Literature DB >> 34719796

Dietary biomolecules as promising regenerative agents for peripheral nerve injury: An emerging nutraceutical-based therapeutic approach.

Haseeb Anwar1, Azhar Rasul2, Javed Iqbal3, Nazir Ahmad4, Ali Imran4, Shoaib Ahmad Malik5, Fazeela Ijaz1, Rabia Akram1, Javeria Maqbool1, Faiqa Sajid1, Tao Sun6, Ghulam Hussain1, Muhammad Faisal Manzoor7.   

Abstract

Peripheral nerve damage is a debilitating condition that can result in partial or complete functional loss as a result of axonal degeneration, as well as lifelong dependence. Many therapies have been imbued with a plethora of positive features while posing little risks. It is worth noting that these biomolecules work by activating several intrinsic pathways that are known to be important in peripheral nerve regeneration. Although the underlying mechanism is used for accurate and speedy functional recovery, none of them are without side effects. As a result, it is believed that effective therapy is currently lacking. The dietary biomolecules-based intervention, among other ways, is appealing, safe, and effective. Upregulation of transcription factors, neurotrophic factors, and growth factors such as NGF, GDNF, BDNF, and CTNF may occur as a result of these substances' dietary intake. Upregulation of the signaling pathways ERK, JNK, p38, and PKA has also been seen, which aids in axonal regeneration. Although several mechanistic approaches to understanding their involvement have been suggested, more work is needed to reveal the amazing properties of these biomolecules. We have discussed in this article that how different dietary biomolecules can help with functional recovery and regeneration after an injury. PRACTICAL APPLICATIONS: Based on the information known to date, we may conclude that treatment techniques for peripheral nerve injury have downsides, such as complications, donor shortages, adverse effects, unaffordability, and a lack of precision in efficacy. These difficulties cast doubt on their efficacy and raise severe concerns about the prescription. In this situation, the need for safe and effective therapeutic techniques is unavoidable, and dietary biomolecules appear to be a safe, cost-efficient, and effective way to promote nerve regeneration following an injury. The information on these biomolecules has been summarized here. Upregulation of transcription factors, neurotrophic factors, and growth factors, such as NGF, GDNF, BDNF, and CTNF, as well as the ERK, JNK, p38, and PKA, signaling pathways, may stimulate axonal regeneration.
© 2021 Wiley Periodicals LLC.

Entities:  

Keywords:  Schwann cells; anti-inflammatory; anti-oxidants; food-derived compounds; nerve injury; neurotrophic factors; regeneration

Mesh:

Year:  2021        PMID: 34719796     DOI: 10.1111/jfbc.13989

Source DB:  PubMed          Journal:  J Food Biochem        ISSN: 0145-8884            Impact factor:   2.720


  2 in total

1.  Preparation of Polyvinylidene Fluoride-Gold Nanoparticles Electrospinning Nanofiber Membranes.

Authors:  Xuemei Ge; Shang Wu; Wen Shen; Lijuan Chen; Yan Zheng; Fen Ao; Yuanlan Ning; Yueyang Mao; Zhong Chen
Journal:  Bioengineering (Basel)       Date:  2022-03-24

Review 2.  Impact of vitamin D on maternal and fetal health: A review.

Authors:  Rizwan Arshad; Aysha Sameen; Mian Anjum Murtaza; Hafiz Rizwan Sharif; Sahifa Dawood; Zahoor Ahmed; Arash Nemat; Muhammad Faisal Manzoor
Journal:  Food Sci Nutr       Date:  2022-07-07       Impact factor: 3.553

  2 in total

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