auto format it as per Biochemistry Research International's guidelines and download the same in Word, PDF and LaTeX formats? Give us a try!.

16. Can I download Biochemistry Research International in Endnote format?

Yes, SciSpace provides this functionality. After signing up, you would need to import your existing references from Word or Bib file to SciSpace. Then SciSpace would allow you to download your references in Biochemistry Research International Endnote style according to Elsevier guidelines.

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