The discovery of mechanisms by which the cancer cells avoid the host immune attack (immune checkpoints) as well the capability of the monoclonal antibodies (mAbs) to blockade the checkpoint proteins on cancer and tumor-infiltrating cells (CTLA-4, PD-1, and PD-L1) promised new breakthroughs in the cure of cancer. After these mechanisms of cancer escaping the host immunity were undoubtedly confirmed in numerous experimental and clinical studies, the FDA approval of CTLA-4 and PD-1/PD-L1 mAbs for systemic treatment thought to revolutionize the outcome of cancer treatment. However, as of today, the anticipated curative effect of anti-CTLA-4 and PD-1/PD-L1 mAb treatments has been observed only in a small population of patients. In addition, systemic administration of mAbs in clinics has been found associated with new toxicity profiles, sometimes very severe. The main obstacle that hinders the mAbs therapy appears to be the inability of delivering mAbs to a sufficient number of cancer cells and tumor infiltrating cells. As an alternative to the systemic administration (or as a complement to it), local intratumoral delivery of mAbs has been anticipated to resolve that issue. However, unlike the systemic mAbs administration, for which formidable but surmountable obstacles (big size of mAbs ~150 kD, high interstitial fluid pressure in solid tumors, etc.) have been known to hamper mAbs delivery to cancer and tumor-infiltrating cells, the lack of effects of intratumoral mAbs administration remains completely incomprehensible and needs a new theoretical reconsideration that we have attempted in our analysis. It can be suggested that the limited benefits of the intratumoral mAbs administration appeared to be rooted in the same problem that hindered the effects of systemic mAbs administration: the inability to reach a sufficient number of cancer cells and tumor-infiltrating cells. We hypothesize that the core of the problem stems from the fact that the single-needle intratumoral injection forms a very localized, jet-like distribution of the drug (mAbs) that constitutes only a small fraction of the total volume of the tumor. In this light we are re-evaluating the theoretical reasonableness of the single-needle intratumoral injection approach. We propose that multi-needle injection will circumvent this limitation and for that we analyze the behavior of an injectant in tissues using different configurations of the injection needles. To accomplish this goal, we created a model of injectant distribution in a solid tissue based on the traditional technique of single-needle injection and then extended that model to a case of simultaneous multi-needle injection. To develop the model of drug delivery and transport in biological tissues, we followed a frequently used approach of modeling the diffusive transport of liquid through a porous media using the Darcy's law that relates the flow velocity, the pressure gradient, and the tissue permeability. The analysis demonstrates that a multi-needle injection setup provides a significantly more widespread and homogeneous injectant distribution within a solid tumor than that for a single needle injection for the same tumor size. Adding separate draining needles can further improve the delivery of injectant to cancer and tumor-infiltrating cells.
Download full-text PDF |
Source |
---|---|
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6834475 | PMC |
J Drugs Dermatol
January 2023
Background: Oily skin is one of the most common dermatological complaints. With the obligation to use masks to protect themselves from the Covid-19 virus, the problem has become even more evident. One of the treatments proposed is the use of onabotulinumtoxin-A injected sub-dermally.
View Article and Find Full Text PDFJ Environ Sci Health B
August 2022
Institute of Food, Nutrition and Human Health, Massey University, Palmerston North, New Zealand.
One hypothesis for the higher rate of campylobacteriosis in New Zealand (NZ) is that secondary poultry processing practices increase chicken contamination. Chicken marination with needle injection may introduce pathogenic bacteria from the surface deep into the interior muscle tissue. The survival of in/on multi-needle injected chicken products was performed at the processing plant and retail.
View Article and Find Full Text PDFBurns
May 2023
Cell Therapy Facility, The Blood Bank, Department of Clinical Immunology, Copenhagen University Hospital, Rigshospitalet, Copenhagen, Denmark.
Aim: Mesenchymal stem cell (MSC)-therapy is increasingly being evaluated in clinical trials. Dermal delivery is not only time consuming but also unreliable, potentially hampering the therapeutic result. Therefore, qualification of cell delivery protocols is essential.
View Article and Find Full Text PDFRadiat Res
September 2021
The Second Affiliated Hospital of Chengdu Medical College, China National Nuclear Corporation 416 Hospital, Chengdu, 610051, China.
Severe radiation-induced skin injury is a complication of tumor radiotherapy and nuclear accidents. Cell therapy is a potential treatment for radiation-induced skin injury. The stromal vascular fraction (SVF) is a newer material in stem cell therapy that is made up of stem cells harvested from adipose tissue, which has been shown to promote the healing of refractory wounds of different causes.
View Article and Find Full Text PDFInjectable procedures have come to play an enormous part in everyday aesthetic medical practice. Whether its use is directed at volumizing with fillers, decreasing volume using enzymes, skin-tightening using multi-needle approaches, or neuromuscular blockade, the injectable route is the means of delivery in all these cases, making injectable procedures the most common aesthetic procedure performed. As with all procedures, expected and unexpected consequences may follow including bruising, swelling, discomfort, and the possibility of infection.
View Article and Find Full Text PDFEnter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!